课题基金 / 基金详情

Wearable Micro-Structured Tonometric Sensor Patches for 24-Hour Ambulatory Blood Pressure Monitoring

Wearable Micro-Structured Tonometric Sensor Patches for 24-Hour Ambulatory Blood Pressure Monitoring
用于 24 小时动态血压监测的可穿戴微结构张力传感器贴片
批准号:
10509575
负责人:
Feng Xiong
金额:
$14.68万
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-09-01 至 2025-05-31

项目摘要

项目成果

Feng Xiong的其他基金

相似基金

相关文献

中文摘要
翻译
项目摘要/摘要 高血压(BP)是心血管疾病死亡的最大危险因素。因为这口井- 临床血压测量的已知局限性,使用自动袖带装置进行24小时动态血压监测 已成为诊断高血压的金标准方法。由于周期性通货膨胀和通货紧缩 即使在夜间,袖带设备也会对患者造成干扰,并可能降低夜间的临床价值 BP。因此,无袖带血压监测设备受到了广泛的追捧。脉冲传输时间(PTT),时间延迟 对于在两个动脉部位之间传播的压力波来说,代表了最有希望的无袖带BP 测量原理。然而,退出PTT测量有几个关键障碍,例如:(I) 传感器灵敏度不达标;(2)传感器附着力差;(3)难以将PTT测量值转换为BP (4)很难同时测量舒张压(DP)和收缩压(SP)。致信地址 针对这些问题,本工作的总体目标是将动脉测压和PTT原理相结合来实现 无袖带24小时动态血压监测。这将通过放置两个可穿戴的眼压计传感器来实现 在动脉部位(近端和远端),收集高保真眼压测量波形以及PTT值。 我们在这项工作中的创新包括:(A)将离子液体和微结构(可以容纳 压电容式传感器,以提高灵敏度和动态范围;(B) 在传感器基板上加入微柱(模仿壁虎的脚)以促进粘附力和改善 捕获波形的保真度;(C)用预先构建的PTT-BP校准眼压测量波形 关系(通过体位变化);(D)校准眼压测量波形以提取DP和SP 通过利用动脉测眼压和血压波形的相似形状连续进行。具体目标是: (1)开发可穿戴传感器,以获得高保真眼压测量波形;(2)促进 可穿戴补丁;(3)开发基于PTT的校准以提取DP和SP;以及(4)验证 人体研究中的系统。我们的预期结果是一个准确的、无袖带的24小时血压监测系统。 该项目的成功完成将为动态血压监测和术后评估带来新的临床实践。 手术低血压监测。
英文摘要
PROJECT SUMMARY/ABSTRACT High blood pressure (BP) is the single largest risk factor for cardiovascular disease mortality. Due to the well- known limitations of clinic BP measurement, 24-hour ambulatory BP monitoring with automatic cuff devices has emerged as the gold standard method for hypertension diagnosis. Due to periodic inflation and deflation even at nighttime, the cuff devices are disruptive to patients and could diminish the clinical value of nighttime BP. Hence, cuff-less BP monitoring devices are being widely pursued. Pulse transit time (PTT), the time delay for the pressure wave to travel between two arterial sites, represents the most promising cuff-less BP measurement principle. However, there are several critical barriers in exiting PTT measurements such as: (i) subpar sensor sensitivity; (ii) poor sensor adhesion; (iii) difficulty in converting PTT measurements into BP readings; (iv) difficult in obtaining both diastolic BP (DP) and systolic BP (SP) measurements. To address these issues, the overall objective of this work is to combine arterial tonometry and PTT principles to achieve cuff-less 24-hour ambulatory BP monitoring. This will be achieved by placing two wearable tonometric sensors at arterial sites (proximal and distal) and collecting high-fidelity tonometric waveforms as well as PTT values. Our innovations in this work include: (a) integrating ionic liquid and microstructures (which can accommodate ions under pressure) in piezo-capacitive sensor to enhance both the sensitivity and dynamic range; (b) incorporating micropillars (mimicking gecko’s feet) at the sensor substrate to promote adhesion and improve the fidelity of captured waveforms; (c) calibrating tonometric waveforms with pre-constructed PTT-BP relationships (via postural changes); (d) calibrating tonometric waveforms to extract both DP and SP continuously by leveraging the similar shape of arterial tonometric and BP waveforms. The specific aims are: (1) to develop wearable sensors to obtain high-fidelity tonometric waveforms; (2) to promote the adhesion of wearable patches; (3) to develop PTT-based calibration for extracting both DP and SP; and (4) to validate the system in human studies. Our expected outcome is an accurate, cuff-less, 24-hour BP monitoring system. Successful completion of this project can lead to new clinical practices for ambulatory BP monitoring and post- surgery hypotension surveillance.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Wearable Micro-Structured Tonometric Sensor Patches for 24-Hour Ambulatory Blood Pressure Monitoring
海外基金