内镜共聚焦激光显微术中神经识别是否可行?

IF 1.3 4区 医学 Q4 ENGINEERING, BIOMEDICAL
David Benjamin Ellebrecht, Sönke von Weihe
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引用次数: 0

摘要

在微创手术中,外科医生失去了大部分的触觉组织信息,需要一种额外的术中组织识别工具。激光共聚焦显微镜(CLM)是一种成熟的组织研究方法。本研究的目的是分析CLM神经组织识别的可行性和诊断准确性。用内窥镜CLM系统拍摄的交感神经节、神经纤维和胸膜组织的图像在离体时具有特定的信号模式。未使用荧光染料。组织分类的诊断准确性由新训练的观测者评估(敏感性、特异性、PPV、NPV和观测者间变异性)。虽然CLM图像显示较低的CLM图像对比度,但不使用任何荧光染料对神经组织进行评估是可行的。敏感性和特异性分别在0.73 - 0.9和0.55-1.0之间。ppv范围为0.71 ~ 1.0,NPV范围为0.58 ~ 0.86。总体观察者间变异率为0.36。eCLM能够评估神经组织,并根据背向散射光区分神经纤维、神经节和胸膜组织。然而,低图像对比度和正确组织诊断的异质性以及公平的观察者之间的可变性表明没有任何荧光染料的CLM成像的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endoscopic confocal laser-microscopy for the intraoperative nerve recognition: is it feasible?

Surgeons lose most of their tactile tissue information during minimal invasive surgery and need an additional tool of intraoperative tissue recognition. Confocal laser microscopy (CLM) is a well-established method of tissue investigation. The objective of this study was to analyze the feasibility and diagnostic accuracy of CLM nervous tissue recognition. Images taken with an endoscopic CLM system of sympathetic ganglions, nerve fibers and pleural tissue were characterized in terms of specific signal-patterns ex-vivo. No fluorescent dye was used. Diagnostic accuracy of tissue classification was evaluated by newly trained observers (sensitivity, specificity, PPV, NPV and interobserver variability). Although CLM images showed low CLM image contrast, assessment of nerve tissue was feasible without any fluorescent dye. Sensitivity and specificity ranged between 0.73 and 0.9 and 0.55-1.0, respectively. PPVs were 0.71-1.0 and the NPV range was between 0.58 and 0.86. The overall interobserver variability was 0.36. The eCLM enables to evaluate nervous tissue and to distinguish between nerve fibers, ganglions and pleural tissue based on backscattered light. However, the low image contrast and the heterogeneity in correct tissue diagnosis and a fair interobserver variability indicate the limit of CLM imaging without any fluorescent dye.

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来源期刊
CiteScore
3.50
自引率
5.90%
发文量
58
审稿时长
2-3 weeks
期刊介绍: Biomedical Engineering / Biomedizinische Technik (BMT) is a high-quality forum for the exchange of knowledge in the fields of biomedical engineering, medical information technology and biotechnology/bioengineering. As an established journal with a tradition of more than 60 years, BMT addresses engineers, natural scientists, and clinicians working in research, industry, or clinical practice.
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