Title :
Multisensor silicon needle for cardiac applications
Author :
Zine, N. ; Ivorra, A. ; Aguilo, J. ; Villa, R. ; Millan, J. ; Bausells, J. ; Errachid, A. ; Godignon, P. ; Benvenuto, A. ; Beccai, L. ; Valvo, F. ; Menciassi, A. ; Dario, P. ; Carrozza, M.C.
Author_Institution :
Centre Nacional de Microelectron., CSIC, Barcelona, Spain
Abstract :
An integrated chemical sensor with multiple ion and temperature sensors, composed of two ISFETs (pH and K+), one platinum pseudo-reference electrode and temperature sensor based on a platinum resistor has been realised by using a CMOS-compatible technology and silicon micromachining. This paper describes a summary of the fabrication process and results of the device characterisation in vitro. The feasibility of the fabrication technology has been demonstrated and all devices have operated satisfactory, with a response showing good sensitivity and linearity. This multisensor will be used in the on-line early detection of myocardial ischemia during cardiac surgery while the heart is artificially arrested (extracorporeal circulation)
Keywords :
biomedical electronics; biomedical transducers; cardiology; chemical sensors; ion sensitive field effect transistors; micromachining; silicon; temperature sensors; CMOS-compatible technology; ISFETs; K; Pt; Si; artificially arrested heart; cardiac applications; device characterisation; extracorporeal circulation; fabrication process; multisensor silicon needle; myocardial ischemia; platinum pseudo-reference electrode; platinum resistor; silicon micromachining; CMOS technology; Chemical sensors; Chemical technology; Electrodes; Fabrication; Needles; Platinum; Resistors; Silicon; Temperature sensors;
Conference_Titel :
Microtechnologies in Medicine and Biology, 1st Annual International, Conference On. 2000
Conference_Location :
Lyon
Print_ISBN :
0-7803-6603-4
DOI :
10.1109/MMB.2000.893775