Neural microelectrode is the important bridge of information exchange between the human body and machines. By recording and transmitting nerve signals with electrodes, people can control the external machines. At the same time, using electrodes to electrically stimulate nerve tissue, people with long-term brain diseases will be safely and reliably treated. Young’s modulus of the traditional rigid electrode probe is not matched well with that of biological tissue, and tissue immune rejection is easy to generate, resulting in the electrode not being able to achieve long-term safety and reliable working. In recent years, the choice of flexible materials and design of electrode structures can achieve modulus matching between electrode and biolo...
This PhD research relates to design, fabrication, and characterization of integrated flexible electr...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Reliable chronic neural recording from focal deep brain structures is impeded by insertion injury an...
In the last decades, the clinical applications of neural devices have increased exponentially. Accom...
With the rapid development of Micro-electro-mechanical Systems (MEMS) fabrication technologies, many...
Neural electrodes enable the recording and stimulation of bioelectrical activity in the nervous syst...
The development of implantable neuroelectrodes is advancing rapidly as these tools are becoming incr...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
Abstract Peripheral nerve interfaces are a central technology in advancing bioelectronic medicines b...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
Implantable nerve electrodes, as a bridge between the brain and external devices, have been widely u...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Brain‒machine interface (BMI) is a promising technology that looks set to contribute to the developm...
Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activ...
This PhD research relates to design, fabrication, and characterization of integrated flexible electr...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Reliable chronic neural recording from focal deep brain structures is impeded by insertion injury an...
In the last decades, the clinical applications of neural devices have increased exponentially. Accom...
With the rapid development of Micro-electro-mechanical Systems (MEMS) fabrication technologies, many...
Neural electrodes enable the recording and stimulation of bioelectrical activity in the nervous syst...
The development of implantable neuroelectrodes is advancing rapidly as these tools are becoming incr...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
Abstract Peripheral nerve interfaces are a central technology in advancing bioelectronic medicines b...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
Implantable nerve electrodes, as a bridge between the brain and external devices, have been widely u...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Brain‒machine interface (BMI) is a promising technology that looks set to contribute to the developm...
Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activ...
This PhD research relates to design, fabrication, and characterization of integrated flexible electr...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Reliable chronic neural recording from focal deep brain structures is impeded by insertion injury an...