An action potential or spike detector is an important part of neural recording implants. The detector performs on-chip data reduction by trying to capture only relevant information (real occurrences of the action potential) from the recorded signals. This data selection is indispensable since it helps reducing data rate as well as operating power for wireless data transmission of the neural sensor. This thesis explores the possibility of improving detections and reducing power consumption of neural spike detectors. As a result, two designs are presented in this thesis. First, the dynamic translinear realization of the nonlinear second-order differential equation describing the nonlinear energy operator performing the real time energy detect...
This paper presents a power efficient architecture for a neural spike recording channel. The channel...
This paper reports an integrated 64-channel neural spike recording sensor, together with all the cir...
This paper presents a novel 64-channel ultra-low power/low noise neural recording System-on-Chip (So...
This paper discusses a low-power spike detection circuit, which reduces bandwidth from neural record...
This paper presents an ultralow power 0.6 V 116 nW neural spike acquisition integrated circuit with ...
Journal ArticleThe advent of microelectrode arrays allowing for the simultaneous recording of 100 or...
Abstract—This paper presents a novel front-end circuit for detecting action potentials in extracellu...
A neural recording IC with a new spike detection scheme is proposed to minimize power dissipation wh...
Advances in microtechnology have enabled an exponential increase in the number of neurons that can b...
Advances in microtechnology have enabled an exponential increase in the number of neurons that can b...
The paper presents a novel topology of a continuous-time analogue-to-digital converter (CT-ADC) feat...
The recent progress in both neurobiology and microelectronics suggests the creation of new, powerful...
Modern microtechnology is enabling the channel count of neural recording integrated circuits to scal...
A design of small, low-power, low-data rate, wireless 32-channel neural recording system for small a...
This paper reports an integrated 64-channel neural spike recording sensor, together with all the cir...
This paper presents a power efficient architecture for a neural spike recording channel. The channel...
This paper reports an integrated 64-channel neural spike recording sensor, together with all the cir...
This paper presents a novel 64-channel ultra-low power/low noise neural recording System-on-Chip (So...
This paper discusses a low-power spike detection circuit, which reduces bandwidth from neural record...
This paper presents an ultralow power 0.6 V 116 nW neural spike acquisition integrated circuit with ...
Journal ArticleThe advent of microelectrode arrays allowing for the simultaneous recording of 100 or...
Abstract—This paper presents a novel front-end circuit for detecting action potentials in extracellu...
A neural recording IC with a new spike detection scheme is proposed to minimize power dissipation wh...
Advances in microtechnology have enabled an exponential increase in the number of neurons that can b...
Advances in microtechnology have enabled an exponential increase in the number of neurons that can b...
The paper presents a novel topology of a continuous-time analogue-to-digital converter (CT-ADC) feat...
The recent progress in both neurobiology and microelectronics suggests the creation of new, powerful...
Modern microtechnology is enabling the channel count of neural recording integrated circuits to scal...
A design of small, low-power, low-data rate, wireless 32-channel neural recording system for small a...
This paper reports an integrated 64-channel neural spike recording sensor, together with all the cir...
This paper presents a power efficient architecture for a neural spike recording channel. The channel...
This paper reports an integrated 64-channel neural spike recording sensor, together with all the cir...
This paper presents a novel 64-channel ultra-low power/low noise neural recording System-on-Chip (So...