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发展一种多针光纤拉曼光谱技术,用于大脑深部组织的多点同时拉曼测量。

Development of a multi-needle fiberoptic Raman spectroscopy technique for simultaneous multi-site deep tissue Raman measurements in the brain.

出版信息

Opt Lett. 2023 Aug 15;48(16):4396-4399. doi: 10.1364/OL.498232.

Abstract

We report on the development of a multi-needle fiberoptic Raman spectroscopy (MNF-RS) technique for simultaneous multi-site deep Raman measurements in brain tissue. The multi-needle fiberoptic Raman probe is designed and fabricated using a number of 100 µm core diameter, aluminum-coated fibers under a coaxial laser excitation and Raman collection scheme, enabling simultaneous collection of deep tissue Raman spectra from a number of tissue sites. We have also developed a Raman retrieval algorithm based on the transformation matrix of each individual needle fiber probe projected to different pixels of a charge-coupled device (CCD) for recovering the tissue Raman spectra collected by each needle fiber probe, allowing simultaneous multi-channel detection by a single Raman spectrometer. High-quality tissue Raman spectra of different tissue types (e.g., muscle, fat, gray matter, and white matter in porcine brain) can be acquired in both the fingerprint (900-1800 cm) and high-wavenumber (2800-3300 cm) regions within sub-second times using the MNF-RS technique. We also demonstrate that by advancing the multi-needle fiberoptic Raman probe into deep porcine brain, tissue Raman spectra can be acquired simultaneously from different brain regions (e.g., cortex, thalamus, midbrain, and cerebellum). The significant biochemical differences across different brain tissues can also be distinguished, suggesting the promising potential of the MNF-RS technique for label-free neuroscience study at the molecular level.

摘要

我们报告了一种多针光纤拉曼光谱(MNF-RS)技术的发展,用于在脑组织中进行同时多点深度拉曼测量。多针光纤拉曼探针采用多个 100 µm 芯径、铝涂层光纤设计和制造,采用同轴激光激发和拉曼收集方案,能够同时从多个组织部位收集深部组织拉曼光谱。我们还开发了一种基于每个单独针光纤探针变换矩阵的拉曼检索算法,该矩阵投影到电荷耦合器件(CCD)的不同像素上,用于恢复每个针光纤探针收集的组织拉曼光谱,从而允许单个拉曼光谱仪进行同时多通道检测。使用 MNF-RS 技术,在亚秒内可以在指纹(900-1800 cm)和高波数(2800-3300 cm)区域内同时获得不同组织类型(例如猪脑的肌肉、脂肪、灰质和白质)的高质量组织拉曼光谱。我们还证明,通过将多针光纤拉曼探针推进到深猪脑,可以同时从不同的大脑区域(例如皮质、丘脑、中脑和小脑)获取组织拉曼光谱。不同脑组织之间的显著生化差异也可以区分,这表明 MNF-RS 技术在分子水平上进行无标记神经科学研究具有很大的潜力。

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