首页> 外文会议>Conference on Biomedical diagnostic, guidance, and surgical-assist systems >Detection and characterization of absorbing inhomogeneities in biotissue by double-position CW optical-sensing technique with an optimal source-receiver separation
【24h】

Detection and characterization of absorbing inhomogeneities in biotissue by double-position CW optical-sensing technique with an optimal source-receiver separation

机译:双位置连续波光学传感技术与最佳的信源-接收器分离,可以检测和表征生物组织中的吸收不均匀性

获取原文

摘要

Abstract: Potentialities of a double-position CW laser sensing technique with an optimal base are studied to detect absorbing inhomogeneities in turbid media at large optical depths. In the frame of the diffusion approximation, we have found the cross-section of an absorbing inhomogeneity in a turbid medium and derived approximate expressions for irradiance distribution, the spatial profile and contrast of the object and the optimal base length. 2D-images of the object were constructed. A system with rotated base is presented. It enables to extract useful component from detected signal by measuring modulation amplitude. We have performed laboratory experiments on laser sensing of a black object in a model turbid medium in the reflective and transilluminative regimes and proved the validity of our theory. The results of this work demonstrate feasibility of the double-position CW laser sensing technique with the optimal source-receiver separation to detect and characterize absorbing inhomogeneities in biotissues at a depth of several photon transport mean free paths. We expect that this technique can be effectively applied to bioimaging to monitor in vivo the internal structure of the human tissue. !10
机译:摘要:研究了具有最佳基准的双位置连续波激光传感技术在大光学深度检测混浊介质中吸收不均匀性的潜力。在扩散近似的框架中,我们找到了混浊介质中吸收不均匀性的横截面,并得出了辐照度分布,物体的空间轮廓和对比度以及最佳基长的近似表达式。构造物体的2D图像。提出了具有旋转底座的系统。通过测量调制幅度,可以从检测到的信号中提取有用的分量。我们已经在反射和透射照明模式下对模型浑浊介质中的黑色物体进行激光感测进行了实验室实验,证明了我们的理论的正确性。这项工作的结果证明了具有最佳源-接收器分离的双位置连续波激光传感技术的可行性,该技术可以检测和表征生物组织在几个光子传输平均自由路径深度处的吸收不均匀性。我们希望该技术可以有效地应用于生物成像,以在体内监测人体组织的内部结构。 !10

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号