DASH S, YAN X, WANG H & CRAWFORD JD (2015)
Continuous updating of visuospatial memory in superior colliculus during slow eye movements
SAJAD A, SADEH M, KEITH GP, YAN X, WANG H & CRAWFORD JD (2014)
Visual-Motor transformations within frontal eye fields during head-unrestrained gaze shifts in the Monkey
MONTEON JA, WANG H, MARTINEZ-TRUJILLO JC & CRAWFORD JD (2013)
Frames of reference for eye-head gaze shifts evoked during stimulation of the primate frontal eye fields.
European Journal of Neuroscience. 37(11):1754-65
FARSHADMANESH F, BYRNE P, WANG H, CORNEIL BD & CRAWFORD JD (2012)
Relationships between neck muscle electromyography and three-dimensional head kinematics during centrally-induced torsional head pertubations
Journal of Neurophysiology 108(11):2867-83
MONTEON JA, AVILLAC M, YAN X, WANG H & CRAWFORD JD (2012)
Neural Mechanisms for Predictive Head Movement Strategies During Sequential Gaze Shifts
Journal of Neurophysiology 2012 Aug 29. [Epub ahead of print]
DESOUZA JFX, KEITH GP, YAN X, BLOHM G, WANG H, & CRAWFORD JD (2011)
Intrinsic Reference Frames of Superior Colliculus Visuomotor Receptive Receptive Fields During Head-unrestrained Gaze Shifts.
(Supplemental Materials)
FARSHADMANESH F, BYRNE P, KEITH GP, WANG H, CORNEIL B & CRAWFORD JD (2011, In press)
Cross-validated models of the relationships between neck muscle electromyography and three-dimensional head kinematics during gaze behaviour
MONTEON JA, CONSTANTIN AG, WANG H, MARTINEZ-TRUJILLO JC, & CRAWFORD JD (2010)
Electrical stimulaion of the frontal eye fields in the head-free macaque evokes kinematically normal gaze shifts.
SMITH MA, CRAWFORD JD
(2005)
A distributed population mechanism for
the 3-D oculomotor reference frame transformation.
Journal
of
Neurophysiology
93:
1742-1761
MARTINEZ-TRUJILLO JC,
MEDENDORP WP,
WANG H, CRAWFORD JD (2004)
Frames of reference for eye-head gaze
commands in primate supplementary eye fields.
CONSTANTIN
AG, WANG H,
CRAWFORD JD
(2004)
Role of superior colliculus in adaptive eye-head coordination during
gaze shifts.
MARTINEZ-TRUJILLO JC, KLIER EM,
WANG H, CRAWFORD JD (2003)
Contribution of head movement to
gaze command coding in monkey frontal cortex and superior colliculus.
CRAWFORD JD, TWEED DB, VILIS T (2003)
Static ocular counterroll is
implemented through the 3-D neural integrator.
MARTINEZ-TRUJILLO
JC, WANG H, CRAWFORD JD (2003)
Electrical stimulation of the
supplementary eye fields in the head-free macaque evokes kinematically
normal gaze shifts.
KLIER E, WANG H, CRAWFORD JD (2003)
Three-dimensional eye-head
coordination is implemented downstream from the superior colliculus.
KLIER EM, WANG H, CONSTANTIN A,
CRAWFORD JD (2002)
Midbrain control of
three-dimensional head orientation.
KLIER E,
WANG H, CRAWFORD JD
(2001)
The superior
colliculus encodes gaze commands in retinal coordinates.
SMITH MA,
CRAWFORD JD
(2001)
Self-organizing task-modules and explicit coordinate systems in a
neural network model for 3-D saccades.
HENRIQUES
DYP, CRAWFORD JD
(2001)
Testing the
three-dimensional reference frame transformation for express
and memory-guided saccades.
Neurocomputing
38-40: 1267-1280
CEYLAN MZ,
HENRIQUES DYP, TWEED DB, CRAWFORD JD (2000)
Task-dependent constraints in motor control: Pinhole goggles make the
head move like an eye.
CRAWFORD
JD, CEYLAN MZ, KLIER EM, GUITTON D (1999)
Three-dimensional eye-head coordination during
gaze saccades in the Primate.
KLIER
EM, CRAWFORD JD
(1998)
Human oculomotor system accounts for 3-D eye orientation in the
visual-motor transformation for saccades.
SMITH
MA, CRAWFORD JD
(1998)
Neural control of rotational kinematics within realistic
vestibuloocular coordinate systems.
CRAWFORD JD, GUITTON D
(1997)
Visual-motor transformations required for accurate and kinematically
correct saccades.
CRAWFORD JD, GUITTON D
(1997)
Primate head-free saccade
generator implements a desired (post-VOR) eye position command by
anticipating intended head motion.
CRAWFORD JD (1994)
The oculomotor neural integrator uses a behavior-related coordinate
system.
CRAWFORD JD, VILIS T
(1993)
Modularity and parallel processing in the oculomotor integrator.
MOK D, RO A, CRAWFORD
JD, VILIS T (1992)
Rotation of Listing's plane during vergence.
BAINS RA, CRAWFORD JD,
CADERA W, VILIS T (1992)
The conjugacy of human saccadic eye movements.
CRAWFORD JD, VILIS T
(1992)
Symmetry
of oculomotor burst neurons coordinates about Listing's plane.
CRAWFORD JD, VILIS T
(1991)
Axes of eye rotation and Listing's law during rotations of the head.
KLIER EM, BLOHM G & CRAWFORD JD (2012)
Neural Mechanisms of eye movements: Three-dimensional control and perceptual consequences.
The New Visual Neuroscience.
CRAWFORD JD, HENRIQUES DYP, & MEDENDORP WP (2011)
Three-dimensional Transformations for Goal Directed Action
CRAWFORD
JD,
MARTINEZ-TRUJILLO JC, KLIER EM (2003)
Neural control of 3-D eye and head movements.
KLIER E, CRAWFORD JD (2003)
Neural
control of 3-D eye and head posture.
KLIER EM,
MARTINEZ-TRUJILLO JC, MEDENDORP WP, SMITH MA, CRAWFORD JD (2003)
Neural
control of 3-D gaze shifts in the primate.
CRAWFORD, JD (2002)
Everything old is new
again? (Response)
Science 297: 335-336
KLIER EM, HENRIQUES
DYP, CRAWFORD
JD (2002)
Visual-motor
transformations account for 3-D eye orientation.
HENRIQUES DYP, VILIS T,
CRAWFORD JD
(2002)
The visuomotor
transformation accounts for 3-D eye orientation and retinal geometry.
KLIER EM, WANG H,
CRAWFORD JD
(2002)
Neural mechanisms of
three-dimensional eye and head movements.
CRAWFORD JD (1998)
Listing's law: What's all the hubbub?
In Vision and Action L Harris and M Jenkins (Eds)
Cambridge University Press, pp 139-162
CRAWFORD JD (1997)
Visuomotor codes for
three-dimensional saccades.
In: Computational and Psychophysical Mechanisms of Visual Coding, L
Harris and M Jenkins (Eds)
Cambridge University Press, pp 74-102
CRAWFORD JD, VILIS T,
GUITTON D
(1997)
Neural coordinate systems
for head-fixed and head-free gaze shifts.
In: Three-Dimensional Kinematic Principles of Eye, Head, and Limb
Movements in Health and Disease, M Fetter, H Misslisch, and D Tweed
(Eds)
Harwood: Amsterdam, pp 43-56
CRAWFORD JD (1997)
Geometric Transformations
in the visual-motor interface for saccades.
In: Three-Dimensional Kinematic Principles of Eye, Head, and Limb
Movements in Health and Disease, M Fetter, H Misslisch, and D Tweed
(Eds)
Harwood: Amsterdam, pp 85-100
CRAWFORD JD, VILIS T (1995)
How do motor systems deal
with the problems of controlling three-dimensional rotations?
The Journal of Motor Behaviour, 27: 89-99
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