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People | Calvier Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/calvier-lab/people
Meet the Calvier Lab's team.
Partner | Calvier Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/calvier-lab/partner
Learn about the Calvier Lab's partner.
Yu (Kexin) Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/yu-kexin-lab
The Connected Aging Lab is committed to advancing brain health and emotional well-being in older adults by developing inclusive, relationship-centered interventions that bridge science, clinical care, and community.
Tran Nguyen Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/tran-nguyen-lab
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Skowyra Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/skowyra-lab
Leveraging powerful new cell-based and cell-free systems, high-speed fluorescence imaging, and in vitro reconstitution using purified components to understand how cellular organelles such as peroxisomes are formed, how they acquire their unique identities and functions, and how defects in these processes cause human disease.
Pacientes y Padres | Goss Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/goss-lab/patients-and-parents-0/pacientes-y-padres
What to expect for patients and their parents who participate in the CAPE Study
Patients and Parents | Goss Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/goss-lab/patients-and-parents-0
Explanation and expectations of procedures for patients and parents
Research | Tatara Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/tatara-lab/research
Skip to main content Research The Tatara Laboratory investigates the host/pathogen/material interface of device-related infection. Implantable devices, such as joint replacements and pacemakers, improve the lives of many patients. However, these devices are more susceptible to infection than native t…
Liu (Judy) Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/liu-judy-lab
Our research focuses on genetic epilepsy and will help us understand the roles of genes such as ASH1L and SLC13A5 through clinical patient studies and mouse models, advancing treatment options for these disorders and deepening the understanding of epilepsy.
Tu (Chengyi) Lab | UT Southwestern, Dallas, Texas
https://labs.utsouthwestern.edu/tu-chengyi-lab
Using patient-specific stem cells, tissue engineering, and omics technologies to develop precision medicine for cardiovascular disease.