袖带式血压测量中收缩压的低估。

IF 3.8 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2025-08-12 eCollection Date: 2025-08-01 DOI:10.1093/pnasnexus/pgaf222
Kate Bassil, Anurag Agarwal
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引用次数: 0

摘要

高血压是导致过早死亡的头号危险因素。高血压是无症状的,因此必须定期监测血压以诊断高血压。在听诊血压测量中,患者的收缩压(最大值)和舒张压(最小值)是由包裹在手臂上的充气袖带的压力推断出来的。这项技术是所有其他非侵入性设备验证的黄金标准。然而,听诊测量系统地低估收缩压和高估舒张压。高估的原因是由于周围组织和动脉僵硬导致闭塞动脉所需的袖带压力增加。相比之下,收缩期低估的原因仍然不清楚,这可能导致三分之一的收缩期高血压病例被遗漏。当袖带膨胀超过收缩压时,流向袖带下游血管的血液就被切断了。这些下游血管的压力下降到一个较低的平台。我们开发了一种新的实验装置,表明低下游压力是低估收缩压的关键原因。下游压力越低,低估越大。我们的结果为我们的钻机和人体收缩压的低估提供了一个简单的物理模型。了解收缩压低估背后的物理原理,为制定减轻这种错误的策略铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Underestimation of systolic pressure in cuff-based blood pressure measurement.

High blood pressure (hypertension) is the number one risk factor for premature death. Hypertension is asymptomatic, so blood pressure must be regularly monitored to diagnose it. In auscultatory blood pressure measurement, a patient's systolic (maximum) and diastolic (minimum) blood pressure are inferred from the pressure in an inflatable cuff wrapped around the arm. This technique is the gold standard against which all other noninvasive devices are validated. However, auscultatory measurements systematically underestimate systolic blood pressure and overestimate diastolic blood pressure. Overestimation is attributed to the increased cuff pressure needed to occlude the artery because of the surrounding tissue and arterial stiffness. In contrast, the cause of systolic underestimation, which leads to potentially a third of systolic hypertension cases being missed, has remained unclear. When the cuff is inflated beyond the systolic blood pressure, the blood flow to the vessels downstream of the cuff is cut off. The pressure in these downstream vessels drops to a low plateau. We have developed a novel experimental rig that shows that the low downstream pressure is the key cause of the underestimation of systolic blood pressure. The lower the downstream pressure, the greater the underestimation. Our results yield a simple physical model for the underestimation of systolic pressure in our rig and in the human body. Understanding the physics behind the underestimation of systolic blood pressure paves the way for developing strategies to mitigate this error.

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CiteScore
1.80
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