Publications
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“Vision based force sensing for nanorobotic manipulation”, ASME Dynamic Systems and Control Division, 2006 Internatiomal Mechanical Engineering Congress and Exposition. Chicago, IL, United States, p. 10 -, 2006.
IMECE2006-15111-Gupta-small.pdf (624 KB)
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“Velocity-Domain Motion Quality Measures for Surgical Performance Evaluation and Feedback”, Journal of Medical Devices, vol. 15, p. 011107, 2021.
med_015_01_011107.pdf (1.68 MB)
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“Understanding the Role of Haptic Feedback in a Teleoperated Grasp and Lift Task”, International Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems and the Fifth Joint World Haptics Conference (HAPTICS). pp. 271-276, 2013.
WH2013_FINAL_PRESS_Brown_et_al.pdf (1.24 MB)
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“Towards just noticeable differences for natural frequency of manually excited virtual dynamic systems”, Second Joint EuroHaptics Conference and Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems, (WHC'07). IEEE, Tsukuba, Japan, pp. 569 - 570, 2007.
Full text (PDF) (132.06 KB)
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“Towards Automated Performance Assessment using Velocity-based Motion Quality Metrics”, International Symposium on Medical Robotics (ISMR). 2020.
ISMR_2020_Murali_et_al_FinalVersion.pdf (1.56 MB)
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“Toward training surgeons with motion-based feedback: Initial validation of smoothness as a measure of motor learning”, Human Factors and Ergonomics Society Annual Meeting, vol. 61. pp. 1531-1535, 2017.
pandey2017hfes.pdf (1.22 MB)
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“Toward improved surgical training: Delivering smoothness feedback using haptic cues”, Haptics Symposium (HAPTICS). IEEE, San Francisco, CA, pp. 241-246, 2018.
jantscher 2018 ieee.pdf (244.4 KB)
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“Touching reality: Bridging the user-researcher divide in upper-limb prosthetics”, Science Robotics, vol. 8, p. eadk9421, 2023.
SciRoboticsBrown2023_prosthesis_users.pdf (807.19 KB)
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“A Textile-Based Approach to Wearable Haptic Devices”, in 2022 IEEE 5th International Conference on Soft Robotics (RoboSoft), 2022.
Jumet_RoboSoft2022.pdf (945.22 KB)
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“The Task-Dependent Efficacy of Shared-Control Haptic Guidance Paradigms”, {IEEE} Transactions on Haptics, vol. 5, pp. 208 –219, 2012.
J8Powell2012.pdf (799.85 KB)
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“Tasbi: Multisensory Squeeze and Vibrotactile Wrist Haptics for Augmented and Virtual Reality”, 2019 IEEE World Haptics Conference (WHC). 2019.
tasbi_whc2019.pdf (1.8 MB)
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“System characterization of RiceWrist-S: A forearm-wrist exoskeleton for upper extremity rehabilitation”, Rehabilitation Robotics (ICORR), 2013 IEEE International Conference on. 2013.
Pehlivan_RW-S_ICORR2013.pdf (306.91 KB)
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“Syntacts: Open-Source Software and Hardware for Audio-Controlled Haptics”, IEEE Transactions on Haptics, vol. 14, pp. 225-233, 2021.
Syntacts.pdf (2.74 MB)
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“A Subject-Adaptive Controller for Wrist Robotic Rehabilitation”, Mechatronics, IEEE/ASME Transactions on, vol. 20, pp. 1338 - 1350, 2015.
tmech-pehlivan-press.pdf (744.34 KB)
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“Spatially Separating Haptic Guidance from Task Dynamics through Wearable Devices.”, IEEE Trans Haptics, vol. 12, pp. 581 - 593, 2019.
pezent_toh2019.pdf (2.51 MB)
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“Spatially Separated Cutaneous Haptic Guidance for Training of a Virtual Sensorimotor Task”, 2020 IEEE Haptics Symposium (HAPTICS). 2020.
IEEE_HS_2020_Smith_OpenWrist_CUFF_Training__shared__compressed.pdf (667.83 KB)
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“Spatial and Temporal Movement Characteristics after Robotic Training of Arm and Hand: A Case Study of a Person with Incomplete Spinal Cord Injury”, IEEE IROS. San Francisco, CA, 2011.
IROS 2011 Eng Kadivar.pdf (442.85 KB)

“A Soft Approach to Convey Vibrotactile Feedback in Wearables Through Mechanical Hysteresis”, 2023 IEEE International Conference on Soft Robotics (RoboSoft). IEEE, 2023.
Fino_2023_Robosoft.pdf (411.62 KB)
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“Shared Control for Training in Virtual Environments: Learning Through Demonstration?”, Proceedings of EuroHaptics 2006. 2006.
Full Text (PDF) (271.34 KB)
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“Separating haptic guidance from task dynamics: A practical solution via cutaneous devices”, Haptics Symposium (HAPTICS). IEEE, San Francisco, CA, 2018.
pezent2018hs.pdf (2.67 MB)
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“Robotic Training and Kinematic Analysis of Arm and Hand after Incomplete Spinal Cord Injury: A Case Study.”, IEEE ICORR. Zurich Switzerland, 2011.
PID1757607[1].pdf (542.86 KB)

“Robotic training and clinical assessment of upper extremity movements after spinal cord injury; a single case report”, Journal of Rehabilitation Medicine, vol. 44, pp. 186-188, 2012.
J_Rehab_Medicine_2012_Final_press_version.pdf (864.23 KB)
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“A robotic exoskeleton for rehabilitation and assessment of the upper limb following incomplete spinal cord injury”, IEEE International Conference on Robotics and Automation (ICRA). Seattle, Washington, 2015.
Fitle2015 - Robotic exo for UL rehab after iSCI.pdf (589.43 KB)
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“Robot-Assisted Training of Arm and Hand Movement Shows Functional Improvements for Incomplete Cervical Spinal Cord Injury”, American Journal of Physical Medicine & Rehabilitation, vol. 96, p. S171—S177, 2017.
francisco2017AJPRM.pdf (188.09 KB)
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“RiceWrist Robotic Device for Upper Limb Training: Feasibility Study and Case Report of Two Tetraplegic Persons with Spinal Cord Injury”, International Journal of Biological Engineering, vol. 2, pp. 27-38, 2012.
IntlJBiologicalEngineering_2012_Kadivar.pdf (934.02 KB)
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