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1.
Human Mechatronics Considerations of Sensing and Actuation Systems for Rehabilitation Application
by Kanjanapas, Kan, Ph.D.  University of California, Berkeley. 2014: 96 pages; 3640496.
2.
Design of Two Pneumatically Actuated Orthoses with Applications to Motor Learning and Rehabilitation
by Allington, James Patrick, Ph.D.  University of California, Irvine. 2012: 136 pages; 3544307.
3.
Improving large workspace precision manipulation through use of an active handrest
by Fehlberg, Mark Allan, Ph.D.  The University of Utah. 2014: 127 pages; 3619812.
4.
Smart Robotics Prosthesis Using Deep Learning and Musculoskeletal Modeling
by Chaudhari, Dipti K., M.S.  California State University, Long Beach. 2017: 56 pages; 10690581.
5.
Better, Faster, Stronger: Measuring and Transcending Your Physical Limits with Wearable Robots
by Matthew, Robert Peter, Ph.D.  University of California, Berkeley. 2016: 142 pages; 10193548.
6.
The Effect of Robotic Assistance on Human Musculoskeletal System for Reaching Tasks
by Yung, Stephanie C., M.S.  California State University, Long Beach. 2017: 120 pages; 10603846.
7.
Rehabilitating Asymmetric Gait Using Asymmetry
by Ramakrishnan, Tyagi, Ph.D.  University of South Florida. 2017: 124 pages; 10641218.
9.
Compliant Knee Exoskeletons and Their Effects on Gait Biomechanics
by Shamaei Ghahfarokhi, Kamran, Ph.D.  Yale University. 2014: 184 pages; 3582223.
10.
Control Methods for Improving Mobility for Persons with Lower Limb Paralysis
by Ekelem, Andrew, Ph.D.  Vanderbilt University. 2018: 116 pages; 13877286.
12.
Toward Consistent Robotics Simulation Through Validation
by Taylor, James R., Ph.D.  The George Washington University. 2018: 136 pages; 10929572.
13.
Analysis and Application of Passive Gait Rehabilitation Methods
by Handzic, Ismet, Ph.D.  University of South Florida. 2014: 338 pages; 3631326.
14.
An Egocentric Computer Vision-Based Robotic Wheelchair
by Kutbi, Mohammed, Ph.D.  Stevens Institute of Technology. 2018: 131 pages; 10979494.
15.
Development of a prototype movement assistance system for extravehicular activity gloves
by Hill, Tyler N., M.S.  The University of North Dakota. 2014: 115 pages; 1583134.
16.
Middle school girls: Perceptions and experiences with robotics
by Hyun, Tricia, Ed.D.  California State University, Fullerton. 2014: 169 pages; 3581378.
18.
P300 Control Matrix: A Novel Approach to P300 Speller Matrix
by Odelade, Mobolaji, M.S.  North Carolina Agricultural and Technical State University. 2018: 58 pages; 10976563.
21.
Exercise Prescription for Cardiac Rehabilitation: A Guide for Clinicians
by Rocha, Kara L., M.S.  California State University, Long Beach. 2018: 58 pages; 10974777.
22.
Control and Steering of a Small 3D Printed Rover and its Applications to Engineering Education
by Bleything, Talesa Rene, M.S.  University of California, San Diego. 2016: 109 pages; 10195728.
24.
The Role of Psychological Flexibility in Injury Rehabilitation
by DeGaetano, Jessica McCarthy, D.Ps.  Kean University. 2014: 66 pages; 3642244.
25.
Towards an Integrated Approach to Soft Robot Design
by White, Edward L., Ph.D.  Purdue University. 2017: 255 pages; 10268749.
26.
Cable Actuated Finger Exoskeleton development and examination of index finger and thumb coupling
by Jones, Christopher L., Ph.D.  Illinois Institute of Technology. 2014: 261 pages; 3581740.
27.
Using Simplified Models and Limited-Horizon Planning to React to Time-Critical Problems
by Lurz, Joshua Paul, D.Sc.  The George Washington University. 2019: 145 pages; 13419796.
28.
Electrically Activated Stiffness-Switching with Low-Melting-Point Conductive Thermoplastics
by Rich, Steven I., Ph.D.  Carnegie Mellon University. 2018: 88 pages; 10977483.
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