From the Department of Anesthesiology and Critical Care Medicine (E.S., D.P.M., S.N.R., Y.G.) the Department of Neurological Surgery (Y.G.), School of Medicine, Johns Hopkins University, Baltimore, Maryland the Department of Clinical Neuroscience, Karolinska Institutet, Stockholm, Sweden (B.L.).
Anesthesiology. 2019 Apr;130(4):651-665. doi: 10.1097/ALN.0000000000002353.
The field of spinal cord stimulation is expanding rapidly, with new waveform paradigms asserting supraspinal sites of action. The scope of treatment applications is also broadening from chronic pain to include cerebral ischemia, dystonia, tremor, multiple sclerosis, Parkinson disease, neuropsychiatric disorders, memory, addiction, cognitive function, and other neurologic diseases. The role of neurostimulation as an alternative strategy to opioids for chronic pain treatment is under robust discussion in both scientific and public forums. An understanding of the supraspinal mechanisms underlying the beneficial effects of spinal cord stimulation will aid in the appropriate application and development of optimal stimulation strategies for modulating pain signaling pathways. In this review, the authors focus on clinical and preclinical studies that indicate the role of supraspinal mechanisms in spinal cord stimulation-induced pain inhibition, and explore directions for future investigations.
脊髓刺激领域正在迅速发展,新的波形范式断言存在脊髓上的作用部位。治疗应用的范围也从慢性疼痛扩大到包括脑缺血、肌张力障碍、震颤、多发性硬化、帕金森病、神经精神障碍、记忆、成瘾、认知功能和其他神经疾病。神经刺激作为慢性疼痛治疗的阿片类药物替代策略,在科学和公共论坛上都进行了激烈的讨论。了解脊髓刺激有益效果的脊髓上机制将有助于适当应用和开发优化的刺激策略,以调节疼痛信号通路。在这篇综述中,作者重点关注了表明脊髓刺激引起的疼痛抑制中存在脊髓上机制的临床和临床前研究,并探讨了未来研究的方向。