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Shape Analysis of Somatosensory Evoked Potentials to Detect a Focal Spinal Cord Lesion

机译:躯体感应诱发电位检测焦脊髓病变的形状分析

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In this paper, the shape of the Somatosensory Evoked Potential (SEP) signals is analyzed to detect a focal lesion in the spinal cord of rats. SEPs can be used to reliably assess the spinal cord integrity. However traditional time-domain analysis often needs human intervention because of common difficulty in SEP peak detection due to low signal-to-noise ratio or flattening of SEPs during injury. We have proposed a novel shape analysis technique for SEPs, in which we obtain the slope information for the entire waveform in specific time bins. This technique does not involve any peak detection, and can be used without human intervention. We studied the effectiveness of this technique in a focal Experimental Autoimmune Encephalomyelitis model, in which a focal demyelinating lesion is induced in the spinal cord by injecting cytokine-ethidium bromide into dorsal white matter at T8 after immunization using Myelin Oligodendrocyte Glycoprotein combined with incomplete Freund's adjuvant. The technique was applied to SEPs recorded before and after lesion from 12 rats. The results showed the effect of injury to the SEPs from hindlimbs, hence demonstrating great potential of this technique to detect an injury to the spinal cord.
机译:在本文中,分析了躯体感应诱发电位(SEP)信号的形状以检测大鼠脊髓中的焦点病变。 SEPS可用于可靠地评估脊髓完整性。然而,由于在损伤期间的低信噪比或SEPS的趋势,因此,传统的时域分析通常需要人为干预。我们提出了一种用于SEPS的新型形状分析技术,其中我们在特定时间箱中获得了整个波形的斜率信息。该技术不涉及任何峰值检测,并且可以在没有人类干预的情况下使用。我们研究了该技术在局灶性实验性自身免疫脑髓炎模型中的有效性,其中通过在使用髓鞘少突胶蛋白糖蛋白与不完全弗氏佐剂联合的免疫后,通过在T8在T8中注入细胞因子 - 乙阳天将细胞因子 - 乙阳氨酸溶解到脊髓中诱导局灶性脱髓鞘病变。将该技术应用于来自12只大鼠的病变前后记录的SEP。结果表明,来自后肢的血液损伤的损伤效果,因此证明了这种技术检测脊髓损伤的巨大潜力。

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