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与临床标准相比,智能手表测量食蟹猕猴心率和血氧饱和度的准确性。

Accuracy of smartwatches for measuring heart rate and oxygen saturation in cynomolgus macaques compared to clinical standards.

作者信息

Tiplady Meghan, Douchant Katya, Winterborn Andrew N

机构信息

Department of Biology, Queen's University, Kingston, Ontario.

Gastrointestinal Disease Research Unit (GIDRU), Department of Medicine, Queen's University, Kingston, Ontario.

出版信息

Lab Anim. 2025 Aug;59(4):508-517. doi: 10.1177/00236772251318910. Epub 2025 Apr 15.

Abstract

Continuous monitoring of physiological parameters in non-human primates (NHPs) necessitates a precise, non-invasive, and convenient method. This study aimed to validate the use of smartwatches with integrated pulse oximetry and heart rate (HR) monitoring capabilities for use in NHPs. Currently, the clinical standard for non-invasive continuous monitoring of peripheral oxygen saturation (SpO) in NHPs has been the use of a transmittance pulse oximeter (TPO) affixed to a location of highly vascularized tissue. In a clinical setting, HR is monitored through electrocardiogram (ECG) or associated with SpO measurement from a TPO probe utilizing photoplethysmography technology. Challenges in obtaining precise readings with TPOs stem from technological limitations and probe placement restrictions. To address these limitations, simultaneous HR and SpO measurements were obtained from 15 cynomolgus macaques () using the Apple Watch 7 (AW 7), Apple Watch 9 (AW 9), and a clinical-grade TPO probe with integrated optical HR measurement technology (iM70, ELAN). Arterial blood gas (ABG) analysis was used as a reference method for SpO. We found that a TPO device significantly underestimated SpO compared to the AW 7 and AW 9 when referenced against ABG values. Smartwatch-derived HR and SpO measurements demonstrated good agreement and minimal bias compared to the gold standard method. Overall, the AW 7 and AW 9 exhibited good agreement with clinical reference standards for HR and good agreement with the gold standard for SaO in sedated cynomolgus macaques.

摘要

对非人灵长类动物(NHPs)的生理参数进行连续监测需要一种精确、无创且便捷的方法。本研究旨在验证具有集成脉搏血氧饱和度和心率(HR)监测功能的智能手表在NHPs中的应用。目前,NHPs外周血氧饱和度(SpO)无创连续监测的临床标准一直是使用附着在血管丰富组织部位的透射式脉搏血氧仪(TPO)。在临床环境中,HR通过心电图(ECG)进行监测,或与利用光电容积脉搏波描记术技术的TPO探头的SpO测量相关联。使用TPO获得精确读数面临的挑战源于技术限制和探头放置限制。为解决这些限制,使用苹果手表7(AW 7)、苹果手表9(AW 9)以及具有集成光学HR测量技术的临床级TPO探头(iM70,ELAN),从15只食蟹猕猴()同时获取HR和SpO测量值。动脉血气(ABG)分析用作SpO的参考方法。我们发现,与ABG值相比,TPO设备显著低估了SpO,与AW 7和AW 9相比。与金标准方法相比,智能手表得出的HR和SpO测量值显示出良好的一致性和最小偏差。总体而言,在镇静的食蟹猕猴中,AW 7和AW 9在HR方面与临床参考标准表现出良好的一致性,在SaO方面与金标准表现出良好的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a531/12374010/2b50956c31f5/10.1177_00236772251318910-fig1.jpg

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