首页> 外文会议>32nd Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Basic study of charring detection at the laser catheter-tip using back scattering light measurement during therapeutic laser irradiation in blood
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Basic study of charring detection at the laser catheter-tip using back scattering light measurement during therapeutic laser irradiation in blood

机译:血液中治疗性激光照射期间使用反向散射光测量在激光导管尖端进行炭化检测的基础研究

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The purpose of this study is to investigate transient process of the charring at the laser catheter-tip in blood during therapeutic laser irradiation by the back scattering light measurement to detect precursor state of the charring. We took account of using photodynamic therapy for arrhythmia in blood through the laser catheter. We observed the influence of the red laser irradiation (λ=663 nm) upon the shape of red blood cells (RBCs). The RBCs aggregation, round formation, and hemolysis were took place sequentially before charring. With a model blood sandwiched between glass plates simulated as a catheter-tip boundary, we measured diffuse-reflected-light power and transmitted-light power simultaneously and continuously by a microscopic optics during the laser irradiation. We found that measured light power changes were originated with RBCs shape change induced by temperature rise due to the laser irradiation. A gentle peak following a slow descending was observed in the diffuse-reflected-light power history. This history might indicate the precursor state of the charring, in which the hemolysis might be considered to advance rapidly. We think that the measurement of diffuse-reflected-light power history might be able to detect precursor state of charring at the catheter-tip in blood.
机译:这项研究的目的是通过后向散射光测量来检测炭黑的先驱状态,从而研究治疗性激光辐照过程中血液中激光导管尖端的炭化的瞬时过程。我们考虑了使用光动力疗法通过激光导管治疗血液中的心律不齐。我们观察到红色激光照射(λ= 663 nm)对红细胞(RBC)形状的影响。在炭化之前,依次发生红细胞的聚集,圆形形成和溶血。通过将模型血液夹在模拟为导管尖端边界的玻璃板之间,我们在激光照射过程中通过显微镜光学器件同时连续地测量了漫反射光功率和透射光功率。我们发现,测得的光功率变化是由于激光照射引起的温度升高引起的RBC形状变化引起的。在漫反射光功率历史中观察到缓慢下降后的平缓峰。该历史记录可能表明炭化的前体状态,在该状态下溶血可能被认为是迅速进行的。我们认为对漫反射光功率历史的测量可能能够检测血液中导管尖端处炭化的前体状态。

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