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Ultrasound blood flow measurement via time-domain signal pattern correlation.

机译:通过时域信号模式相关性进行超声血流测量。

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摘要

Blood flow measurements by means of ultrasound time domain pattern correlation have been studied by many investigators. Assessing biological fluid flow with ultrasound time domain correlation algorithms has several advantages over conventional Doppler flow measurements. The main advantage is its higher spatial-resolution, which allows for greater accuracy when computing flow velocities. The achieved higher spatial resolution is accompanied by a higher computational demand associated with most available correlation algorithms. For this reason, several pattern correlation algorithms with lower computational demand are proposed in this research. The proposed algorithms are designed to achieve a comparable accuracy with less computational demand. The algorithms are verified analytically and applied to in-vitro blood flow measurements.; A major concern of time domain flow measurement is the retrieval of 2D flow velocities. The lack of lateral velocity information presented in Doppler systems is a major obstacle for obtaining exact velocity profiles in blood vessels. Different approaches have been taken to estimate the incident angle between the acoustic beam and the direction of blood flow. In this research, a two-probe flow measurement approach is investigated. This approach is similar to those of the two-slit optometric technique for monitoring the movement of red blood cells in the microcirculation and has been studied previously by this laboratory. To improve the accuracy of measurement, a commercially available contrast agent, Albunex{dollar}spcircler,{dollar} was injected into the flow so that a better signal to noise ratio can be achieved. The contrast agent has been proven to be non-toxic for human injection and studied both in-vitro and in-vivo. The measurement is further improved by estimating the arrival time difference of traced signal speckle with a cluster correlation algorithm. It has been shown from the experimental data and computer simulations that the proposed cluster correlation algorithm having advantages on improving both computational expense and probability of misregistration.; Efforts are also made to develop algorithms for two dimensional flow measurements. Two bit-pattern correlation algorithms are proposed to evaluate the arrival time from a pair of successive images. The algorithms are verified by in-vitro data taken from porcine blood samples with commercial ultrasonic scanners.
机译:许多研究者已经研究了通过超声时域模式相关性进行血流测量。与传统的多普勒血流测量相比,利用超声时域相关算法评估生物流体的流量具有多个优势。主要优点是其较高的空间分辨率,这在计算流速时允许更高的精度。所获得的更高的空间分辨率伴随着与大多数可用相关算法相关的更高的计算需求。因此,本研究提出了几种计算需求较低的模式相关算法。所提出的算法旨在以较少的计算需求来达到可比的精度。该算法经过分析验证,并应用于体外血流量测量。时域流量测量的主要问题是二维流量的检索。多普勒系统中缺乏横向速度信息是获得血管中精确速度分布的主要障碍。已经采取了不同的方法来估计声束与血流方向之间的入射角。在这项研究中,研究了一种二探针流量测量方法。这种方法类似于用于监视微循环中红细胞运动的两狭缝验光技术,该实验室先前已经对其进行了研究。为了提高测量精度,将可商购的造影剂Albunex {dollar} spcircler {dollar}注入流中,以便获得更好的信噪比。对比剂已被证明对人体注射无毒,并已在体外和体内进行了研究。通过使用聚类相关算法估计跟踪信号斑点的到达时间差,可以进一步改善测量效果。从实验数据和计算机仿真已经表明,所提出的聚类相关算法在提高计算成本和错误注册的可能性上均具有优势。还努力开发用于二维流量测量的算法。提出了两种位模式相关算法来评估一对连续图像的到达时间。该算法通过使用商用超声波扫描仪从猪血样中提取的体外数据进行验证。

著录项

  • 作者

    Wang, Liang-Min.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Biomedical.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;无线电电子学、电信技术;
  • 关键词

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