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msa-autonomic-failure-mechanism

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MSA Autonomic Failure Mechanism Experiment

Overview

flowchart TD MSA["MSA"] -->|"contributes to"| synucleinopathies["synucleinopathies"] MSA["MSA"] -->|"associated with"| NEURODEGENERATION["NEURODEGENERATION"] MSA["MSA"] -->|"associated with"| SCHIZOPHRENIA["SCHIZOPHRENIA"] MSA["MSA"] -->|"co discussed"| PARKINSON["PARKINSON"] MSA["MSA"] -->|"co discussed"| PARKINSON_S["PARKINSON'S"] alpha_synuclein["alpha_synuclein"] -->|"causes"| MSA["MSA"] HAND["HAND"] -->|"associated with"| MSA["MSA"] ALS["ALS"] -->|"associated with"| MSA["MSA"] AUTISM["AUTISM"] -->|"associated with"| MSA["MSA"] DEPRESSION["DEPRESSION"] -->|"associated with"| MSA["MSA"] EPILEPSY["EPILEPSY"] -->|"associated with"| MSA["MSA"] style MSA fill:#4fc3f7,stroke:#333,color:#000

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Research Question

What drives the severe and early autonomic failure in MSA compared to PD, and can we identify protective strategies? Specifically, we aim to determine:

  • Which autonomic nuclei are primarily responsible for the failure?
  • What is the relative contribution of central vs. peripheral autonomic pathology?
  • Can oligodendrocyte dysfunction in autonomic regions contribute to neuronal loss?
  • Are there modifiable factors that could slow autonomic progression?
  • Hypothesis

    bfe67bb53c3c532ef4237fa3323691ae27404769

    Experimental Design

    bfe67bb53c3c532ef4237fa3323691ae27404769

    Clinical Applications


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