Sankaran V, Walsh J T
Biomedical Engineering Department, Northwestern University, Evanston, IL 60208, USA.
Photochem Photobiol. 1998 Dec;68(6):846-51.
Linear birefringence, an optical property that results from a material's structure and composition, can be used to study dynamic changes in tissue structure. Single, 200 microseconds-long pulses from a Ho:YAG laser emitting 2.1 microns radiation were used to induce changes in the linear birefringence of rat tail tendon. Such changes were measured on a millisecond timescale. The measured rate coefficients describing the denaturation are not predicted by previous studies of collagen denaturation induced by slower, lower-temperature heating. Two types of laser-induced collagen denaturation can be differentiated: thermal denaturation, which appears rate-limited, and thermomechanical denaturation, which is observed at higher laser radiant exposures. Neither process is described by standard Arrhenius-type kinetic models.
线性双折射是一种由材料的结构和组成所导致的光学特性,可用于研究组织结构的动态变化。使用波长为2.1微米的钬激光产生的单个200微秒长的脉冲来诱导大鼠尾腱线性双折射的变化。这种变化是在毫秒时间尺度上进行测量的。描述变性的测量速率系数无法由先前关于较慢、较低温度加热诱导的胶原蛋白变性的研究预测。激光诱导的胶原蛋白变性可分为两种类型:热变性,其似乎受速率限制;以及热机械变性,在较高的激光辐射暴露下观察到。这两种过程都不能用标准的阿累尼乌斯型动力学模型来描述。