Clint Zeagler

Clint Zeagler
clintzeagler@gatech.edu

While teaching textiles and fashion design studio classes at Savannah College of Art & Design, Zeagler realized his true passion lies in bridging the gap between the disciplines of Wearable design and Human-Centered Computing. A diverse background in fashion, industrial design, and textiles drive his research on electronic textiles and on-body interfaces with the Contextual Computing Group of the GVU center of Georgia Tech. As a Principal Research Scientist for the Georgia Tech Interactive Media Technology Center and Instructor for the Georgia Tech School of Industrial Design he teaches courses on Wearable Product Design and an ID section of Mobile and Ubiquitous Computing (MUC).  Zeagler enjoys working with corporations such as HP/Palm and Google to bring real-world experience into the classroom. He recently acquired a NASA Georgia Space Consortium grant to fund MUC student projects on wearable computing for space—a wonderful opportunity for undergraduate students. He is also a member of the NASA Wearable Technology Cluster a group of scientists and academics working together to give advice to those in NASA working on wearable computing or electronic textile projects. A deep understanding of the garment production process fosters innovation in his research. Zeagler’s company Pecan Pie Couture hand-dyed, embroidered, and screen-printed textiles and garments. Building upon that skillset, his recent research led to the creation of the Electronic Textile Interface Swatch Book (ESwatchBook) in collaboration with Thad Starner. The ESwatchBook is designed to help facilitate discussions between the skill and craft-based design disciplines (.i.e. fashion) and more technical disciplines (.i.e. computer science). To put the ESwatchBook’s capabilities to the test, he developed a series of workshops at multiple colleges with the purpose of bringing together designers with engineers/technology specialists. The workshops were funded by a National Endowment for the Arts grant, which he co-authored. Zeagler’s most recent endeavor FIDO: Facilitating Interactions for Dogs with Occupations is an exploration into using wearable electronics to enhance interactions between service dogs and their handler/owners.

Director of Strategic Partnerships (IPaT)
Principal Research Scientist
Additional Research
Wearable Computing; Textile Interfaces; Animal Computer Interaction
University, College, and School/Department
Clint
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Jeremy Johnson

Jeremy Johnson
jeremy@ipat.gatech.edu

Jeremy Johnson is a research scientist with IPaT where he has been working since 1999. Jeremy’s interests include ubiquitous computing, augmented reality, human-computer interaction, computer audio, sound design and creative applications of computing to the arts. At IMTC he contributes his skill as a software engineer to guide software development projects through the full software life cycle, from requirements gathering to deployment.

Assistant Director of Research Engineering
Senior Research Scientist
Additional Research

Ubiquitous Computing; Augmented Reality; Human-Computer Interaction; Computer Audio; Sound Design

University, College, and School/Department
Jeremy
Johnson
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Richard Starr

Richard Starr
rstarr7@gatech.edu

Richard Starr is a research scientist responsible for the IPaT Secure Data Enclave (IPaT SDE) (formerly the Protected Health Data infrastructure at IPaT). He develops and manages a common infrastructure to work with healthcare data. This secure environment can be employed across campus to house research data to maintain compliance with HIPAA, IRB, and partnership agreements.

Research Scientist II
Additional Research

Healthcare data; data science

Research Focus Areas
Richard
Starr
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Rudolph Gleason

Rudolph Gleason
rudy.gleason@me.gatech.edu

Rudolph (Rudy) L. Gleason began at Tech in Fall 2005 as an assistant professor. Prior, he was a postdoctoral fellow at Texas A&M University. He is currently a professor in the School of Mechanical Engineering and the School of Biomedical Engineering in the College of Engineering. Gleason’s research program has two key and distinct research aims. The first research aim is to quantify the link between biomechanics, mechanobiology, and tissue growth and remodeling in diseases of the vasculature and other soft tissues. The second research aim is to translate engineering innovation to combat global health disparities and foster sustainable development in low-resource settings around the world. Gleason serves as a Georgia Tech Institute for People and Technology initiative lead for research activities related to global health and well-being.

Professor, Mechanical Engineering and Biomedical Engineering
Joint Appointment in the School of Biomedical Engineering
Phone
404-385-7218
Office
TEP 205
Additional Research

Cardiovascular mechanics, soft tissue growth and remodeling, and tissue engineering

Google Scholar
https://scholar.google.com/scholar?hl=en&as_sdt=0,11&q=rl+gleason+jr&oq=RL+Gleason
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