Detection of degeneration in rat sciatic nerve by in vivo near infrared spectroscopy

Arun Kumar Senapati , Harsha Radhakrishnan , Hanli Liu , Yuan Bo Peng
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引用次数: 10

Abstract

We have recently developed an optical spectroscopy technique to monitor light scattering changes of the nervous system in vivo. Near infrared (NIR) spectroscopy emphasizes the detection of light scattering properties, which are prominent within the wavelength range of 700 to 850 nm wavelength. The purpose of this study is to test the hypothesis that demyelination and degeneration of the sciatic nerves after nerve injury will lead to a change in light scattering properties and be detected by the NIR technique. Left spinal nerve ligations (L4, L4 and L5, L5) were performed in rats. The scattering properties of the left (ligated) and right (control) sciatic nerve were measured by the NIR reflectance using a bifurcated needle probe at postoperative days 1, 4, 7, and 14. The results show that there was no significant difference among three types of ligation, and neither did the readings between left and right sciatic nerve at postoperative day 1. Significant decreases in light scattering indexes were found between left and right sciatic nerves at postoperative days 4, 7, and 14. It is concluded that our initial hypothesis is proven, suggesting that the NIR technique may have a potential for clinical application in detecting demyelination and degeneration of the nervous system.

近红外光谱法检测大鼠坐骨神经退行性变
我们最近开发了一种光谱学技术来监测体内神经系统的光散射变化。近红外(NIR)光谱学侧重于光散射特性的检测,在700 ~ 850nm波长范围内尤为突出。本研究的目的是验证神经损伤后坐骨神经脱髓鞘和退行性变导致光散射特性改变的假设,并通过近红外技术检测。结扎大鼠左脊神经(L4, L4和L5, L5)。术后第1、4、7和14天,采用分岔针探头近红外反射测量左(结扎)和右(对照)坐骨神经的散射特性。结果显示,三种结扎方式无显著性差异,术后第1天左右坐骨神经读数无显著性差异。术后第4、7、14天左右坐骨神经间光散射指数明显降低。结论表明,我们最初的假设是正确的,表明近红外技术在检测神经系统脱髓鞘和变性方面可能具有临床应用潜力。
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