可穿戴式超声波血压传感器的临床验证

IF 26.8 1区 医学 Q1 ENGINEERING, BIOMEDICAL Nature Biomedical Engineering Pub Date : 2024-11-20 DOI:10.1038/s41551-024-01279-3
Sai Zhou, Geonho Park, Katherine Longardner, Muyang Lin, Baiyan Qi, Xinyi Yang, Xiaoxiang Gao, Hao Huang, Xiangjun Chen, Yizhou Bian, Hongjie Hu, Ray S. Wu, Wentong Yue, Mohan Li, Chengchangfeng Lu, Ruotao Wang, Siyu Qin, Esra Tasali, Theodore Karrison, Isac Thomas, Benjamin Smarr, Erik B. Kistler, Belal Al Khiami, Irene Litvan, Sheng Xu
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引用次数: 0

摘要

连续和无创血压监测的选择非常有限。袖带式血压计广泛使用,但只能提供离散的测量值。连续监测血压的临床金标准方法需要动脉导管,这对常规使用来说创伤太大。用于连续、无创血压监测的可穿戴超声设备有望提高患者护理质量,但最先进的原型设备中孤立的超声窗口可能导致测量不准确或容易出错,而且这些设备的安全性和性能尚未得到全面评估。在此,我们介绍了在家庭、门诊、心导管实验室和重症监护室的日常活动中对用于血压监测的可穿戴超声波传感器的安全性和性能进行的验证研究。该传感器具有紧密连接的声像窗口和底层,可提高传感器的准确性和可靠性,从而满足临床标准的最高要求。验证结果支持该传感器的临床使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Clinical validation of a wearable ultrasound sensor of blood pressure

Options for the continuous and non-invasive monitoring of blood pressure are limited. Cuff-based sphygmomanometers are widely available, yet provide only discrete measurements. The clinical gold-standard approach for the continuous monitoring of blood pressure requires an arterial line, which is too invasive for routine use. Wearable ultrasound for the continuous and non-invasive monitoring of blood pressure promises to elevate the quality of patient care, yet the isolated sonographic windows in the most advanced prototypes can lead to inaccurate or error-prone measurements, and the safety and performance of these devices have not been thoroughly evaluated. Here we describe validation studies, conducted during daily activities at home, in the outpatient clinic, in the cardiac catheterization laboratory and in the intensive care unit, of the safety and performance of a wearable ultrasound sensor for blood pressure monitoring. The sensor has closely connected sonographic windows and a backing layer that improves the sensor’s accuracy and reliability to meet the highest requirements of clinical standards. The validation results support the clinical use of the sensor.

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来源期刊
Nature Biomedical Engineering
Nature Biomedical Engineering Medicine-Medicine (miscellaneous)
CiteScore
45.30
自引率
1.10%
发文量
138
期刊介绍: Nature Biomedical Engineering is an online-only monthly journal that was launched in January 2017. It aims to publish original research, reviews, and commentary focusing on applied biomedicine and health technology. The journal targets a diverse audience, including life scientists who are involved in developing experimental or computational systems and methods to enhance our understanding of human physiology. It also covers biomedical researchers and engineers who are engaged in designing or optimizing therapies, assays, devices, or procedures for diagnosing or treating diseases. Additionally, clinicians, who make use of research outputs to evaluate patient health or administer therapy in various clinical settings and healthcare contexts, are also part of the target audience.
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