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Understanding and controlling how cells work using synthetic biology

The Bugaj Lab studies how cells make decisions, and we build molecular tools to study and control cell function for basic and therapeutic application.

Dynamic Autonomy and Intelligent Robotics

As amazing as they are, modern robots are still afraid of touching the world! We work on control, modeling, and learning algorithms to enable robots to achieve human-like performance in locomotion and manipulation.

Developmental Engineering and Single-Cell Analysis

The Hughes lab uses chemical biology and microfluidics techniques to study tissue and developmental biology.

Novel Electrode Technologies for Bioelectronics and Brain-Computer Interfaces

Neuroengineering, Bioelectronics, Brain-computer interfaces, Materials Science, Nanotechnology

Improving health outcomes for adolescents living with HIV/AIDS

Research focused on improving health outcomes for adolescents living with HIV/AIDS.

Mark Minz Profile Picture

Mintz, Max

Engineering and Computing
Computer and Information Science

Characterization of fabricated inexpensive supercapacitors

Dr. Santiago-Aviles conducts his research at the interface between electrical engineering and materials science.

Santiago Aviles Jorge

Internet of Medical Things and Cyber Physical Systems

Embedded and Cyber Physical Systems

Robot-mediated Rehabilitation

Rehabilitation Robotics Lab mission is to use robotics, rehabilitation, and neuroscience techniques to translate research findings into the development of assistive and therapeutic rehabilitation robots capable of functioning in real-world rehabilitation environments.

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