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使用生理性闭环脊髓刺激在慢性疼痛中基于生物标志物的剂量反应关系的首个证据。

First evidence of a biomarker-based dose-response relationship in chronic pain using physiological closed-loop spinal cord stimulation.

作者信息

Muller Leah, Pope Jason, Verrills Paul, Petersen Erika, Kallewaard Jan Willem, Gould Ian, Karantonis Dean M

机构信息

Saluda Medical US, Bloomington, Minnesota, USA

Evolve Restorative Center, Santa Rosa, California, USA.

出版信息

Reg Anesth Pain Med. 2025 Apr 10;50(4):345-351. doi: 10.1136/rapm-2024-105346.

Abstract

BACKGROUND AND OBJECTIVES

In spinal cord stimulation (SCS) therapy, electricity is the medication delivered to the spinal cord for pain relief. In contrast to conventional medication where dose is determined by desired therapeutic plasma concentration, there is lack of equivalent means of determining dose delivery in SCS. In open-loop (OL) SCS, due to the dynamic nature of the epidural space, the activating electric field delivered is inconsistent at the level of the dorsal columns. Recent Food and Drug Administration guidance suggests accurate and consistent therapy delivered using physiologic closed-loop control (PCLC) devices can minimize underdosage or overdosage and enhance medical care. PCLC-based evoked compound action potential (ECAP)-controlled technology provides the ability to prescribe a precise stimulation dose unique to each patient, continuously measure neural activation, and objectively inform SCS therapy optimization.

METHODS

Neurophysiological indicator metrics of therapy dose, usage above neural activation threshold, and accuracy of SCS therapy were assessed for relationship with pain reduction in over 600 SCS patients.

RESULTS

Significant relationships between objective metrics and pain relief across the patient population are shown, including first evidence for a dose-response relationship in SCS.

CONCLUSIONS

Higher dose, more time over ECAP threshold, and higher accuracy are associated with better outcomes across patients. There is potential to optimize individual patient outcomes based on unique objective measurable electrophysiological inputs.

摘要

背景与目的

在脊髓刺激(SCS)治疗中,电是输送至脊髓用于缓解疼痛的“药物”。与通过期望的治疗性血浆浓度来确定剂量的传统药物不同,在SCS中缺乏确定剂量输送的等效方法。在开环(OL)SCS中,由于硬膜外腔的动态特性,在背柱水平传递的激活电场是不一致的。美国食品药品监督管理局最近的指南表明,使用生理闭环控制(PCLC)设备进行准确且一致的治疗可将剂量不足或过量降至最低,并改善医疗护理。基于PCLC的诱发复合动作电位(ECAP)控制技术能够为每位患者开具精确的刺激剂量,持续测量神经激活情况,并客观地为SCS治疗优化提供依据。

方法

评估了600多名SCS患者的治疗剂量、高于神经激活阈值的使用情况以及SCS治疗准确性的神经生理指标与疼痛减轻之间的关系。

结果

显示了患者群体中客观指标与疼痛缓解之间的显著关系,包括SCS中剂量反应关系的首个证据。

结论

更高的剂量、超过ECAP阈值的更多时间以及更高的准确性与患者更好的治疗结果相关。基于独特的客观可测量电生理输入,有潜力优化个体患者的治疗结果。

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