EDBT 2026 Demo / reviewers in the wild / expert
Ziheng Wang 0003
dblp:79/10743-3
· DBLP profile ↗
2ranked-venue papers
1as first author
1since 2021 · last 2023
0000-0003-1099-3141ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Artificial intelligence and machine learning · 1 · 1 first-authorSystems, architecture and hardware · 1 · 1 first-authorApplied, interdisciplinary, general and emerging computing · 1 · 1 since 2021
Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.
| Artificial intelligence
1 paper |
Motion planning and robot control · 50% Robot manipulation · 50% | |
| Human-computer interaction and pervasive computing
1 paper |
Human-robot interaction · 100% |
Topics — the 3 heaviest of 3, each with the papers that count most for it
| Topic | Weight | Papers | Last | Evidence papers |
|---|---|---|---|---|
Robotics › Robot manipulation › medical robotics
needle steering |
0.3 | 1 | 2018 | Toward Intuitive Teleoperation in Surgery: Human-Centric Evaluation of Teleoperation Algorithms for Robotic Needle Steering · ICRA 2018 |
Robotics › Motion planning and robot control
robot control |
0.3 | 1 | 2018 | Toward Intuitive Teleoperation in Surgery: Human-Centric Evaluation of Teleoperation Algorithms for Robotic Needle Steering · ICRA 2018 |
Human-robot interaction
teleoperation |
0.3 | 1 | 2018 | Toward Intuitive Teleoperation in Surgery: Human-Centric Evaluation of Teleoperation Algorithms for Robotic Needle Steering · ICRA 2018 |
Methods — techniques the papers use, named apart from their topics
human-centric evaluation · 0.7force feedback · 0.7cognitive load measurement · 0.7
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2023 | CholecTriplet2022: Show me a tool and tell me the triplet - An endoscopic vision challenge for surgical action triplet detection
Chinedu Innocent Nwoye, Tong Yu 0009, Saurav Sharma, Aditya Murali, Deepak Alapatt, Armine Vardazaryan, Kun Yuan 0004, Jonas Hajek, Wolfgang Reiter, Amine Yamlahi, Finn-Henri Smidt, Xiaoyang Zou, Guoyan Zheng, Bruno Oliveira 0002, Helena R. Torres, Satoshi Kondo, Satoshi Kasai, Felix Holm, Ege Özsoy, Shuangchun Gui, Sista Raviteja, Rachana Sathish, Pranav Poudel, Binod Bhattarai, Ziheng Wang 0003, Guo Rui, Melanie Schellenberg, João L. Vilaça, Tobias Czempiel, Zhenkun Wang 0001, Debdoot Sheet, Shrawan Kumar Thapa, Max Berniker, Patrick Godau, Pedro Morais, Sudarshan Regmi, Thuy Nuong Tran, Jaime C. Fonseca 0001, Jan-Hinrich Nölke, Estevão Lima, Eduard Vazquez, Lena Maier-Hein, Nassir Navab, Pietro Mascagni, Barbara Seeliger, Cristians Gonzalez, Didier Mutter, Nicolas Padoy |
Medical Image Anal. | 26 |
| 2018 | Toward Intuitive Teleoperation in Surgery: Human-Centric Evaluation of Teleoperation Algorithms for Robotic Needle SteeringabstractThe effectiveness of control algorithms for teleoperated systems is typically evaluated through experimental performance measures, post-experimental user surveys, and theoretical analysis. However, none of these methods provide an objective assessment of teleoperation algorithms with respect to the real-time changes of human users during teleoperated tasks in terms of physiological, kinematic, or cognitive metrics. In this study, we recruited subjects to control robotically steered needles in a randomized experiment, using four different teleoperation mappings (joint space control, steering control, and Cartesian space control with and without force feedback). We investigated how the choice of these algorithms affect both performance and user response. Our novel steering control mapping, which mimics hub-centered steering, is significantly correlated with decreased cognitive stress and improved teleoperation performance when compared to joint space control. Overall, user experience and teleoperation performance were significantly improved with Cartesian space control, resulting in faster needle insertion, higher targeting accuracy, lower cognitive load, and smoother movements. Furthermore, while additional haptic feedback in Cartesian space provided an improved performance, it may increase user cognitive workload and muscle fatigue. These results highlight the importance of considering human-centric metrics when designing novel teleoperation strategies for complex systems. Ziheng Wang 0003, Isabella Reed, Ann Majewicz Fey |
ICRA | 1 |