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1.
An Egocentric Computer Vision-Based Robotic Wheelchair
by Kutbi, Mohammed, Ph.D.  Stevens Institute of Technology. 2018: 131 pages; 10979494.
2.
Building Safety Maps using Vision for Safe Local Mobile Robot Navigation
by Murarka, Aniket, Ph.D.  The University of Texas at Austin. 2009: 189 pages; 3438825.
3.
Qualitative image based localization in a large building
by Card, Christopher Tyler, M.S.  Colorado School of Mines. 2015: 41 pages; 1587434.
4.
A Vision-Based Algorithm for UAV State Estimation During Vehicle Recovery
by Burns, William Robert, M.S.  University of Kansas. 2011: 93 pages; 1499724.
5.
A growth-based approach to the automatic generation of navigation meshes
by Hale, David Hunter, Ph.D.  The University of North Carolina at Charlotte. 2011: 212 pages; 3493710.
6.
Computer vision for dual spacecraft proximity operations – A feasibility study
by Stich, Melanie Katherine, M.S.  University of California, Davis. 2015: 135 pages; 1604072.
8.
Saliency based image processing to aid retinal prosthesis recipients
by Parikh, Neha, Ph.D.  University of Southern California. 2010: 194 pages; 3418264.
9.
Navigation and autonomous control of MAVs in GPS-denied environments
by Kun, Li, Ph.D.  National University of Singapore (Singapore). 2015: 225 pages; 10006039.
10.
Generation and analysis of verbal route directions for blind navigation
by Nicholson, John, Ph.D.  Utah State University. 2010: 210 pages; 3409234.
11.
Distributed, vision -based control laws for motion coordination in multi-agent systems
by Moshtagh, Nima, Ph.D.  University of Pennsylvania. 2008: 161 pages; 3328697.
12.
A vision of language: The mechanism, development and consequence of an interaction between language and vision
by Dessalegn, Banchiamlack, Ph.D.  The Johns Hopkins University. 2009: 117 pages; 3357163.
13.
Biologically inspired mobile robot vision localization
by Siagian, Christian, Ph.D.  University of Southern California. 2009: 157 pages; 3368719.
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17.
Machine Vision Techniques for Crane Workspace Mapping
by Rahman, Mohammad Sazzad, M.S.  University of Louisiana at Lafayette. 2015: 97 pages; 1596637.
18.
A Highly Accurate and Reliable Data Fusion Framework for Guiding the Visually Impaired
by Elmannai, Wafa, Ph.D.  University of Bridgeport. 2018: 192 pages; 10931368.
19.
Formation control and connectivity control for mobile robot networks using vision based measurements
by Poonawala, Hasan A., Ph.D.  The University of Texas at Dallas. 2014: 126 pages; 3629039.
20.
SE4S toolkit extension project vision diagramming tool build your vision
by Raufdeen, Ramzi A., M.S.  California State University, Long Beach. 2016: 32 pages; 10147325.
21.
DiffFrameNet: A Deep Learning Method for Intuitive Robot Navigation
by Cao, Bo, M.S.  University of Colorado at Boulder. 2018: 69 pages; 10809457.
22.
Interactive visual prototyping of computer vision applications
by Maynes-Aminzade, Daniel, Ph.D.  Stanford University. 2008: 105 pages; 3332995.
24.
Vision of creation: A Jungian view of Hildegard's "On the Origin of Life" vision
by Hudson, Brenda Kay, Ph.D.  Pacifica Graduate Institute. 2011: 195 pages; 3716788.
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Web-Based Usability Evaluation of Text-Resizing Methods and Users' Visual Fatigue on Online Reading Tasks
by Chan, Mei Ling, M.S.  California State University, Long Beach. 2017: 81 pages; 10638681.
29.
A Model-Based Framework for Predicting Autonomous Unmanned Ground Vehicle System Performance
by Young, Stuart Harry, Ph.D.  The George Washington University. 2016: 135 pages; 10124164.
30.
Navigation of a Mobile Robot with Obstacle Avoidance
by Berg, Brian, M.S.  California State University, Long Beach. 2018: 75 pages; 10977871.
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