Wang, X. X., Zhang, Y. & Fan, B. F. Predicting postherpetic neuralgia in patients with herpes zoster by machine learning: A retrospective study. Pain Therapy. 9, 627–635. (2020).
Google Scholar
Kawai, K., Gebremeskel, B. G. & Acosta, C. J. Systematic review of incidence and complications of herpes zoster: Towards a global perspective. BMJ open.4, e004833. (2014).
Google Scholar
Gross, G. E. et al. S2k guidelines for the diagnosis and treatment of herpes zoster and postherpetic neuralgia. J. Der Deutschen Dermatologischen Gesellschaft J. German Soc. Dermatology: JDDG. 18, 55–78. (2020).
Google Scholar
Johnson, R. W. et al. The impact of herpes zoster and post-herpetic neuralgia on quality-of-life. BMC Med.8, 37. (2010).
Google Scholar
Johnson, R. W. et al. Herpes zoster epidemiology, management, and disease and economic burden in Europe: A multidisciplinary perspective. Therapeutic Adv. Vaccines. 3, 109–120. (2015).
Google Scholar
Patil, A., Goldust, M. & Wollina, U. Herpes zoster: A review of clinical manifestations and management. Viruses. 14 (2022).
Tang, J., Zhang, Y., Liu, C., Zeng, A. & Song, L. Therapeutic strategies for postherpetic neuralgia: Mechanisms, treatments, and perspectives. Curr. Pain Headache Rep.27, 307–319. (2023).
Google Scholar
Li, D. et al. Combined therapy of pulsed radiofrequency and nerve block in postherpetic neuralgia patients: A randomized clinical trial. PeerJ. 6, e4852. (2018).
Google Scholar
Han, R. et al. Clinical efficacy of short-term peripheral nerve stimulation in management of facial pain associated with herpes zoster ophthalmicus. Front. Neurosci.14, 574713. (2020).
Google Scholar
Ni, Y. et al. Implantable peripheral nerve stimulation for trigeminal neuropathic pain: A systematic review and meta-analysis. Neuromodulation. 24, 983–991. (2021).
Google Scholar
Sdrulla, A. D., Guan, Y. & Raja, S. N. Spinal cord stimulation: Clinical efficacy and potential mechanisms. Pain Pract. Off. J. World Inst. Pain. 18, 1048–1067. (2018).
Google Scholar
Liu, B. et al. Clinical study of spinal cord stimulation and pulsed radiofrequency for management of herpes zoster-related pain persisting beyond acute phase in elderly patients. Pain Physician. 23, 263–270 (2020).
Google Scholar
Chen, L. et al. Correlation between spinal cord stimulation analgesia and cortical dynamics in pain management. Ann. Clin. Transl. Neurol.11, 57–66. (2024).
Google Scholar
Isagulyan, E. et al. The effectiveness of various types of electrical stimulation of the spinal cord for chronic pain in patients with postherpetic neuralgia: A literature review. Pain Res. Manag.2023, 6015680. (2023).
Google Scholar
Wu, C. Y. et al. Efficacy of pulsed radiofrequency in herpetic neuralgia: A meta-analysis of randomized controlled trials. Clin. J. Pain36, 887–895. (2020).
Google Scholar
Yang, L. et al. Clinical outcome of pulsed-radiofrequency combined with transforaminal epidural steroid injection for lumbosacral radicular pain caused by distinct etiology. Front. Neurosci.15, 683298. (2021).
Google Scholar
Chang, M. C. Efficacy of pulsed radiofrequency stimulation in patients with peripheral neuropathic pain: A narrative review. Pain Phys.21, E225-e234 (2018).
Google Scholar
Esposito, M. F., Malayil, R., Hanes, M. & Deer, T. Unique characteristics of the dorsal root ganglion as a target for neuromodulation. Pain Med.20, S23–s30. (2019).
Google Scholar
Sun, C. L. et al. High-voltage, long-duration pulsed radiofrequency to the dorsal root ganglion provides improved pain relief for herpes zoster neuralgia in the subacute stage. Pain Phys.26, E155-e162 (2023).
Google Scholar
Fields, H. L., Rowbotham, M. & Baron, R. Postherpetic neuralgia: Irritable nociceptors and deafferentation. Neurobiol. Dis.5, 209–227. (1998).
Google Scholar
Campbell, J. N. & Meyer, R. A. Mechanisms of neuropathic pain. Neuron. 52, 77–92. (2006).
Google Scholar
Zhou, H. et al. Effect of implantable electrical nerve stimulation on cortical dynamics in patients with herpes zoster-related pain: A prospective pilot study. Front. Bioeng. Biotechnol.10, 862353. (2022).
Google Scholar
Huang, X. et al. Efficacy and safety of pulsed radiofrequency modulation of thoracic dorsal root ganglion or intercostal nerve on postherpetic neuralgia in aged patients: A retrospective study. BMC Neurol.21, 233. (2021).
Google Scholar
Beydoun, A. Postherpetic neuralgia: Role of gabapentin and other treatment modalities. Epilepsia.40(6), S51-56. (1999).
Google Scholar
Onakpoya, I. J., Thomas, E. T., Lee, J. J., Goldacre, B. & Heneghan, C. J. Benefits and harms of pregabalin in the management of neuropathic pain: A rapid review and meta-analysis of randomised clinical trials. BMJ open.9, e023600. (2019).
Google Scholar
Lin, C. S., Lin, Y. C., Lao, H. C. & Chen, C. C. Interventional treatments for postherpetic neuralgia: A systematic review. Pain Phys.. 22, 209–228 (2019).
Google Scholar
Rui, M., Ni, H., Xie, K., Xu, L. & Yao, M. Progress in radiofrequency therapy for zoster-associated pain about parameters, modes, targets, and combined therapy: A narrative review. Pain Therapy. 13, 23–32. (2024).
Google Scholar
Melzack, R. & Wall, P. D. Pain mechanisms: a new theory. Science (New York NY). 150, 971–979. (1965).
Google Scholar
El-Khoury, C. et al. Attenuation of neuropathic pain by segmental and supraspinal activation of the dorsal column system in awake rats. Neuroscience. 112, 541–553. (2002).
Google Scholar
Meuwissen, K. P. V., de Vries, L. E., Gu, J. W., Zhang, T. C. & Joosten, E. A. J. Burst and tonic spinal cord stimulation both activate spinal GABAergic mechanisms to attenuate pain in a rat model of chronic neuropathic pain. Pain Pract. Off. J. World Inst. Pain. 20, 75–87. (2020).
Google Scholar
Heijmans, L., Mons, M. R. & Joosten, E. A. A systematic review on descending serotonergic projections and modulation of spinal nociception in chronic neuropathic pain and after spinal cord stimulation. Mol. Pain. 17, 17448069211043965. (2021).
Google Scholar
Song, Z., Ansah, O. B., Meyerson, B. A., Pertovaara, A. & Linderoth, B. Exploration of supraspinal mechanisms in effects of spinal cord stimulation: Role of the locus coeruleus. Neuroscience. 253, 426–434. (2013).
Google Scholar
Sato, K. L., King, E. W., Johanek, L. M. & Sluka, K. A. Spinal cord stimulation reduces hypersensitivity through activation of opioid receptors in a frequency-dependent manner. Eur. J. Pain. 17, 551–561. (2013).
Google Scholar
Sun, L. et al. Endocannabinoid activation of CB(1) receptors contributes to long-lasting reversal of neuropathic pain by repetitive spinal cord stimulation. Eur. J. Pain. 21, 804–814. (2017).
Google Scholar
Sluijter, M. E. & van Kleef, M. Pulsed radiofrequency. Pain Med.8, 388–389. (2007). author reply 390 – 381.
Google Scholar
Park, D. & Chang, M. C. The mechanism of action of pulsed radiofrequency in reducing pain: A narrative review. J. Yeungnam Med. Sci.39, 200–205. (2022).
Google Scholar
Cho, H. K. et al. Changes in neuroglial activity in multiple spinal segments after caudal epidural pulsed radiofrequency in a rat model of lumbar disc herniation. Pain Phys.19, E1197-e1209 (2016).
Vallejo, R. et al. Pulsed radiofrequency modulates pain regulatory gene expression along the nociceptive pathway. Pain Phys.. 16, E601–613 (2013).
Google Scholar
Moffett, J., Fray, L. M. & Kubat, N. J. Activation of endogenous opioid gene expression in human keratinocytes and fibroblasts by pulsed radiofrequency energy fields. J. Pain Res.5, 347–357. (2012).
Google Scholar
Hagiwara, S., Iwasaka, H., Takeshima, N. & Noguchi, T. Mechanisms of analgesic action of pulsed radiofrequency on adjuvant-induced pain in the rat: Roles of descending adrenergic and serotonergic systems. Eur. J. Pain. 13, 249–252. (2009).
Google Scholar
Baron, R. & Saguer, M. Postherpetic neuralgia. Are C-nociceptors involved in signalling and maintenance of tactile allodynia? Brain J. Neurol.116 (Pt 6), 1477–1496. (1993).
Google Scholar
Hashizume, K. [Herpes zoster and post-herpetic neuralgia]. Nihon Rinsho Japanese J. Clin. Med.59, 1738–1742 (2001).
Google Scholar
Zhou, M. et al. Comparison of clinical outcomes associated with spinal cord stimulation (SCS) or conventional medical management (CMM) for chronic pain: A systematic review and meta-analysis. Eur. Spine J. Off. Publ. Eur. Spine Soc. Eur. Spinal Deformity Soc. Eur. Sect. Cerv. Spine Res. Soc.32, 2029–2041. (2023).
Google Scholar
Mullins, C. F. et al. Effectiveness of combined dorsal root ganglion and spinal cord stimulation: A retrospective, single-centre case series for chronic focal neuropathic pain. Pain Med.25, 116–124. (2024).
Google Scholar
Ji, M., Yao, P., Han, Z. & Zhu, D. Pulsed radiofrequency combined with methylene blue paravertebral nerve block effectively treats thoracic postherpetic neuralgia. Front. Neurol.13, 811298. (2022).
Google Scholar
Ma, J., Wan, Y., Yang, L., Huang, D. & Zhou, H. Dual-neuromodulation strategy in pain management of herpes zoster ophthalmicus: Retrospective cohort study and literature review. Ann. Med.55, 2288826. (2023).
Google Scholar
Wang, Q. et al. A new dual function dorsal root ganglion stimulation in pain management: A technical note and case report. Therap. Adv. Chronic Dis. 14 (2023).