ref [22] · 2508.09836 · notice #8623 · dispute
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acterize lumps in simulated tissue. In: International Conference on Human Haptic Sensing and Touch Enabled Computer Applications, pp. 295-302 (2014). Springer [22] Konstantinova, J., Cotugno, G., Dasgupta, P., Althoefer, K., Nanayakkara, T.: Palpation force modulation strategies to identify hard regions in soft tissue organs. PLOS ONE 12(2), 0171706 (2017) https://doi.org/10.1371/journal.pone.0171706 . Accessed 2024-07-04 [23] Wang, L., Li, Q., Lam, J., Wang, Z.: Tactual Recognition of Soft Objects From Deformation Cues. IEEE Robotics and Automation Letters 7(1), 96-103 (2022) https://doi.org/10.1109/LRA.2021.3119393 . Accessed 2024-05-16 [24] Xu, S., Lin, N., Fan, R., Wu, P., Chen, X.: Exploring Hardness and Geometry Information through Active Perception.
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acterize lumps in simulated tissue. In: International Conference on Human Haptic Sensing and Touch Enabled Computer Applications, pp. 295-302 (2014). Springer [22] Konstantinova, J., Cotugno, G., Dasgupta, P., Althoefer, K., Nanayakkara, T.: Palpation force modulation strategies to identify hard regions in soft tissue organs. PLOS ONE 12(2), 0171706 (2017) https://doi.org/10.1371/journal.pone.0171706 . Accessed 2024-07-04 [23] Wang, L., Li, Q., Lam, J., Wang, Z.: Tactual Recognition of Soft Objects From Deformation Cues. IEEE Robotics and Automation Letters 7(1), 96-103 (2022) https://doi.org/10.1109/LRA.2021.3119393 . Accessed 2024-05-16 [24] Xu, S., Lin, N., Fan, R., Wu, P., Chen, X.: Exploring Hardness and Geometry Information through Active Perception