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基于三维诊断超声系统中三维散斑追踪的快速心功能分析方法的实际考量。

Practical considerations for a method of rapid cardiac function analysis based on three-dimensional speckle tracking in a three-dimensional diagnostic ultrasound system.

作者信息

Takeguchi Tomoyuki, Nishiura Masahide, Abe Yasuhiko, Ohuchi Hiroyuki, Kawagishi Tetsuya

机构信息

Corporate R&D Center, Toshiba Corporation, 1 Komukai Toshiba Cho, Saiwai-ku, Kawasaki, Kanagawa, Japan.

Toshiba Medical Systems Corporation, 1385 Shimoishigami, Otawara, Tochigi, Japan.

出版信息

J Med Ultrason (2001). 2010 Apr;37(2):41-9. doi: 10.1007/s10396-009-0249-8. Epub 2009 Dec 29.

Abstract

PURPOSE

The purpose of this study was to validate the accuracy of our novel 3D speckle tracking method by using numerical data, and to demonstrate the rapid processing of this method by using data obtained from human subjects.

METHODS

In order to create a method that can rapidly assess cardiac function in regional heart wall segments, a 3D speckle tracking algorithm was created that focuses on data quality and performance. Prototype application software based on this algorithm was written to evaluate cardiac wall motion and to calculate indices such as strain. Time series 3D image data were generated for artificial numerical models that simulate the shape of the left ventricle and exhibit various types of motion. We compared observed values returned by the algorithm with expected values yielded by the models. This software was also applied to volume data of the human heart acquired by a 3D ultrasound system.

RESULTS

Measurement of the indices was evaluated by using an error ratio that was a residual between an expected value and estimated one divided by the expected value. The average error ratio of the time series volumes was less than 5% for all indices, and no individual error ratio was more than 10% for numerical models. The process was complete within 0.5 s per frame for human heart volumes.

CONCLUSION

This application software can provide good estimates of various wall motion indices. The results are similar to data from numerical models, and are provided quickly enough for routine clinical usage.

摘要

目的

本研究旨在通过使用数值数据验证我们新型三维散斑追踪方法的准确性,并通过使用从人体受试者获得的数据来证明该方法的快速处理能力。

方法

为了创建一种能够快速评估局部心脏壁段心脏功能的方法,创建了一种注重数据质量和性能的三维散斑追踪算法。编写了基于该算法的原型应用软件,以评估心脏壁运动并计算诸如应变等指标。为模拟左心室形状并呈现各种运动类型的人工数值模型生成了时间序列三维图像数据。我们将算法返回的观测值与模型产生的预期值进行了比较。该软件还应用于通过三维超声系统获取的人体心脏容积数据。

结果

通过使用误差率来评估指标的测量,误差率是预期值与估计值之间的残差除以预期值。对于所有指标,时间序列容积的平均误差率小于5%,对于数值模型,单个误差率均不超过10%。对于人体心脏容积,该过程每帧在0.5秒内完成。

结论

该应用软件能够很好地估计各种壁运动指标。结果与数值模型的数据相似,并且提供得足够快,可用于常规临床应用。

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