1 |
GBD 2019 Stroke Collaborators . Global, regional, and national burden of stroke and its risk factors, 1990-2019:a systematic analysis for the Global Burden of Disease Study 2019. Lancet Neurol, 2021, 20: 795- 820.
doi: 10.1016/S1474-4422(21)00252-0
|
2 |
Wang LD , Peng B , Zhang HQ , Wang YL , Liu M , Shan CL , Cao L , Wang LX , Xie W , Wang PJ , Ma L . Brief report on stroke prevention and treatment in China, 2020. Zhongguo Nao Xue Guan Bing Za Zhi, 2022, 19: 136- 144.
URL
|
|
王陇德, 彭斌, 张鸿祺, 王伊龙, 刘鸣, 单春雷, 曹雷, 王凌霄, 谢薇, 王培健, 马林. 《中国脑卒中防治报告2020》概要. 中国脑血管病杂志, 2022, 19: 136- 144.
URL
|
3 |
Tsao CW , Aday AW , Almarzooq ZI , Alonso A , Beaton AZ , Bittencourt MS , Boehme AK , Buxton AE , Carson AP , Commodore-Mensah Y , Elkind MSV , Evenson KR , Eze-Nliam C , Ferguson JF , Generoso G , Ho JE , Kalani R , Khan SS , Kissela BM , Knutson KL , Levine DA , Lewis TT , Liu J , Loop MS , Ma J , Mussolino ME , Navaneethan SD , Perak AM , Poudel R , Rezk-Hanna M , Roth GA , Schroeder EB , Shah SH , Thacker EL , Vanwagner LB , Virani SS , Voecks JH , Wang NY , Yaffe K , Martin SS . Heart disease and stroke statistics: 2022 update.A report from the American Heart Association. Circulation, 2022, 145: e153- e639.
|
4 |
Xu JP , Yu XG , Mao ZQ . Advances in deep brain stimulation for the treatment of post-stroke motor dysfunction. Zhonghua Shen Jing Wai Ke Za Zhi, 2024, 40: 199- 202.
|
|
许军鹏, 余新光, 毛之奇. 脑深部电刺激治疗卒中后运动功能障碍的研究进展. 中华神经外科杂志, 2024, 40: 199- 202.
|
5 |
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
|
6 |
Krauss JK , Lipsman N , Aziz T , Boutet A , Brown P , Chang JW , Davidson B , Grill WM , Hariz MI , Horn A , Schulder M , Mammis A , Tass PA , Volkmann J , Lozano AM . Technology of deep brain stimulation: current status and future directions. Nat Rev Neurol, 2021, 17: 75- 87.
|
7 |
Sampaio-Baptista C , Sanders ZB , Johansen-Berg H . Structural plasticity in adulthood with motor learning and stroke rehabilitation. Annu Rev Neurosci, 2018, 41: 25- 40.
doi: 10.1146/annurev-neuro-080317-062015
|
8 |
Zrenner C , Ziemann U . Closed-loop brain stimulation. Biol Psychiatry, 2024, 95: 545- 552.
doi: 10.1016/j.biopsych.2023.09.014
|
9 |
Freundlieb N , Philipp S , Drabik A , Gerloff C , Forkert ND , Hummel FC . Ipsilesional motor area size correlates with functional recovery after stroke: a 6-month follow-up longitudinal TMS motor mapping study. Restor Neurol Neurosci, 2015, 33: 221- 231.
|
10 |
Guder S , Sadeghi F , Zittel S , Quandt F , Choe CU , Bönstrup M , Cheng B , Thomalla G , Gerloff C , Schulz R . Disability and persistent motor deficits are linked to structural crossed cerebellar diaschisis in chronic stroke. Hum Brain Mapp, 2023, 44: 5336- 5345.
doi: 10.1002/hbm.26434
|
11 |
Akakin A , Peris-Celda M , Kilic T , Seker A , Gutierrez-Martin A , Rhoton A Jr . The dentate nucleus and its projection system in the human cerebellum: the dentate nucleus microsurgical anatomical study. Neurosurgery, 2014, 74: 401- 424.
|
12 |
Dum RP , Li C , Strick PL . Motor and nonmotor domains in the monkey dentate. Ann NY Acad Sci, 2002, 978: 289- 301.
|
13 |
Gopalakrishnan R , Cunningham DA , Hogue O , Schroedel M , Campbell BA , Baker KB , Machado AG . Electrophysiological correlates of dentate nucleus deep brain stimulation for poststroke motor recovery. J Neurosci, 2024, 44: e2149232024.
|
14 |
Wathen CA , Frizon LA , Maiti TK , Baker KB , Machado AG . Deep brain stimulation of the cerebellum for poststroke motor rehabilitation: from laboratory to clinical trial. Neurosurg Focus, 2018, 45: e13.
|
15 |
Machado AG , Baker KB , Schuster D , Butler RS , Rezai A . Chronic electrical stimulation of the contralesional lateral cerebellar nucleus enhances recovery of motor function after cerebral ischemia in rats. Brain Res, 2009, 1280: 107- 116.
|
16 |
Baker KB , Schuster D , Cooperrider J , Machado AG . Deep brain stimulation of the lateral cerebellar nucleus produces frequency-specific alterations in motor evoked potentials in the rat in vivo. Exp Neurol, 2010, 226: 259- 264.
|
17 |
Machado AG , Cooperrider J , Furmaga HT , Baker KB , Park HJ , Chen Z , Gale JT . Chronic 30-Hz deep cerebellar stimulation coupled with training enhances post-ischemia motor recovery and peri-infarct synaptophysin expression in rodents. Neurosurgery, 2013, 73: 344- 353.
|
18 |
Cooperrider J , Furmaga H , Plow E , Park HJ , Chen Z , Kidd G , Baker KB , Gale JT , Machado AG . Chronic deep cerebellar stimulation promotes long-term potentiation, microstructural plasticity, and reorganization of perilesional cortical representation in a rodent model. J Neurosci, 2014, 34: 9040- 9050.
|
19 |
Chan HH , Cooperrider J , Chen Z , Gale JT , Baker KB , Wathen CA , Modic CR , Park HJ , Machado AG . Lateral cerebellar nucleus stimulation has selective effects on glutamatergic and gabaergic perilesional neurogenesis after cortical ischemia in the rodent model. Neurosurgery, 2018, 83: 1057- 1067.
|
20 |
Baker KB , Plow EB , Nagel S , Rosenfeldt AB , Gopalakrishnan R , Clark C , Wyant A , Schroedel M , Ozinga JT , Davidson S , Hogue O , Floden D , Chen J , Ford PJ , Sankary L , Huang X , Cunningham DA , Difilippo FP , Hu B , Jones SE , Bethoux F , Wolf SL , Chae J , Machado AG . Cerebellar deep brain stimulation for chronic post-stroke motor rehabilitation: a phase Ⅰ trial. Nat Med, 2023, 29: 2366- 2374.
|
21 |
Meng FG , Zhang SX , Li BH , Ji YC , Xu TQ , Zhang HZ , Zhang JG . Dentate nucleus deep brain stimulation for treatment of upper limb dyskinesia after stroke: one case report. Zhonghua Shen Jing Wai Ke Za Zhi, 2024, 40: 305- 307.
|
|
孟凡刚, 张树新, 李保华, 季玉陈, 许天奇, 张洪振, 张建国. 小脑齿状核电刺激治疗脑卒中后上肢运动障碍1例. 中华神经外科杂志, 2024, 40: 305- 307.
|
22 |
Li X , Baker KB , O'laughlin K , Chen J , Hogue O , Machado AG , Plow EB . Paired DBS and TMS reveals dentato-cortical facilitation underlying upper extremity movement in chronic stroke survivors. Neurorehabil Neural Repair, 2024, 38: 109- 121.
|