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Review

Radiofrequency lesioning and chronic spinal pain: A review of current concepts

Pages 1-28 | Published online: 05 Sep 2013

References

  • Alberts WW, Wright EW, Feinstein B, Von Bonin G, Experimental radiofrequency brain lesion size as as function of physical parameters, J Neurosurg 25, 421–3 (1966).
  • Amici C, Rossi A, Santoro MG, Aspirin enhances thermotolerance in human ery-throleukemic cells: an effect associated with the modulation of the heat shock response, Cancer Res 55, 4452–7 (1995).
  • Arendzen JH, Percutaneous thennocoagulation of peripheral nerves, Thesis, Univer-sity of Groningen. Van Denderen Press, The Netherlands (1989).
  • Aronow S, The use of radio-frequency power in making lesions in the brain, J Neuro-surg 17,431–8 (1960).
  • Baumann TK, Burchiel KJ, Ingram SL, Martensom ME, Responses of adult human dorsal root ganglion neurons in culture to capsaicin and low pH, Pain 65, 31–8 (1996).
  • Bevan S, Szolcsanyi J, Sensory neuron-specific actions of capsaicin: mechanisms and applications, Trends Pharmacol Sci 11, 330–3 (1990).
  • Black MM, Chestnut MH, Pleasure IT, Keen JH, Stable clathrin: Uncoating protein (Hsp70) complexes in intact neurons and their axonal transport, J Neurosci 11, 1163–72(1991).
  • Bogduk N, Macintosh J, Marsland A, Technical limitations to the efficacy of radiofre-quency neurotomy for spinal pain, Neurosurgery 20, 529–35 (1987).
  • Brodkey JS, Miyazaki Y, Ervin FR, Mark VH, Reversible heat lesions with radiofre-quency current, J Neurosurg 21, 49–53 (1964).
  • Broggi G, Franzini A, Lasio G, Giorgi C, Servello D, Long-term results of percutaneous retrogasserian thermorhizotmy for 'essentair trigeminal neuralgia: considerations in 1000 consecutive patients, Neurosurgery 26, 783–6 (1990).
  • Burchiel K, Effects of electrical and mechanical stimulation on two foci of spontaneous activity which develop in primary afferent neurons after peripheral axotomy, Pain 18, 249–65 (1984).
  • Caterina MJ, Schumacher MA, Tominaga M, Rosen TA, Levine JD, Julius D, The capsaicin receptor: a heat-activated ion channel in the pain pathway, Nature 389, 816–24 (1997).
  • Caterina MJ, Rosen TA, Tominaga M, Brake AJ, Julius D, A capsaicin-receptor homologue with a high threshold for noxious heat, Nature 398, 436–41 (1999).
  • Cesare P, McNaughton P, A novel heat-activated current in nociceptive neurons and its sensitization by bradykinin, Proc Natl Acad Sci USA 93, 15435–9 (1996).
  • Chirico WJ, Waters MG, Blobel G, Heat shock related proteins stimulate protein translocation into microsomes, Nature 332, 805–10 (1988).
  • Cobb CA, Fung D, Quantitative analysis of lesion parameters in radiofrequency trigeminal rhizotomy, J Neurosurg 58, 388–91(1983).
  • Cosman ER, Nashold BS, Bedenbaugh P, Stereotactic radiofrequency making, Appl Neurophysio146, 160–6 (1983).
  • Cosman ER, Nashold BS, Ovelman-Levitt J, Theoretical aspects of radiofrequency lesions in the dorsal root entry zone, Neurosurgery 15, 945–50 (1984).
  • Cosman ER, Rittman WJ, Nashold BS, Makachinas TT, Radiofrequency lesion gener-ation and its effects on tissue impedance, Appl Neurophysiol 51, 230–42 (1988).
  • Craig EA, Essential roles of 70 kda heat inducible proteins, Bioessays 11, 48–52 (1989).
  • De Salles AA, Brekhus SD, De Souza EC, Behnke EJ, Farahani K, Anzai Y, Lufkin R, Early postoperative appearance of radiofrequency lesion on magnetic resonance imag-ing, Neurosurgery 36, 932–6 (1995).
  • Deshaies RJ, Kock BD, Werner-WashburneM, Craig EA, Scheckman R, A subfamily of stress proteins facilitates translocation of secretory and mitochondrial precursor polypeptides, Nature 332, 800–5 (1988).
  • Dynlacht JR, Hyun WC, Dewey WC, Changes in intracellular free calcium curing hyperthermia: effects of local anesthetics and induction of thermotolerance, Cytometry 14, 223–9 (1993).
  • Eliasson SG, Monafo WW, Meyr D, Potassium ion channel blockade restores conduc-tion in heat-injured nerve and spinal nerve roots, Exp Neurol 93, 128–37 (1986).
  • Eliasson SG, Monafo WW, Nussbaum G, Olsen L, Differential effects of in vitro heating on rat sciatic nerve branches and spinal nerve roots, Exp Neurol 93, 57–66 (1986).
  • Field SB, Morris CC, The relationship between heating time and temperature: its relevance to clinical hyperthermia, Radiother Oncol 1, 179–86 (1983).
  • Frigyesi TL, Siegfried J, Broggi G, The selective vulnerability of evoked potentials in the trigeminal sensory root to graded thermocoagulation,Exp Neurol 49, 11–21(1975).
  • Gerner EW, Thermal dose and time-temperature factors for biological responses to heat shock, Int J Hyperthennia 3, 319–28 (1987).
  • Gerweck LE, Nygaard TG, Burlett M, Response of cells to hyperthermia under acute and chronic hypoxic conditions, Cancer Res 39, 966–72 (1979).
  • Geurts JW, Wijk van RM, Groen JG, Stolker RJ, Efficacy of radiofrequencyprocedures for the treatment of spinal pain: a systematic review of randomized clinical trials, Reg Anesth Pain Med 26, 394–400 (2001).
  • Hahn GM, Hyperthennia and Cancer. Plenum Press, New York (1982).
  • Hamann W, Hall S, Acute effect and recovery of primary afferent nerve fibres after graded radiofrequency lesions in anaesthetized rats, Br J Anaesth 68, 443 (1992) ( letter).
  • Haynsworth RF, Noe CE, Percutaneous lumbar sympathectomy: a comparison of radiofrequency denervation versus phenol neurolysis, Anesthesiology 74, 459–63 (1991).
  • Health Council of the Netherlands, Radiofrequency Radiation Committee, Measuring and calculating EM fields, in: Radiofrequency electromagnetic fields (300 Hz-300 GHz), pp. 125–50. Health Council of the Netherlands, Rijswijk (1997) ( publica-tion no. 1997/01).
  • Heilbrunn LV, An outline of general phyiology, p. 818. W.B. Saunders, Philadelphia (1952).
  • Henle KJ, Dethlefsen LA, Heat fractionation and thermotolerance: a review, Cancer Res 38, 1843–51 (1978).
  • Henle KJ, Dethlefsen LA, Time-temperature relationships for heat-induced killing of mammalian cells, Ann NY Acad Sci 335, 234–53 (1980).
  • Hoogeveen JF, Troost D, WondergemJ, Kracht AH van der, Haveman J, Hyperthermic injury versus crush injury in the rat sciatic nerve: a comparative functional, histopatho-logical and morphometrical study, J Neurol Sci 108, 55–64 (1992).
  • Hoogeveen JF, Troost D, Kracht AH van der, Wondergem J, Haveman J, Gonzalez Gonzalez D, Ultrastructural changes in the rat sciatic nerve after local hyperthermia, Int J Hyperthermia 9, 723–30 (1993).
  • Houpt JC, Conner ES, McFarland EW, Experimental study of temperature distributions and thermal transport during radiofrequency current therapy of the intervertebral disc, Spine 21, 1808–13 (1996).
  • Hunsperger RW, Wyss OAM, Quantitative Ausschaltung von Nervengewebe durch Hochfrequenz Koagulation, Hely Physiol Acta 11, 283–304 (1953).
  • Jorritsma JBM, Konings AWT, The occurance of DNA strand breaks after hyperthermic treatment of mammalian cells with and without radiation, Radiation Res 98, 198–208 (1984).
  • Kanpolat Y, Onol B, Experimental percutaneous approach to the trigeminal ganglion in dogs with histopathological evaluation of radiofrequency lesions, Acta Neurochir 30, 363–6 (1980).
  • Kim JH, Johnson JL, The effects of hyperthermia on fast axoplasmic transport in rat sensory fibers, Brain Res 237, 215–21 (1982).
  • Kirschner M, Zur Elektrochirurgie,Arch Klin Chir 161, 761–6 (1931).
  • Kleef M van, Spaans F, Dingemans W, Barendse GA, Floor E, Sluijter ME, Effects and side effects of a percutaneous thermal lesion of the dorsal root ganglion in patients with cervical pain syndrome, Pain 52, 49–53 (1993).
  • Kleef M van, Barendse GA, Dingemans WA, Wingen C, Lousberg R, Lange de S, Sluijter ME, Effects of producing a radiofrequency lesion adjacent to the dorsal root ganglion in patients with thoracic segmental pain, Clin J Pain 11, 325–32 (1995).
  • Kleef M van, Radiofrequency lesions of the dorsal root ganglion in the treatment of spinal pain, Thesis, University of Maastricht, The Netherlands, Datawyse/University Press (1996).
  • Kleef M van, Liem L, Lousberg R, Barendse GA, Kessels F, Sluijter ME, Radiofre-quency lesion adjacent to the dorsal root ganglion for cervicobrachial pain: a prospective double blind randomized study, Neurosurgery 38, 1127–31 (1996).
  • Kleef M van, Barendse GA, Kessels F, Voets HM, Weber WE, Lange S de, Randomized trial of radiofrequency lumbar facet denervation for chronic low back pain, Spine 24, 1937–42 (1999).
  • Klumpp D, Zimmermann M, Irreversible differentialblock of A- and C- fibres following local nerve heating in the cat, J Physiol 298, 471–82 (1980).
  • Kok LP, Boon ME, Microwave Cookbook for Microscopists: Art and science of visualization, pp. 432–3. Coulomb Press Leyden, London (1992).
  • Koning HM, Koster HG, Niemeijer RP, Ischaemic spinal cord lesion following percu-taneous radiofrequency spinal rhizotomy, Pain 45, 161–6 (1991).
  • Lahuerta J, Bowsher D, Campbell J, Lipton S, Clinical and instrumental evaluation of sensory function before and after percutaneous naterolateral cordotomy at cervical level in man, Pain 42, 23–30 (1990).
  • Letcher FS, Goldring S, The effect of radiofrequency current and heat on peripheral nerve action potential in the cat, J Neurosurg 29, 42–7 (1968).
  • Li GC, Hahn GM, Ethanol-induced tolerance to heat and to adriamycin, Nature 274, 699–701 (1978).
  • Lord SM, Barnsley L, Wallis BJ, McDonald GJ, Bogduk N, Percutaneous radio-frequency neurotomy for chronic cervical zygapophyseal-joint pain, New Engl J Med 335, 1721–6 (1996).
  • Manzerra P, Brown IR, Expression of heat shock genes (hsp70) in the rabbit spinal cord: localization of constitutive and hyperthermia-inducibb mRNA species, J Neurosci Res 31, 606–15 (1992).
  • Moringlane JR, Koch R, Schafer H, Ostertag Ch B, Experimental radiofrequency (RF) coagulation with computer-based on line monitoring of temperature and power, Acta Neurochir (Men) 96, 126–31(1989).
  • Mundinger F, Riechert T, Gabriel E, Untersuchungen zu den physikalischen und tech-nischen Voraussetzungen einer dosierten Hochfrequenzkoagulatiai bei stereotaktis-chen Hirnoperationen, Zbl Chir 19, 1051–63 (1960).
  • Munglani R, The longer term effect of pulsed radiofrequency for neuropathic pain, Pain 80, 437–9 (1999).
  • Nagy I, Rang H, Noxious heat activates all capsaicin-sensitive and also a sub-population of capsaicin-insensitive dorsal root ganglion neurons, Neuroscience 88, 995–7 (1999).
  • Nash TP, Percutaneous radiofrequency lesioning of dorsal root ganglia for intractable pain, Pain 24, 67–73 (1986).
  • Nathan PW, Sears TA, Some factors concerned in differential nerve blocks by local anesthetics, J Physiol157, 565–80 (1961).
  • Niv D, Chayen MS, Reduction of localized cancer pain by percutaneous dorsal root ganglia lesions, Pain 5, 229–34 (1992).
  • Organ LW, Electrophysiologic principles of radiofrequency lesion making, Appl Neu-rophyiol 39, 69–76 (1976).
  • Pagura JR, Percutaneous radiofrequency spinal rhizotomy, Appl Neurophysiol 46, 138–46 (1983).
  • Rappaport ZH, Devor M, Trigeminal neuralgia: the role of self-sustaining discharge in the trigeminal ganglion, Pain 56, 127–38 (1994).
  • Ramer MS, French GD, Bisby MA, Wallerian degeneration is required for both neuropathic pain and sympathetic sprouting into the DRG, Pain 72, 71–8 (1997).
  • Reichling DB, Levine JD, Heat transduction in rat sensory neurons by calcium-dependent activation of a cation channel, Proc Natl Acad Sci USA 94, 7006–11 (1997).
  • Sandkuhler J, Low-frequency stimulation of afferent A8-fibers induces long-term depression at primary afferent synapses with sub stantia gelatinosa neurons in the rat, J Neurosci 17, 6483–91 (1997).
  • Slappendel R, Crul BJ, Braak GJ, Geurts JW, Booij LH, Voerman VF, De Boo Th, The efficacy of radiofrequency lesioning of the cervical spinal dorsal root ganglion in a double blinded randomized study: no difference between 40°C and 67°C treatments, Pain 73, 159–64 (1997).
  • Sluijter ME, Koetsveld-Baart CC, Interruption of pain pathways in the treatment of the cervical syndrome, Anaesthesia 35, 302–7 (1980).
  • Sluijter ME, Mehta M, Treatment of chronic back and neck pain by percutaneous thermal lesions, in: Persistent Pain Modern Methods of Treatment, Vol. 3, Lipton S (Ed.), pp. 141–79. Academic Press, London (1981).
  • Sluijter ME, Cosman ER, Rittman III WP, Kleef M van, The effects of pulsed radiofrequency fields applied to the dorsal root ganglion - a preliminary report, Pain Clin 11, 109–17 (1998).
  • Smith HP, McWorther JM, Challa VR, Radiofrequency neurolysis in a clinical model, J Neurosurg 55, 246–53 (1981).
  • Stolker RJ, Vervest AC, Pain management by radiofrequency procedures in the cervical and thoracic spine: a clinical and anatomical study, Thesis. OMI Offset Press, Utrecht, The Netherlands (1994).
  • Stolker RJ, Vervest AC, Groen GJ, Electrode positioning in thoracic percutaneous partial rhizotomy, an anatomical study, Pain 57, 241-51 (1994).
  • Stolker RJ, Vervest AC, Groen GJ, The management of chronic spinal pain by blockades: a review, Pain 58, 1–20 (1994).
  • Stolker RJ, Groen GJ, Matthijssen MA, Hofstee-Hooftman TWA, Van Wolferen WJ, Teepen JL, Histopathological analysis of percutaneous partial radiofrequency rhizo-tomy: a first report in humans, in: Abstract book 8th World Congress on Pain, p.436. IASP Press, Seattle (1996).
  • Sweet WH, Wepsic JG, Controlled thermocoagulation of trigeminal ganglion and rootlets for differential destruction of pain fibers, J Neurosurg 39, 143–56 (1974).
  • Sweet WH, Deafferentationpain after posteriorrhizotomy, trauma to a limb, and herpes zos ter, Neurosurgery 15, 928–32 (1984).
  • Szabo T, Olah Z, Iadarola MJ, Blumberg PM, Epidural resiniferatoxin induced pro-longed regional analgesia to pain, Brain Res 840, 92–8 (1999).
  • Taha JM, Tew JM, Comparison of surgical treatments for trigeminal neuralgia: reeval-uation of radiofrequencyrhizotomy, Neurosurgery 38, 865–71(1996).
  • Tominaga M, Caterina MJ, Malmberg BA, Rosen TA, Gilbert H, Skinner K, Rau-mann BE, Basbaum AT, Julius D, The cloned capsaicin receptor integrates multiple pain-producing stimuli, Neuron 21, 531–43 (1998).
  • Uematsu S, Udavarhelyi GB, Benson DW, Siebens AA, Percutaneous radiofrequency rhizotomy, Surg Neurol 2, 319–25 (1974).
  • Uematsu S, Percutaneous electrothermocoagulatiffi of spinal nerve trunk, ganglion and rootlets, in: Current Technique in Operative Neurosurgery, Schmidek HH, Sweet WS (Eds), pp. 469–90. Grune and Stratton, New York (1977).
  • Uney JB, Kew JNC, Staley K, Tyers P, Sofroniew BH, Transfection-mediated expres-sion of human Hsp70i protect rat dorsal root ganglion neurons and glia from severe heat stress, FEBS 334, 313–16 (1993) ( letter).
  • Verdie JC, Lazorthes Y, Thermocoagulationpercutanee analgesique des racines rachi-diennes [in French], Nouv Presse Med 11, 2131–4 (1982).
  • Vervest ACM, Stolker RJ, The treatment of cervical pain syndromes with radiofre-quency procedures, Pain Clinic 4, 103–12 (1991).
  • Vidair CA, Dewey WC, Two distinct modes of hyperthermic cell death, Rad Res 116, 157–71 (1988).
  • Vinas FC, Zamorano L, Dujovny M, Zhao JZ, Hodgkinson D, Ho KL, Ausman JI, In vivo and in vitro study of the lesions produced with a computerized radiofrequency system, Stereotact Funct Neurosurg 58, 121–33 (1992).
  • Vrind HH de, Evaluation of the sensitivity of rat sciatic nerve to hyperthennia either applied alone or with irradiation, Thesis. Addix Press, Amsterdam, The Netherlands (1992).
  • Vrind HH de, Wondergem J, Haveman J, Hyperthermia-induced damage to rat sciatic nerve assessed in vivo with functional methods and with electrophysiology, J Neurosci Meth 45, 165–74(1992).
  • Vujaskovic Z, McChesney Gilette S, Powers BE, LaRue SM, Gilette EL, Borak TB, Scott RJ, Ryan TP, Colacchio TA, Effects of intraoperativehyperthermia on peripheral nerves: neurological and electrophysiological studies, Int J Hyperthermia 10, 41–9 (1994).
  • Vujaskovic Z, McChesney Gilette S, Powers BE, Gilette EL, Scott RJ, Whalen RL, Ryan TP, Colacchio TA, Effects of intraoperativehyperthermia on canine sciatic nerve: histopathologic and morphometric studies, Int J Hyperthermia10, 845–55 (1994).
  • Wall PD, Alterations in the central nervous system after deafferentiation: connectivity control, in: Advances in Pain Research and Therapy, Vol. 5, Bonica JJ, Lindblom U, Iggo A (Eds), pp. 677–90. Raven Press, New York (1983).
  • Wall PD, Devor M, Sensory afferent impulses originate from dorsal root ganglia as well as from the periphery in normal and nerve-injuredrats, Pain 17, 327–39 (1983).
  • Wang Z, Dorp van, Weidema AF YpeyDL, No evidence for effects of mild microwave irradiation on electrophysiologicaland morp hologic al properties of cultured embryonic rat dorsal root ganglion cells, Microwave 3, 198–206 (1990).
  • Wilkinson HA, Radiofrequency percutaneous upper-thoracic sympathectomy, New Engl J Med 311, 34–7 (1984).
  • Wondergem J, Haveman J, Rusman V, Sminia P, Dijk JD van, Effects of local hyperthermia on the motor function of the rat sciatic nerve, Int J Radiat Biol 53, 429–38 (1988).
  • Wolff AP, Groen GJ, Crul BJ, Diagnostic lumbosacral segmental nerve blocks with local anesthetics: A prospective double-blind study on the variability and interpretation of segmental effects, Reg Anesth Pain Med 26, 147–55 (2001).
  • Van Wijk RMAW, Geurts JWM, Buijs EJ, Criteria for electric nerve stimulation and outcome of radiofrequency treatment of the dorsal root ganglion in the lower back for chronic pain, Pain Clinic 12, 281–6 (2000).
  • Van Wijk RM, Geurts JW, Wynne H, Long-lasting analgesic effect of radiofrequency treatment of the lumbosacraal dorsal root ganglion, J Neurosurg 94, 227–31(2000).
  • Yatvin MB, Cramp WA, Role of cellular membranes in hyperthermia: some observa-tions and theories reviewed, Int J Hyperthermia 9, 165–85 (1993).

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