Cuellar Carlos A, Mendez Aldo A, Islam Riazul, Calvert Jonathan S, Grahn Peter J, Knudsen Bruce, Pham Tuan, Lee Kendall H, Lavrov Igor A
Department of Neurologic Surgery, Mayo ClinicRochester, MN, United States.
Mayo Clinic Graduate School of Biomedical Sciences, Mayo ClinicRochester, MN, United States.
Front Neuroanat. 2017 Sep 22;11:82. doi: 10.3389/fnana.2017.00082. eCollection 2017.
In this study, the neuroanatomy of the swine lumbar spinal cord, particularly the spatial orientation of dorsal roots was correlated to the anatomical landmarks of the lumbar spine and to the magnitude of motor evoked potentials during epidural electrical stimulation (EES). We found that the proximity of the stimulating electrode to the dorsal roots entry zone across spinal segments was a critical factor to evoke higher peak-to-peak motor responses. Positioning the electrode close to the dorsal roots produced a significantly higher impact on motor evoked responses than rostro-caudal shift of electrode from segment to segment. Based on anatomical measurements of the lumbar spine and spinal cord, significant differences were found between L1-L4 to L5-L6 segments in terms of spinal cord gross anatomy, dorsal roots and spine landmarks. Linear regression analysis between intersegmental landmarks was performed and L2 intervertebral spinous process length was selected as the anatomical reference in order to correlate vertebral landmarks and the spinal cord structures. These findings present for the first time, the influence of spinal cord anatomy on the effects of epidural stimulation and the role of specific orientation of electrodes on the dorsal surface of the dura mater in relation to the dorsal roots. These results are critical to consider as spinal cord neuromodulation strategies continue to evolve and novel spinal interfaces translate into clinical practice.
在本研究中,猪腰段脊髓的神经解剖结构,尤其是背根的空间定位,与腰椎的解剖标志以及硬膜外电刺激(EES)期间运动诱发电位的大小相关。我们发现,跨脊髓节段刺激电极与背根进入区的接近程度是诱发更高峰峰值运动反应的关键因素。将电极放置在靠近背根的位置对运动诱发反应的影响明显大于电极在节段间的头尾向移动。基于腰椎和脊髓的解剖测量,在脊髓大体解剖、背根和脊柱标志方面,L1-L4节段与L5-L6节段之间存在显著差异。对节段间标志进行了线性回归分析,并选择L2椎间隙棘突长度作为解剖参考,以便关联椎骨标志和脊髓结构。这些发现首次揭示了脊髓解剖结构对硬膜外刺激效果的影响,以及硬膜背表面电极相对于背根的特定取向所起的作用。随着脊髓神经调节策略不断发展,新型脊髓接口转化为临床实践,这些结果对于考虑这些因素至关重要。