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1
Goal-directed whisking increases phase-locking between vibrissa movement and electrical activity in primary sensory cortex in rat.
Proc Natl Acad Sci U S A. 2004 Aug 17;101(33):12348-53. doi: 10.1073/pnas.0308470101. Epub 2004 Aug 5.
2
Current flow in vibrissa motor cortex can phase-lock with exploratory rhythmic whisking in rat.
J Neurophysiol. 2004 Sep;92(3):1700-7. doi: 10.1152/jn.00020.2004. Epub 2004 Apr 7.
3
Anatomical loops and their electrical dynamics in relation to whisking by rat.
Somatosens Mot Res. 1999;16(2):69-88. doi: 10.1080/08990229970528.
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Vibrissae motor cortex unit activity during whisking.
J Neurophysiol. 2012 Jan;107(2):551-63. doi: 10.1152/jn.01132.2010. Epub 2011 Oct 12.
9
Unilateral vibrissa contact: changes in amplitude but not timing of rhythmic whisking.
Somatosens Mot Res. 2003;20(2):163-9. doi: 10.1080/08990220311000405208.
10
Exploratory whisking by rat is not phase locked to the hippocampal theta rhythm.
J Neurosci. 2006 Jun 14;26(24):6518-22. doi: 10.1523/JNEUROSCI.0190-06.2006.

引用本文的文献

1
Body-World Coupling, Sensorimotor Mechanisms, and the Ontogeny of Social Cognition.
Front Psychol. 2020 Jan 14;10:3005. doi: 10.3389/fpsyg.2019.03005. eCollection 2019.
2
Whisker-Mediated Touch System in Rodents: From Neuron to Behavior.
Front Syst Neurosci. 2019 Aug 21;13:40. doi: 10.3389/fnsys.2019.00040. eCollection 2019.
3
Large-scale changes in cortical dynamics triggered by repetitive somatosensory electrical stimulation.
J Neuroeng Rehabil. 2019 May 24;16(1):59. doi: 10.1186/s12984-019-0520-1.
4
Functional brain stem circuits for control of nose motion.
J Neurophysiol. 2019 Jan 1;121(1):205-217. doi: 10.1152/jn.00608.2018. Epub 2018 Nov 21.
5
Twitches, Blinks, and Fidgets: Important Generators of Ongoing Neural Activity.
Neuroscientist. 2019 Aug;25(4):298-313. doi: 10.1177/1073858418805427. Epub 2018 Oct 12.
6
A Dynamic Interplay within the Frontoparietal Network Underlies Rhythmic Spatial Attention.
Neuron. 2018 Aug 22;99(4):842-853.e8. doi: 10.1016/j.neuron.2018.07.038.
7
Weak correlations between hemodynamic signals and ongoing neural activity during the resting state.
Nat Neurosci. 2017 Dec;20(12):1761-1769. doi: 10.1038/s41593-017-0007-y. Epub 2017 Nov 6.
8
Circuits in the rodent brainstem that control whisking in concert with other orofacial motor actions.
Neuroscience. 2018 Jan 1;368:152-170. doi: 10.1016/j.neuroscience.2017.08.034. Epub 2017 Aug 23.
9
Inhibition, Not Excitation, Drives Rhythmic Whisking.
Neuron. 2016 Apr 20;90(2):374-87. doi: 10.1016/j.neuron.2016.03.007. Epub 2016 Mar 31.
10
Vibrissa Self-Motion and Touch Are Reliably Encoded along the Same Somatosensory Pathway from Brainstem through Thalamus.
PLoS Biol. 2015 Sep 22;13(9):e1002253. doi: 10.1371/journal.pbio.1002253. eCollection 2015.

本文引用的文献

1
Frisking the whiskers: patterned sensory input in the rat vibrissa system.
Neuron. 2004 Jan 22;41(2):181-4. doi: 10.1016/s0896-6273(04)00002-9.
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Switching between cortical and subcortical sensorimotor pathways.
Prog Brain Res. 2004;143:299-305. doi: 10.1016/S0079-6123(03)43029-X.
3
Encoding of vibrissal active touch.
Neuron. 2003 Oct 30;40(3):621-30. doi: 10.1016/s0896-6273(03)00671-8.
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Correlated neuronal discharges that increase coding efficiency during perceptual discrimination.
Neuron. 2003 May 22;38(4):649-57. doi: 10.1016/s0896-6273(03)00287-3.
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Closed-loop neuronal computations: focus on vibrissa somatosensation in rat.
Cereb Cortex. 2003 Jan;13(1):53-62. doi: 10.1093/cercor/13.1.53.
7
Spectral mixing of rhythmic neuronal signals in sensory cortex.
Proc Natl Acad Sci U S A. 2002 Nov 12;99(23):15176-81. doi: 10.1073/pnas.222547199. Epub 2002 Oct 25.
9
Integration of bilateral whisker stimuli in rats: role of the whisker barrel cortices.
Cereb Cortex. 2002 Jan;12(1):86-97. doi: 10.1093/cercor/12.1.86.
10
Dynamic organization of the somatosensory cortex induced by motor activity.
Brain. 2001 Nov;124(Pt 11):2259-67. doi: 10.1093/brain/124.11.2259.

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