We present the fabrication, characterization, use in cortical recording and histological results of a flexible implantable neural probe. The microfabricated device is implemented in polyimide and platinum providing mechanical flexibility, high quality electrical characteristics and excellent biocompatibility. Two layers of platinum electrodes are used which greatly reduces the size of the neural probes thereby limiting the insertion damage. The quality of the individual recording sites was characterized using impedance spectroscopy. In recording experiments, acute in vivo measurements were performed in the mouse cortex. Local field potential, single- and multi-neuron activities were simultaneously recorded. We demonstrate using immunohistoc...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
Bidirectional neural interfaces for multi-channel, high-density recording and electrical stimulation...
Modern microfabrication techniques make it possible to develop microelectrode arrays that may be uti...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
Intracortical neural probes have in the last couple of years been developed from stiff single probes...
Brain computer interfaces (BCI) establish communication between the brain and external devices by re...
We discuss the fabrication of flexible implantable probes for recording neuronal activity in the rat...
This work presents implantable, flexible polymer-based probes with embedded microelectrodes for acut...
OBJECTIVE: Long-term electrophysiological recordings of neural activity in freely behaving animals a...
Abstract Silicon probes have played a key role in studying the brain. However, the stark mechanical ...
Neuroprosthetic devices are widely employed in clinical and research settings. However, most of thes...
Chronically implanted neural probes are powerful tools to decode brain activity however, recording p...
Mechanical, materials, and biological causes of intracortical probe failure have hampered their util...
Most intracortical neural probes fail to function reliably in clinically relevant chronic settings d...
A unique structure for chronically implantable cortical electrodes using polyimide polymer was devis...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
Bidirectional neural interfaces for multi-channel, high-density recording and electrical stimulation...
Modern microfabrication techniques make it possible to develop microelectrode arrays that may be uti...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
Intracortical neural probes have in the last couple of years been developed from stiff single probes...
Brain computer interfaces (BCI) establish communication between the brain and external devices by re...
We discuss the fabrication of flexible implantable probes for recording neuronal activity in the rat...
This work presents implantable, flexible polymer-based probes with embedded microelectrodes for acut...
OBJECTIVE: Long-term electrophysiological recordings of neural activity in freely behaving animals a...
Abstract Silicon probes have played a key role in studying the brain. However, the stark mechanical ...
Neuroprosthetic devices are widely employed in clinical and research settings. However, most of thes...
Chronically implanted neural probes are powerful tools to decode brain activity however, recording p...
Mechanical, materials, and biological causes of intracortical probe failure have hampered their util...
Most intracortical neural probes fail to function reliably in clinically relevant chronic settings d...
A unique structure for chronically implantable cortical electrodes using polyimide polymer was devis...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
Bidirectional neural interfaces for multi-channel, high-density recording and electrical stimulation...
Modern microfabrication techniques make it possible to develop microelectrode arrays that may be uti...