Ji-Xin Cheng · Engineering
Professor Ji-Xin Cheng's lab at Boston University focuses on developing advanced imaging techniques to tackle pressing health issues, particularly in detecting antimicrobial resistance and understanding cellular processes. They aim to create tools that can quickly identify how bacteria and fungi respond to treatments at the single-cell level, which is vital for improving clinical outcomes. The lab also explores novel microscopy technologies to visualize and understand the molecular mechanisms in living tissues, which could lead to breakthroughs in disease diagnosis and treatment.
Michael B Albro · Engineering
Dr. Michael B Albro's lab at Boston University focuses on innovative approaches to improve cartilage regeneration and diagnosis of joint conditions. The lab develops bio-inspired scaffolds that replicate the natural mechanisms for cartilage growth, aiming to enhance tissue quality and personalize treatment based on patient-specific needs. Additionally, they utilize advanced Raman spectroscopy techniques to assess cartilage health in real time, facilitating better outcomes for conditions like Post-Traumatic Osteoarthritis (PTOA).
Jerome Mertz · Engineering
Jerome Mertz's research lab focuses on improving imaging techniques in biology using superresolution fluorescence microscopy. They aim to develop a new method based on random speckle illumination that allows for faster and more effective imaging of biological samples, particularly mouse brain tissue. This research will enhance the study of gene expression and improve the analysis speed of biological samples.
Yanhang Katherine Zhang · Engineering
Dr. Yanhang Katherine Zhang's lab at Boston University focuses on understanding the role of cerebrovascular health in neurodegenerative diseases like Alzheimer's and the mechanical properties of arterial walls in conditions like aortic dissection. The research aims to connect changes in blood vessel structure and function with cognitive decline and disease progression, potentially leading to new diagnostic and treatment options. They employ advanced imaging and modeling techniques to study these complex interactions.
Xue Han · Engineering
Dr. Xue Han's lab at Boston University focuses on understanding epilepsy, a common and serious brain disorder affecting millions of people. The research explores the cellular and network mechanisms behind interictal biomarkers, which can predict seizures. By using advanced imaging techniques and neuromodulation treatments, the lab aims to improve patient care for those with drug-resistant epilepsy.
Sandor Vajda · Engineering
Dr. Sandor Vajda's lab at Boston University specializes in the analysis and prediction of molecular interactions, particularly focusing on proteins. The team works on methodologies that combine machine learning with physics-based techniques to improve the accuracy of predicting how proteins and ligands interact. They have achieved notable success in established competitions by enhancing traditional docking methods to better address the challenges posed by limited data.
Irving J. Bigio · Engineering
Dr. Irving J. Bigio's lab at Boston University focuses on developing advanced imaging techniques to study myelin, the protective sheath surrounding nerve fibers, in the brain. By optimizing a method called quantitative birefringence microscopy (qBRM), the lab aims to enhance our understanding of myelin breakdown and its relation to cognitive and motor impairments in aging monkeys. The research ultimately seeks to provide new insights into neurological disorders such as Alzheimer's disease and multiple sclerosis.
Anna Devor · Engineering
Dr. Anna Devor's lab focuses on understanding the complex interactions within the pial neurovascular circuit, which helps manage blood flow in the brain. Using advanced imaging techniques on both mice and humans, the lab studies how these blood vessels oscillate and respond to neuronal activity. Their research combines experimental techniques with mathematical modeling to explore how these systems function and maintain brain health.
David A Boas · Engineering
Dr. David Boas' lab focuses on understanding how stroke affects brain recovery, specifically how changes in blood flow and blood vessels influence healing. They use advanced imaging techniques to study these processes in animal models of stroke. Ultimately, their research aims to improve treatment and recovery strategies for stroke patients by linking vascular changes to brain function recovery.
Elise F Morgan · Engineering
Dr. Elise F. Morgan's lab at Boston University focuses on understanding how aging affects the healing of bone injuries. The lab investigates how manipulating the mechanical environment around bone cells can enhance the ability of aged cells to regenerate bone effectively. By designing advanced scaffolds that mimic these mechanical cues, the research aims to develop new treatments for improved bone healing in older adults.
Roberto Paiella · Engineering
Roberto Paiella's lab focuses on developing innovative imaging technologies to improve blood testing, particularly for patients who cannot undergo traditional blood draws. By creating new miniature microscopes that can visualize blood flow in real time without invasive procedures, the lab aims to revolutionize diagnostics, especially for vulnerable populations. Their work combines advanced optics with engineering to provide high-quality images of blood cells, which can help in diagnosing diseases quickly and accurately.
Christopher S Chen · Engineering
Dr. Christopher S. Chen's lab at Boston University focuses on engineering tissues that can mimic the natural functions of human organs, specifically the liver. The lab studies how cells communicate and work together to create structures, like blood vessels, that are essential for organ health. By developing innovative techniques for controlling cell interactions, this research aims to advance the ability to grow transplantable tissues and understand how cells respond to mechanical forces, which could lead to better healing methods.
Archana Venkataraman · Engineering
Dr. Archana Venkataraman's lab focuses on using advanced machine learning techniques to improve the understanding and prediction of language recovery in people who have suffered a stroke. By combining various types of neuroimaging data and patient demographics, the lab aims to identify effective therapies for aphasia, a serious condition that affects communication abilities. The long-term goal is to develop tools that can provide personalized predictions about recovery outcomes, helping clinicians offer better guidance to their patients.
Wilson Wong · Engineering
The research lab of Dr. Wilson Wong at Boston University focuses on innovative engineering approaches in synthetic biology, particularly in the development of advanced cellular diagnostic devices and targeted immunotherapies. The lab employs genetic engineering techniques to create more efficient diagnostic circuits and therapeutic cells, addressing challenges in cancer detection and autoimmune diseases like type 1 diabetes. Their work aims to enhance the precision and effectiveness of treatments while ensuring safety and specificity in targeting diseased cells.