Publications
Mahan, E., Oh, J., Chase, E., Dunkelberger, N., King, S., Sayenko, D., & O’Malley, M. K. (2024). Assessing the Effect of Cervical Transcutaneous Spinal Stimulation with an Upper Limb Robotic Exoskeleton and Surface Electromyography. IEEE Transactions on Neural Systems and Rehabilitation Engineering. |
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Zook, Z. A., Galvan, O., Ozor-Ilo, O., Selcuk, E., & O’Malley, M. K. (2024). Validation of Snaptics: A Modular Approach to Low-Cost Wearable Multi-Sensory Haptics. IEEE Transactions on Haptics. |
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Ghonasgi, K., Higgins, T., Huber, M., & O’Malley, M. K. (2024). Crucial hurdles to achieving human-robot harmony. Science Robotics, 9, eadp2507. |
Brown, J. D., Battaglia, E., Engdahl, S., Levay, G., Parks, A. C., Skinner, E., & O’Malley, M. K. (2023). Touching reality: Bridging the user-researcher divide in upper-limb prosthetics. Science Robotics, 8, eadk9421. |
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Pezent, E., Macklin, A. S., Yau, J. M., Colonnese, N., & O’Malley, M. K. (2023). Multisensory Pseudo-Haptics for Rendering Manual Interactions with Virtual Objects. Advanced Intelligent Systems, n/a, 2200303. |
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Clark, J. P., & O’Malley, M. K. (2023). Defining Allowable Stimulus Ranges for Position and Force Controlled Cutaneous Cues. IEEE Transactions on Haptics, 16, 353-364. |
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Oh, J., Scheffler, M., Mahan, E., King, S., Martin, C., Dinh, J., … Sayenko, D. (2023). Combinatorial effects of transcutaneous spinal stimulation and task-specific training to enhance hand motor output after paralysis. Topics in Spinal Cord Injury Rehabilitation, 29, 15–22. |
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Fino, N., Jumet, B., Zook, Z. A., Preston, D. J., & O’Malley, M. K. (2023). Mechanofluidic Instability-Driven Wearable Textile Vibrotactor. IEEE Transactions on Haptics. |
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Dunkelberger, N., Berning, J., Schearer, E. M., & O’Malley, M. K. (2023). Hybrid FES-exoskeleton control: Using MPC to distribute actuation for elbow and wrist movements. Frontiers in Neurorobotics, 17, 1127783. |
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Fino, N., Zook, Z. A., Jumet, B., Preston, D. J., & O’Malley, M. K. (2023). A Soft Approach to Convey Vibrotactile Feedback in Wearables Through Mechanical Hysteresis. IEEE. |