Works by Johnson, Matthew D. (exact spelling)

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  1.  20
    Individual Magnetoencephalography Response Profiles to Short-Duration L-Dopa in Parkinson’s Disease.Edgar Peña, Tareq M. Mohammad, Fedaa Almohammed, Tahani AlOtaibi, Shahpar Nahrir, Sheraz Khan, Vahe Poghosyan, Matthew D. Johnson & Jawad A. Bajwa - 2021 - Frontiers in Human Neuroscience 15.
    Clinical responses to dopamine replacement therapy for individuals with Parkinson’s disease are often difficult to predict. We characterized changes in MDS-UPDRS motor factor scores resulting from a short-duration L-Dopa response, and investigated how the inter-subject clinical differences could be predicted from motor cortical magnetoencephalography. MDS-UPDRS motor factor scores and resting-state MEG recordings were collected during SDR from twenty individuals with a PD diagnosis. We used a novel subject-specific strategy based on linear support vector machines to quantify motor cortical oscillatory frequency (...)
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  2.  22
    7T MRI and Computational Modeling Supports a Critical Role of Lead Location in Determining Outcomes for Deep Brain Stimulation: A Case Report.Lauren E. Schrock, Remi Patriat, Mojgan Goftari, Jiwon Kim, Matthew D. Johnson, Noam Harel & Jerrold L. Vitek - 2021 - Frontiers in Human Neuroscience 15.
    Subthalamic nucleus deep brain stimulation is an established therapy for Parkinson’s disease motor symptoms. The ideal site for implantation within STN, however, remains controversial. While many argue that placement of a DBS lead within the sensorimotor territory of the STN yields better motor outcomes, others report similar effects with leads placed in the associative or motor territory of the STN, while still others assert that placing a DBS lead “anywhere within a 6-mm-diameter cylinder centered at the presumed middle of the (...)
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