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新型便携式间接测热仪与参考逐口气仪器的比较研究及其在远程医疗环境中的应用。

Comparative study of a novel portable indirect calorimeter to a reference breath-by-breath instrument and its use in telemedicine settings.

机构信息

Center for Bioelectronics & Biosensors, The Biodesign Institute, Arizona State University, Tempe, Arizona, 85281, United States.

Center for Bioelectronics & Biosensors, The Biodesign Institute, Arizona State University, Tempe, Arizona, 85281, United States.

出版信息

Clin Nutr ESPEN. 2021 Dec;46:361-366. doi: 10.1016/j.clnesp.2021.09.731. Epub 2021 Sep 30.

Abstract

BACKGROUND & AIMS: Resting Energy Expenditure (REE) quantitatively describes the calories used to support body function (e.g. breathing, blood circulation, etc.) at resting condition. Assessment of the REE is essential for successful weight management and the understanding of metabolic health. REE is typically determined via indirect calorimetry. Current biomedical indirect calorimetry technologies, utilizing assessment of oxygen consumption (VO) and carbon dioxide production (VCO) rates (which are typically in the form factor of a metabolic cart) are bulky and require on-site calibration and/or trained professionals to operate. We introduce a novel wearable medical device with FDA clearance to determine REE accurately, portable, and user-friendly format, which can be used both by health professionals in a clinical environment and by the patient at home. Previously, we have reported the validation of Breezing Med (also named as Breezing Pro™) through Douglas Bag Method, a gold standard for gas exchange measurement, and excellent agreement has been found between the two methods for the determination of REE, VO, and VCO rates (Mora et al., 2020). Now we present the validation of Breezing Med against Medical Graphics (MGC) CPX Ultima™, a FDA 510 k cleared metabolic cart, which principle is based on breath-by-breath analysis. In addition, we present Breezing Med as a tool for daily measurement of metabolic rate by the lay person at home.

METHODS

A) The validation study was executed via parallel measurement of 20 healthy participants under resting conditions using both the Breezing Med and the MGC Ultima CPX™ (10 min test). B) Breezing Med measurements were carried out by six subjects at home during stay-at-home order due to COVID-19 for 30 days.

RESULTS

A) The resulting measurements from both devices was compared with correlation slope's and R-squared coefficients close to 1. B) Results were recorded and analyzed for variability. The pilot study demonstrated the advantage of Breezing Med device to be easy-to-use at home by lay people, which make the valuable device for telemedicine applications related to weight management from home.

CONCLUSIONS

This result shows that the MGC Ultima CPX™ and Breezing Med are substantially equivalent for REE measurement; and an advantage of this device for metabolic assessment under the current COVID-19 pandemic situation, for people with impaired physical mobility, and for those who lives in rural areas or face impediments that limit physical access to care.

摘要

背景与目的

静息能量消耗(REE)定量描述了在休息状态下维持身体功能(如呼吸、血液循环等)所需的卡路里。REE 的评估对于成功的体重管理和代谢健康的理解至关重要。REE 通常通过间接测热法来确定。目前的生物医学间接测热技术,利用评估耗氧量(VO)和二氧化碳产生量(VCO)的速率(通常以代谢车的形式因素表示)体积庞大,需要现场校准和/或经过培训的专业人员来操作。我们引入了一种新型的经过美国食品和药物管理局 (FDA) 批准的可穿戴医疗设备,以准确、便携和用户友好的格式确定 REE,该设备既可以由临床环境中的医疗保健专业人员使用,也可以由患者在家中使用。之前,我们已经通过金标准气体交换测量的 Douglas 袋法(Douglas Bag Method)报告了 Breezing Med(也称为 Breezing Pro™)的验证,并且两种方法在确定 REE、VO 和 VCO 速率方面具有极好的一致性(Mora 等人,2020 年)。现在,我们展示了 Breezing Med 与经过 FDA 510k 批准的代谢车 Medical Graphics (MGC) CPX Ultima™的验证,其原理基于逐口气分析。此外,我们还展示了 Breezing Med 作为一种工具,供非专业人士在家中日常测量代谢率。

方法

A)通过在 20 名健康参与者在休息状态下使用 Breezing Med 和 MGC Ultima CPX™(10 分钟测试)进行平行测量来执行验证研究。B)在由于 COVID-19 而居家令期间,有 6 名受试者在家中进行了 Breezing Med 测量,持续 30 天。

结果

A)比较了两种设备的测量结果,发现相关斜率和 R 平方系数接近 1。B)记录并分析了结果的可变性。初步研究表明,Breezing Med 设备易于非专业人士在家中使用,这使其成为与远程医疗应用相关的宝贵设备,可用于居家管理体重。

结论

该结果表明,MGC Ultima CPX™ 和 Breezing Med 对于 REE 测量实质上是等效的;并且在当前 COVID-19 大流行情况下,对于身体活动能力受损的人,以及对于生活在农村地区或面临限制身体接触护理的障碍的人,该设备在代谢评估方面具有优势。

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