Graduate Faculty
Graduate Faculty are those who can be primary advisors of BME doctoral students and serve as departmental members on student advisory committees.
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
| Faculty Member | Laboratory | Research Focus |
|---|---|---|
|
|
Musculoskeletal Tissue Engineering |
|
|
|
Therapeutic Biomaterials |
|
|
|
Biomedical optics, specifically spectroscopic diagnostic techniques |
|
|
|
Multiphoton Laser Scanning Microscopy, novel in vivo imaging and measurement techniques, tumor biology, angiogenesis |
|
|
Assistant Professor
|
Viscoelasticity in soft biological tissues; soft tissue aging, disease and repair |
|
|
|
Auditory Neuroscience; neurophysiological, behavioral, and computational studies of hearing; signal processing for hearing aids. |
|
|
|
Diffuse optics for in vivo cancer detection, diagnosis and therapy monitoring |
|
|
|
Biomedical ultrasound, acoustics, lithotripsy, biological effects of ultrasound. |
|
|
no longer accepting students
|
Auditory neurophysiology, neural circuitry and information processing, and computational neuroscience. |
|
|
|
Engineering Smart Bandage Bio Nanomaterials for Healing Skin |
|
|
|
Neural control of coordinated movements |
|
|
no longer accepting students
|
Vestibular neurophysiology: sensory neural control underlying the coordination of postural movements |
|
|
|
general area of solid mechanics, more specifically in wave propagation and vibrations in elastic media |
|
|
|
Regulation of cell behavior by the extracellular matrix |
|
|
|
Orthopaedic biomechanics, bone growth and development, cartilage mechanics, medical image-based finite element modeling, knee biomechanics |
|
|
|
Role of cochlear outer hair cells in hearing and hearing loss, at both the molecular and systems levels |
|
|
|
Development of Novel, Clinically Applicable Ultrasound Imaging Techniques |
|
|
|
Cell Motility, and Quantitative light microscopy |
|
|
|
Carbohydrate and protein recognition, molecular design, and biomolecular sensing |
|
|
|
Design of endoscopic instruments for the visible and the infrared; optical metrology |
|
|
|
The development of realistic models of the interaction of ultrasound with inhomogeneous media and to construct measurement systems based on quantifiable ultrasonic parameters |
|
|
|
Biophysics of inner ear sensory cells, cell mechanics |
|
|
|
Visual, vestibular, and adaptive control of spatial orientation and balance |
|
|
|
Medical imaging, digital imaging, halftoning, and novel scanning techniques using Doppler shift effects |
|
|
|
Computational solid and structural mechanics and in the development of engineering practices in Classical Antiquity |
|
|
|
Puzas Lab |
Molecular and Cellular Biology of the Skeletal System |
|
|
Vascular cell communication and signaling |
|
|
|
Pro-inflammatory cytokine signal transduction and novel drug and gene therapies for Rheumatoid Arthritis. |
|
|
|
Vestibular systems, motor learning, physiological models, multi-sensory integration |
|
|
|
Cell Adhesion, Mechanical and thermodynamic properties of biological membranes; cellular mechanics and function of cytoskeletal proteins |
|
|
|
Vision science, advanced ophthalmic technologies |
|
|
|
Wismueller Lab |
Intelligent image acquisition and analysis systems in biomedicine |
|
|
Biochemical Engineering, Fermentation, Biocatalysis, Bone Marrow Tissue Engineering, Molecular Biology |
|
|
|
Customized vision correction using advanced optical techniques such as wavefront sensor, customized optics and laser refractive surgery |
|
|
|
Modeling and measuring the coherence properties of returned light through biomedical imaging, material science, remote sensing |
|
|
|
Development and medical application of magnetic resonance imaging |




