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Citations to this article

Multiple stimulation parameters influence efficacy of deep brain stimulation in parkinsonian mice
Jonathan S. Schor, Alexandra B. Nelson
Jonathan S. Schor, Alexandra B. Nelson
Published June 13, 2019
Citation Information: J Clin Invest. 2019;129(9):3833-3838. https://doi.org/10.1172/JCI122390.
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Concise Communication Neuroscience Article has an altmetric score of 3

Multiple stimulation parameters influence efficacy of deep brain stimulation in parkinsonian mice

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Abstract

Deep brain stimulation (DBS) is used to treat multiple neuropsychiatric disorders, including Parkinson’s disease (PD). Despite widespread clinical use, its therapeutic mechanisms are unknown. Here, we developed a mouse model of subthalamic nucleus (STN) DBS for PD, to permit investigation using cell type–specific tools available in mice. We found that electrical STN DBS relieved bradykinesia, as measured by movement velocity. In addition, our model recapitulated several hallmarks of human STN DBS, including rapid onset and offset, frequency dependence, dyskinesia at higher stimulation intensity, and associations among electrode location, therapeutic benefit, and side effects. We used this model to assess whether high-frequency stimulation is necessary for effective STN DBS and whether low-frequency stimulation can be effective when paired with compensatory adjustments in other parameters. We found that low-frequency stimulation, paired with greater pulse width and amplitude, relieved bradykinesia. Moreover, a composite metric incorporating pulse width, amplitude, and frequency predicted therapeutic efficacy better than frequency alone. We found a similar relationship between this composite metric and movement speed in a retrospective analysis of human data, suggesting that correlations observed in the mouse model may extend to human patients. Together, these data establish a mouse model for elucidating mechanisms of DBS.

Authors

Jonathan S. Schor, Alexandra B. Nelson

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Total citations by year

Year: 2024 2023 2022 2021 2020 Total
Citations: 1 3 4 6 3 17
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Citations to this article (17)

Title and authors Publication Year
Evoked resonant neural activity long-term dynamics can be reproduced by a computational model with vesicle depletion
Sermon JJ, Wiest C, Tan H, Denison T, Duchet B
Neurobiology of Disease 2024
The Indirect Pathway of the Basal Ganglia Promotes Transient Punishment, But Not Motor Suppression
Isett BR, Nguyen KP, Schwenk JC, Yurek JR, Snyder CN, Vounatsos MV, Adegbesan KA, Ziausyte U, Gittis AH
Neuron 2023
Neuronal and synaptic adaptations underlying the benefits of deep brain stimulation for Parkinson's disease.
Xu W, Wang J, Li XN, Liang J, Song L, Wu Y, Liu Z, Sun B, Li WG
Translational Neurodegeneration 2023
Clinical neuromodulatory effects of deep brain stimulation in disorder of consciousness: A literature review
Cao T, He S, Wang L, Chai X, He Q, Liu D, Wang D, Wang N, He J, Wang S, Yang Y, Zhao J, Tan H
CNS Neuroscience & Therapeutics 2023
Local and distant cortical responses to single pulse intracranial stimulation in the human brain are differentially modulated by specific stimulation parameters
A Paulk, R Zelmann, B Crocker, A Widge, D Dougherty, E Eskandar, D Weisholtz, R Richardson, G Cosgrove, Z Williams, S Cash
Brain Stimulation 2022
Therapeutic deep brain stimulation disrupts movement-related subthalamic nucleus activity in parkinsonian mice
Schor JS, Gonzalez Montalvo I, Spratt PW, Brakaj RJ, Stansil JA, Twedell EL, Bender KJ, Nelson AB
eLife 2022
Hypothermia evoked by stimulation of medial preoptic nucleus protects the brain in a mouse model of ischaemia.
Zhang S, Zhang X, Zhong H, Li X, Wu Y, Ju J, Liu B, Zhang Z, Yan H, Wang Y, Song K, Hou ST
Nature Communications 2022
Subthalamic nucleus deep brain stimulation programming settings do not correlate with Parkinson's disease severity.
Far R, Saez I, Sardo A, Royz E, Sperry L, Zhang L, Shahlaie K, Girgis F
Acta neurochirurgica 2022
Optogenetic stimulation of glutamatergic neurons in the cuneiform nucleus controls locomotion in a mouse model of Parkinson’s disease
M Fougère, CI van der Zouwen, J Boutin, K Neszvecsko, P Sarret, D Ryczko
Proceedings of the National Academy of Sciences 2021
Differential modulation of subthalamic projection neurons by short-term and long-term electrical stimulation in physiological and parkinsonian conditions
C Xiao, Y Ji, Y Luan, T Jia, C Yin, C Zhou
Acta Pharmacologica Sinica 2021
Early decreases in cortical mid-gamma peaks coincide with the onset of motor deficits and precede exaggerated beta build-up in rat models for Parkinson's disease
E Brazhnik, N Novikov, AJ McCoy, NM Ilieva, MW Ghraib, JR Walters
Neurobiology of Disease 2021
Electrical stimulation of the nucleus basalis of meynert: a systematic review of preclinical and clinical data
M Nazmuddin, IH Philippens, T van Laar
Scientific Reports 2021
High-Frequency Deep Brain Stimulation of the Substantia Nigra Pars Reticulata Facilitates Extinction and Prevents Reinstatement of Methamphetamine-Induced Conditioned Place Preference
L Zhang, S Meng, W Chen, Y Chen, E Huang, G Zhang, Y Liang, Z Ding, Y Xue, Y Chen, J Shi, Y Shi
Frontiers in pharmacology 2021
Population-specific neuromodulation prolongs therapeutic benefits of deep brain stimulation
Spix TA, Nanivadekar S, Toong N, Kaplow IM, Isett BR, Goksen Y, Pfenning AR, Gittis AH
Science (New York, N.Y.) 2021
Systematic Evaluation of DBS Parameters in the Hemi-Parkinsonian Rat Model
S Mottaghi, O Buchholz, UG Hofmann
Frontiers in neuroscience 2020
Modular Current Stimulation System for Pre-clinical Studies
S Mottaghi, N Afshari, O Buchholz, S Liebana, UG Hofmann
Frontiers in neuroscience 2020
Deep brain stimulation-guided optogenetic rescue of parkinsonian symptoms
S Valverde, M Vandecasteele, C Piette, W Derousseaux, G Gangarossa, AA Arbelaiz, J Touboul, B Degos, L Venance
Nature Communications 2020

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