Continuous multi-channel monitoring of biopotential signals is vital in understanding the body as a whole, facilitating accurate models and predictions in neural research. The current state of the art in wireless technologies for untethered biopotential recordings rely on radiative electromagnetic (EM) fields. In such transmissions, only a small fraction of this energy is received since the EM fields are widely radiated resulting in lossy inefficient systems. Using the body as a communication medium (similar to a ’wire’) allows for the containment of the energy within the body, yielding order(s) of magnitude lower energy than radiative EM communication. In this work, we introduce Animal Body Communication (ABC), which utilizes the concept o...
AbstractIn neurophysiological research, the recording of brain activity in animals is fundamental. C...
Background and Objective: In-body biotelemetry devices enable wireless monitoring of a wide range of...
Intracranial neuronal recordings are essential for understanding neuronal function. They can be clas...
The current state of the art in biopotential recordings rely on radiative electromagnetic (EM) field...
Conventional neural recording systems restrict behavioral experiments to a flat indoor environment c...
To understand the neural basis of behavior, it is necessary to record brain activity in freely movin...
Neuromuscular diseases manifest by a handful of known phenotypes affecting the peripheral nerves, sk...
Monitoring of intrabody cardiovascular parameters can benefit from implantation of miniature devices...
AbstractWe present a new technique for the simultaneous capture of bioelectrical time signals from t...
Conventional neural recording systems restrict behavioral experiments to a flat indoor environment c...
OBJECTIVE: Elucidation of neural activity underpinning rodent behaviour has traditionally been hampe...
This paper describes the design and implementation of a wireless neural telemetry system that enable...
A system for wireless power transfer and data communication of implantable bio-monitoring systems is...
Understanding brain function at the cell and circuit level requires representation of neuronal activ...
This paper describes the design and implementation of a wireless neural telemetry system that enable...
AbstractIn neurophysiological research, the recording of brain activity in animals is fundamental. C...
Background and Objective: In-body biotelemetry devices enable wireless monitoring of a wide range of...
Intracranial neuronal recordings are essential for understanding neuronal function. They can be clas...
The current state of the art in biopotential recordings rely on radiative electromagnetic (EM) field...
Conventional neural recording systems restrict behavioral experiments to a flat indoor environment c...
To understand the neural basis of behavior, it is necessary to record brain activity in freely movin...
Neuromuscular diseases manifest by a handful of known phenotypes affecting the peripheral nerves, sk...
Monitoring of intrabody cardiovascular parameters can benefit from implantation of miniature devices...
AbstractWe present a new technique for the simultaneous capture of bioelectrical time signals from t...
Conventional neural recording systems restrict behavioral experiments to a flat indoor environment c...
OBJECTIVE: Elucidation of neural activity underpinning rodent behaviour has traditionally been hampe...
This paper describes the design and implementation of a wireless neural telemetry system that enable...
A system for wireless power transfer and data communication of implantable bio-monitoring systems is...
Understanding brain function at the cell and circuit level requires representation of neuronal activ...
This paper describes the design and implementation of a wireless neural telemetry system that enable...
AbstractIn neurophysiological research, the recording of brain activity in animals is fundamental. C...
Background and Objective: In-body biotelemetry devices enable wireless monitoring of a wide range of...
Intracranial neuronal recordings are essential for understanding neuronal function. They can be clas...