SUBCORTICAL CONTRIBUTIONS TO THE SURFACE-RECORDED FLASH-VEP IN THE AWAKE MACAQUE

被引:79
作者
SCHROEDER, CE
TENKE, CE
GIVRE, SJ
机构
[1] YESHIVA UNIV ALBERT EINSTEIN COLL MED,DEPT NEUROSCI,BRONX,NY 10461
[2] NEW YORK STATE PSYCHIAT INST & HOSP,DEPT BIOPSYCHOL,NEW YORK,NY 10032
来源
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY | 1992年 / 84卷 / 03期
关键词
SURFACE-VEP; INTRACRANIAL VEP; OSCILLATORY POTENTIALS; STRIATE CORTEX; LATERAL GENICULATE;
D O I
10.1016/0168-5597(92)90003-T
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Epidural mapping of flash-VEP in awake monkeys revealed a reliable. short latency negativity, N25 (onset: 18-22 msec; peak: 23-27 msec; duration: 15-20 msec), with a broad frontal surface distribution (frontolateral maximum). N25 was dissociable from the electroretinogram (ERG), from cortical VEP and from the high frequency oscillations (wavelets) coextensive with the ERG and with cortical VEP. Depth recordings traced N25 from its surface maximum down to the lateral geniculate nucleus (LGN). Concomitant VEP. current source density (CSD) and multiunit activity (MUA) profiles obtained with multicontact electrodes showed that the peak and later portion of N25 arise primarily from current sinks (associated with MUA increases) that reflect transmembrane current flow attending depolarization of cells in lamina 0. the uppermost lamina, but may also receive contributions from the more ventral LGN laminae. The initial portion of N25 arises from similar processes near the lamina 3/2 border. Wavelets, in contrast, are prominent in VEP, CSD and MUA within LGN, but attenuate rapidly above LGN. LGN laminar and cellular morphology Predict volume conduction of N25 over a wide arc lateral and anterior to LGN and roughly horizontal isopotential planes medial and posterior to LGN. Recordings on the brain surface, within LGN, and in the regions surrounding LGN are consistent with these predictions. Possible contributions from other structures and how these results fit with data obtained in humans are considered.
引用
收藏
页码:219 / 231
页数:13
相关论文
共 35 条
[1]   SCALP TOPOGRAPHY OF HUMAN VISUAL EVOKED-POTENTIALS [J].
ALLISON, T ;
MATSUMIYA, Y ;
GOFF, GD ;
GOFF, WR .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1977, 42 (02) :185-197
[2]   A NEW MULTIELECTRODE ARRAY FOR THE SIMULTANEOUS RECORDING OF FIELD POTENTIALS AND UNIT-ACTIVITY [J].
BARNA, JS ;
AREZZO, JC ;
VAUGHAN, HG .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1981, 52 (05) :494-496
[3]   THE REPRESENTATION OF THE VISUAL-FIELD IN PARVICELLULAR AND MAGNOCELLULAR LAYERS OF THE LATERAL GENICULATE-NUCLEUS IN THE MACAQUE MONKEY [J].
CONNOLLY, M ;
VANESSEN, D .
JOURNAL OF COMPARATIVE NEUROLOGY, 1984, 226 (04) :544-564
[4]   VISUAL EVOKED-POTENTIAL IN MAN - EARLY OSCILLATORY POTENTIALS [J].
CRACCO, RQ ;
CRACCO, JB .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1978, 45 (06) :731-739
[5]  
CRAPPER D, 1963, J NEUROPHYSIOL, V47, P924
[6]   PSYCHOPHYSICAL STUDIES OF MONKEY VISION .1. MACAQUE LUMINOSITY AND COLOR-VISION TESTS [J].
DEVALOIS, RL ;
MORGAN, HC ;
POLSON, MC ;
MEAD, WR ;
HULL, EM .
VISION RESEARCH, 1974, 14 (01) :53-67
[7]   PSYCHOPHYSICAL STUDIES OF MONKEY VISION .3. SPATIAL LUMINANCE CONTRAST SENSITIVITY TESTS OF MACAQUE AND HUMAN OBSERVERS [J].
DEVALOIS, RL ;
MORGAN, H ;
SNODDERLY, DM .
VISION RESEARCH, 1974, 14 (01) :75-81
[8]   OSCILLATORY POTENTIALS IN VISUAL SYSTEM OF CATS AND MONKEYS [J].
DOTY, RW ;
KIMURA, DS .
JOURNAL OF PHYSIOLOGY-LONDON, 1963, 168 (01) :205-+
[9]   NEURONAL GENERATORS OF THE VISUAL EVOKED-POTENTIALS - INTRACEREBRAL RECORDING IN AWAKE HUMANS [J].
DUCATI, A ;
FAVA, E ;
MOTTI, EDF .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1988, 71 (02) :89-99
[10]  
EASON RG, 1981, B PSYCHONOMIC SOC, V18, P203