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Depth-resolved mapping of tissue mechanical properties using a novel optical approach

机译:使用新型光学方法深度解析组织机械特性的映射

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Progression of most diseases, such as atherosclerosis, cancer, neurodegenerative disease and osteoarthritis is accompanied with drastic changes in biomechanics of tissue. Hence, non-contact and non-invasive technologies for 3-dimensional mapping of tissue biomechanics are invaluable for diagnostic purposes. Laser speckle Microrheology (LSM) is developed in our lab to enable high resolution mechanical evaluation of tissue. To this end, the tissue sample is illuminated by a coherent and focused laser beam and the back-scattered laser speckle pattern is spatio-temporally processed to extract a color-map of τ, which is the decay time constant of intensity decorrelation at each pixel in the image plane. Time constant, τ, is proven to be closely correlated with tissue mechanical properties. In this paper we validate the theoretical basis for LSM technology and investigate the potential for acquiring depth-resolved information from a light-scattering point of view. The patch analysis approach is introduced and the inter-relation between τ, number of scattering events, and penetration depth is explored for each patch. Axial variation of τ is characterized for two sample arterial regions and in-depth changes of mechanical properties are characterized. Finally, the required corrective measures are discussed.
机译:大多数疾病的进展,例如动脉粥样硬化,癌症,神经退行性疾病和骨关节炎都伴随着组织生物力学的急剧变化。因此,用于组织生物力学的3维标测的非接触式和非侵入式技术对于诊断目的是非常宝贵的。激光斑点微流变学(LSM)是在我们的实验室中开发的,能够对组织进行高分辨率的机械评估。为此,用相干聚焦的激光束照射组织样本,并时空处理后向散射的激光散斑图案,以提取色彩图τ,该图是强度去相关在每个像素处的衰减时间常数。在图像平面上。时间常数τ被证明与组织机械性能密切相关。在本文中,我们验证了LSM技术的理论基础,并从光散射的角度研究了获取深度解析信息的潜力。介绍了斑块分析方法,并探讨了每个斑块的τ,散射事件数和穿透深度之间的相互关系。表征了两个样本动脉区域的τ的轴向变化,并表征了力学性能的深度变化。最后,讨论了所需的纠正措施。

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