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Imaging deep skeletal muscle structure using a high-sensitivity ultrathin side-viewing optical coherence tomography needle probe

机译:使用高灵敏度超薄侧视光学相干断层扫描针探针成像深层骨骼肌结构

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We have developed an extremely miniaturized optical coherence tomography (OCT) needle probe (outer diameter 310 µm) with high sensitivity (108 dB) to enable minimally invasive imaging of cellular structure deep within skeletal muscle. Three-dimensional volumetric images were acquired from ex vivo mouse tissue, examining both healthy and pathological dystrophic muscle. Individual myofibers were visualized as striations in the images. Degradation of cellular structure in necrotic regions was seen as a loss of these striations. Tendon and connective tissue were also visualized. The observed structures were validated against co-registered hematoxylin and eosin (H&E) histology sections. These images of internal cellular structure of skeletal muscle acquired with an OCT needle probe demonstrate the potential of this technique to visualize structure at the microscopic level deep in biological tissue in situ.
机译:我们已经开发了一种具有极高灵敏度(108 dB)的超小型光学相干断层扫描(OCT)针探针(外径310 µm),能够对骨骼肌深处的细胞结构进行微创成像。从离体小鼠组织获取三维体积图像,检查健康和病理性营养不良性肌肉。单个肌纤维可视为图像中的条纹。坏死区域细胞结构的降解被认为是这些条纹的丧失。肌腱和结缔组织也可见。观察到的结构针对共同注册的苏木和曙红(H&E)组织学切片进行了验证。这些用OCT针探针获得的骨骼肌内部细胞结构图像显示了该技术在原位生物组织深处的微观水平可视化结构的潜力。

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