Title :
Cooling stimulation on cerebral cortex for epilepsy suppression with integration of micro-invasive electrodes and TE coolers
Author :
Jin-Chern Chiou ; Lei-Chun Chou ; Shang-Wei Tsai ; Kuan-Chou Hou ; Chih-Wei Chang
Author_Institution :
Nat. Chiao-Tung Univ., Hsinchu, Taiwan
Abstract :
Epilepsy suppression with cooling stimulation is the primary purpose for this study. In this dissertation, cooling stimulation was implemented and demonstrated on cerebral cortex of rats. Electrodes with needle structure was designed and fabricated by using MEMS technology to minimize the size of device. A TE cooler was used to create cooling source and it can be control via electrical current. A cooler component was integrated with an electrode and a TE cooler, in addition, a thermal sensor was also combined with it to detect temperature variation, which was affected by cooling cerebral cortex. The cooler components were implanted on surface of cerebral with deep brain stimulation and the thermal sensors were penetrated into cortex to measure temperature variation which can verify the functions of cooler components. In our experimental results, electrodes with needle structure can improve efficiency of epilepsy suppression due to the particular structure. Duration, frequency and average single time of epileptic waveforms were used to identify to performance of suppression.
Keywords :
bioMEMS; biomedical electrodes; brain; medical disorders; microelectrodes; microfabrication; microsensors; neuromuscular stimulation; temperature measurement; temperature sensors; MEMS technology; TE cooler component; cooling source; cooling stimulation; deep brain stimulation; dissertation; electrical current; epilepsy suppression; epileptic waveform; microinvasive electrode; micromechanical device; rat cerebral cortex; temperature variation detection; temperature variation measurement; thermal sensor; Cooling; Electrodes; Epilepsy; Needles; Rats; Temperature measurement; Temperature sensors; MEMS; TE cooler; epilepsy; needle electrode;
Conference_Titel :
Nano/Micro Engineered and Molecular Systems (NEMS), 2013 8th IEEE International Conference on
Conference_Location :
Suzhou
Electronic_ISBN :
978-1-4673-6351-8
DOI :
10.1109/NEMS.2013.6559945