DocumentCode :
1391843
Title :
Wireless and batteryless biomedical microsystem for neural recording and epilepsy suppression based on brain focal cooling
Author :
Hou, K.-C. ; Chang, Che-Wei ; Chiou, Jin-Chern ; Huang, Yuan-Hao ; Shaw, Fu-Zen
Volume :
5
Issue :
4
fYear :
2011
fDate :
12/1/2011 12:00:00 AM
Firstpage :
143
Lastpage :
147
Abstract :
This work presents a biomedical microsystem with a wireless radiofrequency (RF)-powered electronics and versatile sensors/actuators for use in nanomedicinal diagnosis and therapy. The cooling of brain tissue has the potential to reduce the frequency and severity of epilepsy. Miniaturised spiral coils as a wireless power module with low-dropout linear regulator circuit convert RF signals into a DC voltage, can be implanted without a battery in monitoring free behaviour. A thermoelectric (TE) cooler is an actuator that is employed to cool down brain tissue to suppress epilepsy. Electroencephalogram (EEG) electrodes and TE coolers are integrated to form module that is placed inside the head of a rat and fastened with a bio-compatible material. EEG signals are used to identify waveforms associated with epilepsy and are measured using readout circuits. The wireless part of the presented design achieves a low quiescent current and line/load regulation and high antenna/current efficiency with thermal protection to avoid damage to the implanted tissue. Epilepsy is suppressed by reducing the temperature to reduce the duration of this epileptic episode. Related characterisations demonstrate that the proposed design can be adopted in an effective nanomedicine microsystem.
Keywords :
biomedical electrodes; electroencephalography; nanomedicine; readout electronics; thermoelectric cooling; EEG electrode; RF-powered electronics; batteryless biomedical microsystem; brain focal cooling; brain tissue; electroencephalogram; epilepsy suppression; nanomedicinal diagnosis; neural recording; rat; readout circuit; thermal protection; thermoelectric cooler; wireless biomedical microsystem;
fLanguage :
English
Journal_Title :
Nanobiotechnology, IET
Publisher :
iet
ISSN :
1751-8741
Type :
jour
DOI :
10.1049/iet-nbt.2011.0017
Filename :
6096478
Link To Document :
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