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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Novel ultrasonic fusion imaging method based on cyclic variation in myocardial backscatter.
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Novel ultrasonic fusion imaging method based on cyclic variation in myocardial backscatter.

机译:基于心肌后向散射周期变化的新型超声融合成像方法。

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Quantitative ultrasonic tissue characterisation of the myocardium based on integrated backscatter (IB) has the potential of becoming an effective method for detecting and evaluating myocardial ischaemia. To facilitate IB-based clinical applications, a new imaging method has been developed that combines the anatomical information of a B-mode image with the contractile performance of a selected myocardial region. To produce such a fusion image, a region of interest (ROI) in a B-mode cardiac image was first selected by the user. Algorithms for detection of the endocardium and epicardium were developed, and the resulting mean distance between the computer-detected curve and the manually traced curve was 0.83mm for the endocardium and 0.58mm for the epicardium. The cyclic variation of IB (CVIB) of each myocardial tissue element within the ROI was then calculated over one cardiac cycle. Finally, a grey-scale B-mode image at the end of diastole was displayed as a still image, and the pixels representing the myocardial tissue in the ROI colour-coded according to the corresponding CVIB over the past heart cycle. Both the B-mode image and the colour-coded region were refreshed (up-dated) at the next end-of-diastole. Preliminary results from normal (CVIB= 10-12dB) and ischaemic (CVIB = 5-7 dB) canine hearts are presented that demonstrate the utility of this new imaging method.
机译:基于集成背向散射(IB)的心肌定量超声组织表征具有成为检测和评估心肌缺血的有效方法的潜力。为了促进基于IB的临床应用,已经开发了一种新的成像方法,该方法将B模式图像的解剖信息与所选心肌区域的收缩性能结合在一起。为了产生这种融合图像,用户首先选择了B模式心脏图像中的感兴趣区域(ROI)。开发了用于检测心内膜和心外膜的算法,对于心内膜,计算机检测到的曲线与手动绘制的曲线之间的平均距离为0.83mm,对心外膜为0.58mm。然后在一个心动周期内计算ROI中每个心肌组织元素的IB(CVIB)的周期性变化。最后,将舒张末期的B阶灰度图像显示为静止图像,并且在过去的心动周期中,根据相应的CVIB对代表ROI中心肌组织的像素进行颜色编码。在下一个舒张末期,B模式图像和颜色编码区域均被刷新(更新)。从正常(CVIB = 10-12dB)和局部缺血(CVIB = 5-7 dB)犬心脏得到的初步结果表明了这种新成像方法的实用性。

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