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Development of a fiber-based Raman probe for clinical diagnostics

机译:开发用于临床诊断的基于光纤的拉曼探针

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A basic problem intrinsic to many clinical diagnostic procedures as well as minimally invasive surgeries is the online invivo classification of tissue. Associated with this problem is the task to determine the boundaries between tissue sections of various degrees of disease progression, which cannot be identified easily. This problem is partly founded in the imaging modalities conventionally used, i.e., white-light endoscopy or fluorescence-based endoscopic imaging. These techniques allow for extracting of only a limited parameter set for judging the physiological or pathological state of tissue. Furthermore, fluorescence-based endoscopy relies on the administration of external labels, which principally disturbs the native tissue. These problems can be circumvented using Raman microspectroscopy as a diagnostic tool. Raman microscopy allows to record vibrational spectra at each sampling point. Therefore the molecular fingerprint of the sample can be deciphered with spatial resolution. It has been shown that Raman spectroscopy in combination with advanced statistical methods can be used to identify and grade tissue samples. However, the conventional approach of judging excised tissue sections by Raman microscopy does not present an approach which can be readily used in the clinics. Here we present our recent progress towards designing a fiber-based Raman probe, which - in perspective - might be incorporated into the working channel of a surgical endoscope. Thereby, it is anticipated to contribute to the clinical routine. We will review the general design principle of such a device and the specific design strategy for our Raman probe in concert with comparative measurements employing a set of home-built and commercially-available devices.
机译:许多临床诊断程序以及微创手术固有的基本问题是组织的在线体内分类。与这个问题相关的任务是确定各种程度的疾病进展的组织部分之间的边界,这是不容易确定的。该问题部分地是由于常规使用的成像方式,即白光内窥镜检查或基于荧光的内窥镜成像而引起的。这些技术仅允许提取有限的参数集来判断组织的生理或病理状态。此外,基于荧光的内窥镜检查依赖于外部标记物的施用,外部标记物主要干扰天然组织。使用拉曼光谱作为诊断工具可以规避这些问题。拉曼显微镜可以记录每个采样点的振动光谱。因此,可以用空间分辨率破译样品的分子指纹。已经表明,拉曼光谱法与先进的统计方法相结合可用于鉴定组织样品并对其进行分级。但是,通过拉曼显微镜判断切除的组织切片的常规方法不能提供一种可在临床中容易使用的方法。在这里,我们介绍了我们在设计基于光纤的拉曼探针方面的最新进展,从角度来看,该探针可能会并入外科内窥镜的工作通道中。从而,有望有助于临床程序。我们将结合使用一系列家用和商用设备的比较测量结果,回顾这种设备的一般设计原理和拉曼探头的具体设计策略。

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