Title :
A three-dimensional shape memory alloy microelectrode with clipping structure for insect neural recording
Author :
Takeuchi, Shoji ; Shimoyama, Isao
Author_Institution :
Dept. of Mechano-Inf., Tokyo Univ., Japan
fDate :
3/1/2000 12:00:00 AM
Abstract :
A microelectrode, with clipping structure for neural recording from a free-moving insect, was designed and fabricated using a shape memory alloy (SMA) thin film. The SMA thin films (titanium nickel; Ti-48 at.%Ni) are deposited by RF magnetron sputtering and patterned by HF-HNO/sub 3/ wet etching. The transformation temperatures of the SMA thin films were measured at 54/spl deg/C (A*) and 50/spl deg/C (M*). The SMA microelectrode consists of a "hook" structure (720 /spl mu/m/spl times/480 /spl mu/m) and two "C"-shape probes (600 /spl mu/m/spl times/70 /spl mu/m). The electrode impedance is about 5 k/spl Omega/ at 1 kHz. The desired three-dimensional (3D) shape is given to the electrode by a bonded wire. The clinging force of the electrode to the nerve is enhanced by the 3-D structures. The SMA microelectrode can clip a nerve cord tightly. The damages of the nerve by thermal actuation of the clip are not observed by physiological analysis. The neural activity from a living insect was successfully recorded with this SMA microelectrode.
Keywords :
biological techniques; brain; microelectrodes; neurophysiology; nickel alloys; shape memory effects; titanium alloys; zoology; 5 kohm; 50 degC; 54 degC; C-shape probes; RF magnetron sputtering; TiNi; bonded wire; clipping structure; electrode impedance; hook structure; insect neural recording; neural activity; shape memory alloy microelectrode; thermal actuation; transformation temperatures; wet etching; Electrodes; Insects; Microelectrodes; Nickel; Radio frequency; Shape memory alloys; Sputtering; Temperature; Titanium; Wet etching;
Journal_Title :
Microelectromechanical Systems, Journal of