An electrocorticogram (ECoG) is the electrical activity obtainable from the cerebral cortex and an informative source with considerable potential for future advanced applications in various brain-interfacing technologies. Considerable effort has been devoted to developing biocompatible, conformal, soft, and conductive interfacial materials for bridging devices and brain tissue; however, the implementation of brain-adaptive materials with optimized electrical and mechanical characteristics remains challenging. Herein, we present surface electrode arrays using the soft tough ionic conductive hydrogel (STICH). The newly proposed STICH features brain-adaptive softness with Young’s modulus of ~9.46 kPa, which is sufficient to form a conformal in...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
This PhD research relates to design, fabrication, and characterization of integrated flexible electr...
The ongoing interest in densely packed miniaturized electrode arrays for high-resolution epicortical...
An electrocorticogram (ECoG) is the electrical activity obtainable from the cerebral cortex and an i...
The development of flexible and stretchable materials has led to advances in implantable bio-integra...
The development of flexible and stretchable materials has led to advances in implantable bio-integra...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
Reducing the mechanical mismatch between the stiffness of a neural implant and the softness of the n...
Reducing the mechanical mismatch between the stiffness of a neural implant and the softness of the n...
The ongoing interest in densely packed miniaturized electrode arrays for high-resolution epicortical...
In neuroscience, the acquisition of neural signals from the brain cortex is crucial to analyze brain...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
This PhD research relates to design, fabrication, and characterization of integrated flexible electr...
The ongoing interest in densely packed miniaturized electrode arrays for high-resolution epicortical...
An electrocorticogram (ECoG) is the electrical activity obtainable from the cerebral cortex and an i...
The development of flexible and stretchable materials has led to advances in implantable bio-integra...
The development of flexible and stretchable materials has led to advances in implantable bio-integra...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
Reducing the mechanical mismatch between the stiffness of a neural implant and the softness of the n...
Reducing the mechanical mismatch between the stiffness of a neural implant and the softness of the n...
The ongoing interest in densely packed miniaturized electrode arrays for high-resolution epicortical...
In neuroscience, the acquisition of neural signals from the brain cortex is crucial to analyze brain...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
This PhD research relates to design, fabrication, and characterization of integrated flexible electr...
The ongoing interest in densely packed miniaturized electrode arrays for high-resolution epicortical...