[{"data":1,"prerenderedAt":1980},["ShallowReactive",2],{"layout-navigation-config\u002Ffr":3,"layout-footer-config\u002Ffr":214,"pagesMd-pages\u002Flanding\u002Fai-collar-fr":291},{"displayCart":4,"menuItems":5},true,[6,66,107,140,167,210],{"_mergeId":7,"title":7,"type":8,"panelType":7,"landingUrl":9,"panel":10},"products","drawer","\u002Fshop",{"productCards":11,"bigCards":54,"allProductsLink":64},[12,20,28,35,41,47],{"_mergeId":13,"title":14,"description":15,"url":16,"badge":17,"image":18},"gpsTrackerProMax","proMaxGpsTracker","proMaxIntro","\u002Fproduct\u002Fgps-tracker-pro-max","new",{"src":19,"alt":14},"\u002Fimages\u002Frenaissance\u002Fproducts\u002Flwt7\u002Fpro-max-transparent.png",{"_mergeId":21,"title":22,"description":23,"url":24,"badge":25,"image":26},"gpsTrackerClassic","gpsTracker","gpsTrackerIntro","\u002Fproduct\u002Fgps-tracker-classic","edition2026",{"src":27,"alt":22},"\u002Fimages\u002Fdafolle\u002Fproducts\u002Flwt1-horizontal.png",{"_mergeId":29,"title":30,"description":31,"url":32,"outOfStock":4,"image":33},"gpsTrackerPro","proGpsTracker","gpsTrackerProIntro","\u002Fproduct\u002Fgps-tracker-pro",{"src":34,"alt":30},"\u002Fimages\u002Frenaissance\u002Fproducts\u002Flwt3\u002Fpro-transparent.png",{"_mergeId":36,"title":36,"description":37,"url":38,"image":39},"miniTracker","miniTrackerIntro","\u002Fproduct\u002Fmini-tracker",{"src":40,"alt":36},"\u002Fimages\u002Frenaissance\u002Fproducts\u002Flwt2-mini\u002Fmini-transparent.png",{"_mergeId":42,"title":42,"description":43,"url":44,"image":45},"bikeTracker","bikeTrackerIntro","\u002Fproduct\u002Fbike-tracker",{"src":46,"alt":42},"\u002Fimages\u002Frenaissance\u002Fproducts\u002Flwt2-bike\u002Fbike-transparent.png",{"_mergeId":48,"title":49,"description":50,"url":51,"image":52},"biotracker","lwt6MarketingFullName","biotrackerIntro","\u002Fpetcare\u002Fminitailz-dog-tracker",{"src":53,"alt":49},"\u002Fimages\u002Fdafolle\u002Fproducts\u002Fshop\u002Flwt6.png",[55],{"_mergeId":56,"title":56,"description":57,"url":58,"variant":59,"image":60,"buttonLabel":62,"buttonVariant":63},"compareTrackers","compareTrackersIntro","\u002Fcompare","image",{"src":61,"alt":56},"\u002Fimages\u002Fdafolle\u002Fnav\u002Fproduct-range.png","seeComparison","primary",{"title":65,"url":9},"allProducts",{"_mergeId":67,"title":68,"type":8,"panelType":67,"landingUrl":69,"panel":70},"gps-trackers","gpsTrackers","\u002Fshop\u002Fgps-trackers",{"productCards":71,"usageLinks":82,"explorerLinks":99,"allTrackersLink":105},[72,74,76,78,80],{"_mergeId":13,"title":14,"description":15,"url":16,"badge":17,"image":73},{"src":19,"alt":14},{"_mergeId":21,"title":22,"description":23,"url":24,"badge":25,"image":75},{"src":27,"alt":22},{"_mergeId":29,"title":30,"description":31,"url":32,"outOfStock":4,"image":77},{"src":34,"alt":30},{"_mergeId":36,"title":36,"description":37,"url":38,"image":79},{"src":40,"alt":36},{"_mergeId":42,"title":42,"description":43,"url":44,"image":81},{"src":46,"alt":42},[83,86,89,92,95],{"_mergeId":84,"title":84,"url":85},"motorbike","\u002Fgps-tracker\u002Fusage\u002Fmotorcycle",{"_mergeId":87,"title":87,"url":88},"car","\u002Fgps-tracker\u002Fusage\u002Fcar",{"_mergeId":90,"title":90,"url":91},"bicycle","\u002Fgps-tracker\u002Fusage\u002Fbike",{"_mergeId":93,"title":93,"url":94},"motorhome","\u002Fgps-tracker\u002Fusage\u002Fmotorhome",{"_mergeId":96,"title":97,"url":98},"child","shopUsageKids","\u002Fgps-tracker\u002Fusage\u002Fchild",[100,103],{"_mergeId":101,"title":101,"url":102},"allUsages","\u002Fgps-tracker\u002Fusage",{"_mergeId":104,"title":104,"url":58},"compare",{"title":106,"url":69},"allTrackers",{"_mergeId":108,"title":109,"type":8,"panelType":108,"landingUrl":110,"panel":111},"animal-health","petHealthTitle","\u002Fpetcare\u002Fanimal-health",{"sectionTitle":112,"productCards":113,"exploreLinks":124},"animalHealthProducts",[114,117],{"_mergeId":115,"title":49,"description":50,"url":51,"image":116},"minitailz",{"src":53,"alt":49},{"_mergeId":118,"title":118,"description":119,"url":120,"imageFullBleed":4,"image":121},"vetPlatformBiotrack","vetPlatformBiotrackDesc","\u002Flanding\u002Fbiotrack",{"src":122,"alt":123},"\u002Fimages\u002Fdafolle\u002Fnav\u002Fvet-platform-biotrack.png","vetPlatformBiotrackImageAlt",[125,128,132,136],{"_mergeId":126,"title":126,"description":127,"url":110},"animalHealthAtInvoxia","animalHealthAtInvoxiaIntro",{"_mergeId":129,"title":129,"description":130,"url":131},"chatWithYourDog","chatWithYourDogIntro","\u002Flanding\u002Fchat-with-your-dog",{"_mergeId":133,"title":133,"description":134,"url":135},"aiCollarStudy","aiCollarStudyIntro","\u002Flanding\u002Fai-collar",{"_mergeId":137,"title":137,"description":138,"url":139},"valvularDiseaseMonitoring","valvularDiseaseMonitoringIntro","\u002Flanding\u002Fvalvular-disease-monitoring",{"_mergeId":141,"title":142,"type":8,"panelType":141,"landingUrl":143,"panel":144},"b2b-solutions","b2bSolutions","\u002Ffleet",{"bigCards":145},[146,151,157,163],{"_mergeId":147,"title":147,"description":148,"url":143,"variant":59,"image":149},"fleetManagement","fleetManagementIntro",{"src":150,"alt":147},"\u002Fimages\u002Fbackground\u002Fbackground-fleet.png",{"_mergeId":152,"title":152,"description":153,"url":154,"variant":59,"image":155},"distributeProducts","distributeProductsIntro","\u002Fdistribution",{"src":156,"alt":152},"\u002Fimages\u002Fdafolle\u002Fnav\u002Fdistribution.png",{"_mergeId":158,"title":158,"description":159,"url":160,"variant":59,"image":161},"customSolutions","customSolutionsIntro","\u002Finnovation-lab",{"src":162,"alt":158},"\u002Fimages\u002Fdafolle\u002Fnav\u002Finnovation-lab.png",{"_mergeId":164,"title":118,"description":165,"url":120,"variant":59,"image":166},"vetPlatform","vetPlatformIntro",{"src":122,"alt":123},{"_mergeId":168,"title":168,"type":8,"panelType":168,"landingUrl":169,"panel":170},"resources","\u002Fglossary",{"resourceLinks":171,"blogArticles":190},[172,176,182,187],{"_mergeId":173,"title":173,"description":174,"url":175,"external":4},"blog","blogDescription","https:\u002F\u002Fwww.invoxia.com\u002Fblog\u002F{lang}\u002F",{"_mergeId":177,"title":178,"description":179,"url":180,"helpCenter":181,"external":4},"faqGpsTrackers","navFaqGpsTrackers","navFaqGpsTrackersDescription","https:\u002F\u002Fsupport.invoxia.com\u002Fhc\u002F","invoxia",{"_mergeId":183,"title":184,"description":185,"url":186,"helpCenter":48,"external":4},"faqBiotracker","navFaqBiotracker","navFaqBiotrackerDescription","https:\u002F\u002Fbiotracker.zendesk.com\u002Fhc\u002F",{"_mergeId":188,"title":188,"description":189,"url":169},"glossary","glossaryDescription",[191,201],{"title":192,"tags":193,"date":196,"readingTime":197,"image":198,"url":200,"external":4},"navBlogGpsJammerTitle",[194,195],"security","technology","2026-05-04",6,{"src":199,"alt":192},"\u002Fimages\u002Fdafolle\u002Fnav\u002Fblog-gps-jammer.jpg","https:\u002F\u002Fwww.invoxia.com\u002Fblog\u002F{lang}\u002Fgpstrackers\u002Fgps-jammer-how-to-protect-yourself\u002F",{"title":202,"tags":203,"date":196,"readingTime":206,"image":207,"url":209,"external":4},"navBlogDogHealthProTitle",[204,205],"tips","health",11,{"src":208,"alt":202},"\u002Fimages\u002Fdafolle\u002Fnav\u002Fblog-dog-health-pro.jpg","https:\u002F\u002Fwww.invoxia.com\u002Fblog\u002F{lang}\u002Fpetcare\u002Fhow-to-choose-the-right-health-professional-for-dogs\u002F",{"_mergeId":211,"title":211,"type":212,"link":213},"support","link","\u002Fchatbot",{"menuFooter":215,"lowFooter":264,"socialNetworks":275},{"products":216,"byUsage":227,"petHealthTitle":236,"b2bSolutions":243,"resources":248,"company":257},{"proMaxGpsTracker":217,"gpsTracker":218,"miniTracker":219,"bikeTracker":220,"lwt6MarketingFullName":221,"compareTrackers":222,"allProducts":223,"buyInStore":224},{"url":16},{"url":24},{"url":38},{"url":44},{"url":51},{"url":58},{"url":9},{"type":225,"url":226},"a","https:\u002F\u002Fwww.invoxia.com\u002Fblog\u002Ffr\u002Fgpstrackers\u002Fwhere-to-buy-invoxia-gps-tracker\u002F",{"shopGpsTrackersCarH1":228,"shopGpsTrackersMotorcycleH1":229,"shopGpsTrackersBikeH1":230,"shopGpsTrackersCampervanH1":231,"shopGpsTrackersKidsH1":232,"shopGpsTrackersElderlyH1":233,"allUsages":235},{"url":88},{"url":85},{"url":91},{"url":94},{"url":98},{"url":234},"\u002Fgps-tracker\u002Fusage\u002Felderly",{"url":102},{"lwt6MarketingFullName":237,"animalHealthAtInvoxia":238,"vetPlatformBiotrack":239,"chatWithYourDog":240,"aiCollarStudy":241,"valvularDiseaseMonitoring":242},{"url":51},{"url":110},{"url":120},{"url":131},{"url":135},{"url":139},{"fleetManagement":244,"distributeProducts":245,"innovationLab":246,"vetPlatformBiotrack":247},{"url":143},{"url":154},{"url":160},{"url":120},{"help":249,"faq":250,"trackersGpsBlog":254,"glossary":256},{"url":213},{"children":251},{"gpsTrackers":252,"biotracker":253},{"type":225,"helpCenter":181,"url":180},{"type":225,"helpCenter":48,"url":186},{"type":225,"url":255},"https:\u002F\u002Fwww.invoxia.com\u002Fblog\u002F",{"url":169},{"aboutUs":258,"madeInFrance":260,"employment":262},{"url":259},"\u002Fabout-us",{"url":261},"\u002Fmade-in-france",{"type":225,"url":263},"https:\u002F\u002Fwww.welcometothejungle.com\u002Fcompanies\u002Finvoxia\u002Fjobs",{"termsOfUse":265,"termsOfReturn":267,"legalNotice":269,"privacyPolicy":271,"cookies":273},{"url":266},"\u002Flegal\u002Fservices\u002Fgeneral",{"url":268},"\u002Flegal\u002Fstore\u002Freturn",{"url":270},"\u002Flegal\u002Fsite\u002Flegal-notice",{"url":272},"\u002Flegal\u002Fsite\u002Fprivacy",{"url":274},"\u002Flegal\u002Fsite\u002Fcookies",[276,279,282,285,288],{"icon":277,"url":278},"Facebook","https:\u002F\u002Fwww.facebook.com\u002FInvoxiaFrance",{"icon":280,"url":281},"Instagram","https:\u002F\u002Fwww.instagram.com\u002Finvoxia",{"icon":283,"url":284},"Linkedin","https:\u002F\u002Fwww.linkedin.com\u002Fcompany\u002Finvoxia\u002Fmycompany\u002F",{"icon":286,"url":287},"Youtube","https:\u002F\u002Fwww.youtube.com\u002Fuser\u002Finvoxia",{"icon":289,"url":290},"Twitter","https:\u002F\u002Ftwitter.com\u002Finvoxia?ref_src=twsrc%5Egoogle%7Ctwcamp%5Eserp%7Ctwgr%5Eauthor",{"id":292,"title":293,"body":294,"description":1959,"disabledLocales":1960,"draft":1961,"extension":1962,"meta":1963,"navigation":4,"noindex":1961,"ogImage":1964,"path":1965,"scholarlyArticle":1966,"seo":1975,"sitemap":1976,"stem":1978,"__hash__":1979},"pagesMd\u002Flocale\u002Ffr\u002Fpages\u002Flanding\u002Fai-collar.md","Fréquence cardiaque et respiratoire du chien | Invoxia",{"type":295,"value":296,"toc":1956},"minimark",[297,305,401,433,517,823,887,917,972,1001,1025,1067,1111,1158,1183,1862,1941],[298,299],"page-theme",{"accent":300,"bg":301,"bg-alt":302,"button-bg":303,"button-text":302,"text":303,"text-muted":304},"#2faa72","#f7fdf7","#ffffff","#002623","rgba(0, 38, 35, 0.6)",[306,307,310,315,355,384],"page-hero",{"image":308,"image-alt":309},"\u002Flanding\u002Fai-collar\u002Fvetodog_aicollar.webp","Une vétérinaire attachant un collier Invoxia Biotracker à un chien",[311,312],"prose-h3",{"tag":313,"title":314},"h1","Fréquences cardiaque et respiratoire normales chez le chien : résultats de l'étude AI-COLLAR",[316,317,318,319,323,324,328,329,332,333,336,337,345,346,350,351,354],"p",{},"Notre article ",[320,321,322],"em",{},"Resting heart and respiratory rates in dogs in their natural environment"," (",[325,326,327],"strong",{},"AI-COLLAR","), publié dans ",[320,330,331],{},"Frontiers in Veterinary Science"," (2025), établit la ",[325,334,335],{},"première référence mondiale des fréquences cardiaque et respiratoire normales chez des chiens apparemment en bonne santé",". Menée avec la ",[225,338,342],{"href":339,"rel":340},"https:\u002F\u002Floop.frontiersin.org\u002Fpeople\u002F1415572\u002Foverview",[341],"nofollow",[325,343,344],{},"Professeure Valérie Chetboul",", elle est rendue possible par le ",[225,347,349],{"href":348},"$locale\u002Fpetcare\u002Fanimal-health","Invoxia Biotracker GPS for Dogs",", lauréat du ",[325,352,353],{},"CES Innovation Award 2024",".",[356,357,359,368,376],"template",{"v-slot:stats":358},"",[360,361,362],"hero-stat",{},[316,363,364,367],{},[325,365,366],{},"703","\nchiens en bonne santé",[360,369,370],{},[316,371,372,375],{},[325,373,374],{},"113","\nraces dans 29 pays",[360,377,378],{},[316,379,380,383],{},[325,381,382],{},"6 mois","\nde suivi médian par chien",[356,385,386,393],{"v-slot:buttons":358},[387,388,390],"content-button",{"url":389,"variant":63},"$locale\u002Fpetcare\u002Fminitailz-dog-tracker",[316,391,392],{},"Découvrir le Invoxia Biotracker",[387,394,398],{"url":395,"variant":396,"target":397},"https:\u002F\u002Fwww.frontiersin.org\u002Fjournals\u002Fveterinary-science\u002Farticles\u002F10.3389\u002Ffvets.2025.1667355\u002Ffull","secondary","_blank",[316,399,400],{},"Lire la publication",[402,403,404,412,419,426],"feature-icons",{},[405,406,409],"feature-icon",{"icon":407,"title":408},"\u002Ficons\u002Fheart-rate_corored.svg","Fréquence cardiaque au repos",[316,410,411],{},"Valeurs de référence par âge, poids et race",[405,413,416],{"icon":414,"title":415},"\u002Ficons\u002Flungs_corored.svg","Fréquence respiratoire au repos",[316,417,418],{},"Mesurée en continu, hors du stress de la clinique",[405,420,423],{"icon":421,"title":422},"\u002Ficons\u002Fdog_corored.svg","113 races suivies",[316,424,425],{},"Sur trois continents, jusqu'à un an par chien",[405,427,430],{"icon":428,"title":429},"\u002Ficons\u002Fclinical-accuracy.svg","99,6 % de précision",[316,431,432],{},"Sur la fréquence cardiaque, 98,6 % sur la respiration",[434,435,438,442,478,485,509,512],"page-showcase",{"image":436,"image-alt":437},"\u002Flanding\u002Fai-collar\u002Ffigure_3.webp","Répartition géographique des chiens suivis",[311,439],{"tag":440,"title":441},"h2","L'étude AI-COLLAR en chiffres",[316,443,444,445,448,449,452,453,456,457,456,460,463,464,456,467,470,471,474,475,354],{},"Nous avons suivi ",[325,446,447],{},"703 chiens en bonne santé"," en Europe, en Amérique du Nord et en Asie – dont 42 % en France et 29 % aux États-Unis – jour et nuit pendant jusqu'à un an grâce au Invoxia Biotracker. Résultat : un jeu de données inédit en conditions réelles, avec des ",[325,450,451],{},"valeurs de référence des fréquences cardiaques et respiratoires normales"," selon ",[325,454,455],{},"l'âge",", le ",[325,458,459],{},"poids",[325,461,462],{},"sexe",", la ",[325,465,466],{},"race",[325,468,469],{},"rythme circadien",", voire la ",[325,472,473],{},"saison"," pour les chiens vivant dans l'hémisphère Nord, ainsi que des profils distinctifs identifiés chez ",[325,476,477],{},"129 chiens cardiaques",[316,479,480,481,484],{},"La cohorte AI-COLLAR fournit une base scientifique inégalée pour les ",[325,482,483],{},"fréquences cardiaque et respiratoire normales chez le chien"," :",[486,487,488,494,500],"ul",{},[489,490,491,493],"li",{},[325,492,447],{}," suivis dans leur environnement naturel.",[489,495,496,499],{},[325,497,498],{},"29 pays",", dont 42 % en France et 29 % aux États-Unis.",[489,501,502,505,506,354],{},[325,503,504],{},"189 jours"," de port médian par chien, couvrant ",[325,507,508],{},"113 races et toutes les étapes de la vie",[316,510,511],{},"Collectées loin du stress de la clinique, ces données définissent les repères physiologiques qui faisaient défaut à la médecine vétérinaire préventive.",[316,513,514],{},[320,515,516],{},"Figure issue de Chetboul et al., 2025 (CC BY 4.0)",[518,519,521,524,538],"content-block",{":tinted":520},"true",[311,522],{"tag":440,"title":523},"Quelle est la fréquence cardiaque normale d'un chien ? Quelle est la fréquence respiratoire normale ?",[316,525,526,527,530,531,534,535,354],{},"Ce sont les questions que se posent chaque parent de chien et chaque vétérinaire. L'étude AI-COLLAR apporte les premières réponses complètes, en établissant des valeurs de ",[325,528,529],{},"fréquence cardiaque au repos (FCR)"," et de ",[325,532,533],{},"fréquence respiratoire au repos (FRR)"," pour les chiens dans leur ",[325,536,537],{},"vie quotidienne",[539,540,543],"div",{"className":541},[542],"table-scroll-wrapper",[544,545,546,568],"table",{},[547,548,549],"thead",{},[550,551,552,556,559,562,565],"tr",{},[553,554,555],"th",{},"Caractéristiques",[553,557,558],{},"Sous-groupes",[553,560,561],{},"Nombre de chiens",[553,563,564],{},"Fréquence cardiaque (bpm)",[553,566,567],{},"Fréquence respiratoire (Brpm)",[569,570,571,598,620,645,666,690,712,733,755,779,801],"tbody",{},[550,572,573,579,582,585,592],{},[574,575,576],"td",{},[325,577,578],{},"Sexe",[574,580,581],{},"Chiens mâles",[574,583,584],{},"314",[574,586,587,588],{},"60,3 ",[589,590,591],"span",{},"54,7–65,2",[574,593,594,595],{},"16,0 ",[589,596,597],{},"13,7–18,4",[550,599,600,602,605,608,614],{},[574,601],{},[574,603,604],{},"Chiennes",[574,606,607],{},"248",[574,609,610,611],{},"60,7 ",[589,612,613],{},"56,2–65,4",[574,615,616,617],{},"16,1 ",[589,618,619],{},"14,0–18,7",[550,621,622,627,630,633,639],{},[574,623,624],{},[325,625,626],{},"Moment de mesure",[574,628,629],{},"Nuit",[574,631,632],{},"533",[574,634,635,636],{},"58,3 ",[589,637,638],{},"53,6–64,2",[574,640,641,642],{},"14,2 ",[589,643,644],{},"12,1–17,0",[550,646,647,649,652,654,660],{},[574,648],{},[574,650,651],{},"Journée",[574,653,632],{},[574,655,656,657],{},"61,3 ",[589,658,659],{},"56,3–66,7",[574,661,662,663],{},"17,4 ",[589,664,665],{},"15,2–19,8",[550,667,668,673,676,679,685],{},[574,669,670],{},[325,671,672],{},"Catégorie de taille",[574,674,675],{},"Grands chiens (> 20 kg)",[574,677,678],{},"355",[574,680,681,682],{},"59,5 ",[589,683,684],{},"54,7–63,8",[574,686,687,688],{},"15,6 ",[589,689,597],{},[550,691,692,694,697,700,706],{},[574,693],{},[574,695,696],{},"Chiens de petite à moyenne taille (≤20 kg)",[574,698,699],{},"207",[574,701,702,703],{},"62,1 ",[589,704,705],{},"56,4–68,1",[574,707,708,709],{},"16,5 ",[589,710,711],{},"14,5–19,0",[550,713,714,716,719,722,727],{},[574,715],{},[574,717,718],{},"Chiens de taille moyenne à grande (>10 kg)",[574,720,721],{},"478",[574,723,681,724],{},[589,725,726],{},"54,6–64,2",[574,728,729,730],{},"15,8 ",[589,731,732],{},"13,7–18,3",[550,734,735,737,740,743,749],{},[574,736],{},[574,738,739],{},"Chiens de petite taille (≤10 kg)",[574,741,742],{},"84",[574,744,745,746],{},"65,0 ",[589,747,748],{},"60,9–69,4",[574,750,751,752],{},"17,2 ",[589,753,754],{},"15,0–19,9",[550,756,757,762,765,768,774],{},[574,758,759],{},[325,760,761],{},"Statut de santé",[574,763,764],{},"Chiens apparemment sains",[574,766,767],{},"562",[574,769,770,771],{},"60,5 ",[589,772,773],{},"55,2–65,3",[574,775,616,776],{},[589,777,778],{},"13,8–18,7",[550,780,781,783,786,789,795],{},[574,782],{},[574,784,785],{},"Chiens malades",[574,787,788],{},"166",[574,790,791,792],{},"65,4 ",[589,793,794],{},"60,0–78,5",[574,796,797,798],{},"17,5 ",[589,799,800],{},"14,6–20,9",[550,802,803,805,808,811,817],{},[574,804],{},[574,806,807],{},"Chiens atteints de maladies cardiaques",[574,809,810],{},"129",[574,812,813,814],{},"67,3 ",[589,815,816],{},"61,0–81,5",[574,818,819,820],{},"18,0 ",[589,821,822],{},"14,9–21,5",[518,824,828,831,834,876,883],{"image":825,"image-alt":826,"image-position":827,":zoomable":520},"\u002Flanding\u002Fai-collar\u002Ffigure_4.webp","Évolution de la fréquence cardiaque selon l'âge","left",[311,829],{"tag":440,"title":830},"Comment l'âge transforme les constantes vitales",[316,832,833],{},"Le suivi longitudinal met en lumière des profils distincts pour la fréquence cardiaque et la respiration :",[486,835,836,850,863],{},[489,837,838,841,842,845,846,849],{},[325,839,840],{},"Les chiots (≤ 12 mois)"," chutent nettement, avec une fréquence cardiaque médiane qui passe de ",[325,843,844],{},"78,5 à 59,1 battements par minute",". La fréquence respiratoire diminue en parallèle, d'environ ",[325,847,848],{},"22,6 à 15,3 respirations par minute",", montrant à quelle vitesse les jeunes chiens s'apaisent physiologiquement.",[489,851,852,855,856,859,860,354],{},[325,853,854],{},"Les adultes (1–10 ans)"," se stabilisent, avec une fréquence cardiaque autour de ",[325,857,858],{},"60 battements par minute"," et une fréquence respiratoire proche de ",[325,861,862],{},"16 respirations par minute",[489,864,865,868,869,872,873,354],{},[325,866,867],{},"Les seniors (≥ 10 ans)"," connaissent une remontée progressive, la fréquence cardiaque atteignant ",[325,870,871],{},"68,7 battements par minute"," et la fréquence respiratoire s'élevant également jusqu'à ",[325,874,875],{},"17,4 respirations par minute",[316,877,878,879,882],{},"Comprendre ces ",[325,880,881],{},"plages normales de fréquence cardiaque propres à chaque âge"," vous aide à détecter toute dérive bien avant qu'elle ne s'aggrave.",[316,884,885],{},[320,886,516],{},[518,888,892,895,906,913],{"image":889,"image-alt":890,"image-position":891,":zoomable":520},"\u002Flanding\u002Fai-collar\u002Ffigure_6.webp","Comparaison des fréquences jour et nuit","right",[311,893],{"tag":440,"title":894},"Jour vs nuit : décoder le rythme circadien",[316,896,897,898,901,902,905],{},"La surveillance continue révèle un signal clair : la ",[325,899,900],{},"fréquence cardiaque et la fréquence respiratoire chutent nettement la nuit",". Cette ",[325,903,904],{},"signature circadienne"," reflète un repos profond et un tonus autonome équilibré.",[316,907,908,909,912],{},"Les ",[325,910,911],{},"fréquences cardiaques et respiratoires normales"," sont plus basses pendant le sommeil nocturne qu'au repos diurne.",[316,914,915],{},[320,916,516],{},[518,918,921,924,930,965,968],{"image":919,"image-alt":920,"image-position":827,":zoomable":520},"\u002Flanding\u002Fai-collar\u002Ffigure_7.webp","Fréquences cardiaques et respiratoires selon le poids",[311,922],{"tag":440,"title":923},"Fréquences cardiaque et respiratoire selon le poids et la race",[316,925,926,927,484],{},"La catégorie de poids et la génétique façonnent les ",[325,928,929],{},"valeurs normales de fréquence cardiaque et respiratoire",[486,931,932,942,956],{},[489,933,934,937,938,941],{},[325,935,936],{},"Les grands chiens (> 20 kg)"," affichent des ",[325,939,940],{},"fréquences cardiaque et respiratoire plus basses"," que leurs congénères plus petits.",[489,943,908,944,947,948,951,952,955],{},[325,945,946],{},"Golden Retrievers",", ",[325,949,950],{},"Bergers Australiens"," et ",[325,953,954],{},"Border Collies"," présentent les fréquences cardiaques au repos les plus basses.",[489,957,908,958,960,961,964],{},[325,959,950],{}," ont des fréquences respiratoires normales plus élevées, tandis que les ",[325,962,963],{},"Dobermans"," respirent plus lentement.",[316,966,967],{},"Interpréter l'éventail de valeurs d'un chien requiert un référentiel bâti sur des profils de poids et de race similaires : c'est précisément ce que fournit l'ensemble de données AI-COLLAR.",[316,969,970],{},[320,971,516],{},[518,973,976,979,990,997],{"image":974,"image-alt":975,"image-position":891,":zoomable":520},"\u002Flanding\u002Fai-collar\u002Ffigure_8.webp","Variation mensuelle des constantes vitales",[311,977],{"tag":440,"title":978},"Variations saisonnières des valeurs normales",[316,980,981,982,985,986,989],{},"Dans l'hémisphère Nord, la ",[325,983,984],{},"fréquence cardiaque diminue au cours de l'été"," tandis que la ",[325,987,988],{},"fréquence respiratoire augmente dès avril et culmine en août",". Le halètement thermique est une réponse saine aux températures élevées.",[316,991,992,993,996],{},"Connaître ces ",[325,994,995],{},"schémas saisonniers de fréquence cardiaque et respiratoire normales"," évite les fausses alertes et accélère l'intervention quand un indicateur s'écarte réellement des plages de référence. Nos algorithmes contextualisent chaque mesure avec les effets du climat.",[316,998,999],{},[320,1000,516],{},[1002,1003,1006,1009,1020],"page-key-message",{"image":1004,"image-alt":1005},"\u002Fimg\u002Fdogs\u002Fgolden_sitting_dramaticlight2.webp","Valeurs normales de fréquence cardiaque et respiratoire chez le chien",[311,1007],{"tag":440,"title":1008},"Chaque battement compte",[316,1010,1011,1012,1015,1016,1019],{},"Le Invoxia Biotracker surveille en continu la ",[325,1013,1014],{},"santé cardiaque"," de votre chien : détection des rythmes irréguliers, suivi de la fréquence respiratoire et alertes sur les évolutions qui peuvent lui sauver la vie. ",[325,1017,1018],{},"La sérénité",", accrochée à son collier.",[387,1021,1022],{"url":389,"variant":63},[316,1023,1024],{},"En savoir plus sur le Invoxia Biotracker",[434,1026,1029,1032,1042,1056,1063],{"image":1027,"image-alt":1028,":reverse":520,":tinted":520},"\u002Flanding\u002Fai-collar\u002Ffigure_2.webp","Détection algorithmique d'événements",[311,1030],{"tag":440,"title":1031},"Détection précoce alimentée par l'IA",[316,1033,1034,1035,1037,1038,1041],{},"Les chiens atteints de troubles cardiaques présentent une ",[325,1036,529],{}," et une ",[325,1039,1040],{},"fréquence respiratoire (FRR)"," élevées bien avant l'apparition des symptômes visibles. Le Invoxia Biotracker capte ces signaux faibles en amont.",[486,1043,1044,1050],{},[489,1045,1046,1049],{},[325,1047,1048],{},"120 jours"," avant un œdème pulmonaire, l'algorithme a repéré une hausse continue de la FCR.",[489,1051,1052,1055],{},[325,1053,1054],{},"129 chiens"," vivant avec une maladie cardiaque ont permis de définir des seuils personnalisés.",[316,1057,1058,1059,1062],{},"Résultat : des alertes envoyées ",[325,1060,1061],{},"avant"," l'urgence clinique, offrant aux vétérinaires un temps d'action précieux.",[316,1064,1065],{},[320,1066,516],{},[434,1068,1071,1074,1084,1100,1107],{"image":1069,"image-alt":1070},"\u002Flanding\u002Fai-collar\u002Ffigure_9.webp","Comparaison entre chiens sains et malades",[311,1072],{"tag":440,"title":1073},"Lorsque les constantes s'écartent de la normale",[316,1075,1076,1077,1080,1081,484],{},"Nous avons également comparé les chiens en bonne santé à ceux diagnostiqués avec des ",[325,1078,1079],{},"affections cardiaques",", et les résultats montrent des écarts nets par rapport aux ",[325,1082,1083],{},"valeurs normales de fréquence cardiaque",[486,1085,1086,1093],{},[489,1087,1088,1089,1092],{},"Les chiens cardiaques présentent des ",[325,1090,1091],{},"fréquences cardiaques au repos supérieures aux plages normales"," pour leur âge et leur poids.",[489,1094,1095,1096,1099],{},"Leurs ",[325,1097,1098],{},"fréquences respiratoires sont plus élevées que les valeurs normales"," observées chez les chiens sains.",[316,1101,1102,1103,1106],{},"Ces variations des signes vitaux sont étroitement liées à la maladie et peuvent apparaître avant les symptômes visibles. Cela suggère que ",[325,1104,1105],{},"le suivi continu des moyennes de fréquence cardiaque et respiratoire permettrait de détecter plus tôt les problèmes",", afin que les vétérinaires et les parents de chiens puissent intervenir avant que la situation ne se dégrade.",[316,1108,1109],{},[320,1110,516],{},[1112,1113,1117,1120,1131,1150,1153],"page-video-block",{"button-url":389,"poster":1114,"video":1115,"video-alt":1116,"video-position":891},"\u002Fvid\u002Fproducts\u002Fminitailz_turning_withphone.en.webp","\u002Fvid\u002Fproducts\u002Fminitailz_turning_withphone.en.mp4","Le Invoxia Biotracker et l'application Invoxia",[311,1118],{"tag":440,"title":1119},"Comment le Invoxia Biotracker GPS for Dogs protège votre chien au quotidien",[316,1121,1122,1123,1126,1127,1130],{},"Le Invoxia Biotracker GPS for Dogs est un ",[325,1124,1125],{},"capteur biométrique non invasif",". Notre capteur s'appuie sur la ",[325,1128,1129],{},"sismocardiographie"," pour capter les micro-vibrations au niveau du cou de votre chien et les convertir en métriques cardio-respiratoires fiables.",[486,1132,1133,1136,1147],{},[489,1134,1135],{},"Des relevés automatiques dès que votre chien est calmement allongé.",[489,1137,1138,1139,1142,1143,1146],{},"Des modèles d'IA entraînés sur la plus grande cohorte canine, offrant ",[325,1140,1141],{},"99,6 %"," de précision pour la FCR et ",[325,1144,1145],{},"98,6 %"," pour la FRR.",[489,1148,1149],{},"Zéro friction : clipsez le collier et obtenez une veille santé 24\u002F7.",[316,1151,1152],{},"Votre chien garde sa routine ; vous gagnez une visibilité de niveau médical en temps réel.",[356,1154,1155],{"v-slot:button":358},[316,1156,1157],{},"Voir comment le Biotracker mesure",[518,1159,1162,1165,1175,1178],{"image":1160,"image-alt":1161,"image-position":891,"button-url":395},"\u002Flanding\u002Fai-collar\u002Ffrontiers_home.webp","Couverture de la publication scientifique",[311,1163],{"tag":440,"title":1164},"Approfondir grâce à la publication scientifique",[316,1166,1167,1168,1170,1171,354],{},"Explorez la méthodologie complète et l'ensemble des résultats dans ",[320,1169,331],{}," : ",[225,1172,1174],{"href":395,"rel":1173},[341],"Resting heart and respiratory rates in dogs in their natural environment: new insights from a long-term, international, prospective study in a cohort of 703 dogs using a biometric device for longitudinal non-invasive cardiorespiratory monitoring",[316,1176,1177],{},"L'accès libre valide l'approche Invoxia et partage cette base de connaissances unique avec toute la communauté vétérinaire.",[356,1179,1180],{"v-slot:button":358},[316,1181,1182],{},"Lire la publication complète",[518,1184,1185,1188,1193,1212],{":tinted":520},[311,1186],{"tag":440,"title":1187},"Références scientifiques",[1189,1190],"prose-h5",{"tag":1191,"title":1192},"h3","Référence clé",[486,1194,1195],{},[489,1196,1197,1200,1201,1203,1204,1206,1207,354],{},[325,1198,1199],{},"Chetboul V, Humbert E, Dougoud L, Lorre G (2025)"," ",[320,1202,1174],{},". ",[320,1205,331],{},", 12:1667355. doi : 10.3389\u002Ffvets.2025.1667355. Sous licence ",[225,1208,1211],{"href":1209,"rel":1210},"https:\u002F\u002Fcreativecommons.org\u002Flicenses\u002Fby\u002F4.0\u002F",[341],"CC BY 4.0",[1213,1214,1215,1219],"details",{},[1216,1217,1218],"summary",{},"Bibliographie complète (44 références)",[486,1220,1221,1236,1251,1266,1280,1295,1310,1325,1340,1355,1370,1385,1400,1415,1430,1445,1459,1474,1488,1502,1516,1531,1545,1560,1574,1589,1604,1619,1634,1649,1663,1678,1693,1708,1722,1737,1751,1761,1775,1790,1805,1819,1834,1849],{},[489,1222,1223,1226,1227,1230,1231],{},[325,1224,1225],{},"Mfouth Kemajou, P, Mbanya, A et Coppieters, Y."," Digital approaches in post-COVID healthcare: a systematic review of technological innovations in disease management. ",[320,1228,1229],{},"Biol Methods Protoc."," (2024) 9:bpae070. ",[225,1232,1235],{"href":1233,"rel":1234},"https:\u002F\u002Fdoi.org\u002F10.1093\u002Fbiomethods\u002Fbpae070",[341],"doi : 10.1093\u002Fbiomethods\u002Fbpae070",[489,1237,1238,1241,1242,1245,1246],{},[325,1239,1240],{},"Lee, NK et Kim, JS."," Status and trends of the digital healthcare industry. ",[320,1243,1244],{},"Healthc Inform Res."," (2024) 30:172-83. ",[225,1247,1250],{"href":1248,"rel":1249},"https:\u002F\u002Fdoi.org\u002F10.4258\u002Fhir.2024.30.3.172",[341],"doi : 10.4258\u002Fhir.2024.30.3.172",[489,1252,1253,1256,1257,1260,1261],{},[325,1254,1255],{},"Jensen, MT, Treskes, RW, Caiani, EG, et al."," ESC working group on e-cardiology position paper: use of commercially available wearable technology for heart rate and activity tracking in primary and secondary cardiovascular prevention. ",[320,1258,1259],{},"Eur Heart J Digit Health."," (2021) 2:49-59. ",[225,1262,1265],{"href":1263,"rel":1264},"https:\u002F\u002Fdoi.org\u002F10.1093\u002Fehjdh\u002Fztab011",[341],"doi : 10.1093\u002Fehjdh\u002Fztab011",[489,1267,1268,1271,1272,1274,1275],{},[325,1269,1270],{},"Schuuring, MJ, Treskes, RW, Castiello, T, et al."," Digital solutions to optimize guideline-directed medical therapy prescription rates in patients with heart failure. ",[320,1273,1259],{}," (2024) 5:670-82. ",[225,1276,1279],{"href":1277,"rel":1278},"https:\u002F\u002Fdoi.org\u002F10.1093\u002Fehjdh\u002Fztae064",[341],"doi : 10.1093\u002Fehjdh\u002Fztae064",[489,1281,1282,1285,1286,1289,1290],{},[325,1283,1284],{},"Bayoumy, K, Gaber, M, Elshafeey, A, et al."," Smart wearable devices in cardiovascular care: where we are and how to move forward. ",[320,1287,1288],{},"Nat Rev Cardiol."," (2021) 18:581-99. ",[225,1291,1294],{"href":1292,"rel":1293},"https:\u002F\u002Fdoi.org\u002F10.1038\u002Fs41569-021-00522-7",[341],"doi : 10.1038\u002Fs41569-021-00522-7",[489,1296,1297,1300,1301,1304,1305],{},[325,1298,1299],{},"Hughes, A, Shandhi, MMH, Master, H, Dunn, J et Brittain, E."," Wearable devices in cardiovascular medicine. ",[320,1302,1303],{},"Circ Res."," (2023) 132:652-70. ",[225,1306,1309],{"href":1307,"rel":1308},"https:\u002F\u002Fdoi.org\u002F10.1161\u002FCIRCRESAHA",[341],"doi : 10.1161\u002FCIRCRESAHA",[489,1311,1312,1315,1316,1319,1320],{},[325,1313,1314],{},"Russell, M, Cain, E, Bazzano, L, et al."," Collecting at-home biometric measures for longitudinal research from the i3C: feasibility and acceptability study. ",[320,1317,1318],{},"JMIR Hum Factors."," (2025) 12:e71103. ",[225,1321,1324],{"href":1322,"rel":1323},"https:\u002F\u002Fdoi.org\u002F10.2196\u002F71103",[341],"doi : 10.2196\u002F71103",[489,1326,1327,1330,1331,1334,1335],{},[325,1328,1329],{},"Bhaltadak, V, Ghewade, B et Yelne, S."," A comprehensive review on advancements in wearable technologies: revolutionizing cardiovascular medicine. ",[320,1332,1333],{},"Cureus."," (2024) 16:e61312. ",[225,1336,1339],{"href":1337,"rel":1338},"https:\u002F\u002Fdoi.org\u002F10.7759\u002Fcureus.61312",[341],"doi : 10.7759\u002Fcureus.61312",[489,1341,1342,1345,1346,1349,1350],{},[325,1343,1344],{},"Scholte, NTB, van Ravensberg, AE, Shakoor, A, et al."," A scoping review on advancements in noninvasive wearable technology for heart failure management. ",[320,1347,1348],{},"NPJ Digit Med."," (2024) 7:279. ",[225,1351,1354],{"href":1352,"rel":1353},"https:\u002F\u002Fdoi.org\u002F10.1038\u002Fs41746-024-01268-5",[341],"doi : 10.1038\u002Fs41746-024-01268-5",[489,1356,1357,1360,1361,1364,1365],{},[325,1358,1359],{},"Ortmeyer, HK, Robey, L et McDonald, T."," Combining Actigraph link and PetPace collar data to measure activity, proximity, and physiological responses in freely moving dogs in a natural environment. ",[320,1362,1363],{},"Animals (Basel)."," (2018) 8:230. ",[225,1366,1369],{"href":1367,"rel":1368},"https:\u002F\u002Fdoi.org\u002F10.3390\u002Fani8120230",[341],"doi : 10.3390\u002Fani8120230",[489,1371,1372,1375,1376,1379,1380],{},[325,1373,1374],{},"Rowlison de Ortiz, A, Belda, B, Hash, J, et al."," Initial exploration of the discriminatory ability of the PetPace collar to detect differences in activity and physiological variables between healthy and osteoarthritic dogs. ",[320,1377,1378],{},"Front Pain Res (Lausanne)."," (2022) 3:949877. ",[225,1381,1384],{"href":1382,"rel":1383},"https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffpain.2022.949877",[341],"doi : 10.3389\u002Ffpain.2022.949877",[489,1386,1387,1390,1391,1394,1395],{},[325,1388,1389],{},"Belda, B, Enomoto, M, Case, BC et Lascelles, BDX."," Initial evaluation of PetPace activity monitor. ",[320,1392,1393],{},"Vet J."," (2018) 237:63-8. ",[225,1396,1399],{"href":1397,"rel":1398},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.tvjl.2018.05.011",[341],"doi : 10.1016\u002Fj.tvjl.2018.05.011",[489,1401,1402,1405,1406,1409,1410],{},[325,1403,1404],{},"Gunasekaran, T et Sanders, RA."," Assessment of heart rate measurements obtained from a smart collar compared to 24-h Holter monitoring in healthy dogs. ",[320,1407,1408],{},"J Vet Cardiol."," (2025) 57:58-64. ",[225,1411,1414],{"href":1412,"rel":1413},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jvc.2024.11.002",[341],"doi : 10.1016\u002Fj.jvc.2024.11.002",[489,1416,1417,1420,1421,1424,1425],{},[325,1418,1419],{},"Jarkoff, H, Lorre, G et Humbert, E."," Assessing the accuracy of a smart 2 collar for dogs: predictive performance for heart and breathing rates on a large scale dataset. ",[320,1422,1423],{},"Cold Spring Harbor Laboratory."," (2023). ",[225,1426,1429],{"href":1427,"rel":1428},"https:\u002F\u002Fdoi.org\u002F10.1101\u002F2023.06.09.544347",[341],"doi : 10.1101\u002F2023.06.09.544347",[489,1431,1432,1435,1436,1439,1440],{},[325,1433,1434],{},"Keene, BW, Atkins, CE, Bonagura, JD, et al."," ACVIM consensus guidelines for the diagnosis and treatment of myxomatous mitral valve disease in dogs. ",[320,1437,1438],{},"J Vet Intern Med."," (2019) 33:1127-40. ",[225,1441,1444],{"href":1442,"rel":1443},"https:\u002F\u002Fdoi.org\u002F10.1111\u002Fjvim.15488",[341],"doi : 10.1111\u002Fjvim.15488",[489,1446,1447,1450,1451,1453,1454],{},[325,1448,1449],{},"Wess, G."," Screening for dilated cardiomyopathy in dogs. ",[320,1452,1408],{}," (2022) 40:51-68. ",[225,1455,1458],{"href":1456,"rel":1457},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jvc.2021.09.004",[341],"doi : 10.1016\u002Fj.jvc.2021.09.004",[489,1460,1461,1464,1465,1468,1469],{},[325,1462,1463],{},"Schober, KE, Hart, TM, Stern, JA, et al."," Effects of treatment on respiratory rate, serum natriuretic peptide concentration, and doppler echocardiographic indices of left ventricular filling pressure in dogs with congestive heart failure. ",[320,1466,1467],{},"J Am Vet Med Assoc."," (2011) 239:468-79. ",[225,1470,1473],{"href":1471,"rel":1472},"https:\u002F\u002Fdoi.org\u002F10.2460\u002Fjavma.239.4.468",[341],"doi : 10.2460\u002Fjavma.239.4.468",[489,1475,1476,1479,1480,1482,1483],{},[325,1477,1478],{},"Porciello, F, Rishniw, M, Ljungvall, I, et al."," Sleeping and resting respiratory rates in dogs and cats with medically-controlled left-sided congestive heart failure. ",[320,1481,1393],{}," (2016) 207:164-8. ",[225,1484,1487],{"href":1485,"rel":1486},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.tvjl.2015.08.017",[341],"doi : 10.1016\u002Fj.tvjl.2015.08.017",[489,1489,1490,1493,1494,1496,1497],{},[325,1491,1492],{},"Boswood, A, Gordon, SG, Haggstrom, J, et al."," Temporal changes in clinical and radiographic variables in dogs with preclinical myxomatous mitral valve disease: the EPIC study. ",[320,1495,1438],{}," (2020) 34:1108-18. ",[225,1498,1501],{"href":1499,"rel":1500},"https:\u002F\u002Fdoi.org\u002F10.1111\u002Fjvim.15753",[341],"doi : 10.1111\u002Fjvim.15753",[489,1503,1504,1507,1508,1510,1511],{},[325,1505,1506],{},"Reynolds, CA, Brown, DC, Rush, JE, et al."," Prediction of first onset of congestive heart failure in dogs with degenerative mitral valve disease: the PREDICT cohort study. ",[320,1509,1408],{}," (2012) 14:193-202. ",[225,1512,1515],{"href":1513,"rel":1514},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jvc.2012.01.008",[341],"doi : 10.1016\u002Fj.jvc.2012.01.008",[489,1517,1518,1521,1522,1525,1526],{},[325,1519,1520],{},"Hezzell, MJ, Humm, K, Dennis, SG, Agee, L et Boswood, A."," Relationships between heart rate and age, bodyweight and breed in 10,849 dogs. ",[320,1523,1524],{},"J Small Anim Pract."," (2013) 54:318-24. ",[225,1527,1530],{"href":1528,"rel":1529},"https:\u002F\u002Fdoi.org\u002F10.1111\u002Fjsap.12079",[341],"doi : 10.1111\u002Fjsap.12079",[489,1532,1533,1536,1537,1539,1540],{},[325,1534,1535],{},"Ferasin, L, Ferasin, H et Little, CJ."," Lack of correlation between canine heart rate and body size in veterinary clinical practice. ",[320,1538,1524],{}," (2010) 51:412-8. ",[225,1541,1544],{"href":1542,"rel":1543},"https:\u002F\u002Fdoi.org\u002F10.1111\u002Fj.1748-5827.2010.00954.x",[341],"doi : 10.1111\u002Fj.1748-5827.2010.00954.x",[489,1546,1547,1550,1551,1554,1555],{},[325,1548,1549],{},"Lee, PM et Brown, RHT."," Establishing 24-hour Holter reference intervals for clinically healthy puppies. ",[320,1552,1553],{},"Res Vet Sci."," (2019) 125:253-5. ",[225,1556,1559],{"href":1557,"rel":1558},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.rvsc.2019.07.010",[341],"doi : 10.1016\u002Fj.rvsc.2019.07.010",[489,1561,1562,1565,1566,1568,1569],{},[325,1563,1564],{},"Bodey, AR et Michell, AR."," Epidemiological study of blood pressure in domestic dogs. ",[320,1567,1524],{}," (1996) 37:116-25. ",[225,1570,1573],{"href":1571,"rel":1572},"https:\u002F\u002Fdoi.org\u002F10.1111\u002Fj.1748-5827.1996.tb02358.x",[341],"doi : 10.1111\u002Fj.1748-5827.1996.tb02358.x",[489,1575,1576,1579,1580,1583,1584],{},[325,1577,1578],{},"Montoya Navarrete, AL, Quezada Tristan, T, Lozano Santillan, S, et al."," Effect of age, sex, and body size on the blood biochemistry and physiological constants of dogs. ",[320,1581,1582],{},"BMC Vet Res."," (2021) 17:265. ",[225,1585,1588],{"href":1586,"rel":1587},"https:\u002F\u002Fdoi.org\u002F10.1186\u002Fs12917-021-02976-w",[341],"doi : 10.1186\u002Fs12917-021-02976-w",[489,1590,1591,1594,1595,1598,1599],{},[325,1592,1593],{},"Geis, WP, Tatooles, CJ, Priola, DV et Friedman, WF."," Factors influencing neurohumoral control of the heart in the newborn dog. ",[320,1596,1597],{},"Am J Phys."," (1975) 228:1685-9. ",[225,1600,1603],{"href":1601,"rel":1602},"https:\u002F\u002Fdoi.org\u002F10.1152\u002Fajplegacy.1975.228.6.1685",[341],"doi : 10.1152\u002Fajplegacy.1975.228.6.1685",[489,1605,1606,1609,1610,1613,1614],{},[325,1607,1608],{},"Hajduczok, G, Chapleau, MW et Abboud, FM."," Rapid adaptation of central pathways explains the suppressed baroreflex with aging. ",[320,1611,1612],{},"Neurobiol Aging."," (1991) 12:601-4. ",[225,1615,1618],{"href":1616,"rel":1617},"https:\u002F\u002Fdoi.org\u002F10.1016\u002F0197-4580(91)90092-x",[341],"doi : 10.1016\u002F0197-4580(91)90092-x",[489,1620,1621,1624,1625,1628,1629],{},[325,1622,1623],{},"Monahan, KD."," Effect of aging on baroreflex function in humans. ",[320,1626,1627],{},"Am J Physiol Regul Integr Comp Physiol."," (2007) 293:R3-R12. ",[225,1630,1633],{"href":1631,"rel":1632},"https:\u002F\u002Fdoi.org\u002F10.1152\u002Fajpregu.00031.2007",[341],"doi : 10.1152\u002Fajpregu.00031.2007",[489,1635,1636,1639,1640,1643,1644],{},[325,1637,1638],{},"Randall, OS, Esler, MD, Bulloch, EG, et al."," Relationship of age and blood pressure to baroreflex sensitivity and arterial compliance in man. ",[320,1641,1642],{},"Clin Sci Mol Med Suppl."," (1976) 51:357s-60s. ",[225,1645,1648],{"href":1646,"rel":1647},"https:\u002F\u002Fdoi.org\u002F10.1042\u002Fcs051357s",[341],"doi : 10.1042\u002Fcs051357s",[489,1650,1651,1654,1655,1657,1658],{},[325,1652,1653],{},"Rishniw, M, Ljungvall, I, Porciello, F, Haggstrom, J et Ohad, DG."," Sleeping respiratory rates in apparently healthy adult dogs. ",[320,1656,1553],{}," (2012) 93:965-9. ",[225,1659,1662],{"href":1660,"rel":1661},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.rvsc.2011.12.014",[341],"doi : 10.1016\u002Fj.rvsc.2011.12.014",[489,1664,1665,1668,1669,1672,1673],{},[325,1666,1667],{},"Saikia, D et Mahanta, B."," Cardiovascular and respiratory physiology in children. ",[320,1670,1671],{},"Indian J Anaesth."," (2019) 63:690-7. ",[225,1674,1677],{"href":1675,"rel":1676},"https:\u002F\u002Fdoi.org\u002F10.4103\u002Fija.IJA_490_19",[341],"doi : 10.4103\u002Fija.IJA_490_19",[489,1679,1680,1683,1684,1687,1688],{},[325,1681,1682],{},"Noujaim, SF, Lucca, E, Munoz, V, et al."," From mouse to whale: a universal scaling relation for the PR interval of the electrocardiogram of mammals. ",[320,1685,1686],{},"Circulation."," (2004) 110:2802-8. ",[225,1689,1692],{"href":1690,"rel":1691},"https:\u002F\u002Fdoi.org\u002F10.1161\u002F01.CIR.0000146785.15995.67",[341],"doi : 10.1161\u002F01.CIR.0000146785.15995.67",[489,1694,1695,1698,1699,1702,1703],{},[325,1696,1697],{},"Goldbogen, JA, Cade, DE, Calambokidis, J, et al."," Extreme bradycardia and tachycardia in the world's largest animal. ",[320,1700,1701],{},"Proc Natl Acad Sci USA."," (2019) 116:25329-32. ",[225,1704,1707],{"href":1705,"rel":1706},"https:\u002F\u002Fdoi.org\u002F10.1073\u002Fpnas.1914273116",[341],"doi : 10.1073\u002Fpnas.1914273116",[489,1709,1710,1713,1714,1716,1717],{},[325,1711,1712],{},"Lamb, AP, Meurs, KM et Hamlin, RL."," Correlation of heart rate to body weight in apparently normal dogs. ",[320,1715,1408],{}," (2010) 12:107-10. ",[225,1718,1721],{"href":1719,"rel":1720},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jvc.2010.04.001",[341],"doi : 10.1016\u002Fj.jvc.2010.04.001",[489,1723,1724,1727,1728,1731,1732],{},[325,1725,1726],{},"Hasegawa, M, Sasaki, M, Umemoto, Y, et al."," Exploring sleep heart rate variability: linear, nonlinear, and circadian rhythm perspectives. ",[320,1729,1730],{},"Front Vet Sci."," (2024) 11:1386425. ",[225,1733,1736],{"href":1734,"rel":1735},"https:\u002F\u002Fdoi.org\u002F10.3389\u002Ffvets.2024.1386425",[341],"doi : 10.3389\u002Ffvets.2024.1386425",[489,1738,1739,1742,1743,1745,1746],{},[325,1740,1741],{},"Varga, B, Gergely, A, Galambos, A et Kis, A."," Heart rate and heart rate variability during sleep in family dogs (Canis familiaris). ",[320,1744,1363],{}," (2018) 8:107. ",[225,1747,1750],{"href":1748,"rel":1749},"https:\u002F\u002Fdoi.org\u002F10.3390\u002Fani8070107",[341],"doi : 10.3390\u002Fani8070107",[489,1752,1753,1756,1757,1760],{},[325,1754,1755],{},"Noszczyk-Nowak, A, Pasawska, U et Nicpon, J."," ECG parameters in 24-hour holter monitoring in healthy dogs. ",[320,1758,1759],{},"Bull Vet Inst Pulawy."," (2009) 53:499-502.",[489,1762,1763,1766,1767,1769,1770],{},[325,1764,1765],{},"Ohad, DG, Rishniw, M, Ljungvall, I, Porciello, F et Haggstrom, J."," Sleeping and resting respiratory rates in dogs with subclinical heart disease. ",[320,1768,1467],{}," (2013) 243:839-43. ",[225,1771,1774],{"href":1772,"rel":1773},"https:\u002F\u002Fdoi.org\u002F10.2460\u002Fjavma.243.6.839",[341],"doi : 10.2460\u002Fjavma.243.6.839",[489,1776,1777,1780,1781,1784,1785],{},[325,1778,1779],{},"Goldberg, MB, Langman, VA et Taylor, CR."," Panting in dogs: paths of air flow in response to heat and exercise. ",[320,1782,1783],{},"Respir Physiol."," (1981) 43:327-38. ",[225,1786,1789],{"href":1787,"rel":1788},"https:\u002F\u002Fdoi.org\u002F10.1016\u002F0034-5687(81)90113-4",[341],"doi : 10.1016\u002F0034-5687(81)90113-4",[489,1791,1792,1795,1796,1799,1800],{},[325,1793,1794],{},"Parsons, S, Scott, AR et Macdonald, IA."," The effect of posture and environmental temperature on cardiovascular reflexes in normal subjects and diabetes mellitus. ",[320,1797,1798],{},"Clin Auton Res."," (1992) 2:147-51. ",[225,1801,1804],{"href":1802,"rel":1803},"https:\u002F\u002Fdoi.org\u002F10.1007\u002FBF01818954",[341],"doi : 10.1007\u002FBF01818954",[489,1806,1807,1810,1811,1813,1814],{},[325,1808,1809],{},"Mavropoulou, A, Oliveira, P et Willis, R."," Holter monitoring in dogs: 24 h vs. 48 h. ",[320,1812,1393],{}," (2021) 272:105628. ",[225,1815,1818],{"href":1816,"rel":1817},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.tvjl.2021.105628",[341],"doi : 10.1016\u002Fj.tvjl.2021.105628",[489,1820,1821,1824,1825,1828,1829],{},[325,1822,1823],{},"Calvert, CA."," Heart rate variability. ",[320,1826,1827],{},"Vet Clin North Am Small Anim Pract."," (1998) 28:1409-27. ",[225,1830,1833],{"href":1831,"rel":1832},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fs0195-5616(98)50129-5",[341],"doi : 10.1016\u002Fs0195-5616(98)50129-5",[489,1835,1836,1839,1840,1843,1844],{},[325,1837,1838],{},"Petrie, JP."," Practical application of holter monitoring in dogs and cats. ",[320,1841,1842],{},"Clin Tech Small Anim Pract."," (2005) 20:173-81. ",[225,1845,1848],{"href":1846,"rel":1847},"https:\u002F\u002Fdoi.org\u002F10.1053\u002Fj.ctsap.2005.05.006",[341],"doi : 10.1053\u002Fj.ctsap.2005.05.006",[489,1850,1851,1853,1854,1856,1857],{},[325,1852,1404],{}," Determining the optimal Holter monitoring duration for detecting ventricular arrhythmia in dogs: a Bayesian approach. ",[320,1855,1408],{}," (2025) 60:14-22. ",[225,1858,1861],{"href":1859,"rel":1860},"https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jvc.2025.05.003",[341],"doi : 10.1016\u002Fj.jvc.2025.05.003",[1863,1864,1866,1874,1879,1894,1908,1918,1928],"page-faq",{"contact-url":1865},"$locale\u002Fchatbot",[356,1867,1868,1871],{"v-slot:title":358},[1189,1869],{"tag":440,"title":1870,":dark":520},"FAQ : fréquences cardiaque et respiratoire normales du chien",[316,1872,1873],{},"Les questions que les propriétaires et les vétérinaires nous posent le plus sur les valeurs de référence AI-COLLAR.",[356,1875,1876],{"v-slot:contact-button":358},[316,1877,1878],{},"Contactez-nous",[1880,1881,1882,1887],"page-faq-item",{},[356,1883,1884],{"v-slot:title":358},[316,1885,1886],{},"Quelle est la fréquence cardiaque normale d'un chien au repos ?",[316,1888,1889,1890,1893],{},"Dans la cohorte AI-COLLAR, les chiens apparemment sains se reposent à une médiane de ",[325,1891,1892],{},"60,5 battements par minute"," (intervalle interquartile 55,2-65,3). Le gabarit compte : les chiens de 10 kg ou moins sont à 65,0 bpm, ceux de plus de 20 kg à 59,5 bpm. Les chiots démarrent vers 78,5 bpm et se stabilisent autour de 59 bpm à un an, tandis que les chiens de 10 ans et plus remontent à environ 68,7 bpm.",[1880,1895,1896,1901],{},[356,1897,1898],{"v-slot:title":358},[316,1899,1900],{},"Quelle est la fréquence respiratoire normale d'un chien au repos ?",[316,1902,1903,1904,1907],{},"La même cohorte respire à une médiane de ",[325,1905,1906],{},"16,1 mouvements par minute"," (13,8-18,7) au repos, nettement plus lentement la nuit (14,2) que le jour (17,4). Les chiens de 10 kg ou moins respirent un peu plus vite, à 17,2. Une fréquence au repos ou pendant le sommeil qui reste au-dessus de 30 mouvements par minute est le seuil d'alerte retenu par les cardiologues vétérinaires : appelez votre vétérinaire.",[1880,1909,1910,1915],{},[356,1911,1912],{"v-slot:title":358},[316,1913,1914],{},"Comment ces valeurs de référence ont-elles été mesurées ?",[316,1916,1917],{},"703 chiens apparemment sains, de 113 races et dans 29 pays, ont porté un Invoxia Biotracker dans leur environnement quotidien pendant 189 jours en médiane. Les fréquences cardiaque et respiratoire sont mesurées automatiquement pendant les phases de repos, jour et nuit, loin du stress de la salle de consultation, ce qui explique qu'elles soient inférieures aux valeurs relevées en clinique. L'appareil est précis à 99,6 % sur la fréquence cardiaque et à 98,6 % sur la respiration.",[1880,1919,1920,1925],{},[356,1921,1922],{"v-slot:title":358},[316,1923,1924],{},"Ces fréquences varient-elles avec l'âge, l'heure et la saison ?",[316,1926,1927],{},"Les trois. Les deux fréquences chutent fortement la première année, restent stables à l'âge adulte, autour de 60 battements et 16 mouvements par minute, puis remontent chez les chiens âgés. Elles sont toutes deux nettement plus basses la nuit que le jour. Et dans l'hémisphère nord, la fréquence cardiaque baisse pendant l'été tandis que la fréquence respiratoire grimpe d'avril jusqu'à un pic en août, quand le chien halète pour se rafraîchir. Connaître ces variations, c'est ce qui distingue une vraie anomalie d'un après-midi de canicule.",[1880,1929,1930,1935],{},[356,1931,1932],{"v-slot:title":358},[316,1933,1934],{},"Où lire l'étude complète ?",[316,1936,1937,1938,1940],{},"L'article a été publié en accès libre dans ",[320,1939,331],{}," le 15 septembre 2025 (DOI 10.3389\u002Ffvets.2025.1667355), coécrit avec la Professeure Valérie Chetboul, de l'École nationale vétérinaire d'Alfort. Le texte intégral et toutes les figures reproduites sur cette page sont librement consultables.",[518,1942,1943,1946,1949,1952],{"button-url":389},[311,1944],{"tag":440,"title":1945},"De l'étude au collier de votre chien",[316,1947,1948],{},"À l'image des objets connectés qui transforment la médecine humaine, cette étude démontre comment la médecine vétérinaire prédictive devient possible : suivi individualisé, alertes précoces et données réelles à grande échelle pour protéger chaque chien.",[316,1950,1951],{},"Merci aux parents de chiens engagés qui ont rendu AI-COLLAR possible. La technologie qui a bâti ce référentiel veille désormais sur votre propre chien, jour après jour.",[356,1953,1954],{"v-slot:button":358},[316,1955,392],{},{"title":358,"searchDepth":1957,"depth":1957,"links":1958},2,[],"Les valeurs normales de fréquence cardiaque et respiratoire du chien selon l'âge, le poids et la race, issues de l'étude AI-COLLAR sur 703 chiens sains.",null,false,"md",{},"\u002Fimages\u002Fsocial-preview\u002Flanding-ai-collar.jpg","\u002Flocale\u002Ffr\u002Fpages\u002Flanding\u002Fai-collar",{"name":1967,"authors":1968,"publication":331,"datePublished":1973,"doi":1974,"url":395},"Resting heArt and respIratory rates in dogs in their natural environment: new insights from a long-term, international, prospective study in a COhort of 703 dogs using a biometric device for LongitudinaL non-invasive cARdiorespiratory monitoring (the AI-COLLAR study)",[1969,1970,1971,1972],"Valérie Chetboul","Eric Humbert","Louis Dougoud","Guillaume Lorre","2025-09-15","10.3389\u002Ffvets.2025.1667355",{"title":293,"description":1959},{"loc":1965,"lastmod":1977},"2026-09-18","locale\u002Ffr\u002Fpages\u002Flanding\u002Fai-collar","6k0qUO_dK_-C-0_0IxF6FkhJyoarHbetRjFJhvZO5_c",1790158337096]