Brant A M, Rodgers G J, Borovetz H S
J Appl Physiol (1985). 1987 Feb;62(2):679-83. doi: 10.1152/jappl.1987.62.2.679.
A noncontacting in vitro measurement of pulsatile arterial diameter using a scanning optical micrometer is described. The major component of this system is a He-Ne laser whose beam scans the pulsating artery to be measured. The laser micrometer was integrated into a pulsatile perfusion apparatus that imposed various hemodynamic conditions on excised canine vessels. The laser system reliably tracked the pulsating arterial diameter at a particular longitudinal site as well as at various increments in the presence of an experimentally created stenosis. The He-Ne laser measured the radial motion of canine arteries and various vascular substitutes anastomosed in an end-to-end fashion. From these novel measurements, calculations were made of arterial compliance and bending stress, two biomechanical parameters that are implicated as potential causes of anastomotic intimal hyperplasia and graft failure. Although this device is inherently limited to in vitro use, it is a potentially useful instrument for vascular physiology and biophysics.
描述了一种使用扫描光学测微计对搏动性动脉直径进行非接触式体外测量的方法。该系统的主要组件是一台氦氖激光器,其光束扫描待测量的搏动性动脉。激光测微计被集成到一个搏动性灌注装置中,该装置对离体犬血管施加各种血流动力学条件。在存在实验性制造的狭窄情况下,激光系统能够可靠地跟踪特定纵向部位以及不同增量下的搏动性动脉直径。氦氖激光器测量了犬动脉以及以端对端方式吻合的各种血管替代物的径向运动。基于这些新颖的测量结果,计算了动脉顺应性和弯曲应力,这两个生物力学参数被认为是吻合口内膜增生和移植物失败的潜在原因。尽管该装置本质上仅限于体外使用,但它对于血管生理学和生物物理学而言是一种潜在有用的仪器。