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Ablative brain surgery: an overview

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Pages 64-80 | Received 01 Apr 2019, Accepted 05 May 2019, Published online: 20 Sep 2019

References

  • Haar GT, Coussios C. High intensity focused ultrasound: physical principles and devices. Int J Hyperthermia. 2007;23:89–104.
  • Gazelle GS, Goldberg SN, Solbiati L, et al. Tumor ablation with radio-frequency energy. J Radiol. 2000;217:633–646.
  • Elias WJ, Khaled M, Hilliard JD, et al. A magnetic resonance imaging, histological, and dose modeling comparison of focused ultrasound, radiofrequency, and Gamma Knife radiosurgery lesions in swine thalamus. J Neurosurg. 2013;119:307–317.
  • Voges J, Büntjen L, Schmitt F. Radiofrequency-thermoablation: General principle, historical overview and modern applications for epilepsy. Epil Res. 2018;142:113–116.
  • Cosman E, Nashold B, Bedenbaugh P. Stereotactic radiofrequency lesion making. Stereotact Funct Neurosurg. 1983;46:160–166.
  • Cosman E, Cosman E. Radiofrequency lesions. In: Lozano A, Gildenberg P, Tasker R, editors. Textbook of stereotactic and functional neurosurgery. Berlin, Heidelberg: Springer; 2009. p. 1359–1382.
  • Ashraf O, Patel NV, Hanft S, et al. Laser-induced thermal therapy in neuro-oncology: a review. World Neurosurg. 2018;112:166–177.
  • Patel NV, Mian M, Stafford RJ, et al. Laser interstitial thermal therapy technology, physics of magnetic resonance imaging thermometry, and technical considerations for proper catheter placement during magnetic resonance imaging–guided laser interstitial thermal therapy. Neurosurgery. 2016;79:Suppl_1:S8–S16.
  • Karampelas I, Sloan AE. Laser-induced interstitial thermotherapy of gliomas. Prog Neurol Surg. 2018;32:14–26.
  • Ross L, Naduvil AM, Bulacio JC, et al. Stereoelectroencephalography-guided laser ablations in patients with neocortical pharmacoresistant focal epilepsy: concept and operative technique. Oper Neurosurg. 2018;15:656–663.
  • Friedman W, Bova F. Linac radiosurgery. In: Lozano A, Gildenberg P, Tasker R, editors. Textbook of stereotactic and functional neurosurgery. Berlin, Heidelberg: Springer; 2009.
  • De Salles AA, Gorgulho AA, Pereira JL, et al. Intracranial stereotactic radiosurgery: concepts and techniques. Neurosurg Clin N Am. 2013;24:491–498.
  • Luxton G, Petrovich Z, Jozsef G, et al. Stereotactic radiosurgery: principles and comparison of treatment methods. Neurosurgery. 1993;32:241–259.
  • Colen RR, Sahnoune I, Weinberg JS. Neurosurgical applications of high-intensity focused ultrasound with magnetic resonance thermometry. Neurosurg Clin N Am. 2017;28:559–567.
  • Eames MD, Farnum M, Khaled M, et al. Head phantoms for transcranial focused ultrasound. Med Phys. 2015;42:1518–1527.
  • Louis ED, Ferreira JJ. How common is the most common adult movement disorder? Update on the worldwide prevalence of essential tremor. Mov Disord. 2010;25:534–541.
  • Dorsey ER, Elbaz A, Nichols E, et al. Global, regional, and national burden of Parkinson's disease, 1990–2016: a systematic analysis for the global burden of disease study 2016. Lancet Neurol. 2018;17:939–953.
  • Horsley V. The Linacre Lecture on the function of the so-called motor area of the brain: Delivered to the Master and Fellows of St. John's College, Cambridge, May 6th, 1909. Br Med J. 1909;2:121.
  • Bucy PC. Surgical relief of tremor at rest. Ann Surg. 1945;122:933
  • Bucy PC, Keplinger JE, Siqueira EB. Destruction of the “pyramidal tract” in man. J Neurosurg. 1964;21:385–398.
  • Walker AE. Cerebral pedrinculotonig for the relief of involuntary movements: I. Hemiballisnius. Acta Psychiatr Neurol. 1949;24:723–729.
  • Walker AE. Cerebral pedunculotomy for the relief of involuntary movements: II. Parkinsonian tremor. J Nerv Ment Disease. 1952;116:766–775.
  • Spiegel E, Wycis H, Thur C. The stereoencephalotome (model III of our stereotaxic apparatus for operations on the human brain). J Neurosurg. 1951;8:452–453.
  • Abel TJ, Walch T, Howard MA. Russell Meyers (1905-1999): pioneer of functional and ultrasonic neurosurgery. J Neurosurg. 2016;125:1589–1595.
  • Connolly BS, Lang AE. Pharmacological treatment of Parkinson disease: a review. JAMA. 2014;311:1670–1683.
  • Hariz MI, Hariz GM. Therapeutic stimulation versus ablation. Handb Clin Neurol. 2013;116:63–71.
  • Sanger TD, Chen D, Fehlings DL, et al. Definition and classification of hyperkinetic movements in childhood. Mov Disord. 2010;25:1538–1549.
  • Krack P, Vercueil L. Review of the functional surgical treatment of dystonia. Eur J Neurol. 2001;8:389–399.
  • Ondo WG, Desaloms JM, Jankovic J, et al. Pallidotomy for generalized dystonia. Mov Disord. 1998;13:693–698.
  • Lin JJ, Lin SZ, Chang DC. Pallidotomy and generalized dystonia. Mov Disord. 1999;14:1057–1059.
  • Gross RE. What happened to posteroventral pallidotomy for Parkinson’s disease and dystonia? Neurotherapeutics. 2008;5:281–293.
  • Eltahawy HA, Saint-Cyr J, Giladi N, et al. Primary dystonia is more responsive than secondary dystonia to pallidal interventions: outcome after pallidotomy or pallidal deep brain stimulation. Neurosurgery. 2004;54:613–621.
  • Ostrem JL, Starr PA. Treatment of dystonia with deep brain stimulation. Neurotherapeutics. 2008;5:320–330.
  • Ben-Haim S, Flatow V, Cheung T, et al. Deep brain stimulation for status dystonicus: a case series and review of the literature. Stereotact Funct Neurosurg. 2016;94:207–215.
  • Franzini A, Franzini A, Levi V, et al. An unusual surgical indication for cerebral tuberculosis: status dystonicus. Case report. Acta Neurochir. 2018;160:1355–1358.
  • Franzini A, Levi V, Franzini A, et al. Staged pallidotomy: MRI and clinical follow-up in status dystonicus. Br J Neurosurg. 2019;33(2):184–187.
  • Marras CE, Rizzi M, Cantonetti L, et al. Pallidotomy for medically refractory status dystonicus in childhood. Dev Med Child Neurol. 2014;56:649–656.
  • Jankovic J, Cardoso F, Grossman RG, et al. Outcome after stereotactic thalamotomy for parkinsonian, essential, and other types of tremor. Neurosurgery. 1995;37:680–687.
  • Shahzadi S, Tasker R, Lozano A. Thalamotomy for essential and cerebellar tremor. Stereotact Funct Neurosurg. 1995;65:11–17.
  • Nagaseki Y, Shibazaki T, Hirai T, et al. Long-term follow-up results of selective VIM-thalamotomy. J Neurosurg. 1986;65:296–302.
  • Mohadjer M, Goerke H, Milios E, et al. Long-term results of stereotaxy in the treatment of essential tremor. Stereotact Funct Neurosurg. 1990;54:125–129.
  • Fox MW, Ahlskog JE, Kelly PJ. Stereotactic ventrolateralis thalamotomy for medically refractory tremor in post-levodopa era Parkinson's disease patients. J Neurosurg. 1991;75:723–730.
  • Akbostanci MC, Slavin KV, Burchiel KJ. Stereotactic ventral intermedial thalamotomy for the treatment of essential tremor: results of a series of 37 patients. Stereotact Funct Neurosurg. 1999;72:174–177.
  • Dallapiazza RF, Lee DJ, De Vloo P, et al. Outcomes from stereotactic surgery for essential tremor. J Neurol Neurosurg Psychiatry. 2018;90(4):474–482.
  • Okun MS, Stover NP, Subramanian T, et al. Complications of gamma knife surgery for Parkinson disease. Arch Neurol. 2001;58:1995–2002.
  • Ohye C, Higuchi Y, Shibazaki T, et al. Gamma knife thalamotomy for Parkinson disease and essential tremor: a prospective multicenter study. Neurosurgery. 2012;70:526–536.
  • Witjas T, Carron R, Krack P, et al. A prospective single-blind study of Gamma Knife thalamotomy for tremor. Neurology. 2015;85:1562–1568.
  • Lim S-Y, Hodaie M, Fallis M, et al. Gamma knife thalamotomy for disabling tremor: a blinded evaluation. Arch Neurol. 2010;67:584–588.
  • Kondziolka D, Ong JG, Lee JY, et al. Gamma Knife thalamotomy for essential tremor. J Neurosurg. 2008;108:111–117.
  • Niranjan A, Raju SS, Kooshkabadi A, et al. Stereotactic radiosurgery for essential tremor: Retrospective analysis of a 19‐year experience. Mov Disord. 2017;32:769–777.
  • Young RF, Shumway-Cook A, Vermeulen SS, et al. Gamma knife radiosurgery as a lesioning technique in movement disorder surgery. J Neurosurg. 1998;89:183–193.
  • Elias WJ, Lipsman N, Ondo WG, et al. A randomized trial of focused ultrasound thalamotomy for essential tremor. N Engl J Med. 2016;375:730–739.
  • Chang JW, Park CK, Lipsman N, et al. A prospective trial of magnetic resonance–guided focused ultrasound thalamotomy for essential tremor: Results at the 2‐year follow‐up. Ann Neurol. 2018;83:107–114.
  • Bond AE, Shah BB, Huss DS, et al. Safety and efficacy of focused ultrasound thalamotomy for patients with medication-refractory, tremor-dominant Parkinson disease: a randomized clinical trial. JAMA Neurol. 2017;74:1412–1418.
  • Alkhani A, Lozano AM. Pallidotomy for Parkinson disease: a review of contemporary literature. J Neurosurg. 2001;94:43–49.
  • de Bie RM, de Haan RJ, Nijssen PC, et al. Unilateral pallidotomy in Parkinson's disease: a randomised, single-blind, multicentre trial. Lancet. 1999;354:1665–1669.
  • Laitinen LV, Bergenheim AT, Hariz MI. Leksell's posteroventral pallidotomy in the treatment of Parkinson's disease. J Neurosurg. 1992;76:53–61.
  • Dogali M, Fazzini E, Kolodny E, et al. Stereotactic ventral pallidotomy for Parkinson's disease. Neurology. 1995;45:753–761.
  • Vitek JL, Bakay RA, Freeman A, et al. Randomized trial of pallidotomy versus medical therapy for Parkinson's disease. Ann Neurol. 2003;53:558–569.
  • Coban A, Hanagasi H, Karamursel S, et al. Comparison of unilateral pallidotomy and subthalamotomy findings in advanced idiopathic Parkinson's disease. Br J Neurosurg. 2009;23:23–29.
  • Na YC, Chang WS, Jung HH, et al. Unilateral magnetic resonance–guided focused ultrasound pallidotomy for Parkinson disease. Neurology. 2015;85:549–551.
  • Jung NY, Park CK, Kim M, et al. The efficacy and limits of magnetic resonance–guided focused ultrasound pallidotomy for Parkinson’s disease: a Phase I clinical trial. J Neurosurg. 2018 [Aug 1];[1–9]. doi:10.3171/2018.2.JNS172514.
  • Gross RE, Stern MA. Magnetic resonance–guided stereotactic laser pallidotomy for dystonia. Mov Disord. 2018;33:1502–1503.
  • Mitchell I, Clarke C, Boyce S, et al. Neural mechanisms underlying parkinsonian symptoms based upon regional uptake of 2-deoxyglucose in monkeys exposed to 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine. Neuroscience. 1989;32:213–226.
  • Alvarez L, Macias R, Lopez G, et al. Bilateral subthalamotomy in Parkinson's disease: initial and long-term response. Brain. 2005;128:570–583.
  • Merello M, Tenca E, Lloret SP, et al. Prospective randomized 1-year follow-up comparison of bilateral subthalamotomy versus bilateral subthalamic stimulation and the combination of both in Parkinson's disease patients: a pilot study. Br J Neurosurg. 2008;22:415–422.
  • Martínez-Fernández R, Rodríguez-Rojas R, del Álamo M, et al. Focused ultrasound subthalamotomy in patients with asymmetric Parkinson's disease: a pilot study. Lancet Neurol. 2018;17:54–63.
  • Patel SR, Aronson JP, Sheth SA, et al. Lesion procedures in psychiatric neurosurgery. World Neurosurg. 2013;80:S31. e9–S31. e16.
  • Coenen VA, Honey CR. Ablative procedures for depression. In: Lozano AM, Gildenberg PL, Tasker RR, editors. Textbook of stereotactic and functional neurosurgery. Berlin, Heidelberg: Springer; 2009.
  • Volpini M, Giacobbe P, Cosgrove GR, et al. The history and future of ablative neurosurgery for major depressive disorder. Stereotact Funct Neurosurg. 2017;95:216–228.
  • Brown LT, Mikell CB, Youngerman BE, et al. Dorsal anterior cingulotomy and anterior capsulotomy for severe, refractory obsessive-compulsive disorder: a systematic review of observational studies. J Neurosurg. 2016;124:77–89.
  • Association AP. Diagnostic and statistical manual of mental disorders (DSM-5®). Arlington (VA): American Psychiatric Pub; 2013.
  • Cosgrove GR, Rauch SL. Stereotactic cingulotomy. Neurosurg Clin N Am. 2003;14:225–235.
  • Lopes AC, Greenberg BD, Canteras MM, et al. Gamma ventral capsulotomy for obsessive-compulsive disorder: a randomized clinical trial. JAMA Psychiatry. 2014;71:1066–1076.
  • Gupta A, Shepard MJ, Xu Z, et al. An international radiosurgery research foundation multicenter retrospective study of gamma ventral capsulotomy for obsessive compulsive disorder. Neurosurgery. 2018;
  • Jung H, Kim S, Roh D, et al. Bilateral thermal capsulotomy with MR-guided focused ultrasound for patients with treatment-refractory obsessive-compulsive disorder: a proof-of-concept study. Mol Psychiatry. 2015;20:1205.
  • Kim M, Kim C-H, Jung HH, et al. Treatment of major depressive disorder via magnetic resonance–guided focused ultrasound surgery. Biol Psychiatry. 2018;83:e17–e8.
  • Knight G. Stereotactic tractotomy in the surgical treatment of mental illness. J Neurol, Neurosurg Psychiatry. 1965;28:304.
  • Knight G. Further observations from an experience of 660 cases of stereotactic tractotomy. Postgrad Med J. 1973;49:845–854.
  • Göktepe E, Young LB, Bridges P. A further review of the results of stereotactic subcaudate tractotomy. Br J Psychiatry. 1975;126:270–280.
  • Kim M-C, Lee T-K, Choi C-R. Review of long-term results of stereotactic psychosurgery. Neurol Med Chir. 2002;42:365–371.
  • Woerdeman P, Willems P, Noordmans H, et al. Frameless stereotactic subcaudate tractotomy for intractable obsessive–compulsive disorder. Acta Neurochir. 2006;148:633–637.
  • Le Beau J. Anterior cingulectomy in man. J Neurosurg. 1954;11:268–276.
  • Kelly D, Richardson A, Mitchell-Heggs N, et al. Stereotactic limbic leucotomy: a preliminary report on forty patients. Br J Psychiatry. 1973;123:141–148.
  • Montoya A, Weiss AP, Price BH, et al. Magnetic resonance imaging-guided stereotactic limbic leukotomy for treatment of intractable psychiatric disease. Neurosurgery. 2002;50:1043–1052.
  • Mitchell-Heggs N, Kelly D, Richardson A. Stereotactic limbic leucotomy- a follow-up at 16 months. Br J Psychiatry. 1976;128:226–240.
  • Zou Z, Wang H, d'Oleire Uquillas F, et al. Definition of substance and non-substance addiction. Adv Exp Med Biol. 2017;1010:21–41.
  • Lu L, Wang X, Kosten TR. Stereotactic neurosurgical treatment of drug addiction. The Am J Drug Alcohol Abuse. 2009;35:391–393.
  • Orellana C. Controversy over brain surgery for heroin addiction in Russia. Lancet Neurol. 2002;1:333
  • Gao G, Wang X, He S, et al. Clinical study for alleviating opiate drug psychological dependence by a method of ablating the nucleus accumbens with stereotactic surgery. Stereotact Funct Neurosurg. 2003;81:96–104.
  • Lee DJ, Elias GJ, Lozano AM. Neuromodulation for the treatment of eating disorders and obesity. Ther Adv Psychopharmacol. 2018;8:73–92.
  • Kelly D, Mitchell-Heggs N. Stereotactic limbic leucotomy- a follow-up study of thirty patients. Postgrad Med J. 1973;49:865–882.
  • Zamboni R, Larach V, Poblete M, et al. Dorsomedial thalamotomy as a treatment for terminal anorexia: a report of two cases. Acta Neurochir Suppl (Wien). 1993;58:34–35.
  • Barbier J, Gabriëls L, Van Laere K, et al. Successful anterior capsulotomy in comorbid anorexia nervosa and obsessive-compulsive disorder: case report. Neurosurgery. 2011;69:E745–E751.
  • Liu W, Li D, Sun F, et al. Long-term follow-up study of MRI-guided bilateral anterior capsulotomy in patients with refractory anorexia nervosa. Neurosurgery. 2018;83:86–92.
  • Wang J, Chang C, Geng N, et al. Treatment of intractable anorexia nervosa with inactivation of the nucleus accumbens using stereotactic surgery. Stereotact Funct Neurosurg. 2013;91:364–372.
  • Quaade F, Vaernet K, Larsson S. Stereotaxic stimulation and electrocoagulation of the lateral hypothalamus in obese humans. Acta Neurochir. 1974;30:111–117.
  • Sano K, Mayanagi Y. Posteromedial hypothalamotomy in the treatment of violent, aggressive behaviour. Acta Neurochir Suppl (Wien). 1988;44:145–151.
  • Broggi G, Franzini A. Treatment of aggressive behavior. In: Lozano AM, Gildenberg PL, Tasker RR, editors. Textbook of stereotactic and functional neurosurgery. Berlin, Heidelberg: Springer; 2009.
  • Ramamurthi B. Stereotactic operation in behaviour disorders. Amygdalotomy and hypothalamotomy. Acta Neurochir Suppl (Wien). 1988;44:152–157.
  • Jiménez F, Soto JE, Velasco F, et al. Bilateral cingulotomy and anterior capsulotomy applied to patients with aggressiveness. Stereotact Funct Neurosurg. 2012;90:151–160.
  • Schrock LE, Mink JW, Woods DW, et al. Tourette syndrome deep brain stimulation: a review and updated recommendations. Mov Disord. 2015;30:448–471.
  • Baker E. Gilles de la Tourette syndrome treated by bimedial frontal leucotomy. Can Med Assoc J. 1962;86:746.
  • Cooper IS. Dystonia reversal by operation on basal ganglia. Arch Neurol. 1962;7:132–145.
  • Hassler R, Dieckmann G. Stereotaxic treatment of tics and inarticulate cries or coprolalia considered as motor obsessional phenomena in Gilles de la Tourette's disease. Rev Neurol (Paris). 1970;123:89.
  • Temel Y, Visser-Vandewalle V. Surgery in Tourette syndrome. Mov Disord. 2004;19:3–14.
  • Porta M, Saleh C, Zekaj E, et al. Why so many deep brain stimulation targets in Tourette’s syndrome? Toward a broadening of the definition of the syndrome. J Neural Transm. 2016;123:785–790.
  • Treede R-D, Rief W, Barke A, et al. A classification of chronic pain for ICD-11. Pain. 2015;156:1003
  • Tasker R. Stereotactic medial thalamotomy for chronic pain: is it an effective procedure? In: Burchiel K, editor. Surgical management of pain. New York (NY): Thieme Medical Publishers Inc.; 2002. p. 805–811.
  • Jeanmonod D, Werner B, Morel A, et al. Transcranial magnetic resonance imaging–guided focused ultrasound: noninvasive central lateral thalamotomy for chronic neuropathic pain. FOC. 2012;32:E1.
  • Laitinen LV. Mesencephalotomy and thalamotomy for chronic pain. In: Lunsford LD, editor. Modern stereotactic neurosurgery. Topics in neurological surgery, vol 1. Boston (MA): Springer; 1988.
  • Hariz MI, Bergenheim AT. Thalamic stereotaxis for chronic pain: ablative lesion or stimulation? Stereotact Funct Neurosurg. 1995;64:47–55.
  • Hitchcock ER, Teixeira MJ. A comparison of results from center-median and basal thalamotomies for pain. Surg Neurol. 1981;15:341–351.
  • Jeanmonod D, Morel A. The central lateral thalamotomy for neuropathic pain. In: Lozano AM, Gildenberg PL, Tasker RR, editors. Textbook of stereotactic and functional neurosurgery. Berlin, Heidelberg: Springer; 2009.
  • Tasker RR. Thalamotomy. Neurosurg Clin N Am. 1990;1:841–864.
  • Menon JP. Intracranial ablative procedures for the treatment of chronic pain. Neurosurg Clin N Am. 2014;25:663–670.
  • Urgosik D, Liscak R. Medial Gamma Knife thalamotomy for intractable pain. J Neurosurg. 2018;129:72–76.
  • Jeanmonod D, Magnin M, Morel A, et al. Surgical control of the human thalamocortical dysrhythmia: I. Central lateral thalamotomy in neurogenic pain. THL. 2001;1:(1):71–9.
  • Yen C-P, Kuan C-Y, Sheehan J, et al. Impact of bilateral anterior cingulotomy on neurocognitive function in patients with intractable pain. J Clin Neurosci. 2009;16:214–219.
  • Abdelaziz OS, Cosgrove GR. Stereotactic cingulotomy for the treatment of chronic pain. In: Burchiel KJ, editor. Surgical management of pain. New York (NY): Thieme; 2002. p. 812–820.
  • Foltz EL, White LE. Pain “relief” by frontal cingulumotomy. J Neurosurg. 1962;19:89–100.
  • Steel TR, Burchiel KJ. Ablative neurosurgical techniques in the treatment of chronic pain: overview. In: Burchiel KJ, editor. Surgical management of pain. New York (NY): Thieme Medical Publishers Inc.; 2002. p. 633–646.
  • Patel NV, Agarwal N, Mammis A, et al. Frameless stereotactic magnetic resonance imaging-guided laser interstitial thermal therapy to perform bilateral anterior cingulotomy for intractable pain: feasibility, technical aspects, and initial experience in 3 patients. Oper Neurosurg. 2015;11:17–25.
  • Gildenberg PL. Mesencephalotomy. In: Burchiel KJ, editor. Surgical management of pain. New York (NY): Thieme; 2002. p. 786–794.
  • Gybels JM, Sweet WH. Neurosurgical treatment of persistent pain. Physiological and pathological mechanisms of human pain. Pain Headache. 1989;11:1–402.
  • Shieff C, Nashold BS. Stereotactic mesencephalotomy. Neurosurg Clin N Am. 1990;1:825–839.
  • Nashold B, Jr Wilson WS, Neurosurgery F. Central pain. Observations in man with chronic implanted electrodes in the midbrain tegmentum. Stereotact Funct Neurosurg. 1966;27:30–44.
  • Amano K, Kawamura H, Tanikawa T, et al. Long-term follow-up study of rostral mesencephalic reticulotomy for pain relief–report of 34 cases. Stereotact Funct Neurosurg. 1986;49:105–111.
  • Strauss I, Berger A, Moshe SB, et al. Double anterior stereotactic cingulotomy for intractable oncological pain. Stereotact Funct Neurosurg. 2017;95:400–408.
  • Kim D-r, Lee S-w, Son B-c. Stereotactic mesencephalotomy for cancer-related facial pain. J Korean Neurosurg Soc. 2014;56:71.
  • Fountas KN, Lane FJ, Jenkins PD, et al. MR-based stereotactic mesencephalic tractotomy. Stereotact Funct Neurosurg. 2004;82:230–234.
  • Kwan P, Arzimanoglou A, Berg AT, et al. Definition of drug resistant epilepsy: consensus proposal by the ad hoc Task Force of the ILAE Commission on Therapeutic Strategies. Epilepsia. 2010;51:1069–1077.
  • McGonigal A, Sahgal A, De Salles A, et al. Radiosurgery for epilepsy: Systematic review and International Stereotactic Radiosurgery Society (ISRS) practice guideline. Epil Res. 2017;137:123–131.
  • Quigg M, Harden C. Minimally invasive techniques for epilepsy surgery: stereotactic radiosurgery and other technologies: a review. J Neurosurg. 2014;121:232–240.
  • Monteith S, Snell J, Eames M, et al. Transcranial magnetic resonance–guided focused ultrasound for temporal lobe epilepsy: a laboratory feasibility study. J Neurosurg. 2016;125:1557–1564.
  • Kitchen N. Experimental and clinical studies on the putative therapeutic efficacy of cerebral irradiation (radiotherapy) in epilepsy. Epil Res. 1995;20:1–10.
  • Leiphart JW, Young RM, Shields DC. A historical perspective: stereotactic lesions for the treatment of epilepsy. Seizure. 2014;23:1–5.
  • Hullay J, Gombi R, Velok G. Effects of stereotactic lesions in intractable epilepsy. Stereotactic treatment of epilepsy. Acta Neurochir. 1976;23:Suppl:205–209.
  • Tovar-Spinoza Z, Ziechmann R, Zyck S. Single and staged laser interstitial thermal therapy ablation for cortical tubers causing refractory epilepsy in pediatric patients. Neurosurg Focus. 2018;45:E9
  • Hoppe C, Witt J-A, Helmstaedter C, et al. Laser interstitial thermotherapy (LiTT) in epilepsy surgery. Seizure. 2017;48:45–52.
  • Wiebe S, Blume WT, Girvin JP, et al. A randomized, controlled trial of surgery for temporal-lobe epilepsy. N Engl J Med. 2001;345:311–318.
  • Prince E, Hakimian S, Ko AL, et al. Laser interstitial thermal therapy for epilepsy. Curr Neurol Neurosci Rep. 2017;17:63
  • Barbaro NM, Quigg M, Broshek DK, et al. A multicenter, prospective pilot study of gamma knife radiosurgery for mesial temporal lobe epilepsy: seizure response, adverse events, and verbal memory. Ann Neurol. 2009;65:167–175.
  • Youngerman BE, Oh JY, Anbarasan D, et al. Laser ablation is effective for temporal lobe epilepsy with and without mesial temporal sclerosis if hippocampal seizure onsets are localized by stereoelectroencephalography. Epilepsia. 2018;59:595–606.
  • Kang JY, Wu C, Tracy J, et al. Laser interstitial thermal therapy for medically intractable mesial temporal lobe epilepsy. Epilepsia. 2016;57:325–334.
  • Drane DL, Loring DW, Voets NL, et al. Better object recognition and naming outcome with MRI‐guided stereotactic laser amygdalohippocampotomy for temporal lobe epilepsy. Epilepsia. 2015;56:101–113.
  • Vakharia VN, Sparks R, Li K, et al. Automated trajectory planning for laser interstitial thermal therapy in mesial temporal lobe epilepsy. Epilepsia. 2018;59:814–824.
  • Régis J, Scavarda D, Tamura M, et al. Epilepsy related to hypothalamic hamartomas: surgical management with special reference to gamma knife surgery. Childs Nerv Syst. 2006;22:881–895.
  • Kameyama S, Shirozu H, Masuda H, et al. MRI-guided stereotactic radiofrequency thermocoagulation for 100 hypothalamic hamartomas. J Neurosurg. 2016;124:1503–1512.
  • Mathieu D, Deacon C, Pinard C-A, et al. Gamma Knife surgery for hypothalamic hamartomas causing refractory epilepsy: preliminary results from a prospective observational study. J Neurosurg. 2010;113:215–221.
  • Curry DJ, Raskin J, Ali I, et al. MR-guided laser ablation for the treatment of hypothalamic hamartomas. Epil Res. 2018;142:131–134.
  • Shimamoto S, Wu C, Sperling MR. Laser interstitial thermal therapy in drug-resistant epilepsy. Curr Opin Neurol. 2019;32:237–245.
  • McCracken DJ, Willie JT, Fernald BA, et al. Magnetic resonance thermometry-guided stereotactic laser ablation of cavernous malformations in drug-resistant epilepsy: imaging and clinical results. Oper Neurosurg. 2016;12:39–48.
  • Bredlau A-L, McCrackin M, Motamarry A, et al. Thermal therapy approaches for treatment of brain tumors in animals and humans. Crit Rev Biomed Eng. 2016;44:443–457.
  • Maroon JC, Onik G, Quigley MR, et al. Cryosurgery re-visited for the removal and destruction of brain, spinal and orbital tumours. Neurol Res. 1992;14:294–302.
  • Winter A, Laing J, Paglione R, et al. Microwave hyperthermia for brain tumors. Neurosurgery. 1985;17:387–399.
  • Prada F, Kalani MYS, Yagmurlu K, et al. Applications of focused ultrasound in cerebrovascular diseases and brain tumors. Neurotherapeutics. 2018;16:1–21.
  • Anzai Y, Lufkin R, DeSalles A, et al. Preliminary experience with MR-guided thermal ablation of brain tumors. AJNR Am J Neuroradiol. 1995;16:39–48.
  • Missios S, Bekelis K, Barnett GH. Renaissance of laser interstitial thermal ablation. FOC. 2015;38:E13.
  • Sharma M, Balasubramanian S, Silva D, et al. Laser interstitial thermal therapy in the management of brain metastasis and radiation necrosis after radiosurgery: an overview. Expert Rev Neurother. 2016;16:223–232.
  • Kamath AA, Friedman DD, Akbari SHA, et al. Glioblastoma treated with magnetic resonance imaging-guided laser interstitial thermal therapy: safety, efficacy, and outcomes. Neurosurgery. 2019;84(4):836–843.
  • Rammo R, Scarpace L, Nagaraja T, et al. MR‐guided laser interstitial thermal therapy in the treatment of recurrent intracranial meningiomas. Lasers Surg Med. 2019;51(3):245–250.
  • Ivan ME, Diaz RJ, Berger MH, et al. Magnetic resonance–guided laser ablation for the treatment of recurrent dural-based lesions: a series of five cases. World Neurosurg. 2017;98:162–170.
  • Jethwa PR, Lee JH, Assina R, et al. Treatment of a supratentorial primitive neuroectodermal tumor using magnetic resonance–guided laser-induced thermal therapy. J Neurosurg Pediatr. 2011;8:468–475.
  • Dadey DY, Kamath AA, Leuthardt EC, et al. Laser interstitial thermal therapy for subependymal giant cell astrocytoma: technical case report. FOC. 2016;41:E9.
  • Ahluwalia M, Barnett GH, Deng D, et al. Laser ablation after stereotactic radiosurgery: a multicenter prospective study in patients with metastatic brain tumors and radiation necrosis. J Neurosurg. 2018;130:804–811.
  • Hong CS, Deng D, Vera A, et al. Laser-interstitial thermal therapy compared to craniotomy for treatment of radiation necrosis or recurrent tumor in brain metastases failing radiosurgery. J Neurooncol. 2019;142:309–317.
  • Ram Z, Cohen ZR, Harnof S, et al. Magnetic resonance imaging-guided, high-intensity focused ultrasound forbrain tumortherapy. Neurosurgery. 2006;59:949–956.
  • Park JW, Jung S, Jung TY, et al. editors. Focused ultrasound surgery for the treatment of recurrent anaplastic astrocytoma: A preliminary report. AIP Conference Proceedings; 2006: AIP.
  • McDannold N, Clement GT, Black P, et al. Transcranial magnetic resonance imaging- guided focused ultrasound surgery of brain tumors: initial findings in 3 patients. Neurosurgery. 2010;66:323–332.
  • Coluccia D, Fandino J, Schwyzer L, et al. First noninvasive thermal ablation of a brain tumor with MR-guided focused ultrasound. J Ther Ultrasound. 2014;2:17.
  • Fetcko K, Lukas RV, Watson GA, et al. Survival and complications of stereotactic radiosurgery: A systematic review of stereotactic radiosurgery for newly diagnosed and recurrent high-grade gliomas. Medicine. 2017;96:e8293.
  • Graber JJ, Cobbs CS, Olson JJ. Congress of neurological surgeons systematic review and evidence-based guidelines on the use of stereotactic radiosurgery in the treatment of adults with metastatic brain tumors. Neurosurgery. 2019;84:E168–E170.
  • Fu VX, Verheul JB, Beute GN, et al. Retreatment of vestibular schwannoma with Gamma Knife radiosurgery: clinical outcome, tumor control, and review of literature. J Neurosurg. 2018;129:137–145.
  • Molina ES, van Eck AT, Sauerland C, et al. Local tumor control and clinical symptoms after gamma knife radiosurgery for residual and recurrent vestibular schwannomas. World Neurosurg. 2019;122:e1240–e6.
  • Germano IM, Sheehan J, Parish J, et al. Congress of neurological surgeons systematic review and evidence-based guidelines on the role of radiosurgery and radiation therapy in the management of patients with vestibular schwannomas. Neurosurgery. 2018;82:E49–E51.
  • Yang I, Udawatta M, Prashant GN, et al. Stereotactic radiosurgery for neurosurgical patients: a historical review and current perspectives. World Neurosurg. 2019;122:522–531.
  • Goldbrunner R, Minniti G, Preusser M, et al. EANO guidelines for the diagnosis and treatment of meningiomas. Lancet Oncol. 2016;17:e383–e91.