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采用电阻抗断层成像技术无创监测中心血压:初步实验证据。

Non-invasive monitoring of central blood pressure by electrical impedance tomography: first experimental evidence.

机构信息

Centre Suisse d'Electronique et de Microtechnique, Neuchâtel, Switzerland.

出版信息

Med Biol Eng Comput. 2011 Apr;49(4):409-15. doi: 10.1007/s11517-011-0753-z. Epub 2011 Mar 15.

Abstract

There is a strong clinical demand for devices allowing continuous non-invasive monitoring of central blood pressure (BP). In the state of the art a new family of techniques providing BP surrogates based on the measurement of the so-called pulse wave velocity (PWV) has been proposed, eliminating the need for inflation cuffs. PWV is defined as the velocity at which pressure pulses propagate along the arterial wall. However, no technique to assess PWV within central arteries in a fully unsupervised manner has been proposed so far. In this pilot study, we provide first experimental evidence that electrical impedance tomography (EIT) is capable of measuring pressure pulses directly within the descending aorta. To obtain a wide range of BP values, we administrated noradrenalin and nitroglycerine to an anesthetized pig under mechanical ventilation. An arterial line was inserted into the ascending aorta for measuring reference BP. EIT images were generated from 32 impedance electrodes placed around the chest at the level of the axilla. Regions of Interest (ROI) such as the descending aorta and the lungs were automatically identified by a novel time-based processing algorithm as the respective EIT pixels representing these structures. The correct positions of these ROIs were confirmed by bolus injections of highly conductive concentrated saline into the right heart and into the ascending aorta. Aortic pulse transit time (PTT) values were determined as the delay between the opening of the aortic valve (obtained from arterial line) and the arrival of pressure pulses at the aortic ROI within the EIT plane. For 11 experimental conditions, with mean BP ranging from 73 to 141 mmHg, strongly significant correlation (r = -0.97, P < 0.00001) between central BP and aortic PTT was observed, suggesting that EIT-derived aortic PTT is a potential non-invasive surrogate of central BP.

摘要

临床强烈需要能够连续无创监测中心血压 (BP) 的设备。目前,已经提出了一种新的技术家族,这些技术基于所谓的脉搏波速度 (PWV) 的测量来提供 BP 替代物,从而无需使用充气袖带。PWV 定义为压力脉冲沿动脉壁传播的速度。然而,到目前为止,还没有提出一种在完全非监督的情况下评估中心动脉 PWV 的技术。在这项初步研究中,我们首次提供了实验证据,证明了电阻抗断层成像 (EIT) 能够直接测量降主动脉内的压力脉冲。为了获得广泛的血压值,我们在机械通气下给麻醉猪注射去甲肾上腺素和硝化甘油。动脉线插入升主动脉以测量参考血压。EIT 图像由放置在腋窝水平胸部周围的 32 个阻抗电极生成。通过一种新的基于时间的处理算法,自动识别出感兴趣区域 (ROI),如降主动脉和肺部,作为代表这些结构的相应 EIT 像素。通过将高导电性浓缩盐水注入右心和升主动脉,确认这些 ROI 的正确位置。主动脉脉搏传输时间 (PTT) 值被确定为主动脉瓣打开(从动脉线获得)和压力脉冲到达 EIT 平面内的主动脉 ROI 之间的延迟。对于 11 种实验条件,平均血压范围从 73 到 141mmHg,中心血压与主动脉 PTT 之间存在强烈的显著相关性 (r = -0.97,P < 0.00001),表明 EIT 衍生的主动脉 PTT 是中心血压的潜在无创替代物。

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