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About the database ScholarIQanswers from OpenAlex & ORCID
How has David P. Azari's publication output changed over time?
ScholarIQpublication output · 2004–2020
Output grew0% over the shown period — from 1 works in 2004 to 1 in 2020.
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2004201420152016201720192020
What are the most-cited papers on David P. Azari?
ScholarIQmost cited works
Modeling Surgical Technical Skill Using Expert Assessment for Automated Computer Rating
David P. Azari, Lane L. Frasier, Sudha R. Pavuluri Quamme, Caprice C. Greenberg, Carla M. Pugh, Jacob A. Greenberg, Robert G. Radwin
Annals of Surgery. 201785 CitationsOPEN ACCESS
A marker-less technique for measuring kinematics in the operating room
Lane L. Frasier, David P. Azari, Yue Ma, Sudha R. Pavuluri Quamme, Robert G. Radwin, Carla M. Pugh, Thomas Y. Yen, Chia-Hsiung Chen, Caprice C. Greenberg
Surgery. 201630 CitationsOPEN ACCESS
A frequency–duty cycle equation for the ACGIH hand activity level
Robert G. Radwin, David P. Azari, Mary J. Lindstrom, Sheryl S. Ulin, Thomas J. Armstrong, David Rempel
S72159247. 201426 CitationsOPEN ACCESS
Visualizing stressful aspects of repetitive motion tasks and opportunities for ergonomic improvements using computer vision
Runyu L. Greene, David P. Azari, Yu Hen Hu, Robert G. Radwin
Applied Ergonomics. 201725 Citations
Quantifying surgeon maneuevers across experience levels through marker-less hand motion kinematics of simulated surgical tasks
David P. Azari, Brady L. Miller, Brian V. Le, Caprice C. Greenberg, Robert G. Radwin
Applied Ergonomics. 202024 Citations
Related on ScholarIQ
United States Air Force Academy
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Modeling Surgical Technical Skill Using Expert Assessment for Automated Computer Rating
Paper
A marker-less technique for measuring kinematics in the operating room
Paper
A frequency–duty cycle equation for the ACGIH hand activity level
Paper
Visualizing stressful aspects of repetitive motion tasks and opportunities for ergonomic improvements using computer vision
Paper
Quantifying surgeon maneuevers across experience levels through marker-less hand motion kinematics of simulated surgical tasks
Paper