Matthew Schiefer

Publications

Schiefer, M., Graczyk, E., Sidik, S., Tan, D., & Tyler, D. J. (2018). Artificial tactile and proprioceptive feedback improves performance and confidence on object identification tasks. PLoS ONE, 13 (12).
Graczyk, E., Resnik, L., Schiefer, M., Schmitt, M., & Tyler, D. J. (2018). Home use of a neural-connected sensory prosthesis provides the functional and psychosocial experience of having a hand again. Scientific Reports, 8 (1).
Graczyk, E., Delhaye, B., Schiefer, M., Bensmaia, S., & Tyler, D. J. (2018). Sensory adaptation to electrical stimulation of the somatosensory nerves. Journal of Neural Engineering, 15 (4).
Schiefer, M., Graczyk, E., Sidik, S., Tan, D., & Tyler, D. J. (2018). Artificial tactile and proprioceptive feedback improves performance and confidence on object identification tasks. PLOS ONE, 13 (12), e0207659.
Graczyk, E., Schiefer, M., Saal, H., Delhaye, B., Bensmaia, S., & Tyler, D. J. (2016). The neural basis of perceived intensity in natural and artificial touch. Science Translational Medicine, 8 (362).
Graczyk, E., Schiefer, M., Saal, H., Delhaye, B., Bensmaia, S., & Tyler, D. J. (2016). The neural basis of perceived intensity in natural and artificial touch. Science Translational Medicine [19466234], 8 (362), 362ra142-362ra142.
Schiefer, M., Tan, D., Sidek, S., & Tyler, D. J. (2016). Sensory feedback by peripheral nerve stimulation improves task performance in individuals with upper limb loss using a myoelectric prosthesis. Journal of Neural Engineering [17412560], 13 (1).
Graczyk, E., Tan, D., Schiefer, M., & Tyler, D. J. (2014). perception of visual-tactile synchrony when tactile sensations are elicited by peripheral nerve stimulation. Neuromodulation, 17 (5), e116.
Tan, D., Schiefer, M., Keith, M., Anderson, J., Tyler, J., & Tyler, D. J. (2014). A neural interface provides long-term stable natural touch perception. Science translational medicine, 6 (257), 257ra138--257ra138.
Schiefer, M., Tan, D., Graczyk, E., Keith, M., Anderson, R., & Tyler, D. J. (2014). Assessing functional improvements with varied sensory restoration in upper extremity amputees. Neuromodulation, 17 (5), e91.
Schiefer, M., Freeberg, M., Pinault, G., Anderson, J., Hoyen, H., Tyler, D. J., & Triolo, R. J. (2013). Selective activation of the human tibial and common peroneal nerves with a flat interface nerve electrode. Journal of neural engineering, 10 (5), 056006.
Schiefer, M., Tyler, D. J., & Triolo, R. J. (2012). Probabilistic modeling of selective stimulation of the human sciatic nerve with a flat interface nerve electrode. Journal of computational neuroscience, 33 (1), 179--190.
Schiefer, M., Polasek, K., Triolo, R., Pinault, G., & Tyler, D. J. (2010). Selective stimulation of the human femoral nerve with a flat interface nerve electrode. Journal of neural engineering, 7 (2), 026006.
Grinberg, Y., Schiefer, M., Tyler, D. J., & Gustafson, K. J. (2008). Fascicular perineurium thickness, size, and position affect model predictions of neural excitation. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 16 (6), 572--581.
Schiefer, M., Triolo, R., & Tyler, D. J. (2008). A model of selective activation of the femoral nerve with a flat interface nerve electrode for a lower extremity neuroprosthesis. IEEE Transactions on Neural Systems and Rehabilitation Engineering, 16 (2), 195--204.