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Laser-induced shock wave effects on red blood cells

机译:激光诱发的冲击波对红细胞的影响

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Abstract: The trend for laser-based medical therapies has been towards short- pulse, high-peak power lasers. A consequence of using these lasers is the production of pressure waves that may propagate deep into tissue. Our previous experiments have concentrated on describing these effects and examining methods for measuring laser-induced shock waves. These two approaches were combined to study the effects of well-defined shock waves on red blood cells in vitro. Red blood cells were exposed to shock waves in capillary tubes covered with either latex or polyimide. The latex was deformed by the expanding plasma bubble whereas the polyimide was not. In the latex experiments where the cells were exposed to the bubble expansion in addition to the shock waves, damage to the cells was much greater. When the cells were exposed only to the shock waves through the polyimide, much less damage was apparent. This is the first clear example of the separation of different mechanical effects on tissue damage. In addition, the shock wave damage is not as significant as the damage caused by the bubble expansion.!
机译:摘要:基于激光的医学疗法已趋向短脉冲,高峰值功率激光。使用这些激光的结果是产生了可能传播到组织深处的压力波。我们以前的实验集中在描述这些影响和检查测量激光诱发的冲击波的方法。结合这两种方法来研究明确的冲击波对体外红细胞的影响。红细胞在覆盖有乳胶或聚酰亚胺的毛细管中暴露于冲击波。乳胶因膨胀的等离子气泡而变形,而聚酰亚胺没有。在乳胶实验中,除了冲击波外,细胞还受到气泡膨胀的作用,对细胞的损害更大。当细胞仅暴露于通过聚酰亚胺的冲击波时,明显的损伤要小得多。这是分离对组织损伤的不同机械作用的第一个明确例子。另外,冲击波的损坏不如气泡膨胀引起的损坏那么严重。

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