Providing safety of stimulation is a critical requirement in the design of biomedical electrical stimulators. Charge balancing circuits are required to guarantee safety of electrical stimulators. Chopped-anodic-phase (CAP) is one of the methods used for charge balancing in which short anodic pulses are applied during the anodic phase. Using short anodic pulses enables the charge balancer to measure the remaining voltage on the tissue after each short pulse. This paper presents the implementation of the different CAP methods using a 0.18 mu m technology. The experimental results validate the correct performance of the implemented charge balancers
Functional electrical stimulation (FES) is a safe, effective, and general approach for treating vari...
Development of a visual prosthesis has the potential to help millions of patients with visual impair...
This paper presents the design, development, and experimental characterization of a 24-channel progr...
A new method for safe electrical neural stimulation is proposed. A negative feedback is used to auto...
Charge balancing is a major safety concern in neural and functional electrical stimulation. This pap...
Functional Electrical Stimulation (FES) has been explored in order to restore the capabilities of th...
Current-mode CMOS stimulation systems have offered unprecedented opportunities for accurate and high...
This paper presents a charge controlling circuit technique to integrate a charge balancer circuitry ...
Abstract A low-power digital charge balancing system, which ensures the safe operation of constant-...
Abstract: A new active charge balancing technique for functional electrical stimulation is presented...
Charge balancing is a major concern in functional electrical stimulation. Any excess charge accumula...
Related to safety issues, charge balancing is a major concern in neural and functional electrical st...
Electrical stimulation is an important technique for modulating the functions of the nervous system ...
AbstractElectrical neural stimulation is the technique used to modulate neural activity by inducing ...
Neural stimulation is a robust technique with fewer side effects that are used to cure several neuro...
Functional electrical stimulation (FES) is a safe, effective, and general approach for treating vari...
Development of a visual prosthesis has the potential to help millions of patients with visual impair...
This paper presents the design, development, and experimental characterization of a 24-channel progr...
A new method for safe electrical neural stimulation is proposed. A negative feedback is used to auto...
Charge balancing is a major safety concern in neural and functional electrical stimulation. This pap...
Functional Electrical Stimulation (FES) has been explored in order to restore the capabilities of th...
Current-mode CMOS stimulation systems have offered unprecedented opportunities for accurate and high...
This paper presents a charge controlling circuit technique to integrate a charge balancer circuitry ...
Abstract A low-power digital charge balancing system, which ensures the safe operation of constant-...
Abstract: A new active charge balancing technique for functional electrical stimulation is presented...
Charge balancing is a major concern in functional electrical stimulation. Any excess charge accumula...
Related to safety issues, charge balancing is a major concern in neural and functional electrical st...
Electrical stimulation is an important technique for modulating the functions of the nervous system ...
AbstractElectrical neural stimulation is the technique used to modulate neural activity by inducing ...
Neural stimulation is a robust technique with fewer side effects that are used to cure several neuro...
Functional electrical stimulation (FES) is a safe, effective, and general approach for treating vari...
Development of a visual prosthesis has the potential to help millions of patients with visual impair...
This paper presents the design, development, and experimental characterization of a 24-channel progr...