Clinical trials Below are current clinical trials.115 studies in Neurology (open studies only). Filter this list of studies by location, status and more. A Study to Evaluate Caregiver Connections via Technology for Patients with Alzheimer's and Other Types of Dementia Rochester, Minn. The purpose of this study is to optimize profile questionnaire and matching algorithm developed in Phase I and implement in final website design, and to determine if algorithmically matched participants have statistically significant increase in match satisfaction and self-reported sense of resiliency and quality of life over randomly matched caregivers. 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. 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 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. A Study to Evaluate Sex Differences in Multiple Sclerosis Spectrum of Demyelinating Disorders Rochester, Minn. The purposes of this study are to explore the association between female sex, reproductive history and clinical phenotypic variability in multiple sclerosis (MS), to explore the association between female sex, reproductive history and radiologic phenotypic variability in MS, and to explore the association between female sex, genetic and environmental interactions in MS. 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 Long Term Study of Molecular and Structural Imaging in Atypical Alzheimer's Disease Rochester, Minn. The purpose of this study is to learn more about amyloid and tau burden in the brain of patients with Atypical Alzheimer's Disease and how that burden may change over a two-year period. 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 Analyze NMS-03305293 and Temozolomide in Adult Patients with Recurrent Glioblastoma Rochester, Minn., Jacksonville, Fla., Scottsdale/Phoenix, Ariz. The objectives of this study are to determine the Maximum Tolerated Dose (MTD) and the Recommended Phase 2 Dose (RP2D) of NMS-03305293 in combination with temozolomide (TMZ) in patients with diffuse gliomas at first relapse (Phase I), and to determine the antitumor effectiveness of the combination of NMS-03305293 and TMZ in patients with isocitrate dehydrogenase (IDH) wild type glioblastoma at first relapse as measured by the 6-month Progression Free Survival (PFS) rate (Phase II). A Study to Evaluate the Safety, Tolerability, Pharmacokinetics and Anti-tumor Activity of WSD0922-FU Scottsdale/Phoenix, Ariz., Jacksonville, Fla., Rochester, Minn. The purpose of this study is to determine the maximum tolerated dose (MTD) and/or the recommended Phase 2 dose (RP2D) of WSD0922-FU in subjects with recurrent glioblastoma, IDH wildtype (GBM), anaplastic astrocytoma, IDH wildtype (AA) and CNS metastases of non-small cell lung cancer (NSCLC). 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