Low power smart electronic designs for neural recording applications have recently become a major research topic in circuits and system society. Challenged by the complicated nature of the biology-electronic interface, implantable neural recording circuits must offer high quality signal acquisition while consuming as little power as possible. Furthermore, many applications demand on-chip smart features to maximize energy efficiency as well as to assist the subsequent software-based digital signal processing. This paper reviews the recent advancements in the field, followed by a proposed ultra low-power recording front-end. The proposed design consists of an adjustable gain and bandwidth low-noise amplifier, a bandpass filter, a unity gain b...
For real-time monitoring of brain activities, a low-power, high-data-rate, and highly mobile neural ...
The design of a low power amplifier for recording EEG signals is presented. The low noise design tec...
The design of a low power amplifier for recording EEG signals is presented. The low noise design tec...
This brief presents a new architecture for an ultra-low power and area-efficient 8-channel prototype...
This brief presents a new architecture for an ultra-low power and area-efficient 8-channel prototype...
Neural-to-electronic interfaces are essential methods for neuroscience and neural prosthetics to mon...
Neural-to-electronic interfaces are essential methods for neuroscience and neural prosthetics to mon...
Abstract—We report the design of an ultra-low-power 32-channel neural-recording integrated circuit (...
In this paper we present the design and implementation of a low power neural amplifer which has two ...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
Chronic recording of neural signals is indispensable in designing efficient brain machine interfaces...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
Chronic recording of neural signals is indispensable in designing efficient brain machine interfaces...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
For real-time monitoring of brain activities, a low-power, high-data-rate, and highly mobile neural ...
The design of a low power amplifier for recording EEG signals is presented. The low noise design tec...
The design of a low power amplifier for recording EEG signals is presented. The low noise design tec...
This brief presents a new architecture for an ultra-low power and area-efficient 8-channel prototype...
This brief presents a new architecture for an ultra-low power and area-efficient 8-channel prototype...
Neural-to-electronic interfaces are essential methods for neuroscience and neural prosthetics to mon...
Neural-to-electronic interfaces are essential methods for neuroscience and neural prosthetics to mon...
Abstract—We report the design of an ultra-low-power 32-channel neural-recording integrated circuit (...
In this paper we present the design and implementation of a low power neural amplifer which has two ...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
Chronic recording of neural signals is indispensable in designing efficient brain machine interfaces...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
Chronic recording of neural signals is indispensable in designing efficient brain machine interfaces...
Since the dawn of microelectronic industry integrated technologies have been fuelling tremendous adv...
For real-time monitoring of brain activities, a low-power, high-data-rate, and highly mobile neural ...
The design of a low power amplifier for recording EEG signals is presented. The low noise design tec...
The design of a low power amplifier for recording EEG signals is presented. The low noise design tec...