Stuart G Campbell · Engineering
Dr. Stuart G Campbell's lab at Yale University focuses on understanding cardiac diseases, particularly Arrhythmogenic Cardiomyopathy (ACM), which can cause life-threatening heart rhythm problems. The lab develops innovative computational methods and experimental approaches to identify gene mutations responsible for these conditions, enhancing genetic screening to predict which patients might be at risk. Their work aims to uncover the complex interactions between genetic factors and external stressors, such as exercise, to improve therapies and preventative strategies for individuals with heart issues.
Rong Fan · Engineering
Rong Fan's research lab at Yale University focuses on understanding non-Hodgkin lymphomas, particularly how follicular lymphoma transforms into more aggressive forms. Using cutting-edge technologies in single-cell and spatial omics, the lab maps the complex interactions between different cell types in tumors to identify potential biomarkers and therapeutic targets. Their work aims to build a comprehensive atlas of lymphomas, which will help in predicting disease progression and improving patient treatment strategies.
Rajit Manohar · Engineering
Dr. Rajit Manohar's lab at Yale University focuses on developing advanced devices for neuromodulation to better control epilepsy seizures. The lab works on creating low-power, programmable processors that can analyze brain signals and modulate neural activity in real-time. This research aims to enhance the treatment options available for patients who are resistant to conventional therapies.
Jay D. Humphrey · Engineering
Dr. Jay D. Humphrey's lab at Yale University focuses on understanding diseases of the thoracic aorta, which can lead to serious health issues like aneurysms and dissections. The lab investigates how cells interact with their surrounding structures to maintain healthy tissue, particularly in the context of genetic conditions such as Marfan syndrome. By using advanced computational models and mouse models, the lab aims to uncover the underlying mechanisms of thoracic aortopathy and identify potential new treatment strategies.