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Acoustic spectroscopy diagnostics for laser transmyocardial revascularization

机译:超声光谱诊断激光跨心肌血运重建

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摘要

The mechanism of channel punching in the heart muscle (myocardium) by a pulse of high-power CO_2 laser was studied. Water, PMMA and biotissue of animals were used as the models. Diagnostics of the punching process was performed by the methods of registration of sound vibrations in the air and back scattering of laser radiation. It has been revealed that at channel punching in various media, sound vibrations are excited in the spectrum region from 1 to 3.5 kHz, which are due to turbulent pulsation of vapor-drop flow ejected from the channel. The spectrum of acoustic vibrations depends on positions of the channel bottom and is sensitive to the boundary between the myocardial tissue and blood. The measurement of sound vibrations spectra can serve as the basis for diagnostics of the process of channel punching in myocardium.
机译:研究了大功率CO_2激光脉冲对心肌(心肌)穿刺的机制。以动物的水,PMMA和生物组织为模型。穿孔过程的诊断是通过记录空气中声音振动和激光辐射向后散射的方法进行的。已经发现,在各种介质中进行通道打孔时,由于从通道中喷出的蒸气滴流的湍流脉动,会在1至3.5 kHz的频谱范围内激发声音振动。声振动的频谱取决于通道底部的位置,并且对心肌组织和血液之间的边界敏感。声音振动频谱的测量可以作为诊断心肌通道打孔过程的基础。

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