Cortical microelectrodes allow electrical contacts with neural cells and show promise as electrical interfaces to the brain, which allow for the treatment of several neurological deficits. However, the functionality of current electrodes decreases over time, in part due to neuron degeneration and foreign body encapsulation. One hypothesis is that the mismatch of the mechanical properties of the electrode and the brain tissue is a significant contributor to these events. We recently developed a new approach to chemically responsive, mechanically adaptive polymer nanocomposites, which are initially highly rigid, but soften considerably upon exposure to physiological conditions and aqueous environments in general. Initial in-vivo experiments s...
The use of implants that allow chronic electrical stimulation and recording in the brain of human pa...
Intracranial electrodes are a vital component of implantable neurodevices, both for acute diagnostic...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
The recording of neural signals with microelectrodes that are implanted into the cortex of the brain...
Mechanical, materials, and biological causes of intracortical probe failure have hampered their util...
Despite recent advances, there are major hurdles to overcome before cortical neural prosthetics can ...
As scientists discovered that raw neurological signals could translate into bioelectric information,...
As scientists discovered that raw neurological signals could translate into bioelectric information,...
Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activ...
Neurological impairments and degenerative diseases heavily affect the quality of daily life. With th...
Abstract Bioelectronics can potentially complement classical therapies in nonchronic treatments, suc...
Bioelectronics can potentially complement classical therapies in nonchronic treatments, such as immu...
Intracortical neuroprostheses offer the prospect of bi-directional communication interfaces for trea...
Implantable electronics address therapeutical needs of patients with electrical signaling dysfunctio...
Implantable electronics address therapeutical needs of patients with electrical signaling dysfunctio...
The use of implants that allow chronic electrical stimulation and recording in the brain of human pa...
Intracranial electrodes are a vital component of implantable neurodevices, both for acute diagnostic...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
The recording of neural signals with microelectrodes that are implanted into the cortex of the brain...
Mechanical, materials, and biological causes of intracortical probe failure have hampered their util...
Despite recent advances, there are major hurdles to overcome before cortical neural prosthetics can ...
As scientists discovered that raw neurological signals could translate into bioelectric information,...
As scientists discovered that raw neurological signals could translate into bioelectric information,...
Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activ...
Neurological impairments and degenerative diseases heavily affect the quality of daily life. With th...
Abstract Bioelectronics can potentially complement classical therapies in nonchronic treatments, suc...
Bioelectronics can potentially complement classical therapies in nonchronic treatments, such as immu...
Intracortical neuroprostheses offer the prospect of bi-directional communication interfaces for trea...
Implantable electronics address therapeutical needs of patients with electrical signaling dysfunctio...
Implantable electronics address therapeutical needs of patients with electrical signaling dysfunctio...
The use of implants that allow chronic electrical stimulation and recording in the brain of human pa...
Intracranial electrodes are a vital component of implantable neurodevices, both for acute diagnostic...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...