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透析期间从动脉和静脉线无创连续估计肱动脉压的可行性研究。

A Feasibility Study of Non-Invasive Continuous Estimation of Brachial Pressure Derived From Arterial and Venous Lines During Dialysis.

机构信息

School of Health and Social CareUniversity of DerbyDerbyDE22 1GBU.K.

Centre for Kidney Research and InnovationUniversity of NottinghamNottinghamNG7 2RDU.K.

出版信息

IEEE J Transl Eng Health Med. 2020 Nov 4;9:2700209. doi: 10.1109/JTEHM.2020.3035988. eCollection 2021.

Abstract

Intradialytic haemodynamic instability is a significant clinical problem, leading to end-organ ischaemia and contributing to morbidity and mortality in haemodialysis patients. Non-invasive continuous blood pressure monitoring is not currently part of routine practice but may aid detection and prevention of significant falls in blood pressure during dialysis. Brachial blood pressure is currently recorded intermittently during haemodialysis via a sphygmomanometer. Current methods of continuous non-invasive blood pressure monitoring tend to restrict movement, can be sensitive to external disturbances and patient movement, and can be uncomfortable for the wearer. Additionally, poor patient blood circulation can lead to unreliable measurements. In this feasibility study we performed an initial validation of a novel method and associated technology to continuously estimate blood pressure using pressure sensors in the extra-corporeal dialysis circuit, which does not require any direct contact with the person receiving dialysis treatment. The paper describes the development of the measurement system and subsequent patient feasibility study with concurrent measurement validation by physiological measurement device. Real-time physiological data is collected over the entire period of (typically 4-hour) dialysis treatment. We identify a quasi-linear mathematical function to describe the relationship between arterial line pressure and brachial artery BP, which is confirmed in a patient study. The results from this observational study suggest that it is feasible to derive a continuous measurement of brachial pressure from continuous measurements of arterial and venous line pressures via an empirically based and updated mathematical model. The methodology presented requires no interfacing to proprietary dialysis machine systems, no sensors to be attached to the patient directly, and is robust to patient movement during treatment and also to the effects of the cyclical pressure waveforms induced by the hemodialysis peristaltic blood pump. This represents a key enabling factor to the development of a practical continuous blood pressure monitoring device for dialysis patients.

摘要

透析中血流动力学不稳定是一个严重的临床问题,可导致终末器官缺血,并导致血液透析患者的发病率和死亡率升高。目前,无创连续血压监测并非常规实践的一部分,但可能有助于检测和预防透析过程中血压的显著下降。在血液透析过程中,肱动脉血压目前通过血压计间歇性记录。目前连续无创血压监测的方法往往限制了患者的活动,容易受到外部干扰和患者运动的影响,佩戴者可能会感到不适。此外,患者血液循环不良会导致测量结果不可靠。在这项可行性研究中,我们对一种使用体外透析回路中的压力传感器连续估计血压的新方法和相关技术进行了初步验证,该方法不需要与接受透析治疗的人直接接触。本文介绍了测量系统的开发,以及随后使用生理测量设备进行的患者可行性研究和同时进行的测量验证。实时生理数据在整个透析治疗期间(通常为 4 小时)收集。我们确定了一个准线性数学函数来描述动脉管路压力与肱动脉血压之间的关系,并在患者研究中得到了证实。这项观察性研究的结果表明,通过基于经验的更新数学模型,从动脉和静脉管路压力的连续测量中推导出连续的肱动脉压力测量是可行的。该方法不需要与专有的透析机系统接口,不需要直接将传感器连接到患者身上,并且对治疗过程中患者的移动以及由血液透析蠕动血泵引起的周期性压力波形的影响具有鲁棒性。这是开发用于透析患者的实用连续血压监测设备的关键推动因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a0c/7665243/46f42cb8d309/stewa1-3035988.jpg

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