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一种使用单个换能器测量绝对心肌厚度的超声系统。

An ultrasonic system for measurement of absolute myocardial thickness using a single transducer.

作者信息

Pitsillides K F, Longhurst J C

机构信息

Department of Internal Medicine, University of California, Davis 95616.

出版信息

Am J Physiol. 1995 Mar;268(3 Pt 2):H1358-67. doi: 10.1152/ajpheart.1995.268.3.H1358.

Abstract

We have developed an ultrasonic instrument that can measure absolute regional myocardial wall motion throughout the cardiac cycle using a single epicardial piezoelectric transducer. The methods in place currently that utilize ultrasound to measure myocardial wall thickness are the transit-time sonomicrometer (TTS) and, more recently, the Doppler echo displacement method. Both methods have inherent disadvantages. To address the need for an instrument that can measure absolute dimensions of myocardial wall at any depth, an ultrasonic single-crystal sonomicrometer (SCS) system was developed. This system can identify and track the boundary of the endocardial muscle-blood interface. With this instrument, it is possible to obtain, from a single epicardial transducer, measurement of myocardial wall motion that is calibrated in absolute dimensional units. The operating principles of the proposed myocardial dimension measurement system are as follows. A short duration ultrasonic burst having a frequency of 10 MHz is transmitted from the piezoelectric transducer. Reflected echoes are sampled at two distinct time intervals to generate reference and interface sample volumes. During steady state, the two sample volumes are adjusted so that the reference volume remains entirely within the myocardium, whereas half of the interface sampled volume is located within the myocardium. After amplification and filtering, the true root mean square values of both signals are compared and an error signal is generated. A closed-loop circuit uses the integrated error signal to continuously adjust the position of the two sample volumes. We have compared our system in vitro against a known signal and in vivo against the two-crystal TTS system during control, suppression (ischemia), and enhancement (isoproterenol) of myocardial function. Results were obtained in vitro for accuracy (> 99%), signal linearity (r = 0.99), and frequency response to heart rates > 450 beats/min, and in vivo data were acquired for end-systolic dimension (r = 0.99), end-diastolic dimension (r = 0.99), and percent wall thickness (r = 0.99). Both in vitro and in vivo tests indicate that the SCS functions identically to the two-crystal TTS. Use of the SCS allows measurement of absolute wall thickness and hence myocardial function, for both acute and chronically instrumented animal studies, with minimal or no trauma to myocardium.

摘要

我们研发了一种超声仪器,它能够使用单个心外膜压电换能器在整个心动周期内测量局部心肌壁的绝对运动。目前现有的利用超声测量心肌壁厚度的方法有渡越时间超声测微计(TTS),以及最近出现的多普勒回波位移法。这两种方法都有固有的缺点。为了满足对一种能够在任何深度测量心肌壁绝对尺寸的仪器的需求,我们开发了一种超声单晶测微计(SCS)系统。该系统能够识别并追踪心内膜肌肉 - 血液界面的边界。使用这种仪器,可以从单个心外膜换能器获得以绝对尺寸单位校准的心肌壁运动测量值。所提出的心肌尺寸测量系统的工作原理如下。一个频率为10MHz的短持续时间超声脉冲从压电换能器发射出去。反射回波在两个不同的时间间隔进行采样,以生成参考样本体积和界面样本体积。在稳定状态下,调整这两个样本体积,使得参考样本体积完全位于心肌内,而界面采样体积的一半位于心肌内。经过放大和滤波后,比较两个信号的真均方根值,并生成一个误差信号。一个闭环电路使用积分后的误差信号来持续调整两个样本体积的位置。我们已经在体外将我们的系统与已知信号进行了比较,并在体内将其与双晶体TTS系统在心肌功能的控制、抑制(缺血)和增强(异丙肾上腺素)过程中进行了比较。在体外获得了关于准确性(>99%)、信号线性度(r = 0.99)以及对心率>450次/分钟的频率响应的结果,在体内获取了关于收缩末期尺寸(r = 0.99)、舒张末期尺寸(r = 0.99)和壁厚百分比(r = 0.99)的数据。体外和体内测试均表明,SCS的功能与双晶体TTS相同。使用SCS能够测量绝对壁厚,从而测量心肌功能,适用于急性和慢性植入仪器的动物研究,对心肌的创伤最小或无创伤。

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