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Laser swelling of soft biological tissue by IR pulses

机译:红外脉冲对生物软组织的激光肿胀

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The temporal dynamics of biological tissue swelling under the effect of mid-IR laser radiation is considered theoretically following the experimental investigation published earlier. The probable mechanism of laser swelling is suggested. This mechanism consists of deformation of tissue protein base by vapor pressure, which appears due to evaporation of tissue water. The formation and relaxation of a hump on the surface was determined by both mechanical properties (elastic, plastic) and porosity of material providing water vapor transfer within tissue. It is found that these mechanisms can lead to the formation of both transient and stationary hump structures on the surface. To describe the hump relaxation, we consider a new, evaporation-condensation, mechanism of heat transfer within the region of biotissue with microchannels. This mechanism allows us to explain the value of relaxation time of the hump measured in experiment.
机译:理论上,在早先发表的实验研究之后,理论上考虑了在中红外激光辐射作用下生物组织肿胀的时间动态。建议了激光膨胀的可能机理。该机制包括由于蒸汽压力使组织蛋白碱基变形,这是由于组织水的蒸发而产生的。驼峰在表面的形成和松弛取决于机械性能(弹性,塑性)和提供水蒸气在组织内转移的材料的孔隙率。发现这些机制可导致在表面上形成瞬时和静止驼峰结构。为了描述驼峰松弛,我们考虑了在具有微通道的生物组织区域内传热的新的蒸发-冷凝机制。这种机制使我们能够解释在实验中测得的驼峰松弛时间的值。

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