Production scientifique
Publications.
Articles, brevets et contributions en ateliers sur la perception tactile, le toucher humain–robot et la robotique médicale.
2026
- ICRA2026
Contributing Factors in Human-Robot Handshake: Compliance, Hand Grip, and Synchrony
2026 IEEE International Conference on Robotics and Automation (ICRA) · 2026
BibTeX
@inproceedings{saood2026handshake, title={Contributing Factors in Human-Robot Handshake: Compliance, Hand Grip, and Synchrony}, author={Saood, Adnan and Tapus, Adriana}, booktitle={2026 IEEE International Conference on Robotics and Automation (ICRA)}, year={2026} }
2025
- ICRA2025
"Oh! It's Fun Chatting with You!" A Humor-aware Social Robot Chat Framework
2025 IEEE International Conference on Robotics and Automation (ICRA) · 2025
Résumé
This work introduces a framework for social robots that can engage in humor-aware conversations, enhancing the naturalness and engagement of human-robot interactions.
BibTeX
@inproceedings{zhang2025humor, title={"Oh! It's Fun Chatting with You!" A Humor-aware Social Robot Chat Framework}, author={Zhang, Heng and Garc{\'i}a C{\'a}rdenas, Juan Jos{\'e} and Hei, Xiaoxuan and Saood, Adnan and Tapus, Adriana}, booktitle={2025 IEEE International Conference on Robotics and Automation (ICRA)}, year={2025}, organization={IEEE} } - ICSR2025
Diaphragmatic Breathing Guidance Using a Humanoid Robot with a Soft Robotic Haptic Interface for Anxiety Reduction
Social Robotics · 2025
BibTeX
@incollection{saood2025diaphragmatic, title={Diaphragmatic Breathing Guidance Using a~Humanoid Robot with a~Soft Robotic Haptic Interface for~Anxiety Reduction}, author={Saood, Adnan and Liu, Yang and Tapus, Adriana}, booktitle={Social Robotics}, volume={3}, pages={247--257}, year={2025}, publisher={Springer Nature Singapore} } - ICSR2025
Human Hand Shape and Grasping Behavior Estimation using a Humanoid Hand with a Tactile Interface
2025 17th International Conference on Social Robotics (ICSR) · 2025
Résumé
This work introduces a novel method for estimating both human hand geometry and grasping style using a tactile sensory humanoid hand. The research represents a significant advancement in enabling more natural and intuitive physical human-robot interaction through touch.
BibTeX
@inproceedings{saood2025hand, title={Human Hand Shape and Grasping Behavior Estimation using a Humanoid Hand with a Tactile Interface}, author={Saood, Adnan and Tapus, Adriana}, booktitle={2025 17th International Conference on Social Robotics (ICSR)}, year={2025}, organization={Springer} }
2024
- Humanoids2024
Designing a Haptic Interface for Enhanced Non-Verbal Human-Robot Interaction: Integrating Heart and Lung Emotional Feedback
2024 IEEE-RAS 23rd International Conference on Humanoid Robots (Humanoids) · 2024
Résumé
This paper focuses on creating a haptic interface for humanoid robots to convey emotional feedback through heart and lung simulations, enhancing non-verbal interaction and emotional connection between humans and robots.
BibTeX
@inproceedings{saood2024designing, title={Designing a Haptic Interface for Enhanced Non-Verbal Human-Robot Interaction: Integrating Heart and Lung Emotional Feedback}, author={Saood, Adnan and Liu, Yang and Zhang, Heng and Tapus, Adriana}, booktitle={2024 IEEE-RAS 23rd International Conference on Humanoid Robots (Humanoids)}, pages={772--778}, year={2024}, organization={IEEE} } - Patent2024
Focused Ultrasound Sonication with Mechanical and Electronic Steering along a Computed Trajectory
2024 · EP Patent EP4445859A1; licensed by Therasonic, a CEA Neurospin spin-off, in 2026
BibTeX
@misc{saood2024focused, title={FOCUSED ULTRASOUND SONICATION WITH MECHANICAL AND ELECTRONIC STEERING ALONG A COMPUTED TRAJECTORY}, author={SAOOD, Adnan and VAPPOU, Jonathan and NAGEOTTE, Florent and LARRAT, Benoit}, year={2024}, note={EP Patent EP4445859A1; licensed by Therasonic, a CEA Neurospin spin-off, in 2026} }
2023
- Conférence2023
Design of Robotic Trajectories for Volumetric Ultrasound-induced Blood-Brain Barrier Permeabilization
International Symposium on Therapeutic Ultrasounds, Lyon, France, mai 2023 · 2023
BibTeX
@inproceedings{saood2023design, title={Design of Robotic Trajectories for Volumetric Ultrasound-induced Blood-Brain Barrier Permeabilization}, author={Saood, Adnan and Nageotte, Florent and Larrat, Benoit and Vappou, Jonathan}, booktitle={International Symposium on Therapeutic Ultrasounds, Lyon, France, mai 2023}, year={2023} } - Conférence2023
Implementation of a Volumetric Blood-Brain Barrier Permeabilization Robotic Platform
Computer and Robot-Assisted Surgery (CRAS), Paris, France, septembre 2023 · 2023
BibTeX
@inproceedings{saood2023implementation, title={Implementation of a Volumetric Blood-Brain Barrier Permeabilization Robotic Platform}, author={Saood, Adnan and Bednarczyk, Maciej and Larrat, Benoit and Vappou, Jonathan and Nageotte, Florent}, booktitle={Computer and Robot-Assisted Surgery (CRAS), Paris, France, septembre 2023}, year={2023} }
2021
- Journal2021
COVID-19 lung CT image segmentation using deep learning methods: U-Net versus SegNet
BMC Medical Imaging · 2021
DOIBibTeX
@article{saood2021covid, title={COVID-19 lung CT image segmentation using deep learning methods: U-Net versus SegNet}, author={Saood, Adnan and Hatem, Iyad}, journal={BMC Medical Imaging}, volume={21}, pages={1--10}, year={2021}, publisher={BioMed Central}, doi={10.1186/s12880-020-00529-5} }
2018
- ICASSDA2018
Two Proposed Indoor Multi-Cameras Positioning Systems Compared to Classical Geometry System
2018 International Conference on Computational Approach in Smart Systems Design and Applications (ICASSDA) · 2018
DOIRésumé
Positioning systems in indoor environments are of a great concern in automation and robotics domains where performing critical tasks requires precision. However, to make these systems widely applicable they must be cost-effective. The objective of this paper is to develop two different 3D positioning systems based on neural networks and adaptive neuro-fuzzy techniques. Sample images of a recognizable object were taken using three low-cost cameras as training and testing data for these systems. Positioning results of the proposed systems are compared with results of the classical geometrical method. The results show positioning errors on the scale of millimeters and the neural network system produces the smallest error.
BibTeX
@inproceedings{saood2018two, url={https://ieeexplore.ieee.org/abstract/document/8477636}, doi={https://doi.org/10.1109/ICASSDA.2018.8477636}, title={Two Proposed Indoor Multi-Cameras Positioning Systems Compared to Classical Geometry System}, author={Saood, Adnan and Salman, Nada and Alreyahi, Ali and Hatem, Iyad}, booktitle={2018 International Conference on Computational Approach in Smart Systems Design and Applications (ICASSDA)}, pages={1--6}, year={2018}, organization={IEEE} }
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