FACTORS INFLUENCING THE BIOCOMPATIBILITY OF INSERTABLE SILICON MICROSHAFTS IN CEREBRAL-CORTEX

被引:363
作者
EDELL, DJ
TOI, VV
MCNEIL, VM
CLARK, LD
机构
[1] SCHLUMBERGER,AUSTIN,TX 78720
[2] TUFTS UNIV,DEPT ENGN DESIGN,MEDFORD,MA 02155
[3] MIT,DEPT ELECT ENGN,CAMBRIDGE,MA 02139
关键词
D O I
10.1109/10.141202
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Insertable microelectrode arrays can be used to activate neurons or to sense neural signals for use in prosthetics. The relationship of the microelectrodes to the neurons is determined by random alignment and by biocompatibility. Issues that determine the biocompatibility of insertable microelectrode arrays were investigated. Arrays were implanted into the cortex of rabbit brain and fixed to the skull. Following six-month survival, neuron density as a function of distance from the shafts of the arrays was measured to assess destruction of neurons. Results from a limited number of tests indicated that there was minimal tissue response along the sides of the shafts when shafts were well sharpened, had sufficiently small tip angles, and were clean. Tissue was usually more reactive at the tips of the shafts. It was concluded that silicon microshafts of appropriate shaft and tip design were biocompatible along the sides of the shaft, but that relatively severe reactions could be anticipated at the tips. Recording or stimulation sites should be located away from the tips on the sides of the shafts for better coupling with individual neurons. Measurement of neuron density as a function of distance from the shafts was a sensitive and quantitative technique for assessing biocompatibility. Additional measures such as glial density as a function of distance from the shafts, and incidence of microhematoma formation were proposed.
引用
收藏
页码:635 / 643
页数:9
相关论文
共 30 条
[1]  
AGNEW WF, 1990, NIH CN N01NS92326 PR
[2]   SOLID-STATE ELECTRODES FOR MULTICHANNEL MULTIPLEXED INTRACORTICAL NEURONAL RECORDING [J].
BEMENT, SL ;
WISE, KD ;
ANDERSON, DJ ;
NAJAFI, K ;
DRAKE, KL .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1986, 33 (02) :230-241
[3]  
CLARK LD, 1988, JUN IEEE SOL STAT SE
[4]  
CLARK LD, 1987, 9TH IEEE EMBS ANN C
[5]  
Cuomo J. J., 1983, IBM Technical Disclosure Bulletin, V25, P5588
[6]   PERFORMANCE OF PLANAR MULTISITE MICROPROBES IN RECORDING EXTRACELLULAR SINGLE-UNIT INTRACORTICAL ACTIVITY [J].
DRAKE, KL ;
WISE, KD ;
FARRAYE, J ;
ANDERSON, DJ ;
BEMENT, SL .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1988, 35 (09) :719-732
[7]   BIOCOMPATIBILITY OF A SILICON BASED PERIPHERAL-NERVE ELECTRODE [J].
EDELL, DJ ;
CHURCHILL, JN ;
GOURLEY, IM .
BIOMATERIALS MEDICAL DEVICES AND ARTIFICIAL ORGANS, 1982, 10 (02) :103-122
[8]   A PERIPHERAL-NERVE INFORMATION TRANSDUCER FOR AMPUTEES - LONG-TERM MULTICHANNEL RECORDINGS FROM RABBIT PERIPHERAL-NERVES [J].
EDELL, DJ .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1986, 33 (02) :203-214
[9]  
EDELL DJ, 1986, DEC INT EL DEV M LOS
[10]  
EDELL DJ, 1980, THESIS U C DAVIS