1 |
Jinnah HA , Sun YV . Dystonia genes and their biological pathways. Neurobiol Dis, 2019, 129: 159- 168.
doi: 10.1016/j.nbd.2019.05.014
|
2 |
Bailey GA , Rawlings A , Torabi F , Pickrell O , Peall KJ . Adult-onset idiopathic dystonia: a national data-linkage study to determine epidemiological, social deprivation, and mortality characteristics. Eur J Neurol, 2022, 29: 91- 104.
doi: 10.1111/ene.15114
|
3 |
Dressler D , Altenmüller E , Giess R , Krauss JK , Adib Saberi F . The epidemiology of dystonia: the Hannover epidemiology study. J Neurol, 2022, 269: 6483- 6493.
doi: 10.1007/s00415-022-11310-9
|
4 |
O'Shea SA , Shih LC . Global epidemiology of movement disorders: rare or underdiagnosed. ? Semin Neurol, 2023, 43: 4- 16.
doi: 10.1055/s-0043-1764140
|
5 |
Müller J , Kiechl S , Wenning GK , Seppi K , Willeit J , Gasperi A , Wissel J , Gasser T , Poewe W . The prevalence of primary dystonia in the general community. Neurology, 2002, 59: 941- 943.
doi: 10.1212/01.WNL.0000026474.12594.0D
|
6 |
Lenka A , Jankovic J . Sports-related dystonia. Tremor Other Hyperkinet Mov (NY), 2021, 11: 54.
doi: 10.5334/tohm.670
|
7 |
Stephen CD , Perez DL , Chibnik LB , Sharma N . Functional dystonia: a case-control study and risk prediction algorithm. Ann Clin Transl Neurol, 2021, 8: 732- 748.
doi: 10.1002/acn3.51307
|
8 |
Grütz K , Klein C . Dystonia updates: definition, nomenclature, clinical classification, and etiology. J Neural Transm (Vienna), 2021, 128: 395- 404.
doi: 10.1007/s00702-021-02314-2
|
9 |
Cooper IS . 20-year follow up study of the neurosurgical treatment of dystonia musculorum deformans. Adv Neurol, 1976, 14: 423- 452.
|
10 |
Benabid AL , Pollak P , Louveau A , Henry S , de Rougemont J . Combined (thalamotomy and stimulation) stereotactic surgery of the VIM thalamic nucleus for bilateral Parkinson disease. Appl Neurophysiol, 1987, 50 (1-6): 344- 346.
|
11 |
Ni Z , Kim SJ , Phielipp N , Ghosh S , Udupa K , Gunraj CA , Saha U , Hodaie M , Kalia SK , Lozano AM , Lee DJ , Moro E , Fasano A , Hallett M , Lang AE , Chen R . Pallidal deep brain stimulation modulates cortical excitability and plasticity. Ann Neurol, 2018, 83: 352- 362.
doi: 10.1002/ana.25156
|
12 |
Fan H , Zheng Z , Yin Z , Zhang J , Lu G . Deep brain stimulation treating dystonia: a systematic review of targets, body distributions and etiology classifications. Front Hum Neurosci, 2021, 15: 757579.
doi: 10.3389/fnhum.2021.757579
|
13 |
Paschen S , Wolke R , Gövert F , Lauber A , Zeuner KE , Helmers AK , Berg D , Deuschl G , Becktepe JS . Effect of thalamic versus pallidal deep brain stimulation on head tremor in dystonic and essential tremor patients: a retrospective video-blinded study. Mov Disord Clin Pract, 2024, 11: 634- 644.
doi: 10.1002/mdc3.14021
|
14 |
Wolf ME , Blahak C , Saryyeva A , Schrader C , Krauss JK . Deep brain stimulation for dystonia-choreoathetosis in cerebral palsy: pallidal versus thalamic stimulation. Parkinsonism Relat Disord, 2019, 63: 209- 212.
doi: 10.1016/j.parkreldis.2019.01.029
|
15 |
Tsuboi T , Jabarkheel Z , Zeilman PR , Barabas MJ , Foote KD , Okun MS , Wagle Shukla A . Longitudinal follow-up with VIM thalamic deep brain stimulation for dystonic or essential tremor. Neurology, 2020, 94: e1073- e1084.
doi: 10.1212/WNL.94.15_supplement.1073
|
16 |
Bledsoe IO , Viser AC , San Luciano M . Treatment of dystonia: medications, neurotoxins, neuromodulation, and rehabilitation. Neurotherapeutics, 2020, 17: 1622- 1644.
doi: 10.1007/s13311-020-00944-0
|
17 |
Trompette C , Giordana C , Leplus A , Grabli D , Hubsch C , Marsé C , Fontaine D . Combined thalamic and pallidal deep brain stimulation for dystonic tremor. Parkinsonism Relat Disord, 2022, 103: 29- 33.
doi: 10.1016/j.parkreldis.2022.08.003
|
18 |
Krause P , Koch K , Gruber D , Kupsch A , Gharabaghi A , Schneider GH , Kühn AA . Long-term effects of pallidal and thalamic deep brain stimulation in myoclonus dystonia. Eur J Neurol, 2021, 28: 1566- 1573.
doi: 10.1111/ene.14737
|
19 |
Paoli D , Mills R , Brechany U , Pavese N , Nicholson C . DBS in tremor with dystonia: VIM, GPi or both? A review of the literature and considerations from a single-center experience. J Neurol, 2023, 270: 2217- 2229.
doi: 10.1007/s00415-023-11569-6
|
20 |
Yilmaz A , Eray HA , Cakir M , Ceylan M , Blomstedt P . Deep brain stimulation with double targeting of the VIM and PSA for the treatment of rare tremor syndromes. Stereotact Funct Neurosurg, 2024, 102: 224- 239.
doi: 10.1159/000539162
|
21 |
Yamahata H , Horisawa S , Hodotsuka K , Kawamata T , Taira T . Long-term successful outcome of dystonic head tremor after bilateral deep brain stimulation of the ventral intermediate and ventro-oral internus nuclei: a case report and literature review of dystonic head tremor. Stereotact Funct Neurosurg, 2021, 99: 107- 112.
doi: 10.1159/000510593
|
22 |
Lofredi R , Kühn AA . Brain oscillatory dysfunctions in dystonia. Handb Clin Neurol, 2022, 184: 249- 257.
|
23 |
Lee DJ , Lozano CS , Dallapiazza RF , Lozano AM . Current and future directions of deep brain stimulation for neurological and psychiatric disorders. J Neurosurg, 2019, 131: 333- 342.
doi: 10.3171/2019.4.JNS181761
|
24 |
Khanom AA , Franceschini PR , Lane S , Osman-Farah J , Macerollo A . Bilateral globus pallidus internus (GPi) deep brain stimulation for cervical dystonia: effects on motor and non-motor symptoms within 5 years follow. J Neurol Sci, 2023, 452: 120752.
doi: 10.1016/j.jns.2023.120752
|
25 |
Ikezawa J , Yokochi F , Okiyama R , Isoo A , Agari T , Kamiyama T , Yugeta A , Tojima M , Kawasaki T , Watanabe K , Kumada S , Takahashi K . Pallidal deep brain stimulation for patients with myoclonus-dystonia without SGCE mutations. J Neurol, 2024, 271: 2948- 2954.
doi: 10.1007/s00415-024-12334-z
|
26 |
Panov F , Tagliati M , Ozelius LJ , Fuchs T , Gologorsky Y , Cheung T , Avshalumov M , Bressman SB , Saunders-Pullman R , Weisz D , Alterman RL . Pallidal deep brain stimulation for DYT6 dystonia. J Neurol Neurosurg Psychiatry, 2012, 83: 182- 187.
doi: 10.1136/jnnp-2011-300979
|
27 |
Van Coller R , Schutte CM , Lubbe E , Ngele B . TOR1A mutation-related isolated childhood-onset generalised dystonia in South Africa. S Afr Med J, 2021, 111: 946- 949.
doi: 10.7196/SAMJ.2021.v111i10.15801
|
28 |
Chudy D , Raguž M , Vuletić V , Rački V , Papić E , Nenadić Baranašić N , Barišić N . GPi DBS treatment outcome in children with monogenic dystonia: a case series and review of the literature. Front Neurol, 2023, 14: 1151900.
doi: 10.3389/fneur.2023.1151900
|
29 |
Rački V , Hero M , Papić E , Rožmarić G , Čizmarević NS , Chudy D , Peterlin B , Vuletić V . Applicability of clinical genetic testing for deep brain stimulation treatment in monogenic Parkinson's disease and monogenic dystonia: a multidisciplinary team perspective. Front Neurosci, 2023, 17: 1282267.
doi: 10.3389/fnins.2023.1282267
|
30 |
Liu Y , Zhang Q , Wang J , Liu J , Yang W , Yan X , Ouyang Y , Yang H . Both subthalamic and pallidal deep brain stimulation are effective for GNAO1-associated dystonia: three case reports and a literature review. Ther Adv Neurol Disord, 2022, 15: 1- 15.
|
31 |
Brüggemann N , Domingo A , Rasche D , Moll CKE , Rosales RL , Jamora RDG , Hanssen H , Münchau A , Graf J , Weissbach A , Tadic V , Diesta CC , Volkmann J , Kühn A , Münte TF , Tronnier V , Klein C . Association of pallidal neurostimulation and outcome predictors with X-linked dystonia parkinsonism. JAMA Neurol, 2019, 76: 211- 216.
doi: 10.1001/jamaneurol.2018.3777
|
32 |
Delorme C , Roze E , Karachi C , Vidailhet M , Hainque E . Whispering dysphonia in TUBB4A-related disorders responsive to bipallidal deep brain stimulation. Eur J Neurol, 2021, 28: 1082- 1083.
doi: 10.1111/ene.14602
|
33 |
Besa Lehmann V , Rosenbaum M , Bulman DE , Read T , Verhagen Metman L . A case report of myoclonus-dystonia with isolated myoclonus phenotype and novel mutation successfully treated with deep brain stimulation. Neurol Ther, 2020, 9: 187- 191.
doi: 10.1007/s40120-020-00186-4
|
34 |
Casagrande SCB , Listik C , Coelho DB , Limongi JCP , Teixeira LA , Teixeira MJ , Barbosa ER , Cury RG . Deep brain stimulation in patients with isolated generalized dystonia caused by PRKRA mutation. Mov Disord Clin Pract, 2019, 6: 616- 618.
doi: 10.1002/mdc3.12811
|
35 |
Olschewski L , Jesús S , Kim HJ , Tunc S , Löns S , Junker J , Zeuner KE , Kühn AA , Kuhlenbäumer G , Schäffer E , Berg D , Kasten M , Ferbert A , Altenmüller E , Brüggemann N , Bauer P , Rolfs A , Jeon B , Bäumer T , Mir P , Klein C , Lohmann K . Role of ANO3 mutations in dystonia: a large-scale mutational screening study. Parkinsonism Relat Disord, 2019, 62: 196- 200.
doi: 10.1016/j.parkreldis.2018.12.030
|
36 |
de Almeida Marcelino AL , Mainka T , Krause P , Poewe W , Ganos C , Kühn AA . Deep brain stimulation reduces (nocturnal) dyskinetic exacerbations in patients with ADCY5 mutation: a case series. J Neurol, 2020, 267: 3624- 3631.
doi: 10.1007/s00415-020-09871-8
|
37 |
Tisch S , Kumar KR . Pallidal deep brain stimulation for monogenic dystonia: the effect of gene on outcome. Front Neurol, 2021, 11: 630391.
doi: 10.3389/fneur.2020.630391
|
38 |
Bocci T , Knikou M , Koch G , Sadnicka A . Editorial: advances in invasive and non-invasive brain stimulation for dystonia and other hyperkinetic movement disorders. Front Neurol, 2021, 12: 741201.
doi: 10.3389/fneur.2021.741201
|
39 |
Li J , Li N , Wang X , Wang J , Wang X , Wang W . Long-term outcome of subthalamic deep brain stimulation for generalized isolated dystonia. Neuromodulation, 2023, 26: 1653- 1660.
doi: 10.1016/j.neurom.2022.07.003
|
40 |
Zhao M , Chen H , Yan X , Li J , Lu C , Cui B , Huo W , Cao S , Guo H , Liu S , Yang C , Liu Y , Yin F . Subthalamic deep brain stimulation for primary dystonia: defining an optimal location using the medial subthalamic nucleus border as anatomical reference. Front Aging Neurosci, 2023, 15: 1187167.
doi: 10.3389/fnagi.2023.1187167
|
41 |
Yin F , Zhao M , Yan X , Li T , Chen H , Li J , Cao S , Guo H , Liu S . Bilateral subthalamic nucleus deep brain stimulation for refractory isolated cervical dystonia. Sci Rep, 2022, 12: 7678.
doi: 10.1038/s41598-022-11841-1
|
42 |
Wang N , Wang K , Wang Q , Fan S , Fu Z , Zhang F , Wang L , Meng F . Stimulation-induced dyskinesia after subthalamic nucleus deep brain stimulation in patients with meige syndrome. Neuromodulation, 2021, 24: 286- 292.
doi: 10.1111/ner.13284
|
43 |
Ozturk S , Temel Y , Aygun D , Kocabicak E . Deep brain stimulation of the globus pallidus internus for secondary dystonia: clinical cases and systematic review of the literature regarding the effectiveness of globus pallidus internus versus subthalamic nucleus. World Neurosurg, 2021, 154: e495- e508.
doi: 10.1016/j.wneu.2021.07.070
|
44 |
Hock AN , Jensen SR , Svaerke KW , Brennum J , Jespersen B , Bergdal O , Karlsborg M , Hjermind LE , Lokkegaard A . A randomised double-blind controlled study of Deep Brain Stimulation for dystonia in STN or GPi: a long term follow-up after up to 15 years. Parkinsonism Relat Disord, 2022, 96: 74- 79.
doi: 10.1016/j.parkreldis.2022.02.001
|
45 |
Yousef O , Abbas A , Abdelmeseh M , Qafesha RM , Nabil Y , Elrosasy A , Negida A , Berman BD . Subthalamic nucleus versus globus pallidus internus deep brain stimulation in the treatment of dystonia: a systematic review and meta -analysis of safety and efficacy. J Clin Neurosci, 2024, 132: 110958.
|
46 |
Lin S , Shu Y , Zhang C , Wang L , Huang P , Pan Y , Ding J , Sun B , Li D , Wu Y . Globus pallidus internus versus subthalamic nucleus deep brain stimulation for isolated dystonia: a 3-year follow-up. Eur J Neurol, 2023, 30: 2629- 2640.
doi: 10.1111/ene.15895
|
47 |
Wu J , Zhu G , Gan Y , Meng F , Yang A , Zhang J . Pallidal versus subthalamic deep-brain stimulation for generalized isolated dystonia: a retrospective study. J Clin Med, 2024, 13: 4902.
doi: 10.3390/jcm13164902
|
48 |
Sun B , Chen S , Zhan S , Le W , Krahl SE . Subthalamic nucleus stimulation for primary dystonia and tardive dystonia. Acta Neurochir Suppl, 2007, 97 (Pt 2): 207- 214.
|
49 |
Zhao ZL , Ren ZW , Hu YS , Zhang GJ , Li JY . Long-term versus short-term follow-up of globus pallidus internus deep brain stimulation for craniocervical dystonia. Lin Chuang Shen Jing Wai Ke Za Zhi, 2024, 21: 245- 250.
doi: 10.3969/j.issn.1672-7770.2024.03.002
|
|
赵倬翎, 任志伟, 胡永生, 张国君, 李建宇. 苍白球内侧部脑深部电刺激治疗颅颈肌张力障碍的长期与短期随访疗效比较. 临床神经外科杂志, 2024, 21: 245- 250.
doi: 10.3969/j.issn.1672-7770.2024.03.002
|
50 |
Lin S , Wu Y , Li H , Zhang C , Wang T , Pan Y , He L , Shen R , Deng Z , Sun B , Ding J , Li D . Deep brain stimulation of the globus pallidus internus versus the subthalamic nucleus in isolated dystonia. J Neurosurg, 2019, 132: 721- 732.
|
51 |
Liu Y , Zhu G , Jiang Y , Wang X , Chen Y , Meng F , Zhang K , Yang A , Liu H , Zhang X , Zhang J . Comparison of short-term stimulation of the globus pallidus interna and subthalamic nucleus for treatment of primary dystonia. World Neurosurg, 2019, 123: e211- e217.
doi: 10.1016/j.wneu.2018.11.137
|
52 |
Wang X , Yu X . Deep brain stimulation for myoclonus dystonia syndrome: a meta-analysis with individual patient data. Neurosurg Rev, 2021, 44: 451- 462.
doi: 10.1007/s10143-019-01233-x
|
53 |
Hirt L , Grassia F , Feuerstein J , Thompson JA , Ojemann S , Kern DS . Deep brain stimulation of the ventral intermediate nucleus of the thalamus in writer's cramp: a case report. Tremor Other Hyperkinet Mov (NY), 2021, 11: 46.
doi: 10.5334/tohm.645
|
54 |
Owen RL , Grewal SS , Thompson JM , Hassan , A , Lee KH , Klassen BT . Effectiveness of thalamic ventralis oralis anterior and posterior nuclei deep brain stimulation for posttraumatic dystonia. Mayo Clin Proc Innov Qual Outcomes, 2022, 6: 137- 142.
doi: 10.1016/j.mayocpiqo.2022.01.001
|
55 |
Tsuboi T , Wong JK , Eisinger RS , Okromelidze L , Burns MR , Ramirez-Zamora A , Almeida L , Wagle Shukla A , Foote KD , Okun MS , Grewal SS , Middlebrooks EH . Comparative connectivity correlates of dystonic and essential tremor deep brain stimulation. Brain, 2021, 144: 1774- 1786.
doi: 10.1093/brain/awab074
|
56 |
Tsuboi T , Au KLK , Deeb W , Almeida L , Foote KD , Okun MS , Ramirez-Zamora A . Motor outcomes and adverse effects of deep brain stimulation for dystonic tremor: a systematic review. Parkinsonism Relat Disord, 2020, 76: 32- 41.
doi: 10.1016/j.parkreldis.2020.06.008
|
57 |
Mongardi L , Rispoli V , Scerrati A , Giordano F , Capone JG , Vaudano AE , De Bonis P , Morgante F , Picillo M , Cavallo MA , Sensi M . Deep brain stimulation of the ventralis oralis anterior thalamic nucleus is effective for dystonic tremor. Parkinsonism Relat Disord, 2020, 81: 8- 11.
doi: 10.1016/j.parkreldis.2020.09.040
|
58 |
Chang KW , Kim MJ , Park SH , Chang WS , Jung HH , Chang JW . Dual pallidal and thalamic deep brain stimulation for complex ipsilateral dystonia. Yonsei Med J, 2022, 63: 166- 172.
doi: 10.3349/ymj.2022.63.2.166
|
59 |
Horisawa S , Arai T , Suzuki N , Kawamata T , Taira T . The striking effects of deep cerebellar stimulation on generalized fixed dystonia: case report. J Neurosurg, 2019, 132: 712- 716.
|
60 |
Brown EG , Bledsoe IO , Luthra NS , Miocinovic S , Starr PA , Ostrem JL . Cerebellar deep brain stimulation for acquired hemidystonia. Mov Disord Clin Pract, 2020, 7: 188- 193.
doi: 10.1002/mdc3.12876
|
61 |
Lin S , Zhang C , Li H , Wang Y , Wu Y , Wang T , Pan Y , Sun B , Wu Y , Li D . High frequency deep brain stimulation of superior cerebellar peduncles in a patient with cerebral palsy. Tremor Other Hyperkinet Mov (NY), 2020, 10: 38.
doi: 10.5334/tohm.551
|
62 |
Cajigas I , Morrison MA , Luciano MS , Starr PA . Cerebellar deep brain stimulation for the treatment of movement disorders in cerebral palsy. J Neurosurg, 2023, 139: 605- 614.
doi: 10.3171/2023.1.JNS222289
|
63 |
Frey J , Ramirez-Zamora A , Wagle Shukla A . Applications of transcranial magnetic stimulation for understanding and treating dystonia. Adv Neurobiol, 2023, 31: 119- 139.
|
64 |
Albanese A , Romito LM , Calandrella D . Therapeutic advances in dystonia. Mov Disord, 2015, 30: 1547- 1556.
doi: 10.1002/mds.26384
|
65 |
Somaa FA , de Graaf TA , Sack AT . Transcranial magnetic stimulation in the treatment of neurological diseases. Front Neurol, 2022, 13: 793253.
doi: 10.3389/fneur.2022.793253
|
66 |
Lefaucheur JP , Moro E , Shirota Y , Ugawa Y , Grippe T , Chen R , Benninger DH , Jabbari B , Attaripour S , Hallett M , Paulus W . Clinical neurophysiology in the treatment of movement disorders: IFCN handbook chapter. Clin Neurophysiol, 2024, 164: 57- 99.
doi: 10.1016/j.clinph.2024.05.007
|
67 |
Lefaucheur JP , Fénelon G , Ménard-Lefaucheur , I , Wendling S , Nguyen JP . Low-frequency repetitive TMS of premotor cortex can reduce painful axial spasms in generalized secondary dystonia: a pilot study of three patients. Neurophysiol Clin, 2004, 34: 141- 145.
doi: 10.1016/j.neucli.2004.07.003
|
68 |
Prudente CN , Chen M , Stipancic KL , Marks KL , Samargia-Grivette S , Goding GS , Green JR , Kimberley TJ . Effects of low-frequency repetitive transcranial magnetic stimulation in adductor laryngeal dystonia: a safety, feasibility, and pilot study. Exp Brain Res, 2022, 240: 561- 574.
doi: 10.1007/s00221-021-06277-4
|
69 |
Hao W , Wei T , Yang W , Yang Y , Cheng , T , Li X , Dong W , Jiang H , Qian N , Wang H , Wang M . Effects of high-frequency repetitive transcranial magnetic stimulation on upper limb dystonia in patients with Wilson's disease: a randomized controlled trial. Front Neurol, 2021, 12: 783365.
doi: 10.3389/fneur.2021.783365
|
70 |
Ganguly J , Murgai A , Sharma S , Aur D , Jog M . Non-invasive transcranial electrical stimulation in movement disorders. Front Neurosci, 2020, 14: 522.
doi: 10.3389/fnins.2020.00522
|
71 |
Bleton JP , Cossé C , Caloc'h T , Suarez Moreno A , Diverres E , Derkinderen P , Nizard J , Lefaucheur JP , Nguyen JP . Combination of anodal tDCS of the cerebellum with a goal-oriented motor training to treat cervical dystonia: a pilot case series. Front Neurol, 2024, 15: 1381390.
doi: 10.3389/fneur.2024.1381390
|
72 |
Menon V , Varadharajan N , Bascarane S , Andrade C . Efficacy of repetitive transcranial magnetic stimulation and transcranial direct current stimulation in focal hand dystonia: systematic review of intervention trials. Asian J Psychiatr, 2023, 80: 103437.
doi: 10.1016/j.ajp.2022.103437
|
73 |
Oyama G , Hattori N . New modalities and directions for dystonia care. J Neural Transm (Vienna), 2021, 128: 559- 565.
doi: 10.1007/s00702-020-02278-9
|
74 |
Khosravani S , Mahnan A , Yeh IL , Aman JE , Watson PJ , Zhang Y , Goding G , Konczak J . Laryngeal vibration as a non-invasive neuromodulation therapy for spasmodic dysphonia. Sci Rep, 2019, 9: 17955.
doi: 10.1038/s41598-019-54396-4
|
75 |
Sarica C , Nankoo JF , Fomenko A , Grippe TC , Yamamoto K , Samuel N , Milano V , Vetkas A , Darmani G , Cizmeci MN , Lozano AM , Chen R . Human studies of transcranial ultrasound neuromodulation: a systematic review of effectiveness and safety. Brain Stimul, 2022, 15: 737- 746.
doi: 10.1016/j.brs.2022.05.002
|
76 |
Beisteiner R , Hallett M , Lozano , A M . Ultrasound neuromodulation as a new brain therapy. Adv Sci (Weinh), 2023, 10: e2205634.
doi: 10.1002/advs.202205634
|
77 |
Darmani G , Bergmann TO , Butts Pauly K , Caskey CF , de Lecea L , Fomenko A , Fouragnan E , Legon W , Murphy KR , Nandi T , Phipps MA , Pinton G , Ramezanpour H , Sallet J , Yaakub SN , Yoo SS , Chen R . Non-invasive transcranial ultrasound stimulation for neuromodulation. Clin Neurophysiol, 2022, 135: 51- 73.
doi: 10.1016/j.clinph.2021.12.010
|
78 |
Zhu J , Xian Q , Hou X , Wong KF , Zhu T , Chen Z , He D , Kala S , Murugappan S , Jing J , Wu Y , Zhao X , Li D , Guo J , Qiu Z , Sun L . The mechanosensitive ion channel Piezo1 contributes to ultrasound neuromodulation. Proc Natl Acad Sci USA, 2023, 120: e2300291120.
doi: 10.1073/pnas.2300291120
|
79 |
Davidson B , Bhattacharya A , Sarica C , Darmani G , Raies N , Chen R , Lozano AM . Neuromodulation techniques: from non-invasive brain stimulation to deep brain stimulation. Neurotherapeutics, 2024, 21: e00330.
doi: 10.1016/j.neurot.2024.e00330
|
80 |
Deuschl G , Antonini A , Costa J , Śmiłowska K , Berg D , Corvol JC , Fabbrini G , Ferreira J , Foltynie T , Mir P , Schrag A , Seppi K , Taba P , Ruzicka E , Selikhova M , Henschke N , Villanueva G , Moro E . European Academy of Neurology/Movement Disorder Society: European Section guideline on the treatment of Parkinson's disease: Ⅰ. Invasive therapies. Mov Disord, 2022, 37: 1360- 1374.
doi: 10.1002/mds.29066
|
81 |
Deuschl G , Antonini A , Costa J , Śmiłowska K , Berg D , Corvol JC , Fabbrini G , Ferreira J , Foltynie T , Mir P , Schrag A , Seppi K , Taba P , Ruzicka E , Selikhova M , Henschke N , Villanueva G , Moro E . European Academy of Neurology/Movement Disorder Society: European Section guideline on the treatment of Parkinson's disease: Ⅰ. Invasive therapies. Eur J Neurol, 2022, 29: 2580- 2595.
doi: 10.1111/ene.15386
|
82 |
Shetty N . Essential tremor: do we have better therapeutics? A review of recent advances and future directions. Curr Neurol Neurosci Rep, 2022, 22: 197- 208.
doi: 10.1007/s11910-022-01185-8
|
83 |
Momin SMB , Aquilina K , Bulstrode H , Taira T , Kalia S , Natalwala A . MRI-guided focused ultrasound for the treatment of dystonia: a narrative review. Cureus, 2024, 16: e54284.
|
84 |
Li ZJ , Zhang LB , Chen YX , Hu L . Advancements and challenges in neuromodulation technology: interdisciplinary opportunities and collaborative endeavors. Sci Bull (Beijing), 2023, 68: 1978- 1982.
doi: 10.1016/j.scib.2023.08.019
|
85 |
Loram I , Siddique A , Sanchez MB , Harding P , Silverdale M , Kobylecki C , Cunningham R . Objective analysis of neck muscle boundaries for cervical dystonia using ultrasound imaging and deep learning. IEEE J Biomed Health Inform, 2020, 24: 1016- 1027.
doi: 10.1109/JBHI.2020.2964098
|