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Publications | Huber Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/huber-lab/publications
Publications for Huber Lab
Research | Huber Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/huber-lab/research
The Huber lab is focused on understanding how activity-regulated transcription and translation in neurons controls synapse and circuit plasticity and development.
Past Research Studies | Brown Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/brown-lab/research/past-research-studies
Skip to main content Past Research Studies Our Most Recent Completed Studies Brown Lab's most recent research studies. We are no longer recruiting for the following studies. Understanding Tardive Dyskinesia Study This study aims to better understand tardive dyskinesia (TD), a condition characterized …
Publications | Brown Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/brown-lab/publications
Publications of Psychoneuroendocrine Research Lab
Contact | Huber Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/huber-lab/contact
Contact us to get involved at Huber Lab.
Mechanisms of experience and activity-dependent development of synapses and circuits by genes linked to neurodevelopmental disorders | Huber Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/huber-lab/research/mechanisms-experience-and-activity-dependent-development-synapses-and-circuits
We study the cellular, synaptic and molecular mechanisms of synapse and circuit development and how this is regulated by genes implicated in autism and schizophrenia.
News | Wu (Jun) Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/wu-jun-lab/news
News for Jun Wu Lab
News | Huber Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/huber-lab/news
Huber Lab News
Mechanisms of circuit dysfunction in mouse autism models and the role of synaptic scaffolding proteins | Huber Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/huber-lab/research/mechanisms-circuit-dysfunction-mouse-autism-models-and-role-synaptic-scaffolding
In addition to our work on mechanisms of FMRP function at synapses, we have also contributed to the understanding of circuit dysfunction in Fragile X Syndrome, with a goal to reveal mechanisms of FMRP function in the brain, but also to identify therapeutic targets to correct and restore circuit function in diseases such as FXS and related autistic disorders.
Interspecies Organogenesis | Wu (Jun) Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/wu-jun-lab/research/interspecies-organogenesis
A holy grail for regenerative medicine is to grow entire body parts for patients in the laboratory as replacements for damaged or failing organs.