91
Views
3
CrossRef citations to date
0
Altmetric
Effect of high velocity, large amplitude stimuli on the spread of depolarization in S1 “barrel” cortex

Effect of high velocity, large amplitude stimuli on the spread of depolarization in S1 “barrel” cortex

, &
Pages 73-85 | Received 17 Jul 2010, Accepted 07 Aug 2011, Published online: 13 Dec 2011

References

  • Arabzadeh E, Panzeri S, Diamond ME. Whisker vibration information carried by rat barrel cortex neurons. J Neurosci 2004; 24: 6011–6020
  • Armstrong-James M, Fox K. Spatiotemporal convergence and divergence in the rat S1 “barrel” cortex. J Comp Neurol 1987; 263: 265–281
  • Armstrong-James M, Fox K, Das-Gupta A. Flow of excitation within rat barrel cortex on striking a single vibrissa. J Neurophysiol 1992; 68: 1345–58
  • Benucci A, Frazor RA, Carandini M. Standing waves and traveling waves distinguish two circuits in visual cortex. Neuron 2007; 55: 103–117
  • Berger T, Borgdorff A, Crochet S, Neubauer FB, Lefort S, Fauvet B, Ferezou I, Carleton A, Lüscher HR, Petersen CCH. Combined voltage and calcium epifluorescence imaging in vitro and in vivo reveals subthreshold and suprathreshold dynamics of mouse barrel cortex. J Neurophysiol 2007; 97: 3751–3762
  • Brecht M, Sakmann B. Dynamic representation of whisker deflection by synaptic potentials in spiny stellate and pyramidal cells in the barrels and septa of layer 4 rat somatosensory cortex. J Physiol 2002; 543: 49–70
  • Brecht M, Roth A, Sakmann B. Dynamic receptive fields of reconstructed pyramidal cells in layers 3 and 2 of rat somatosensory barrel cortex. J Physiol 2003; 553: 243–265
  • Carvell GE, Simons DJ. Biometric analyses of vibrissal tactile discrimination in the rat. J Neurosci 1990; 10: 2638–2648
  • Chen-Bee CH, Agoncillo T, Xiong Y, Frostig RD. The triphasic intrinsic signal: Implications for functional imaging. J Neurosci 2007; 27: 4572–4586
  • Civillico EF, Contreras D. Integration of evoked responses in supragranular cortex studied with optical recordings in vivo. J Neurophysiol 2006; 96: 336–351
  • Cohen LB, Salzberg BM. Optical measurement of membrane potential. Rev Physiol Biochem Pharmacol 1978; 83: 35–88
  • Derdikman D, Hildesheim R, Ahissar E, Arieli A, Grinvald A. Imaging spatiotemporal dynamics of surround inhibition in the barrels somatosensory cortex. J Neurosci 2003; 23: 3100–3105
  • Devor A, Dunn AK, Andermann ML, Ulbert I, Boas DA, Dale AM. Coupling of total hemoglobin concentration, oxygenation, and neuronal activity in rat somatosensory cortex. Neuron 2003; 39: 353–359
  • Devor A, Ulbert I, Dunn AK, Narayanan SN, Jones SR, Andermann ML, Boas DA, Dale AM. Coupling of the cortical hemodynamic response to cortical and thalamic neuronal activity. Proc Natl Acad Sci USA 2005; 102: 3822–3827
  • Devor A, J Neurosci 2007
  • Devor A, Tian P, Nishimura N, Teng IC, Hillman EM, Narayanan SN, Ulbert I, Boas DA, Kleinfeld D, Dale AM. Suppressed neuronal activity and concurrent arteriolar vasoconstriction may explain negative blood oxygenation level-dependent signal. J Neurosci 2007; 27: 4452–9
  • Ferezou I, Bolea S, Petersen CC. Visualizing the cortical representation of whisker touch: Voltage-sensitive dye imaging in freely moving mice. Neuron 2006; 50: 617–629
  • Ferezou I, Haiss F, Gentet LJ, Aronoff R, Weber B, Petersen CC. Spatiotemporal dynamics of cortical sensorimotor integration in behaving mice. Neuron 2007; 56: 907–923
  • Frostig RD, Lieke EE, Ts’o DY, Grinvald A. Cortical functional architecture and local coupling between neuronal activity and the microcirculation revealed by in vivo high-resolution optical imaging of intrinsic signals. Proc Natl Acad Sci USA 1990; 87: 6082–6086
  • Frostig RD, Xiong Y, Chen-Bee CH, Kvasnak E, Stehberg J. Large-scale organization of rat sensorimotor cortex based on a motif of large activation spreads. J Neurosci 2008; 28: 13274–13284
  • Gao P, Bermejo R, Zeigler HP. Whisker deafferentation and rodent whisking patterns: Behavioral evidence for a central pattern generator. J Neurosci Jul 2001; 15;21(14): 5374–5380
  • Gao P, Hattox AM, Jones LM, Keller A, Zeigler HP. Whisker motor cortex ablation and whisker movement patterns. Somatosens Mot Res 2003; 20: 191–198
  • Ghazanfar AA, Nicolelis MAI. Spatiotemporal properties of layer V neurons of the rat primary somatosensory cortex. Cereb Cortex 1999; 9: 348–361
  • Gibson JM, Welker WI. Quantitative studies of stimulus coding in first-order vibrissa afferents of rats. 1. Receptive field properties and threshold distributions. Somatosens Mot Res 1983; 1: 51–67
  • Grant RA, Mitchinson B, Fox CW, Prescott TJ. Active touch sensing in the rat: Anticipatory and regulatory control of whisker movements during surface exploration. J Neurophysiol 2009; 101: 862–874
  • Grinvald A, Hildesheim R, Farber IC, Anglister L. Improved fluorescent probes for the measurement of rapid changes in membrane potential. Biophys J 1982; 39: 301–308
  • Haider B, Duque A, Hasenstaub AR, McCormick DA. Neocortical network activity in vivo is generated through a dynamic balance of excitation and inhibition. J Neurosci 2006; 26: 4535–4545
  • Hasenstaub A, Sachdev RN, McCormick DA. State changes rapidly modulate cortical neuronal responsiveness. J Neurosci 2007; 27: 9607–9622
  • Higley MJ, Contreras D. Nonlinear integration of sensory responses in the rat barrel cortex: An intracellular study in vivo. J Neurosci 2003; 23: 10190–10200
  • Higley MJ, Contreras D. Integration of synaptic responses to neighboring whiskers in rat barrel cortex in vivo. J Neurophysiol 2005; 93: 1920–1934
  • Jin JZ, Weng C, Yeh CI, Gordon JA, Ruthazer ES, Stryker MP, Swadlow HA, Alonso JM. On and off domains of geniculate afferents in cat primary visual cortex. Nat Neurosci 2008; 11: 88–94
  • Kleinfeld D, Delaney KR. Distributed representation of vibrissa movement in the upper layers of somatosensory cortex revealed with voltage-sensitive dyes. J Comp Neurol 1996; 375: 89–108
  • Knutsen PM, Pietr M, Ahissar E. Haptic object localization in the vibrissal system: Behavior and performance. J Neurosci 2006; 26: 8451–8464
  • Kyriazi HT, Carvell GE, Simons DJ. OFF response transformations in the whisker/barrel system. J Neurophysiol 1994; 72: 392–401
  • Lichtenstein SH, Carvell GE, Simons DJ. Responses of rat trigeminal ganglion neurons to movements of vibrissae in different directions. Somatosens Mot Res 1990; 7: 47–65
  • Lottem E, Azouz R. Dynamic translation of surface coarseness into whisker vibrations. J Neurophysiol 2008; 100: 2852–2865
  • Masino SA. Quantitative comparison between functional imaging and single-unit spiking in rat somatosensory cortex. J Neurophysiol 2003; 89: 1702–1712
  • Matyas F, Sreenivasan V, Marbach F, Wacongne C, Barsy B, Mateo C, Aronoff R, Petersen CC. Motor control by sensory cortex. Science 2010; 330: 1240–1243
  • Moore CI, Nelson SB. Spatio-temporal subthreshold receptive fields in the vibrissa representation of rat primary somatosensory cortex. J Neurophysiol 1998; 80: 2882–2892
  • Nicolelis MA, Baccala LA, Lin RC, Chapin JK. Sensorimotor encoding by synchronous neural ensemble activity at multiple levels of the somatosensory system. Science 1995; 268: 1353–1358
  • Orbach HS, Cohen LB, Grinvald A. Optical mapping of electrical activity in rat somatosensory and visual cortex. J Neurosci 1985; 5: 1886–1895
  • Petersen CC, Grinvald A, Sakmann B. Spatiotemporal dynamics of sensory responses in layer 2/3 of rat barrel cortex measured in vivo by voltage-sensitive dye imaging combined with whole-cell voltage recordings and neuron reconstructions. J Neurosci 2003a; 23: 1298–1309
  • Petersen CC, Hahn TT, Mehta M, Grinvald A, Sakmann B. Interaction of sensory responses with spontaneous depolarization in layer 2/3 barrel cortex. Proc Natl Acad Sci USA 2003b; 100: 13638–13643
  • Pinto DJ, Brumberg JC, Simons DJ. Circuit dynamics and coding strategies in rodent somatosensory cortex. J Neurophysiol 2000; 83: 1158–1166
  • Rajan R, Browning AS, Bourke JL. Heterogeneity in the coding in rat barrel cortex of the velocity of protraction of the macrovibrissae. Eur J Neurosci 2007; 8: 2383–2403
  • Ritt JT, Andermann ML, Moore CI. Embodied information processing: Vibrissa mechanics and texture features shape micromotions in actively sensing rats. Neuron 2008; 57: 599–613
  • Roland PE, Hanazawa A, Undeman C, Eriksson D, Tompa T, Nakamura H, Valentiniene S, Ahmed B. Cortical feedback depolarization waves: A mechanism of top-down influence on early visual areas. Proc Natl Acad Sci USA 2006; 103: 12586–12591
  • Roy NC, Bessaih T, Contreras D. Comprehensive mapping of whisker-evoked responses reveals broad, sharply tuned thalamocortical input to layer 4 of barrel cortex. J Neurophysiol 2011; 105: 421–37
  • Sachdev RN, Sellien H, Ebner F. Temporal organization of multi-whisker contact in rats. Somatosens Mot Res 2001; 18: 91–100
  • Sachdev RN, Sato T, Ebner FF. Divergent movement of adjacent whiskers. J Neurophysiol 2002; 3: 1440–1448
  • Sachdev RN, Ebner FF, Wilson CJ. Effect of subthreshold up and down states on the whisker-evoked response in somatosensory cortex. J Neurophysiol 2004; 92: 3511–3521
  • Senseman DM. Correspondence between visually evoked voltage-sensitive dye signals and synaptic activity recorded in cortical pyramidal cells with intracellular microelectrodes. Vis Neurosci 1996; 13: 963–977
  • Senseman DM. Spatiotemporal structure of depolarization spread in cortical pyramidal cell populations evoked by diffuse retinal light flashes. Vis Neurosci 1999; 16: 65–79
  • Sheth BR, Moore CI, Sur M. Temporal modulation of spatial borders in rat barrel cortex. J Neurophysiol 1998; 79: 464–470
  • Shoykhet M, Doherty D, Simons DJ. Coding of deflection velocity and amplitude by whisker primary afferent neurons: Implications for higher level processing. Somatosens Mot Res 2000; 17: 171–180
  • Shu Y, Hasenstaub A, McCormick DA. Turning on and off recurrent balanced cortical activity. Nature 2003; 423: 288–293
  • Simons DJ. Response properties of vibrissa units in rat SI somatosensory neocortex. J Neurophysiol 1978; 41(3)798–820
  • Simons DJ. Temporal and spatial integration in the rat SI vibrissa cortex. J Neurophysiol 1985; 54: 615–635
  • Simons DJ, Carvell GE. Thalamocortical response transformation in the rat vibrissa/barrel system. J Neurophysiol 1989; 61: 311–330
  • Stüttgen MC, Ruter J, Schwartz C. Two psychophysical channels of whisker deflection in rats align with two neuronal classes of primary afferents. J Neurosci 2006; 26: 7933–7941
  • Towal RB, Hartmann MJZ. Variability in velocity profiles during free-air whisking behavior of unrestrained rats. J Neurophysiol 2008; 100: 740–752
  • Ts’o DY, Frostig RD, Lieke EE, Grinvald A. Functional organization of primate visual cortex revealed by high resolution optical imaging. Science 1990; 249: 417–420
  • Webber RM, Stanley GB. Nonlinear encoding of tactile patterns in the barrel cortex. J Neurophysiol 2004; 91: 2010–22
  • Wilent WB, Contreras D, 2004. Synaptic responses to whisker deflections in rat barrel cortex as a function of cortical layer and stimulus intensity
  • Xu W, Huang X, Takagaki K, Wu JY. Compression and reflection of visually evoked cortical waves. Neuron 2007; 55: 119–129
  • Zhu JJ, Connors BW. Intrinsic firing patterns and whisker-evoked synaptic responses of neurons in the rat barrel cortex. J Neurophysiol 1999; 81: 1171–1183

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.