Front Matter (PDF) - Cerebral Cortex
Front Matter (PDF) - Cerebral Cortex
Front Matter (PDF) - Cerebral Cortex
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0<br />
C R<br />
<strong>Cerebral</strong> T<br />
E<br />
499<br />
Organization of Rodent Auditory <strong>Cortex</strong>: Anterograde<br />
Transport of PHA-L from MGv to Temporal Neocortex<br />
515<br />
Information Cascade from Primary Auditory <strong>Cortex</strong> to<br />
the Amygdala: Corticocortical and Corticoamygdaloid<br />
Projections of Temporal <strong>Cortex</strong> in the Rat<br />
533<br />
The Dopaminergic Innervation of Monkey Entorhinal<br />
<strong>Cortex</strong><br />
551<br />
Transient Axonal Branching in the Developing Corpus<br />
Callosum<br />
567<br />
Using Locations to Store Shape: An Indirect Effect of a<br />
Lesion<br />
583<br />
Acknowledgement<br />
584<br />
Volume 3 Subject Index<br />
587<br />
Volume 3 Author Index<br />
588<br />
Volume 3 Title Index<br />
591<br />
Cumulative Volume Contents<br />
November/December 1993, V 3 N6<br />
Lizabeth M. Romanski and Joseph E. LeDoux<br />
Lizabeth M. Romanski and Joseph E. LeDoux<br />
Mayada Akil and David A. Lewis<br />
HazimJ. Kadhim, Pradeep G. Bhide, and<br />
Douglas O. Frost<br />
Stephen M. Kosslyn, Philip F. Daly, Robert M.<br />
McPeek, Nathaniel M. Alpert, David N. Kennedy,<br />
and Verne S. Caviness, Jr.
<strong>Cerebral</strong> <strong>Cortex</strong> (ISSN 1047-3211) is published<br />
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Indexing: The journal is indexed in Current Contents,<br />
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Copyright © 1993 Oxford University Press. All rights<br />
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Cover Picture: Optical intrinsic signals in rodent<br />
somatosensory cortex comprise diffuse and vascular<br />
components. This is a magnitude-coded pseudocolor<br />
image of functional reflectance change (intrinsic signals)<br />
over posteromedial barrel subfield cortex in the<br />
rat, in response to vibrissal deflection. Lighter colors<br />
indicate larger magnitude signals. Yellow corresponds<br />
to 2 x 1O~ 3 of prestimulated, surrounding<br />
color 1 x 10" 3 and background negligible. This map<br />
was obtained over posterior row cortical barrels,<br />
2.4 s after the onset of 2 s, 4 Hz arc 1 vibrissal deflection.<br />
In this view, left is lateral, top is posterior,<br />
and the scale bar indicates 1 mm. From an article by<br />
S. Narayan, E. M. Santori, and A. W. Toga that will<br />
appear in an upcoming issue.
0<br />
C R<br />
<strong>Cerebral</strong> T<br />
Co-Editors<br />
P.S. Goldman-Rakic, Yale<br />
P. Rakic, Yale<br />
Features Editor<br />
K. Martin, Oxford<br />
Advisory Board<br />
W.M. Cowan, Howard Hughes, Bethesda<br />
D. Hubel, Harvard<br />
V. Mountcastle, Johns Hopkins<br />
J. Szentagothai, Budapest<br />
T. Wiesel, Rockefeller<br />
Associate Editors<br />
Development and Evolution<br />
J. Allman, Caltech<br />
V. Caviness, Harvard<br />
G. Innocenti, Lausanne<br />
J. Parnavelas, London<br />
C. Shatz, UC Berkeley<br />
T. Woolsey, St. Louis<br />
Cellular and Molecular Biology<br />
P. Andersen, Oslo<br />
S. Hockfield, Yale<br />
A. Peters, Boston<br />
D. Price, Johns Hopkins<br />
D. Prince, Stanford<br />
W. Singer, Max Planck, Frankfurt<br />
P. Somogyi, Oxford<br />
Neuroanatomy<br />
A. Deutch, Yale<br />
E. Jones, UC Irvine<br />
J. Lund, Cambridge<br />
A. Rosenquist, Pennsylvania<br />
G. Van Hoesen, Iowa<br />
S. Zeki, London<br />
Neurophysiology<br />
R. Andersen, MIT<br />
A. Georgopoulos, Minneapolis<br />
K. Kubota, Kyoto<br />
M. Merzenich, UC San Francisco<br />
G. Rizzolatti, Parma<br />
J. Tanji, Tohoku<br />
S. Wise, NIMH, Poolesville<br />
Neurology and Neuropsychology<br />
M. Albert, Boston<br />
A. Damasio, Iowa<br />
M. Gazzaniga, Dartmouth<br />
B. Kolb, Lethbridge<br />
M. Mishkin, NIMH, Bethesda<br />
M. Raichle, St. Louis<br />
P. Roland, Stockholm<br />
Computation and Theory<br />
J. Changeux, Paris<br />
M I to, Tokyo<br />
R. Linsker, IBM, Yorktown Heights<br />
T. Sejnowski, Salk, La Jolla<br />
G. Shepherd, Yale<br />
C. von der Malsburg, Bochum
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