Luu Long, Roman Patrick A, Mathews Scott A, Ramella-Roman Jessica C
Biomed Opt Express. 2012 Jun 1;3(6):1350-64. doi: 10.1364/BOE.3.001350. Epub 2012 May 14.
Several new bio-photonic techniques aim to measure flow in the human vasculature non-destructively. Some of these tools, such as laser speckle imaging or Doppler optical coherence tomography, are now reaching the clinical stage. Therefore appropriate calibration and validation techniques dedicated to these particular measurements are therefore of paramount importance. In this paper we introduce a fast prototyping technique based on laser micromachining for the fabrication of dynamic flow phantoms. Micro-channels smaller than 20 µm in width can be formed in a variety of materials such as epoxies, plastics, and household tape. Vasculature geometries can be easily and quickly modified to accommodate a particular experimental scenario.
几种新的生物光子技术旨在无损测量人体血管中的血流。其中一些工具,如激光散斑成像或多普勒光学相干断层扫描,目前已进入临床阶段。因此,适用于这些特定测量的校准和验证技术至关重要。在本文中,我们介绍了一种基于激光微加工的快速原型技术,用于制造动态流动模型。宽度小于20微米的微通道可以在多种材料中形成,如环氧树脂、塑料和家用胶带。血管几何形状可以轻松快速地修改,以适应特定的实验场景。