Clinical trials Below are current clinical trials.138 studies in Neurology (open studies only). Filter this list of studies by location, status and more. Study of Neurophysiologically Based Brain State Tracking and Modulation in Focal Epilepsy Rochester, Minn. The purpose of this study is to track seizure occurrence, seizure probability, behavioral state, cognition, and mood using an implantable brain sensing and stimulation device (Medtronic RC+S Summit) coupled to an external, handheld, patient assistant device (PAD) with capability for patient interaction (patient data input). The system (RC+S & PAD) provides intracranial EEG (iEEG) sensing, electrical brain stimulation, and machine learning algorithms running on the RC+S and PAD that will be coupled with electrical brain stimulation (EBS) to prevent seizures and improve quality of life in patients with epilepsy A Study of Pyridostigmine in Postural Tachycardia Syndrome Rochester, Minn. This is a 3-day study comparing pyridostigmine versus placebo in the treatment of postural tachycardia syndrome (POTS). The researchers expect pyridostigmine to improve tachycardia and stabilize blood pressure. A Study of Nervous System Involvement of Coccidioidomycosis at Mayo Clinic Hospital in Arizona Scottsdale/Phoenix, Ariz. The purpose of this study is to gain a better understanding of the presentation, diagnostics, disease course and treatment variations, as well as the factors that may influence features of neuro-invasive Coccidioidomycosis. Synucleinopathies Rochester, Minn. The goals of the study are to prospectively evaluate clinical and laboratory biomarkers of multiple system atrophy and Parkinson’s disease at early clinical disease, at a premotor stage (PAF), and even at a prodromal stage (RBD). A Study to Evaluate a Color Test for Patients with Optic Nerve Diseases Rochester, Minn. The purpose of this study is to evaluate the clinical utility of a quantitative test to measure how color saturation appears in patients with diseases of the optive nerve. A Study of the Role Connective Tissue and Wound Healing Characteristics Play in Patients with Multiple Brain Aneurysms Rochester, Minn. The purpose of this study is to develop an increased understanding of the role of connective tissue structural abnormalities and impaired function (i.e. wound healing) in the development of intracranial aneurysms. A Study of Factors That Predispose, Promote, and Perpetuate Post-Traumatic Dizziness Rochester, Minn. The purpose of this study is to investigate whether recent, groundbreaking discoveries about key pathophysiologic processes that drive chronic dizziness in patients without traumatic brain injury (TBI9,10) are applicable to patients with post-mTBI vestibular disability. We expect the results of this project to have practical clinical and research applications, providing novel data for two future steps: Immune Phenotyping in Amyotrophic Lateral Sclerosis Rochester, Minn. The goals of this study are to identify biomarkers that allow improved staging or prognosis of the disease, and through the discovery of previously unrecognized immune abnormalities in ALS we aim to eventually identify immune therapies that may provide benefit in ALS. A Study to Evaluate Quantitative Phenotypes of Movement Disorders Jacksonville, Fla. The purpose of this study is to determine if adaptive rhythmic auditory stimulation (ARAS) is a safe means of improving gait; i.e., fewer falls, abrupt accelerations/decelerations in patients with movement disorders. Furthermore, we aim to provide patients with a safe environment in which they can safely navigate through an enjoyable experience (guided art tour) that provides exercise, social engagement, and exposure to art. A Study to Evaluate Pluripotent Stem Cell Models for Spinal Muscular Atrophy (SMA) Patients Rochester, Minn., La Crosse, Wis., Jacksonville, Fla. The purpose of this study is to perform RNA sequencing on induced pluripotent stem cells (iPSC). By comparing the gene expression of motor neurons derived from iPSC cells of phenotypically discordant Spinal Muscular Atrophy (SMA) sibling pairs and individual cases of SMA, we hope to identify potential protective gene modifiers of SMA. Identifying protective gene modifiers will increase our understanding of the molecular pathogenesis of SMA. 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