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Optical sensing of a pulsating liquid in a brain-mimicking phantom

机译:模仿大脑的幻影中脉动液体的光学传感

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摘要

In study of the brain, oxygenation changes in the cerebral cortex are increasingly monitored using optical methods based on near-infrared spectroscopy (NIRS). When monitoring blood oxygenation in the cerebral cortex, at depth of approximately 15 mm - 20 mm from the skin surface, separation distance between source and detector becomes significant. Many studies show that by increasing the source-detector distance, illuminating light penetrates deeper into tissue. In this work, we use optical phantoms to determine experimentally the minimum source-detector distance between that allows sensing of the cerebral cortex, particularly the grey matter of the brain. A multilayered forehead phantom was fabricated and a silicon tube was added inside the phantom at depths of 15 mm and 19 mm, measured from the surface of the skin mimicking layer. This depth corresponds to the grey matter layer of the brain. The phantom's optical properties were specifically designed to mimic the optical properties of tissue layers of the forehead and to facilitate near-infrared sensing. Optical sensing of liquid movement within the tube was measured by varying the distance between the near-infrared light source and the detector. Based on our measurements, we can conclude that it is possible to sense pulsations from a grey matter mimicking layer of the brain using near-infrared spectroscopy at a source-detector distance of 3 - 4 cm.
机译:在对大脑的研究中,越来越多地使用基于近红外光谱(NIRS)的光学方法来监测大脑皮层的氧合作用变化。当监测距大脑皮层约15mm-20mm深度的大脑皮层中的血液氧合作用时,放射源与检测器之间的分离距离就变得很重要。许多研究表明,通过增加源探测器的距离,照明光可以更深入地穿透组织。在这项工作中,我们使用光学体模从实验上确定允许感知大脑皮层,尤其是大脑灰质的最小源-检测器距离。从皮肤模拟层的表面开始测量,制作了多层的前额幻影,并在幻影内部添加了15毫米和19毫米深度的硅管。该深度对应于大脑的灰质层。人体模型的光学特性经过专门设计,可模仿前额组织层的光学特性并促进近红外感应。通过改变近红外光源和检测器之间的距离来测量管内液体运动的光学感应。根据我们的测量结果,我们可以得出结论,可以使用近红外光谱在3-4 cm的源探测器距离上感知来自大脑灰质模拟层的脉动。

著录项

  • 来源
    《Diffuse optical imaging IV》|2013年|87990X.1-87990X.7|共7页
  • 会议地点 Munich(DE)
  • 作者单位

    University of Oulu, Optoelectronics and Measurement Techniques Laboratory, Oulu, Finland;

    University of Oulu, Optoelectronics and Measurement Techniques Laboratory, Oulu, Finland;

    Oulu University Hospital, Department of Diagnostic Radiology, Oulu, Finland;

    University of Oulu, Optoelectronics and Measurement Techniques Laboratory, Oulu, Finland;

    University of Oulu, Optoelectronics and Measurement Techniques Laboratory, Oulu, Finland;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    brain; phantom; NIRS; PPG; sensing; light propagation;

    机译:脑;幻影; NIRS; PPG;感应光传播;
  • 入库时间 2022-08-26 14:31:16

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