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Shape tuning in macaque inferior temporal cortex.
J Neurosci. 2003 Apr 1;23(7):3016-27. doi: 10.1523/JNEUROSCI.23-07-03016.2003.
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Inferior temporal neurons show greater sensitivity to nonaccidental than to metric shape differences.
J Cogn Neurosci. 2001 May 15;13(4):444-53. doi: 10.1162/08989290152001871.
3
Greater sensitivity to nonaccidental than metric changes in the relations between simple shapes in the lateral occipital cortex.
Neuroimage. 2012 Dec;63(4):1818-26. doi: 10.1016/j.neuroimage.2012.08.066. Epub 2012 Aug 31.
4
Tuning for shape dimensions in macaque inferior temporal cortex.
Eur J Neurosci. 2005 Jul;22(1):212-24. doi: 10.1111/j.1460-9568.2005.04202.x.
5
Greater sensitivity to nonaccidental than metric shape properties in preschool children.
Vision Res. 2014 Apr;97:83-8. doi: 10.1016/j.visres.2014.02.006. Epub 2014 Feb 28.
6
Sensitivity to nonaccidental properties across various shape dimensions.
Vision Res. 2012 Jun 1;62:35-43. doi: 10.1016/j.visres.2012.03.020. Epub 2012 Apr 2.
7
Properties of shape tuning of macaque inferior temporal neurons examined using rapid serial visual presentation.
J Neurophysiol. 2007 Apr;97(4):2900-16. doi: 10.1152/jn.00741.2006. Epub 2007 Jan 24.
8
One-shot viewpoint invariance in matching novel objects.
Vision Res. 1999 Aug;39(17):2885-99. doi: 10.1016/s0042-6989(98)00309-5.
9
Joint coding of shape and blur in area V4.
Nat Commun. 2018 Jan 31;9(1):466. doi: 10.1038/s41467-017-02438-8.
10
Macaque inferior temporal neurons are selective for disparity-defined three-dimensional shapes.
Proc Natl Acad Sci U S A. 1999 Jul 6;96(14):8217-22. doi: 10.1073/pnas.96.14.8217.

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1
Spikiness and animacy as potential organizing principles of human ventral visual cortex.
Cereb Cortex. 2023 Jun 20;33(13):8194-8217. doi: 10.1093/cercor/bhad108.
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Skeletal representations of shape in the human visual cortex.
Neuropsychologia. 2022 Jan 7;164:108092. doi: 10.1016/j.neuropsychologia.2021.108092. Epub 2021 Nov 18.
3
A bias in saccadic suppression of shape change.
Vision Res. 2021 Sep;186:112-123. doi: 10.1016/j.visres.2021.05.005. Epub 2021 Jun 2.
4
Modeling diverse responses to filled and outline shapes in macaque V4.
J Neurophysiol. 2019 Mar 1;121(3):1059-1077. doi: 10.1152/jn.00456.2018. Epub 2019 Jan 30.
5
Representations of regular and irregular shapes by deep Convolutional Neural Networks, monkey inferotemporal neurons and human judgments.
PLoS Comput Biol. 2018 Oct 26;14(10):e1006557. doi: 10.1371/journal.pcbi.1006557. eCollection 2018 Oct.
6
Symmetric Objects Become Special in Perception Because of Generic Computations in Neurons.
Psychol Sci. 2018 Jan;29(1):95-109. doi: 10.1177/0956797617729808. Epub 2017 Dec 8.
7
Representation of Semantic Similarity in the Left Intraparietal Sulcus: Functional Magnetic Resonance Imaging Evidence.
Front Hum Neurosci. 2017 Aug 4;11:402. doi: 10.3389/fnhum.2017.00402. eCollection 2017.
8
Sensitivity to Nonaccidental Configurations of Two-Line Stimuli.
Iperception. 2017 Apr 3;8(2):2041669517699628. doi: 10.1177/2041669517699628. eCollection 2017 Mar-Apr.
10
Effect of silhouetting and inversion on view invariance in the monkey inferotemporal cortex.
J Neurophysiol. 2017 Jul 1;118(1):353-362. doi: 10.1152/jn.00008.2017. Epub 2017 Apr 5.

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Learning Invariance from Transformation Sequences.
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Differential effects of viewpoint on object-driven activation in dorsal and ventral streams.
Neuron. 2002 Aug 15;35(4):793-801. doi: 10.1016/s0896-6273(02)00803-6.
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Neural mechanisms of object recognition.
Curr Opin Neurobiol. 2002 Apr;12(2):162-8. doi: 10.1016/s0959-4388(02)00304-5.
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Learning increases stimulus salience in anterior inferior temporal cortex of the macaque.
J Neurophysiol. 2001 Jul;86(1):290-303. doi: 10.1152/jn.2001.86.1.290.
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Inferior temporal neurons show greater sensitivity to nonaccidental than to metric shape differences.
J Cogn Neurosci. 2001 May 15;13(4):444-53. doi: 10.1162/08989290152001871.

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