Abstract:
The results of technical and physiological noise components in signal of high-sensitive human skin resistance measuring tool had been considered. Hardware and software tools for skin electric conductivity and under skin biological currents studies with high protection level from internal and external noises and sensitivity gain had been described. Experimental innovative tool design for biomechatronic human foot stimulator is considered. The studies are carried out in RAS-BAS collaboration and RFBR grant 11-01-12060-офи-м-2011 in development of new technologies of rehabilitation of spinal patients.
Keywords:human skin resistance, human underskin currents, biomechatronics.