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Photobiomodulation Optimization for Spinal Cord Injury Rat Phantom Model

机译:脊髓损伤大鼠幻影模型的光生物调节优化

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摘要

Spinal Cord Injury (SCI) causes interruption along the severed axonal tract(s) resulting in complete or partial loss of sensation and motor function. SCI can cause tetraplegia or paraplegia. Both these conditions can have lifelong excessive medical costs, as well as can reduce life expectancy. Preclinical research showed that Photobiomodulation therapy (PBMT), also known as Low-level laser (light) therapy (LLLT), possesses reparative and regenerative capabilities that have the potential to be used as a complimentary or supplementary SCI therapy. Despite the promising effects of PBMT, there are still no standardized irradiation parameters (i.e. different wavelengths, power, fluence, irradiance, beam type, beam diameters, and irradiation time) and there is also a lack of standardized experimental protocol(s), which makes it difficult to compare different studies. It is, nonetheless, essential to standardize such irradiation parameters in order to provide better PBMTs. The aim of this study, therefore, is to evaluate the delivery of light in a 3D voxelated SCI rat model for PBMT using different irradiation parameters (wavelengths: 660, 810, and 980 nm; beam types: Gaussian and Flat beam; and beam diameters: 0.04-1.2 cm) using Monte Carlo simulation. This study also aids in providing standardization for preclinical research for PBMT, which will eventually translate into clinical standardization upon clinical research studies and results.
机译:脊髓损伤(SCI)导致沿切断的轴突中断,导致感觉和运动功能完全或部分丧失。 SCI可引起四肢瘫痪或截瘫。这两种情况都可能导致终生的医疗费用过高,以及会缩短预期寿命。临床前研究表明,光生物调节疗法(PBMT),也称为低水平激光(光)疗法(LLLT),具有修复和再生能力,有可能被用作补充或补充性SCI治疗。尽管PBMT产生了令人鼓舞的效果,但仍然没有标准化的辐照参数(即不同的波长,功率,注量,辐照度,光束类型,光束直径和辐照时间),并且也缺乏标准化的实验方案,很难比较不同的研究。然而,必须标准化这些辐照参数以提供更好的PBMT。因此,本研究的目的是使用不同的照射参数(波长:660、810和980 nm;光束类型:高斯和平光束;以及光束直径)在PBMT的3D体素SCI大鼠模型中评估光的传递。 :0.04-1.2厘米),使用蒙特卡洛模拟。该研究还有助于为PBMT的临床前研究提供标准化,最终将根据临床研究和结果转化为临床标准化。

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