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Design Methodology for Energy-constrained AI Edge Inference in Implantable Medical Devices.

, , , , , and . BioCAS, page 1-5. IEEE, (2023)

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Impact of Encapsulation Tissue Growth on Selective Recording in Nerve Cuff Electrodes: A Simulation Study., , and . EMBC, page 3444-3447. IEEE, (2020)Analysis of the Hands in Egocentric Vision: A Survey., and . IEEE Trans. Pattern Anal. Mach. Intell., 45 (6): 6846-6866 (June 2023)Generalizability of Hand-Object Interaction Detection in Egocentric Video across Populations with Hand Impairment., , and . EMBC, page 3228-3231. IEEE, (2020)Compensation Strategies for Bioelectric Signal Changes in Chronic Selective Nerve Cuff Recordings: A Simulation Study., , and . Sensors, 21 (2): 506 (2021)A comparison of extraneural approaches for selective recording in the peripheral nervous system., , , , , and . EMBC, page 5080-5083. IEEE, (2022)Artificially-Intelligent Fascicle-Selective Bidirectional Peripheral Nerve Interfaces., , , , , , , , , and . BioCAS, page 1-5. IEEE, (2023)Design Methodology for Energy-constrained AI Edge Inference in Implantable Medical Devices., , , , , and . BioCAS, page 1-5. IEEE, (2023)Measuring hand use in the home after cervical spinal cord injury using egocentric video., , , , , and . CoRR, (2022)Benchmarking 2D Egocentric Hand Pose Datasets., , and . CoRR, (2024)28.8 Multi-Modal Peripheral Nerve Active Probe and Microstimulator with On-Chip Dual-Coil Power/Data Transmission and 64 2nd-Order Opamp-Less ΔΣ ADCs., , , , , , , , , and 5 other author(s). ISSCC, page 400-402. IEEE, (2021)