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宽场光学相干断层扫描用于关键组织类型的微观结构分析:概念验证评估。

Wide-field optical coherence tomography for microstructural analysis of key tissue types: a proof-of-concept evaluation.

机构信息

Perimeter Medical Imaging AI, Toronto, ON, Canada.

Icahn School of Medicine at Mount Sinai, Mount Sinai Hospital, New York, NY, United States.

出版信息

Pathol Oncol Res. 2023 Jul 14;29:1611167. doi: 10.3389/pore.2023.1611167. eCollection 2023.

Abstract

The presence of positive margins following tumor resection is a frequent cause of re-excision surgery. Nondestructive, real-time intraoperative histopathological imaging methods may improve margin status assessment at the time of surgery; optical coherence tomography (OCT) has been identified as a potential solution but has not been tested with the most common tissue types in surgical oncology using a single, standardized platform. This was a proof-of-concept evaluation of a novel device that employs wide-field OCT (WF-OCT; OTIS 2.0 System) to image tissue specimens. Various cadaveric tissues were obtained from a single autopsy and were imaged with WF-OCT then processed for permanent histology. The quality and resolution of the WF-OCT images were evaluated and compared to histology and with images in previous literature. A total of 30 specimens were collected and tissue-specific microarchitecture consistent with previous literature were identified on both WF-OCT images and histology slides for all specimens, and corresponding sections were correlated. Application of vacuum pressure during scanning did not affect specimen integrity. On average, specimens were scanned at a speed of 10.3 s/cm with approximately three features observed per tissue type. The WF-OCT images captured in this study displayed the key features of the most common human tissue types encountered in surgical oncology with utility comparable to histology, confirming the utility of an FDA-cleared imaging platform. With further study, WF-OCT may have the potential to bridge the gap between the immediate information needs of the operating room and the longer timeline inherent to histology workflow.

摘要

肿瘤切除后存在阳性切缘是再次手术切除的常见原因。非破坏性、实时的术中组织病理学成像方法可能会改善手术时的切缘状态评估;光学相干断层扫描(OCT)已被确定为一种潜在的解决方案,但尚未使用单一标准化平台对最常见的手术肿瘤学组织类型进行测试。

这是一种新型设备的概念验证评估,该设备采用宽场 OCT(WF-OCT;OTIS 2.0 系统)对组织标本进行成像。从单个尸检中获得了各种尸体组织,并使用 WF-OCT 对其进行成像,然后进行永久组织学处理。评估和比较了 WF-OCT 图像的质量和分辨率,并与组织学和以前文献中的图像进行了比较。

共采集了 30 个标本,所有标本的 WF-OCT 图像和组织学切片上均识别出与以前文献一致的特定组织微观结构,并且相应的切片相关。扫描过程中施加真空压力不会影响标本完整性。平均而言,标本以 10.3 s/cm 的速度进行扫描,每种组织类型观察到大约三个特征。

本研究中捕获的 WF-OCT 图像显示了手术肿瘤学中最常见的人类组织类型的关键特征,其效用与组织学相当,证实了经 FDA 批准的成像平台的实用性。随着进一步的研究,WF-OCT 可能有潜力弥合手术室即时信息需求与组织学工作流程固有的较长时间线之间的差距。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec21/10374948/d67c4b29175b/pore-29-1611167-g001.jpg

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