Bonomo Roberta, Bonomo Giulio, Rubiu Emanuele, Iess Guglielmo, Cammarata Giacomo, Innocenti Niccolò, Restelli Francesco, Falco Jacopo, Porto Edoardo, Amato Alessia, Zekaj Edvin, Levi Vincenzo
Department of Neurology, Fondazione IRCCS Istituto Neurologico C. Besta, Milan, Italy.
School of Medicine and Surgery, Kore University of Enna, Enna, Italy.
Brain Spine. 2024 Mar 14;4:102781. doi: 10.1016/j.bas.2024.102781. eCollection 2024.
Spinal cord stimulation is a widespread treatment of chronic neuropathic pain from different conditions. Several novel and improving technologies have been recently developed to increase the effect of neuromodulation in patients refractory to pharmacological therapy.
To explore spinal cord stimulation's mechanisms of action, indications, and management.
The paper initially explores the mechanism of action of this procedure based on the generation of an electric field between electrodes placed on the posterior dural surface of the spinal cord probably interfering with the transmission of pain stimuli to the brain. Subsequently, the most consolidated criteria for selecting patients for surgery, which constitute a major issue of debate, were defined. Thereafter, the fundamental patterns of stimulation were summarized by exploring the advantages and side effects. Lastly, the most common side effects and the related management were discussed.
Proper selection of the patient is of paramount importance to achieve the best results from this specific neuromodulation treatment. Regarding the different types of stimulation patterns, no definite evidence-based guidelines exist on the most appropriate approach in relation to the specific type of neuropathic pain. Both burst stimulation and high-frequency stimulation are innovative techniques that reduce the risk of paresthesias compared with conventional stimulation.
Novel protocols of stimulation (burst stimulation and high frequency stimulation) may improve the trade-off between therapeutic benefits and potential side effects. Likewise, decreasing the rates of hardware-related complications will be also useful to increase the application of neuromodulation in clinical settings.
脊髓刺激是治疗多种慢性神经性疼痛的广泛应用的方法。最近开发了几种新颖且不断改进的技术,以增强对药物治疗无效患者的神经调节效果。
探讨脊髓刺激的作用机制、适应症和管理方法。
本文首先基于放置在脊髓硬脊膜后表面的电极之间产生的电场来探讨该手术的作用机制,该电场可能会干扰疼痛刺激向大脑的传递。随后,确定了选择手术患者的最可靠标准,这是一个主要的争议问题。此后,通过探讨其优点和副作用总结了刺激的基本模式。最后,讨论了最常见的副作用及相关管理方法。
正确选择患者对于从这种特定的神经调节治疗中获得最佳效果至关重要。关于不同类型的刺激模式,对于针对特定类型神经性疼痛的最合适方法,尚无明确的循证指南。与传统刺激相比,爆发式刺激和高频刺激都是创新技术,可降低感觉异常的风险。
新颖的刺激方案(爆发式刺激和高频刺激)可能会改善治疗益处与潜在副作用之间的权衡。同样,降低硬件相关并发症的发生率对于增加神经调节在临床环境中的应用也将是有益的。