[1] Report on Stroke Prevention and Treatment in China Writing Group. Brief report on stroke prevention and treatment in China, 2020[J]. Zhongguo Nao Xue Guan Bing Za Zhi, 2022,19:136-144.[《中国脑卒中防治报告》编写组.《中国脑卒中防治报告2020》概要[J]. 中国脑血管病杂志, 2022, 19:136-144.] [2] Xie SP, Zhao LJ, Liu Q. An analysis of recurrence and disability of stroke[J]. Zhongguo Lin Chuang Shen Jing Ke Xue, 2001, 9:362-364.[谢淑萍, 赵立杰, 刘清. 脑卒中的复发及病残情况分析[J]. 中国临床神经科学, 2001, 9:362-364.] [3] Buma F, Kwakkel G, Ramsey N. Understanding upper limb recovery after stroke[J]. Restor Neurol Neurosci, 2013, 31:707-722. [4] Keser Z, Ikramuddin S, Shekhar S, Feng W. Neuromodulation for post-stroke motor recovery: a narrative review of invasive and non invasive tools[J]. Curr Neurol Neurosci Rep, 2023, 23: 893-906. [5] Cury RG, França C, Duarte KP, Paraguay I, Diniz JM, Cunha P, Galhardoni R, Silva V, Iglesio R, Bissoli AB, Lepski G, Barbosa ER, Teixeira MJ, de Andrade DC. Safety and outcomes of dentate nucleus deep brain stimulation for cerebellar ataxia [J]. Cerebellum, 2022, 21:861-865. [6] Strother MK, Buckingham C, Faraco CC, Arteaga DF, Lu P, Xu Y, Donahue MJ. Crossed cerebellar diaschisis after stroke identified noninvasively with cerebral blood flow-weighted arterial spin labeling MRI[J]. Eur J Radiol, 2016, 85:136-142. [7] Wang J, Suo S, Zu J, Zhu W, Pan L, Song S, Li Y, Li L, Chen Z, Xu J. Detection of crossed cerebellar diaschisis by intravoxel incoherent motion MR imaging in subacute ischemic stroke[J]. Cell Transplant, 2019, 28:1062-1070. [8] Wang J, Pan LJ, Zhou B, Zu JY, Zhao YX, Li Y, Zhu WQ, Li L, Xu JR, Chen ZA. Crossed cerebellar diaschisis after stroke detected noninvasively by arterial spin-labeling MR imaging[J]. BMC Neurosci, 2020, 21:46. [9] Machado A, Baker KB. Upside down crossed cerebellar diaschisis: proposing chronic stimulation of the dentatothalamocortical pathway for post-stroke motor recovery [J]. Front Integr Neurosci, 2012, 6:20. [10] Yoo YJ, Lim SH, Kim Y, Kim JS, Hong BY, Yoon MJ, Rim H, Park GY. Structural integrity of the cerebellar outflow tract predicts long-term motor function after middle cerebral artery ischemic stroke[J]. Neurorehabil Neural Repair, 2023, 37:554-563. [11] Liu J, Shan Y, Cui BX, Yan SZ, Ye LL, Cao L, Zhang M, Lu J. Prediction of motor recovery after subacute cerebral infarction: role of corticocerebellar pathway integrity [J]. Neurorehabil Neural Repair, 2025, 39:765-775. [12] Nicholson CL, Coubes P, Poulen G. Dentate nucleus as target for deep brain stimulation in dystono-dyskinetic syndromes[J]. Neurochirurgie, 2020, 66:258-265. [13] Horisawa S, Arai T, Suzuki N, Kawamata T, Taira T. The striking effects of deep cerebellar stimulation on generalized fixed dystonia: case report[J]. J Neurosurg, 2019, 132:712-716. [14] Zhang ZK, Qin DY, Wang XB. Stereotactic study of the dentate nucleus of the cerebellum in Chinese[J]. Bengbu Yi Xue Yuan Xue Bao, 1986, (02):104.[张作楷, 秦登友, 王小标. 国人小脑齿状核立体定位研究[J]. 蚌埠医学院学报, 1986, (02):104.] [15] Song HJ, Chen YM. Location study and clinical application of the dentate nuclens of the cerebellnm in Chinese[J]. Li Ti Ding Xiang He Gong Neng Xing Shen Jing Wai Ke Za Zhi, 1996, 9:1-2.[宋鹤九, 陈玉敏. 国人小脑齿状核的解剖定位研究及其临床应用[J]. 立体定向和功能性神经外科杂志, 1996, 9:1-2.] [16] Dum RP, Li C, Strick PL. Motor and nonmotor domains in the monkey dentate[J]. Ann NY Acad Sci, 2002, 978:289-301. [17] 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[J]. Brain Res, 2009, 1280:107-116. [18] 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 [J]. Exp Neurol, 2010, 226:259-264. [19] Chan HH, Fisher BM, Oimoen MA, Chintada L, Khanna H, Sonneborn CA, Hogue O, Machado AG, Baker KB. Carry-over effect of deep cerebellar stimulation-mediated motor recovery in a rodent model of traumatic brain injury[J]. Neurorehabil Neural Repair, 2024, 38(11/12):808-819. [20] Chen Y, Xu Z, Ma Y, Liu T, Tian X, Zhu Z, Zheng W, Wang Y, Zheng R, Xing J, Wang W, Sun F. Deep brain stimulation combined with morroniside promotes neural plasticity and motor functional recovery after ischemic stroke[J]. Front Pharmacol, 2024, 15:1457309. [21] Baker KB, Plow EB, Nagel S, Rosenfeldt AB, Gopalakrishnan R, Clark C, Wyant A, Schroedel M, Ozinga J 4th, 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[J]. Nat Med, 2023, 29:2366-2374. [22] Meng FG, Zhang SX, Li BH, Ji YC, Xu TQ, Zhang HZ, Zhang JG. Cerebellar dentate nucleus electrical stimulation for post-stroke upper limb motor dysfunction: one case report[J]. 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卒中后上肢运动障碍1例[J]. 中华神经外科杂志, 2024, 40:305-307.] [23] Tai CH, Tseng SH. Cerebellar deep brain stimulation for movement disorders[J]. Neurobiol Dis, 2022, 175:105899. [24] Li X, Baker KB, O'Laughlin K, Lin YL, Baker K, Chen R, Chen J, Machado AG, Plow EB. Acute dentate nucleus deep brain stimulation modulates corticomotor excitability in chronic stroke survivors[J]. Brain Stimul, 2025, 18:640-648. [25] 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[J]. Neurorehabil Neural Repair, 2024, 38:109-121. [26] Zhang JJ, Sui Y, Sack AT, Bai Z, Kwong PWH, Sanchez Vidana DI, Xiong L, Fong KNK. Theta burst stimulation for enhancing upper extremity motor functions after stroke: a systematic review of clinical and mechanistic evidence[J]. Rev Neurosci, 2024, 35:679-695. [27] 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]. J Neurosci, 2024, 44: e2149232024. |