Search Results - "Loeb, G.E"

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  1. 1

    Grip Control Using Biomimetic Tactile Sensing Systems by Wettels, N., Parnandi, A.R., Ji-Hyun Moon, Loeb, G.E., Sukhatme, G.S.

    Published in IEEE/ASME transactions on mechatronics (01-12-2009)
    “…We present a proof-of-concept for controlling the grasp of an anthropomorphic mechatronic prosthetic hand by using a biomimetic tactile sensor, Bayesian…”
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  2. 2

    Single- and Triaxis Piezoelectric-Bimorph Accelerometers by Qiang Zou, Wei Tan, Eun Sok Kim, Loeb, G.E.

    Published in Journal of microelectromechanical systems (01-02-2008)
    “…This paper describes the novel single- and triaxis piezoelectric-bimorph accelerometers that are built on parylene beams with ZnO films. The unamplified…”
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  3. 3

    BCI meeting 2005-workshop on signals and recording methods by Wolpaw, J.R., Loeb, G.E., Allison, B.Z., Donchin, E., do Nascimento, O.F., Heetderks, W.J., Nijboer, F., Shain, W.G., Turner, J.N.

    “…This paper describes the highlights of presentations and discussions during the Third International BCI Meeting in a workshop that evaluated potential…”
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  4. 4

    Prediction of Distal Arm Posture in 3-D Space From Shoulder Movements for Control of Upper Limb Prostheses by Kaliki, Rahul R., Davoodi, Rahman, Loeb, Gerald E.

    Published in Proceedings of the IEEE (01-07-2008)
    “…C5/C6 tetraplegic patients and transhumeral amputees may be able to use voluntary shoulder motion as command signals for a functional electrical stimulation…”
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  5. 5

    Prevention of muscle disuse atrophy by low-frequency electrical stimulation in rats by Dupont Salter, A.C., Richmond, F.J.R., Loeb, G.E.

    “…When muscles lose neural drive, they atrophy rapidly. Neuromuscular electrical stimulation (NMS) has been used in attempts to prevent or reverse the atrophy,…”
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  6. 6

    Effects of muscle immobilization at different lengths on tetrodotoxin-induced disuse atrophy by Salter, A.C.D., Richmond, F.J.R., Loeb, G.E.

    “…Previous studies have shown that immobilization causes muscle atrophy and that the rate of atrophy depends on the length at which the muscle is immobilized…”
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  7. 7

    Flexible Communication and Control Protocol for Injectable Neuromuscular Interfaces by Rodriguez, N., Weissberg, J., Loeb, G.E.

    “…BION2 is a system based on injectable neuromuscular implants whose main goal is to restore the functional movement of paralyzed limbs. To achieve this…”
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  8. 8

    Feedback gains for correcting small perturbations to standing posture by He, J., Levine, W.S., Loeb, G.E.

    Published in IEEE transactions on automatic control (01-03-1991)
    “…A dynamical model of the neuro-musculo-skeletal mechanics of a cat hindlimb is developed to investigate the feedback regulation of standing posture under small…”
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  9. 9

    Effects of regional stimulation using a miniature stimulator implanted in feline posterior biceps femoris by Cameron, T., Richmond, F.J.R., Loeb, G.E.

    “…The effects of placement of a miniature implantable stimulator on motor unit recruitment were examined in the posterior head of cat biceps femoris. The…”
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  10. 10

    A Virtual Reality Environment for Designing and Fitting Neural Prosthetic Limbs by Hauschild, Markus, Davoodi, Rahman, Loeb, Gerald E.

    “…Building and testing novel prosthetic limbs and control algorithms for functional electrical stimulation (FES) is expensive and risky. Here, we describe a…”
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  11. 11

    Model-Based Sensorimotor Integration for Multi-Joint Control: Development of a Virtual Arm Model by Song, D., Lan, N., Loeb, G. E., Gordon, J.

    Published in Annals of biomedical engineering (01-06-2008)
    “…An integrated, sensorimotor virtual arm (VA) model has been developed and validated for simulation studies of control of human arm movements. Realistic…”
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  12. 12

    Model-Based Development of Neural Prostheses for Movement by Davoodi, Rahman, Urata, Chet, Hauschild, Markus, Khachani, Mehdi, Loeb, Gerald E.

    “…Neural prostheses for restoration of limb movement in paralyzed and amputee patients tend to be complex systems. Subjective intuition and trial-and-error…”
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  13. 13

    The functional reanimation of paralyzed limbs by Loeb, G.E., Davoodi, R.

    “…The functional reanimation of paralyzed limbs has been a longstanding goal of neural prosthetic research, but clinically successful applications have been…”
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  14. 14

    Recruitment and Comfort of BION Implanted Electrical Stimulation: Implications for FES Applications by Popovic, Djordje, Baker, Lucinda L., Loeb, Gerald E.

    “…Restoration of motor function to paralyzed limbs by functional electrical stimulation (FES) has been hampered by the lack of precise and gradual control over…”
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  15. 15

    Feasibility of Prosthetic Posture Sensing Via Injectable Electronic Modules by Tan, Wei, Loeb, Gerald E.

    “…A bionic neuron (BION) is an inductively powered, miniature implant developed for functional electric stimulation (FES) to reanimate paralyzed limbs. This…”
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  16. 16

    Development of a BIONic Muscle Spindle for Prosthetic Proprioception by Sachs, Nicholas A., Loeb, Gerald E.

    “…The replacement of proprioceptive function, whether for conscious sensation or feedback control, is likely to be an important aspect of neural prosthetic…”
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  17. 17

    Single unit conduction velocities from averaged nerve cuff electrode records in freely moving cats by Hoffer, J A, Loeb, G E, Pratt, C A

    Published in Journal of neuroscience methods (01-10-1981)
    “…The conduction velocity of peripheral neurons recorded by wire microelectrodes implanted in intact, freely moving cats was determined on-line using the…”
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  18. 18

    Cuff electrodes for chronic stimulation and recording of peripheral nerve activity by Loeb, G.E., Peck, R.A.

    Published in Journal of neuroscience methods (1996)
    “…A comparative study of 5 different designs of nerve cuff electrodes was undertaken to determine their relative merits for stimulating and recording whole-nerve…”
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  19. 19

    Micromodular implants to provide electrical stimulation of paralyzed muscles and limbs by Cameron, T., Loeb, G.E., Peck, R.A., Schulman, J.H., Strojnik, P., Troyk, P.R.

    “…Describes the design, fabrication, and output capabilities of a microminiature electrical stimulator that can be injected in or near nerves and muscles. Each…”
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  20. 20

    Advanced modeling environment for developing and testing FES control systems by Davoodi, R, Brown, I.E, Loeb, G.E

    Published in Medical engineering & physics (2003)
    “…Realistic models of neuromusculoskeletal systems can provide a safe and convenient environment for the design and evaluation of controllers for functional…”
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