4. Sakas DE, Panourias IG, Simpson BA, Krames ES. An introduction to operative neuromodulation and functional neuroprosthetics, the new frontiers of clinical neuroscience and biotechnology. Acta Neurochir Suppl 2007;97:3-10.
5. Clancy JA, Deuchars SA, Deuchars J. The wonders of the wanderer. Exp Physiol 2013;98:38-45.
6. Zabara J. Inhibition of experimental seizures in canines by repetitive vagal stimulation. Epilepsia 1992;33:1005-12.
7. Carron R, Roncon P, Lagarde S, Dibue M, Zanello M, Bartolomei F. Latest views on the mechanisms of action of surgically implanted cervical vagal nerve stimulation in epilepsy. Neuromodulation 2023;26:498-506.
8. Odekunle A, Bower AJ. Brainstem connections of vagal afferent nerves in the ferret: an autoradiographic study. J Anat 1985;140:461-9.
9. Hachem LD, Wong SM, Ibrahim GM. The vagus afferent network: emerging role in translational connectomics. Neurosurg Focus 2018;45:E2.
10. Stanton PK, Mody I, Zigmond D, Sejnowski T, Heinemann U. Noradrenergic modulation of excitability in acute and chronic model epilepsies. Epilepsy Res Suppl 1992;8:321-34.
12. Hassert DL, Miyashita T, Williams CL. The effects of peripheral vagal nerve stimulation at a memory-modulating intensity on norepinephrine output in the basolateral amygdala. Behav Neurosci 2004;118:79-88.
13. Hammond EJ, Uthman BM, Wilder BJ, Ben-Menachem E, Hamberger A, Hedner T, et al. Neurochemical effects of vagus nerve stimulation in humans. Brain Res 1992;583:300-3.
14. Woodbury DM, Woodbury JW. Effects of vagal stimulation on experimentally induced seizures in rats. Epilepsia 1990;31 Suppl 2:S7-19.
15. Ben-Menachem E, Hamberger A, Hedner T, Hammond EJ, Uthman BM, Slater J, et al. Effects of vagus nerve stimulation on amino acids and other metabolites in the CSF of patients with partial seizures. Epilepsy Res 1995;20:221-7.
16. Marrosu F, Serra A, Maleci A, Puligheddu M, Biggio G, Piga M. Correlation between GABA(A) receptor density and vagus nerve stimulation in individuals with drug resistant partial epilepsy. Epilepsy Res 2003;55:59-70.
19. Klinkenberg S, van den Borne CJ, Aalbers MW, Verschuure P, Kessels AG, Leenen L, et al. The effects of vagus nerve stimulation on tryptophan metabolites in children with intractable epilepsy. Epilepsy Behav 2014;37:133-8.
21. Takaya M, Terry WJ, Naritoku DK. Vagus nerve stimulation induces a sustained anticonvulsant effect. Epilepsia 1996;37:1111-6.
22. Naritoku DK, Terry WJ, Helfert RH. Regional induction of fos immunoreactivity in the brain by anticonvulsant stimulation of the vagus nerve. Epilepsy Res 1995;22:53-62.
24. Jain P, Arya R. Vagus nerve stimulation and seizure outcomes in pediatric refractory epilepsy: systematic review and meta-analysis. Neurology 2021;96:1041-51.
28. Soleman J, Stein M, Knorr C, Datta AN, Constantini S, Fried I, et al. Improved quality of life and cognition after early vagal nerve stimulator implantation in children. Epilepsy Behav 2018;88:139-45.
30. Elger G, Hoppe C, Falkai P, Rush AJ, Elger CE. Vagus nerve stimulation is associated with mood improvements in epilepsy patients. Epilepsy Res 2000;42:203-10.
33. Wheless JW, Raskin JS, Fine AL, Knupp KG, Schreiber J, Ostendorf AP, et al. Expert opinion on use of vagus nerve stimulation therapy in the management of pediatric epilepsy: a Delphi consensus study. Seizure 2024;123:97-103.
34. Ben-Menachem E, Manon-Espaillat R, Ristanovic R, Wilder BJ, Stefan H, Mirza W, et al. Vagus nerve stimulation for treatment of partial seizures: 1. A controlled study of effect on seizures. Epilepsia 1994;35:616-26.
35. The Vagus Nerve Stimulation Study Group. A randomized controlled trial of chronic vagus nerve stimulation for treatment of medically intractable seizures. Neurology 1995;45:224-30.
36. Handforth A, DeGiorgio CM, Schachter SC, Uthman BM, Naritoku DK, Tecoma ES, et al. Vagus nerve stimulation therapy for partial-onset seizures: a randomized active-control trial. Neurology 1998;51:48-55.
37. Thompson EM, Wozniak SE, Roberts CM, Kao A, Anderson VC, Selden NR. Vagus nerve stimulation for partial and generalized epilepsy from infancy to adolescence. J Neurosurg Pediatr 2012;10:200-5.
40. Pellock JM, Nordli DR, Sankar R, Wheless JW. Pellock's pediatric epilepsy: diagnosis and therapy. 4th ed. New York: Springer Publishing Company; 2017.
41. Fahoum F, Boffini M, Kann L, Faini S, Gordon C, Tzadok M, et al. VNS parameters for clinical response in epilepsy. Brain Stimul 2022;15:814-21.
42. Heck C, Helmers SL, DeGiorgio CM. Vagus nerve stimulation therapy, epilepsy, and device parameters: scientific basis and recommendations for use. Neurology 2002;59(6 Suppl 4):S31-7.
44. Henning O, Andersen NB, Asztely F, Ben-Menachem E, Gauffin H, Gerstner T, et al. Programming in vagus nerve stimulation therapy: consensus from a Nordic Delphi Panel. Seizure 2025;131:423-434.
45. Kayyali H, Abdelmoity S, Bansal L, Kaufman C, Smith K, Fecske E, et al. The efficacy and safety of rapid cycling vagus nerve stimulation in children with intractable epilepsy. Pediatr Neurol 2020;109:35-8.
46. Haddad L, Pawar K, Perdew CH, Dunker G, Bansal S, Collado LV, et al. Efficacy and tolerability of ultra rapid duty cycling vagus nerve stimulation for medically refractory absence seizures. Pediatr Neurol 2023;147:139-47.
47. Amark P, Stodberg T, Wallstedt L. Late onset bradyarrhythmia during vagus nerve stimulation. Epilepsia 2007;48:1023-4.
49. Seth J, Couper RG, Burneo JG, Suller Marti A. Effects of vagus nerve stimulation on the quality of sleep and sleep apnea in patients with drug-resistant epilepsy: a systematic review. Epilepsia 2024;65:73-83.
51. Jarosiewicz B, Morrell M. The RNS system: brain-responsive neurostimulation for the treatment of epilepsy. Expert Rev Med Devices 2021;18:129-38.
52. Penfield W, Jasper HH. Epilepsy and the functional anatomy of the human brain. Boston: Little, Brown and Company; 1954.
53. Lesser RP, Kim SH, Beyderman L, Miglioretti DL, Webber WR, Bare M, et al. Brief bursts of pulse stimulation terminate afterdischarges caused by cortical stimulation. Neurology 1999;53:2073-81.
54. Rao VR. Chronic electroencephalography in epilepsy with a responsive neurostimulation device: current status and future prospects. Expert Rev Med Devices 2021;18:1093-105.
59. Morrell MJ; RNS System in Epilepsy Study Group. Responsive cortical stimulation for the treatment of medically intractable partial epilepsy. Neurology 2011;77:1295-304.
62. Singh RK, Eschbach K, Samanta D, Perry MS, Liu G, Alexander AL, et al. Responsive neurostimulation in drug-resistant pediatric epilepsy: findings from the epilepsy surgery subgroup of the pediatric epilepsy research consortium. Pediatr Neurol 2023;143:106-12.
63. Wadi L, Pati S, Agashe S. Individualizing programming of responsive neurostimulation and deep brain stimulation therapies in epilepsy. J Clin Neurophysiol 2025;42:513-20.
64. Geller EB, Skarpaas TL, Gross RE, Goodman RR, Barkley GL, Bazil CW, et al. Brain-responsive neurostimulation in patients with medically intractable mesial temporal lobe epilepsy. Epilepsia 2017;58:994-1004.
69. Speakes ME, Reznik-Schaefer K, Al-Ramadhani R, Fernandez LD, Hect JL, Abel TJ, et al. Treatment of pediatric drug-resistant generalized epilepsy with responsive neurostimulation of the centromedian nucleus of the thalamus: a case series of seven patients. Epilepsy Res 2025;210:107516.
71. Vonck K, Boon P, Van Roost D. Anatomical and physiological basis and mechanism of action of neurostimulation for epilepsy. Acta Neurochir Suppl 2007;97(Pt 2):321-8.
77. Costard LS, Neubert V, Veno MT, Su J, Kjems J, Connolly NM, et al. Electrical stimulation of the ventral hippocampal commissure delays experimental epilepsy and is associated with altered microRNA expression. Brain Stimul 2019;12:1390-401.
80. Pouratian N, Zheng Z, Bari AA, Behnke E, Elias WJ, Desalles AA. Multi-institutional evaluation of deep brain stimulation targeting using probabilistic connectivity-based thalamic segmentation. J Neurosurg 2011;115:995-1004.
81. Gao F, Guo Y, Zhang H, Wang S, Wang J, Wu JM, et al. Anterior thalamic nucleus stimulation modulates regional cerebral metabolism: an FDG-MicroPET study in rats. Neurobiol Dis 2009;34:477-83.
83. Fisher R, Salanova V, Witt T, Worth R, Henry T, Gross R, et al. Electrical stimulation of the anterior nucleus of thalamus for treatment of refractory epilepsy. Epilepsia 2010;51:899-908.
84. Morace R, DI Gennaro G, Quarato P, D'Aniello A, Amascia A, Grammaldo L, et al. Deep brain stimulation for intractabile epilepsy. J Neurosurg Sci 2016;60:189-98.
85. Wu C, Sharan AD. Neurostimulation for the treatment of epilepsy: a review of current surgical interventions. Neuromodulation 2013;16:10-24.
86. Klinger NV, Mittal S. Clinical efficacy of deep brain stimulation for the treatment of medically refractory epilepsy. Clin Neurol Neurosurg 2016;140:11-25.
88. Warren AEL, Harvey AS, Vogrin SJ, Bailey C, Davidson A, Jackson GD, et al. The epileptic network of Lennox-Gastaut syndrome. Neurology 2019;93:e215-26.
91. Dalic LJ, Warren AE, Bulluss KJ, Thevathasan W, Roten A, Churilov L, et al. DBS of thalamic centromedian nucleus for Lennox–Gastaut syndrome (ESTEL trial). Ann Neurol 2022;91:253-67.
93. Yan H, Toyota E, Anderson M, Abel TJ, Donner E, Kalia SK, et al. A systematic review of deep brain stimulation for the treatment of drug-resistant epilepsy in childhood. J Neurosurg Pediatr 2019;23:274-84.
96. Velasco F, Velasco M, Velasco AL, Jimenez F, Marquez I, Rise M. Electrical stimulation of the centromedian thalamic nucleus in control of seizures: long-term studies. Epilepsia 1995;36:63-71.
97. Fisher RS, Uematsu S, Krauss GL, Cysyk BJ, McPherson R, Lesser RP, et al. Placebo-controlled pilot study of centromedian thalamic stimulation in treatment of intractable seizures. Epilepsia 1992;33:841-51.
98. Valentin A, Garcia Navarrete E, Chelvarajah R, Torres C, Navas M, Vico L, et al. Deep brain stimulation of the centromedian thalamic nucleus for the treatment of generalized and frontal epilepsies. Epilepsia 2013;54:1823-33.
101. Karakas C, Houck K, Handoko M, Trandafir C, Coorg R, Haneef Z, et al. Responsive neurostimulation for the treatment of children with drug-resistant epilepsy in tuberous sclerosis complex. Pediatr Neurol 2023;145:97-101.
103. Zheng H, Chengcheng W, Bin J, Chaochao W, Hongying Z, Wenqiang G, et al. Deep brain stimulation of anterior thalamic nucleus for treatment of patient with tuberous sclerosis-related refractory epilepsy. World Neurosurg 2020;138:141-4.
104. Andrade DM, Hamani C, Lozano AM, Wennberg RA. Dravet syndrome and deep brain stimulation: seizure control after 10 years of treatment. Epilepsia 2010;51:1314-6.
105. Chabardes S, Kahane P, Minotti L, Koudsie A, Hirsch E, Benabid AL. Deep brain stimulation in epilepsy with particular reference to the subthalamic nucleus. Epileptic Disord 2002;4 Suppl 3:S83-93.
106. Khan S, Wright I, Javed S, Sharples P, Jardine P, Carter M, et al. High frequency stimulation of the mamillothalamic tract for the treatment of resistant seizures associated with hypothalamic hamartoma. Epilepsia 2009;50:1608-11.
107. Vesper J, Steinhoff B, Rona S, Wille C, Bilic S, Nikkhah G, et al. Chronic high frequency deep brain stimulation of the STN/SNr for progressive myoclonic epilepsy. Epilepsia 2007;48:1984-9.