Lena H Ting · Biomedical Engineering
Dr. Lena H Ting's lab focuses on understanding how our brain and body work together to keep us standing and balanced, particularly as we age or when we have conditions like strokes or Parkinson's disease. Through advanced techniques like brain imaging, her research aims to identify specific neural signals that indicate balance health and fall risk. This will help develop personalized interventions to improve balance and quality of life for those with balance impairments.
David Sung-Wen Yu · Biomedical Engineering
Dr. David Sung-Wen Yu's lab focuses on understanding how a protein called SAMHD1 affects the response of breast cancer cells to radiation therapy and immunotherapy. The research aims to uncover the mechanisms by which SAMHD1 influences the immune environment in triple-negative breast cancer and explore novel strategies to improve treatment outcomes by targeting this protein. By doing so, the lab hopes to identify potential biomarkers for patient selection and develop innovative ways to enhance cancer therapy effectiveness.
Deqiang Qiu · Biomedical Engineering
Dr. Deqiang Qiu's lab at Emory University focuses on advancing our understanding of Alzheimer's Disease (AD) through innovative research combining artificial intelligence (AI) and advanced neuroimaging techniques. The team aims to develop explainable and ethically sound AI models for diagnosing and predicting AD while studying how blood flow in the brain impacts cognitive function in early stages of the disease. Their work seeks to enhance patient care and develop therapeutic interventions that address both AD and related vascular issues.
Gari David Clifford · Biomedical Engineering
Dr. Gari David Clifford's lab focuses on utilizing advanced digital technologies and artificial intelligence to improve healthcare outcomes. They are developing tools to enhance the detection of Alzheimer's disease through eye-tracking to evaluate memory, and creating low-cost ultrasound technology to monitor maternal and fetal health in underserved communities. These innovative approaches aim to make critical health assessments more accessible and equitable across diverse populations.
Candace C. Fleischer · Biomedical Engineering
Dr. Candace C. Fleischer's lab at Emory University focuses on measuring and understanding brain temperature, particularly after injuries such as strokes. The research aims to develop new, non-invasive techniques using magnetic resonance imaging to monitor brain temperature, which is crucial for patient recovery. By combining these techniques with advanced simulations, the lab seeks to improve treatment and prognostic evaluations for patients with cerebrovascular diseases.
Hyunsuk Shim · Biomedical Engineering
Hyunsuk Shim's lab at Emory University focuses on improving imaging techniques for better radiation therapy planning in brain cancer patients. By utilizing spectroscopic MRI, the lab aims to enhance tumor detection and guide more effective treatment strategies, potentially leading to longer survival rates for patients with aggressive brain tumors. The research is centered on developing advanced imaging methods and software tools to better identify infiltrative tumor margins that are often missed by conventional MRI.
Steven H Liang · Biomedical Engineering
Dr. Steven H. Liang's lab at Emory University focuses on developing advanced imaging techniques to better understand and treat Alzheimer's disease and related neuropsychiatric disorders. The research primarily involves creating novel PET ligands that can visualize specific receptors and enzymes in the brain to improve diagnosis and treatment options. The lab combines innovative chemistry with cutting-edge imaging technology to explore critical biological processes underlying these conditions.
Anant Madabhushi · Biomedical Engineering
The research lab led by Dr. Anant Madabhushi at Emory University focuses on using advanced imaging and computational techniques to improve cancer treatment outcomes. The lab's projects aim to develop innovative tools that predict patient responses to immunotherapy, identify risks associated with prostate cancer, and assess treatment needs for oral cavity cancers. By analyzing tissue images and using machine learning, they strive to enhance precision medicine in oncology.
Philip J Santangelo · Biomedical Engineering
Dr. Philip Santangelo's lab at Emory University focuses on developing innovative mRNA-based treatments for viral infections, including respiratory viruses and HIV. Their research aims to create effective antiviral therapies using a programmable RNA-targeting enzyme called Cas13, which can specifically degrade viral RNA. By exploring new ways to deliver these therapies, particularly to the female reproductive tract, they hope to enhance the prevention and treatment of infections like influenza, SARS-CoV-2, and HIV.
Shella D Keilholz · Biomedical Engineering
Dr. Shella D. Keilholz's lab at Emory University focuses on understanding the dynamic patterns of brain activity using advanced imaging techniques. They study how different types of brain cells communicate and interact during various states of neurological and psychiatric disorders. By integrating wide-field optical imaging with functional MRI, the lab aims to uncover the underlying mechanisms of brain activity patterns, which could ultimately help in diagnosing and treating brain disorders.
Sung Jin Park · Biomedical Engineering
Dr. Sung Jin Park's lab at Emory University is focused on creating advanced models of the sinoatrial node, which is crucial for heart rhythm control. By developing three-dimensional multicellular organoids that mimic the natural structure and function of the sinoatrial node, the lab aims to address heart rhythm disorders and improve therapies for patients. This research is significant as it seeks to design biological pacemakers that could lead to better treatment options for those suffering from sinoatrial node dysfunction.
David A Reiter · Biomedical Engineering
Dr. David A Reiter's lab focuses on improving the treatment of diabetic foot ulcers by using advanced imaging and blood analysis techniques. The lab's research aims to identify early markers of wound healing to prevent complications such as infections and amputations in diabetic patients. By exploring the relationship between blood flow, metabolism, and inflammatory responses, the lab seeks to develop innovative diagnostic tools and treatment strategies for better patient outcomes.
Xiaofeng Yang · Biomedical Engineering
Dr. Xiaofeng Yang's lab at Emory University focuses on developing advanced imaging technologies to improve cancer treatments, particularly stereotactic body radiation therapy (SBRT) for lung tumors. Their research aims to enhance the precision of radiation delivery by enabling real-time tracking of tumors during treatment, which is crucial given that tumors can move due to the patient's breathing. By using cutting-edge techniques in deep learning and imaging, the lab hopes to create systems that improve treatment accuracy and ultimately lead to better patient outcomes across various cancer types.
David Richard Myers · Biomedical Engineering
David Richard Myers' lab at Emory University focuses on developing innovative medical devices, particularly for measuring brain pressure. They are creating a new type of implanted pressure sensor that uses ultrasound technology to provide more accurate and stable intracranial pressure readings. This research aims to improve patient outcomes for those with neurological conditions by overcoming the limitations of current pressure monitoring devices.
Hanjoong Jo · Biomedical Engineering
Dr. Hanjoong Jo's lab at Emory University studies how changes in blood flow can lead to diseases like atherosclerosis. They investigate how certain proteins in blood vessel cells can be triggered by flow changes, causing those cells to become unhealthy and promote plaque buildup. This research aims to uncover new ways to prevent heart disease by understanding these mechanisms better.