Dermot P Maher1, Yuri Chaves Martins2, Tina Doshi1, Mark Bicket1, Kui Zhang3, George Hanna2, Shihab Ahmed2. 1. Department of Anesthesia and Critical Care Medicine, Johns Hopkins Hospital and Health System, Baltimore, MD, USA. 2. Department of Anesthesia, Critical Care and Pain Medicine, Massachusetts General Hospital, Boston, MA, USA. 3. Department of Mathematical Sciences, Michigan Technological University, Houghton, MI, USA.
Abstract
INTRODUCTION: Spinal cord stimulation (SCS) for the treatment of lower extremity pain is believed to the result of increased activity in the descending inhibitory and decreased activity in the ascending excitatory tracts. Evidence suggests that the analgesia afforded by SCS may be altered using certain neuropathic pain medications that also modulate neurotransmitters in these sensory tracts. We hypothesize that neuropathic pain medications may alter the response to SCS therapy. METHODS: One hundred and fifteen subjects undergoing SCS therapy for lower extremity pain were retrospectively examined. The pharmacologic profile, including stable use of neuropathic and opioid medications, were recorded. Three separate logistic regression models examined the odds ratio of primary outcomes; a successful SCS trial, a 50% decrease in pain or a 50% reduction in opioid use one year after implant. RESULTS: Neither the use of opioids or neuropathic pain medications were associated with changes in the odds of a successful SCS trial or a 50% pain reduction. A higher dose of chronic opioids use prior to a trial was associated with greater odds of having a 50% reduction in opioid use following implant. OR 1.02, 95% CI 1.01-1.02, p-value < 0.01). CONCLUSIONS: The use of neuropathic pain medications did not change the odds of either a successful SCS trial, or of experiencing a 50% reduction in pain at one year. The association between higher opioid doses and greater odds of a 50% reduction in opioid use may be the reflective of SCS's ability to reduce opioid reliance in chronic pain patients.
INTRODUCTION: Spinal cord stimulation (SCS) for the treatment of lower extremity pain is believed to the result of increased activity in the descending inhibitory and decreased activity in the ascending excitatory tracts. Evidence suggests that the analgesia afforded by SCS may be altered using certain neuropathic pain medications that also modulate neurotransmitters in these sensory tracts. We hypothesize that neuropathic pain medications may alter the response to SCS therapy. METHODS: One hundred and fifteen subjects undergoing SCS therapy for lower extremity pain were retrospectively examined. The pharmacologic profile, including stable use of neuropathic and opioid medications, were recorded. Three separate logistic regression models examined the odds ratio of primary outcomes; a successful SCS trial, a 50% decrease in pain or a 50% reduction in opioid use one year after implant. RESULTS: Neither the use of opioids or neuropathic pain medications were associated with changes in the odds of a successful SCS trial or a 50% pain reduction. A higher dose of chronic opioids use prior to a trial was associated with greater odds of having a 50% reduction in opioid use following implant. OR 1.02, 95% CI 1.01-1.02, p-value < 0.01). CONCLUSIONS: The use of neuropathic pain medications did not change the odds of either a successful SCS trial, or of experiencing a 50% reduction in pain at one year. The association between higher opioid doses and greater odds of a 50% reduction in opioid use may be the reflective of SCS's ability to reduce opioid reliance in chronic pain patients.
Authors: Rebecca A Sanders; Susan M Moeschler; Halena M Gazelka; Tim J Lamer; Zhen Wang; Wenchun Qu; Bryan C Hoelzer Journal: Pain Pract Date: 2015-08-27 Impact factor: 3.183
Authors: Cynthia O Townsend; Jennifer L Kerkvliet; Barbara K Bruce; Jeffrey D Rome; Michael W Hooten; Connie A Luedtke; John E Hodgson Journal: Pain Date: 2008-09-19 Impact factor: 6.961
Authors: B A Meyerson; J G Cui; V Yakhnitsa; A Sollevi; M Segerdahl; C O Stiller; W T O'Connor; B Linderoth Journal: Stereotact Funct Neurosurg Date: 1997 Impact factor: 1.875
Authors: Jason W Busse; Hamza Mahmood; Bilal Maqbool; Amna Maqbool; Ali Zahran; Adnan Alwosaibai; Eshaq Alshaqaq; Nav Persaud; Lynn Cooper; Angela Carol; Janice Sumpton; Erin McGinnis; Daniel Rosenbaum; Natalie Lidster; D Norman Buckley Journal: CMAJ Open Date: 2015-07-17
Authors: Timothy R Deer; Nagy Mekhail; David Provenzano; Jason Pope; Elliot Krames; Michael Leong; Robert M Levy; David Abejon; Eric Buchser; Allen Burton; Asokumar Buvanendran; Kenneth Candido; David Caraway; Michael Cousins; Michael DeJongste; Sudhir Diwan; Sam Eldabe; Kliment Gatzinsky; Robert D Foreman; Salim Hayek; Philip Kim; Thomas Kinfe; David Kloth; Krishna Kumar; Syed Rizvi; Shivanand P Lad; Liong Liem; Bengt Linderoth; Sean Mackey; Gladstone McDowell; Porter McRoberts; Lawrence Poree; Joshua Prager; Lou Raso; Richard Rauck; Marc Russo; Brian Simpson; Konstantin Slavin; Peter Staats; Michael Stanton-Hicks; Paul Verrills; Joshua Wellington; Kayode Williams; Richard North Journal: Neuromodulation Date: 2014-08
Authors: Timothy R Deer; Denis G Patterson; Javid Baksh; Jason E Pope; Pankaj Mehta; Adil Raza; Filippo Agnesi; Krishnan V Chakravarthy Journal: Neuromodulation Date: 2020-03-23