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In vivo optical elastography: stress and strain imaging of human skin lesions

机译:体内光学弹性造影:人体皮肤病变的应力和应变成像

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Probing the mechanical properties of skin at high resolution could aid in the assessment of skin pathologies by, for example, detecting the extent of cancerous skin lesions and assessing pathology in burn scars. Here, we present two elastography techniques based on optical coherence tomography (OCT) to probe the local mechanical properties of skin. The first technique, optical palpation, is a high-resolution tactile imaging technique, which uses a complaint silicone layer positioned on the tissue surface to measure spatially-resolved stress imparted by compressive loading. We assess the performance of optical palpation, using a handheld imaging probe on a skin-mimicking phantom, and demonstrate its use on human skin. The second technique is a strain imaging technique, phase-sensitive compression OCE that maps depth-resolved mechanical variations within skin. We show preliminary results of in vivo phase-sensitive compression OCE on a human skin lesion.
机译:在高分辨率下探测皮肤的机械性能可以帮助通过例如检测癌症皮肤病变的程度和评估烧伤疤痕的病理学评估皮肤病理学的评估。在这里,我们提出了两个基于光学相干断层扫描(OCT)的弹性摄影技术,以探测皮肤的局部机械性能。第一技术,光触摸,是一种高分辨率触觉成像技术,其使用位于组织表面上的投诉硅胶层,以测量通过压缩负载赋予的空间分辨应力。我们评估光学触觉的性能,使用手持式成像探针在皮肤模拟的幻影上,并证明其对人体皮肤的使用。第二种技术是一种应变成像技术,相敏压缩OCE,其映射皮肤内的深度分辨机械变化。我们展示了人类皮肤病变上体内相敏感压缩OCE的初步结果。

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