Identification of functioning cortex using cortical optical imaging

被引:24
作者
Zlokovic, BV
机构
[1] Department of Neurosurgery, Health Science Center at Syracuse, Syracuse
[2] Department of Neurosurgery, Health Science Center at Syracuse, Syracuse, NY 13210
关键词
Functional imaging; Optical imaging; Rat; Whisker barrel cortex;
D O I
10.1097/00006123-199711000-00023
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
OBJECTIVE: The purpose of this study was to evaluate the technique of cortical optical imaging (COI) of intrinsic cortical optical signals related to neuronal activation. The specific goals of the study were to evaluate some of the technical aspects of COI and thus maximize the intensity of the image of this intrinsic signaling process and to determine the physiological reliability of COI in a well-defined animal system. METHODS: The intrinsic optical signal of activated whisker barrel cortex of rat was imaged using a computer-based technique for rapid acquisition of enhanced images. Single- unit microelectrode recordings of cortical neuronal responses to whisker movement were used to confirm the locations of the whisker barrels. RESULTS: Narrow band incident light at 600- to 610-nm wavelength was most effective for producing optical images. Images could be obtained during activation by a single long (40 s) stimulus or by averaging the signal generated by repeated shorter (1-8 s) stimuli. Focusing slightly below the cortical surface, minimizing movement, and abolishing extraneous light were all important in increasing the signal-to-noise ratio. The locations of whisker movement- evoked cortical activity determined using COI are consistent with the known functional anatomy of rat whisker barrel cortex. The images obtained with this experimental arrangement are shown to be accurate predictors of the location of neuronal activity determined by comparing the locations of active sites identified with COI with locations of areas of neuronal activity determined using single-cell recording techniques. CONCLUSIONS: COI is able to rapidly identify areas of cortex containing elicited neuronal activity. The technique allows cortical activation maps to be made rapidly with a very high degree of spatial resolution. COI is reliable and consistent over time. COI, if used carefully, holds promise as an intraoperative technique to study both human and experimental animal cortical function.
引用
收藏
页码:1145 / 1145
页数:1
相关论文
共 53 条
[1]   FLOW OF EXCITATION WITHIN RAT BARREL CORTEX ON STRIKING A SINGLE VIBRISSA [J].
ARMSTRONGJAMES, M ;
FOX, K ;
DASGUPTA, A .
JOURNAL OF NEUROPHYSIOLOGY, 1992, 68 (04) :1345-1358
[2]   THALAMOCORTICAL PROCESSING OF VIBRISSAL INFORMATION IN THE RAT .1. INTRACORTICAL ORIGINS OF SURROUND BUT NOT CENTER-RECEPTIVE FIELDS OF LAYER-IV NEURONS IN THE RAT S1 BARREL FIELD CORTEX [J].
ARMSTRONGJAMES, M ;
CALLAHAN, CA ;
FRIEDMAN, MA .
JOURNAL OF COMPARATIVE NEUROLOGY, 1991, 303 (02) :193-210
[3]   THALAMOCORTICAL PROCESSING OF VIBRISSAL INFORMATION IN THE RAT .2. SPATIOTEMPORAL CONVERGENCE IN THE THALAMIC VENTROPOSTERIOR MEDIAL NUCLEUS (VPM) AND ITS RELEVANCE TO GENERATION OF RECEPTIVE-FIELDS OF S1 CORTICAL BARREL NEURONS [J].
ARMSTRONGJAMES, M ;
CALLAHAN, CA .
JOURNAL OF COMPARATIVE NEUROLOGY, 1991, 303 (02) :211-224
[4]   RESPONSES EVOKED IN MOUSE AND RAT SI CORTEX BY VIBRISSA STIMULATION [J].
AXELRAD, H ;
VERLEY, R ;
FARKAS, E .
NEUROSCIENCE LETTERS, 1976, 3 (5-6) :265-274
[5]  
BELIVEAU JW, 1991, SCIENCE, V254, P716
[6]  
BLOOD AJ, 1994, ABSTR SOC NEUR, V20
[7]  
BONHOEFFER T, 1993, J NEUROSCI, V13, P4157
[8]  
BONHOEFFER T, 1993, ADV EXPT MED BIOL OP, P57
[9]   METABOLIC ANATOMY OF BRAIN - A COMPARISON OF REGIONAL CAPILLARY DENSITY, GLUCOSE-METABOLISM, AND ENZYME-ACTIVITIES [J].
BOROWSKY, IW ;
COLLINS, RC .
JOURNAL OF COMPARATIVE NEUROLOGY, 1989, 288 (03) :401-413
[10]  
Chapin J., 1990, CEREBRAL CORTEX RAT, P341