Literature DB >> 11921122

Involvement of the medial pallidum in focal myoclonic dystonia: A clinical and neurophysiological case study.

Xuguang Liu1, Ivan C Griffin, Simon G Parkin, R Christopher Miall, Jeremy G Rowe, Ralph P Gregory, Richard B Scott, Tipu Z Aziz, John F Stein.   

Abstract

We successfully treated a patient with familial myoclonic dystonia (FMD), which primarily affected his neck muscles, with bilateral deep brain stimulation (DBS) to the medial pallidum, and investigated the role of the medial pallidum in FMD. A patient with FMD underwent bilateral implantation of DBS electrodes during which field potentials (FPs) in the medial pallidum and electromyograms (EMGs) from the affected neck muscles were recorded. The effects of high-frequency DBS to the medial pallidum on the FMD were also assessed by recording EMGs during and immediately after implantation, as well as 6 days and 8 weeks postoperatively. During spontaneous myoclonic episodes, increased FPs oscillating at 4 and 8 Hz were recorded from the medial pallidum; these correlated strongly with phasic EMG activity at the same frequencies in the contralateral affected muscles. The EMG activity was suppressed by stimulating the contralateral medial pallidum at 100 Hz during the operation and continuous bilateral DBS from an implanted stimulator abolished myoclonic activity even more effectively postoperatively. The phasic pallidal activity correlated with and led the myoclonic muscle activity, and the myoclonus was suppressed by bilateral pallidal DBS, suggesting that the medial pallidum was involved in the generation of the myoclonic activity. High-frequency DBS may suppress the myoclonus by desynchronising abnormal pallidal oscillations. This case study has significant clinical implications, because at present, there is no effective treatment for focal myoclonic dystonia. Copyright 2002 Movement Disorder Society.

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Year:  2002        PMID: 11921122     DOI: 10.1002/mds.10038

Source DB:  PubMed          Journal:  Mov Disord        ISSN: 0885-3185            Impact factor:   10.338


  16 in total

1.  Myoclonus.

Authors:  Melissa J Nirenberg; Steven J Frucht
Journal:  Curr Treat Options Neurol       Date:  2005-05       Impact factor: 3.598

2.  A review of basal ganglia circuits and physiology: Application to deep brain stimulation.

Authors:  Robert S Eisinger; Stephanie Cernera; Aryn Gittis; Aysegul Gunduz; Michael S Okun
Journal:  Parkinsonism Relat Disord       Date:  2019-01-09       Impact factor: 4.891

3.  Pallidal Deep-Brain Stimulation Disrupts Pallidal Beta Oscillations and Coherence with Primary Motor Cortex in Parkinson's Disease.

Authors:  Doris D Wang; Coralie de Hemptinne; Svjetlana Miocinovic; Jill L Ostrem; Nicholas B Galifianakis; Marta San Luciano; Philip A Starr
Journal:  J Neurosci       Date:  2018-04-16       Impact factor: 6.167

4.  Myoclonus and tremor response to thalamic deep brain stimulation parameters in a patient with inherited myoclonus-dystonia syndrome.

Authors:  Alexis M Kuncel; Dennis A Turner; Laurie J Ozelius; Paul E Greene; Warren M Grill; Mark A Stacy
Journal:  Clin Neurol Neurosurg       Date:  2008-12-10       Impact factor: 1.876

5.  Clinical and neurophysiological improvement of SGCE myoclonus-dystonia with GPi deep brain stimulation.

Authors:  Monica M Kurtis; Marta San Luciano; Qiping Yu; Robert R Goodman; Blair Ford; Deborah Raymond; Seth L Pullman; Rachel Saunders-Pullman
Journal:  Clin Neurol Neurosurg       Date:  2009-11-05       Impact factor: 1.876

Review 6.  Emerging concepts in the physiological basis of dystonia.

Authors:  Angelo Quartarone; Mark Hallett
Journal:  Mov Disord       Date:  2013-06-15       Impact factor: 10.338

Review 7.  ε-Sarcoglycan: Unraveling the Myoclonus-Dystonia Gene.

Authors:  Ana Cazurro-Gutiérrez; Anna Marcé-Grau; Marta Correa-Vela; Ainara Salazar; María I Vanegas; Alfons Macaya; Àlex Bayés; Belén Pérez-Dueñas
Journal:  Mol Neurobiol       Date:  2021-04-22       Impact factor: 5.590

8.  Effects of low-frequency stimulation of the subthalamic nucleus on movement in Parkinson's disease.

Authors:  Alexandre Eusebio; Chiung Chu Chen; Chin Song Lu; Shih Tseng Lee; Chon Haw Tsai; Patricia Limousin; Marwan Hariz; Peter Brown
Journal:  Exp Neurol       Date:  2007-09-18       Impact factor: 5.330

9.  Deep brain stimulation suppresses pallidal low frequency activity in patients with phasic dystonic movements.

Authors:  Ewgenia Barow; Wolf-Julian Neumann; Christof Brücke; Julius Huebl; Andreas Horn; Peter Brown; Joachim K Krauss; Gerd-Helge Schneider; Andrea A Kühn
Journal:  Brain       Date:  2014-09-10       Impact factor: 13.501

10.  A translational platform for prototyping closed-loop neuromodulation systems.

Authors:  Pedram Afshar; Ankit Khambhati; Scott Stanslaski; David Carlson; Randy Jensen; Dave Linde; Siddharth Dani; Maciej Lazarewicz; Peng Cong; Jon Giftakis; Paul Stypulkowski; Tim Denison
Journal:  Front Neural Circuits       Date:  2013-01-22       Impact factor: 3.492

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