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MicroV Technology to Improve Transcranial Color Coded Doppler Examinations

机译:MicroV技术改善经颅彩色编码多普勒检查

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ABSTRACT The purpose of this review is to provide an update on technology related to Transcranial Color Coded Doppler Examinations. Microvascularization (MicroV) is an emerging Power Doppler technology which can allow visualization of low and weak blood flows even at high depths, thus providing a suitable technique for transcranial ultrasound analysis. With MicroV, reconstruction of the vessel shape can be improved, without any overestimation. Furthermore, by analyzing the Doppler signal, MicroV allows a global image of the Circle of Willis. Transcranial Doppler was originally developed for the velocimetric analysis of intracranial vessels, in particular to detect stenoses and the assessment of collateral circulation. Doppler velocimetric analysis was then compared to other neuroimaging techniques, thus providing a cut‐off threshold. Transcranial Color Coded Doppler sonography allowed the characterization of vessel morphology. In both Color Doppler and Power Doppler, the signal overestimated the shape of the intracranial vessels, mostly in the presence of thin vessels and high depths of study. In further neurosonology technology development efforts, attempts have been made to address morphology issues and overcome technical limitations. The use of contrast agents has helped in this regard by introducing harmonics and subtraction software, which allowed better morphological studies of vessels, due to their increased signal‐to‐noise ratio. Having no limitations in the learning curve, in time and contrast agent techniques, and due to its high signal‐to‐noise ratio, MicroV has shown great potential to obtain the best morphological definition.
机译:摘要本次审查的目的是提供有关与经颅颜色编码多普勒检查相关的技术的更新。微血管化(MICROV)是一种新兴的电力多普勒技术,即使在高深也可以允许低血液流动的可视化,从而为经颅超声分析提供合适的技术。使用Microv,可以改善容器形状的重建,而无需任何高估。此外,通过分析多普勒信号,MicroV允许卷轴圆的全局图像。经颅多普勒最初是为颅内血管的测速分析而开发的,特别是检测狭窄和侧支循环评估。然后将多普勒测速分析与其他神经影像技术进行比较,从而提供截止阈值。经颅彩色编码多普勒超声检查允许表征血管形态。在彩色多普勒和电源多普勒中,信号高估颅内血管的形状,主要是在薄血管存在和高度的研究中。在进一步的神经疗程技术开发工作中,已经尝试解决形态问题并克服技术限制。对造影剂的使用已经通过引入谐波和减法软件帮助了这方面,这使得允许对血管的更好的形态学研究,由于它们增加的信噪比。在学习曲线上没有限制,在时间和造影剂技术中,并且由于其高信噪比,MicroV表明了获得最佳形态定义的潜力。

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