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使用 F 氟代脱氧葡萄糖正电子发射断层扫描/计算机断层扫描对接受 L2 背根神经节刺激治疗腰痛的患者进行疼痛矩阵代谢成像。

Metabolic Imaging of Pain Matrix Using F Fluoro-deoxyglucose Positron Emission Tomography/Computed Tomography for Patients Undergoing L2 Dorsal Root Ganglion Stimulation for Low Back Pain.

机构信息

Pain and Anaesthesia Research Centre, Barts Health NHS Trust, London, UK.

Department of Clinical Physics, Barts Health NHS Trust, London, UK.

出版信息

Neuromodulation. 2020 Feb;23(2):222-233. doi: 10.1111/ner.13095.

Abstract

INTRODUCTION

Nociceptive signals from lumbar intervertebral discs ascend in the sympathetic chain via the L2 dorsal root ganglion (L2 DRG), a potential target for discogenic low back pain in neuromodulation. Positron Emission Tomography/Computed Tomography (PET-CT) measures functional changes in the brain metabolic activity, identified by the changes in the regional cerebral blood flow (rCBF) as determined by the changes of F-18 Fluoro-deoxyglucose ( F FDG) tracer within brain tissues.

METHODS AND MATERIALS

Nine patients were recruited to explore the changes in PET-CT imaging at baseline and four-weeks post implantation of bilateral L2 DRG neurostimulation leads and implantable pulse generator (IPG). PET-CT scans were performed 30 min following an IV injection of 250±10% MBq of F FDG tracer. Fifteen frames were acquired in 15 min. PET list-mode raw data were reconstructed and normalized appropriately to a brain anatomical atlas.

RESULTS

Nine patients were recruited to the study, where PET-CT imaging data for five patients were analyzed. The right and left insular cortex, primary and secondary somato-sensory cortices, prefrontal cortex, anterior cingulate cortex, thalamus, amygdala, hippocampus and the midline periaqueductal areas, were assessed for any changes in the metabolic activity. A total of 85 pain matrix regions were delineated SUV (standardized uptake value) , SUV  ± SD, and SUV were calculated for each of these regions of the brain and were compared pre- and post-L2 DRG stimulation. Sixty-one of the 85 matrices showed an increase in metabolic activity whereas 24 matrices showed a reduction in metabolic activity.

CONCLUSION

This is the first ever study reporting the changes in cerebral metabolic activity and multi-frame static brain F FDG PET imaging after L2 DRG stimulation for discogenic low back pain. Predominantly an increased metabolic activity in nociceptive brain matrices are seen with an increased in F F FDG uptake following L2 DRG stimulation.

摘要

简介

来自腰椎间盘的伤害性信号通过 L2 背根神经节(L2 DRG)在交感神经链上升,这是神经调节中椎间盘源性腰痛的潜在靶点。正电子发射断层扫描/计算机断层扫描(PET-CT)测量大脑代谢活性的功能变化,通过脑组织内 F-18 氟代脱氧葡萄糖( F FDG)示踪剂的变化确定区域性脑血流(rCBF)的变化来识别。

方法和材料

招募了 9 名患者,以探索双侧 L2 DRG 神经刺激导线和可植入脉冲发生器(IPG)植入后基线和 4 周时的 PET-CT 成像变化。在静脉注射 250±10%MBq 的 F FDG 示踪剂后 30 分钟进行 PET-CT 扫描。在 15 分钟内采集 15 帧。对 PET 列表模式原始数据进行适当重建和归一化,以适应大脑解剖图谱。

结果

共招募了 9 名患者进行研究,其中 5 名患者的 PET-CT 成像数据进行了分析。评估右侧和左侧岛叶皮质、初级和次级躯体感觉皮质、前额叶皮质、前扣带皮质、丘脑、杏仁核、海马体和中线导水管周围区域的代谢活性是否发生变化。总共描绘了 85 个疼痛矩阵区域的 SUV(标准化摄取值)、SUV±SD 和 SUV,然后计算每个大脑区域的 SUV,并比较 L2 DRG 刺激前后的 SUV。85 个矩阵中有 61 个显示代谢活性增加,24 个显示代谢活性减少。

结论

这是第一项报告 L2 DRG 刺激治疗椎间盘源性腰痛后大脑代谢活性和多帧静态脑 F FDG PET 成像变化的研究。在 L2 DRG 刺激后,疼痛性大脑基质中观察到代谢活性增加,同时 F FDG 摄取增加。

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