Literature DB >> 27329771

Movement-related dynamics of cortical oscillations in Parkinson's disease and essential tremor.

Efstathios D Kondylis1, Michael J Randazzo1, Ahmad Alhourani1, Witold J Lipski1, Thomas A Wozny1, Yash Pandya1, Avniel S Ghuman2, Robert S Turner3, Donald J Crammond1, R M Richardson4.   

Abstract

Recent electrocorticography data have demonstrated excessive coupling of beta-phase to gamma-amplitude in primary motor cortex and that deep brain stimulation facilitates motor improvement by decreasing baseline phase-amplitude coupling. However, both the dynamic modulation of phase-amplitude coupling during movement and the general cortical neurophysiology of other movement disorders, such as essential tremor, are relatively unexplored. To clarify the relationship of these interactions in cortical oscillatory activity to movement and disease state, we recorded local field potentials from hand sensorimotor cortex using subdural electrocorticography during a visually cued, incentivized handgrip task in subjects with Parkinson's disease (n = 11), with essential tremor (n = 9) and without a movement disorder (n = 6). We demonstrate that abnormal coupling of the phase of low frequency oscillations to the amplitude of gamma oscillations is not specific to Parkinson's disease, but also occurs in essential tremor, most prominently for the coupling of alpha to gamma oscillations. Movement kinematics were not significantly different between these groups, allowing us to show for the first time that robust alpha and beta desynchronization is a shared feature of sensorimotor cortical activity in Parkinson's disease and essential tremor, with the greatest high-beta desynchronization occurring in Parkinson's disease and the greatest alpha desynchronization occurring in essential tremor. We also show that the spatial extent of cortical phase-amplitude decoupling during movement is much greater in subjects with Parkinson's disease and essential tremor than in subjects without a movement disorder. These findings suggest that subjects with Parkinson's disease and essential tremor can produce movements that are kinematically similar to those of subjects without a movement disorder by reducing excess sensorimotor cortical phase-amplitude coupling that is characteristic of these diseases.
© The Author (2016). Published by Oxford University Press on behalf of the Guarantors of Brain. All rights reserved. For Permissions, please email: journals.permissions@oup.com.

Entities:  

Keywords:  Parkinson’s disease; electrocorticography; essential tremor; movement-related desynchronization; phase-amplitude coupling

Mesh:

Year:  2016        PMID: 27329771      PMCID: PMC5022700          DOI: 10.1093/brain/aww144

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  32 in total

1.  The cerebral oscillatory network of parkinsonian resting tremor.

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2.  Three-dimensional localization of cortical electrodes in deep brain stimulation surgery from intraoperative fluoroscopy.

Authors:  Michael J Randazzo; Efstathios D Kondylis; Ahmad Alhourani; Thomas A Wozny; Witold J Lipski; Donald J Crammond; R Mark Richardson
Journal:  Neuroimage       Date:  2015-10-28       Impact factor: 6.556

3.  The Psychophysics Toolbox.

Authors:  D H Brainard
Journal:  Spat Vis       Date:  1997

4.  Acute effects of thalamic deep brain stimulation and thalamotomy on sensorimotor cortex local field potentials in essential tremor.

Authors:  Ellen L Air; Elena Ryapolova-Webb; Coralie de Hemptinne; Jill L Ostrem; Nicholas B Galifianakis; Paul S Larson; Edward F Chang; Philip A Starr
Journal:  Clin Neurophysiol       Date:  2012-05-26       Impact factor: 3.708

5.  Oscillations in sensorimotor cortex in movement disorders: an electrocorticography study.

Authors:  Andrea L Crowell; Elena S Ryapolova-Webb; Jill L Ostrem; Nicholas B Galifianakis; Shoichi Shimamoto; Daniel A Lim; Philip A Starr
Journal:  Brain       Date:  2012-01-16       Impact factor: 13.501

6.  Rhythm-specific pharmacological modulation of subthalamic activity in Parkinson's disease.

Authors:  A Priori; G Foffani; A Pesenti; F Tamma; A M Bianchi; M Pellegrini; M Locatelli; K A Moxon; R M Villani
Journal:  Exp Neurol       Date:  2004-10       Impact factor: 5.330

7.  Synchronized brain network associated with essential tremor as revealed by magnetoencephalography.

Authors:  Alfons Schnitzler; Christian Münks; Markus Butz; Lars Timmermann; Joachim Gross
Journal:  Mov Disord       Date:  2009-08-15       Impact factor: 10.338

8.  Functional mapping of human sensorimotor cortex with electrocorticographic spectral analysis. I. Alpha and beta event-related desynchronization.

Authors:  N E Crone; D L Miglioretti; B Gordon; J M Sieracki; M T Wilson; S Uematsu; R P Lesser
Journal:  Brain       Date:  1998-12       Impact factor: 13.501

9.  Regulation of motor representation by phase-amplitude coupling in the sensorimotor cortex.

Authors:  Takufumi Yanagisawa; Okito Yamashita; Masayuki Hirata; Haruhiko Kishima; Youichi Saitoh; Tetsu Goto; Toshiki Yoshimine; Yukiyasu Kamitani
Journal:  J Neurosci       Date:  2012-10-31       Impact factor: 6.167

Review 10.  Cerebral causes and consequences of parkinsonian resting tremor: a tale of two circuits?

Authors:  Rick C Helmich; Mark Hallett; Günther Deuschl; Ivan Toni; Bastiaan R Bloem
Journal:  Brain       Date:  2012-03-01       Impact factor: 13.501

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  33 in total

1.  Quantitatively validating the efficacy of artifact suppression techniques to study the cortical consequences of deep brain stimulation with magnetoencephalography.

Authors:  Matthew J Boring; Zachary F Jessen; Thomas A Wozny; Michael J Ward; Ashley C Whiteman; R Mark Richardson; Avniel Singh Ghuman
Journal:  Neuroimage       Date:  2019-05-31       Impact factor: 6.556

2.  Dynamics of human subthalamic neuron phase-locking to motor and sensory cortical oscillations during movement.

Authors:  Witold J Lipski; Thomas A Wozny; Ahmad Alhourani; Efstathios D Kondylis; Robert S Turner; Donald J Crammond; Robert Mark Richardson
Journal:  J Neurophysiol       Date:  2017-06-07       Impact factor: 2.714

3.  Pallidal deep brain stimulation modulates excessive cortical high β phase amplitude coupling in Parkinson disease.

Authors:  Mahsa Malekmohammadi; Nicholas AuYong; Joni Ricks-Oddie; Yvette Bordelon; Nader Pouratian
Journal:  Brain Stimul       Date:  2018-01-31       Impact factor: 8.955

4.  Subthalamic Nucleus Activity Influences Sensory and Motor Cortex during Force Transduction.

Authors:  Ahmad Alhourani; Anna Korzeniewska; Thomas A Wozny; Witold J Lipski; Efstathios D Kondylis; Avniel S Ghuman; Nathan E Crone; Donald J Crammond; Robert S Turner; R Mark Richardson
Journal:  Cereb Cortex       Date:  2020-04-14       Impact factor: 5.357

5.  Synchrony Drives Motor Cortex Beta Bursting, Waveform Dynamics, and Phase-Amplitude Coupling in Parkinson's Disease.

Authors:  Andrew B O'Keeffe; Mahsa Malekmohammadi; Hiro Sparks; Nader Pouratian
Journal:  J Neurosci       Date:  2020-06-23       Impact factor: 6.167

6.  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

7.  Pallidal stimulation in Parkinson disease differentially modulates local and network β activity.

Authors:  Mahsa Malekmohammadi; Yalda Shahriari; Nicholas AuYong; Andrew O'Keeffe; Yvette Bordelon; Xiao Hu; Nader Pouratian
Journal:  J Neural Eng       Date:  2018-07-04       Impact factor: 5.379

8.  Propofol-induced Changes in α-β Sensorimotor Cortical Connectivity.

Authors:  Mahsa Malekmohammadi; Nicholas AuYong; Collin M Price; Evangelia Tsolaki; Andrew E Hudson; Nader Pouratian
Journal:  Anesthesiology       Date:  2018-02       Impact factor: 7.892

Review 9.  Toward Electrophysiology-Based Intelligent Adaptive Deep Brain Stimulation for Movement Disorders.

Authors:  Andrea A Kühn; R Mark Richardson; Wolf-Julian Neumann; Robert S Turner; Benjamin Blankertz; Tom Mitchell
Journal:  Neurotherapeutics       Date:  2019-01       Impact factor: 7.620

10.  Prediction of mild parkinsonism revealed by neural oscillatory changes and machine learning.

Authors:  Joyce Chelangat Bore; Brett A Campbell; Hanbin Cho; Raghavan Gopalakrishnan; Andre G Machado; Kenneth B Baker
Journal:  J Neurophysiol       Date:  2020-10-14       Impact factor: 2.714

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