Quantitative Sensory Testing in Spinal Cord Stimulation: A Narrative Review
Publication date
2024-08
Authors
Nurmikko, Turo
Mugan, Dave
Leitner, Angela
Huygen, Frank J.P.M.
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
cc_by
Abstract
Objectives: Quantitative sensory testing (QST) has been used for decades to study sensory abnormalities in multiple conditions in which the somatosensory system is compromised, including pain. It is commonly used in pharmacologic studies on chronic pain but less so in conjunction with neuromodulation. This review aims to assess the utility of QST in spinal cord stimulation (SCS) protocols. Materials and Methods: For this narrative review, we searched PubMed for records of studies in which sensory testing has been performed as part of a clinical study on SCS from 1975 onward until October 2023. We focused on studies in which QST has been used to explore the effect of SCS on neuropathic, neuropathic-like, or mixed pain. Results: Our search identified 22 useful studies, all small and exploratory, using heterogeneous methods. Four studies used the full battery of validated German Research Network on Neuropathic Pain QST. There is emerging evidence that assessment dynamic mechanical allodynia (eight studies), and mechanical/thermal temporal summation of pain (eight studies) may have a role in quantifying the response to various SCS waveforms. There also were sporadic reports of improvement of sensory deficits in a proportion of patients with neuropathic pain that warrant further study. Conclusions: We recommend the adoption of QST into future clinical research protocols, using either the full QST protocol or a less time-demanding short-form QST.
Keywords
neuropathic pain, Neuropathic-like pain, quantitative sensory testing, spinal cord stimulation, Neurology, Clinical Neurology, Anesthesiology and Pain Medicine
Citation
Nurmikko, T, Mugan, D, Leitner, A & Huygen, F J P M 2024, 'Quantitative Sensory Testing in Spinal Cord Stimulation : A Narrative Review', Neuromodulation, vol. 27, no. 6, pp. 1026-1034. https://doi.org/10.1016/j.neurom.2024.03.005