Implantable electrodes have been of interest for decades. We have witnessed important advances in the field of bionics wherein implantable electrodes serve as the conduit to record nerve signals and deliver electrical stimulation to tissues and organs in living systems. Today, the clinical use of electrical stimulation is broad and the benefit widely accepted. Here we review the state of the-art in the emerging field of new implantable electromaterials for use in medical bionics and electroceuticals
Soft wearable and implantable electronic systems have attracted tremendous attention due to their fl...
As the demand for sensory feedback to and from prosthetic limbs becomes increasingly desirable, impl...
Neural electrodes enable the recording and stimulation of bioelectrical activity in the nervous syst...
Implantable electrodes have been of interest for decades. We have witnessed important advances in th...
The term ‘‘bionics’ ’ is synonymous with ‘‘biomimetics’ ’ and in this context refers to the integrat...
In the name of electroceuticals, bioelectronic devices have transformed and become essential for dea...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Implantable microelectrodes represent the direct interface between biological tissue and technical s...
Electromagnetic fields affect a variety of tissues (e.g. bone, muscle, nerve and skin) and play impo...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
This book is a comprehensive, interdisciplinary resource for the latest information on implantable m...
Implantable sensors have revolutionized the way we monitor biophysical and biochemical parameters by...
Neural microelectrode is the important bridge of information exchange between the human body and mac...
Soft wearable and implantable electronic systems have attracted tremendous attention due to their fl...
Soft wearable and implantable electronic systems have attracted tremendous attention due to their fl...
As the demand for sensory feedback to and from prosthetic limbs becomes increasingly desirable, impl...
Neural electrodes enable the recording and stimulation of bioelectrical activity in the nervous syst...
Implantable electrodes have been of interest for decades. We have witnessed important advances in th...
The term ‘‘bionics’ ’ is synonymous with ‘‘biomimetics’ ’ and in this context refers to the integrat...
In the name of electroceuticals, bioelectronic devices have transformed and become essential for dea...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Implantable microelectrodes represent the direct interface between biological tissue and technical s...
Electromagnetic fields affect a variety of tissues (e.g. bone, muscle, nerve and skin) and play impo...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
This book is a comprehensive, interdisciplinary resource for the latest information on implantable m...
Implantable sensors have revolutionized the way we monitor biophysical and biochemical parameters by...
Neural microelectrode is the important bridge of information exchange between the human body and mac...
Soft wearable and implantable electronic systems have attracted tremendous attention due to their fl...
Soft wearable and implantable electronic systems have attracted tremendous attention due to their fl...
As the demand for sensory feedback to and from prosthetic limbs becomes increasingly desirable, impl...
Neural electrodes enable the recording and stimulation of bioelectrical activity in the nervous syst...