TY - CHAP
T1 - Advanced 56 Channels Stimulation System to Drive Intrafascicular Electrodes
AU - Guiho, T.
AU - Andreu, D.
AU - López-Alvarez, V. M.
AU - Cvancara, P.
AU - Hiairrassary, A.
AU - Granata, G.
AU - Wauters, L.
AU - Jensen, W.
AU - Divoux, J. L.
AU - Micera, S.
AU - Stieglitz, T.
AU - Navarro, X.
AU - Guiraud, D.
PY - 2017/1/1
Y1 - 2017/1/1
N2 - © Springer International Publishing AG 2017. A wearable, 56-channel stimulator was developed and successfully tested to drive multichannel intrafascicular electrodes. It is able to safely elicit sensory afferent signals through the activation of 4 Time-4H intrafascicular electrodes. The STIMEP embeds not only the pulse generator but also a software that ensures: (i) real time control by a hand-prosthesis, (ii) embedded procedures for sensation mapping interfaced with a PC software, (iii) impedance follow-up, (iv) real-time safety management.
AB - © Springer International Publishing AG 2017. A wearable, 56-channel stimulator was developed and successfully tested to drive multichannel intrafascicular electrodes. It is able to safely elicit sensory afferent signals through the activation of 4 Time-4H intrafascicular electrodes. The STIMEP embeds not only the pulse generator but also a software that ensures: (i) real time control by a hand-prosthesis, (ii) embedded procedures for sensation mapping interfaced with a PC software, (iii) impedance follow-up, (iv) real-time safety management.
UR - https://www.scopus.com/pages/publications/85028327396
U2 - 10.1007/978-3-319-46669-9_122
DO - 10.1007/978-3-319-46669-9_122
M3 - Chapter
SN - 2195-3562
VL - 15
SP - 743
EP - 747
BT - Biosystems and Biorobotics
ER -