Crossref journal-article
Springer Science and Business Media LLC
Nature Neuroscience (297)
Bibliography

Garaschuk, O., Linn, J., Eilers, J., & Konnerth, A. (2000). Large-scale oscillatory calcium waves in the immature cortex. Nature Neuroscience, 3(5), 452–459.

Authors 4
  1. Olga Garaschuk (first)
  2. Jennifer Linn (additional)
  3. Jens Eilers (additional)
  4. Arthur Konnerth (additional)
References 46 Referenced 391
  1. Spitzer, N. C. Spontaneous Ca2+ spikes and waves in embryonic neurons: signaling systems for differentiation. Trends Neurosci. 17, 115–118 (1994). (10.1016/0166-2236(94)90120-1) / Trends Neurosci. by NC Spitzer (1994)
  2. Constantine-Paton, M. & Cline, H. T. LTP and activity-dependent synaptogenesis: the more alike they are, the more different they become. Curr. Opin. Neurobiol. 8, 139–148 (1998). (10.1016/S0959-4388(98)80017-2) / Curr. Opin. Neurobiol. by M Constantine-Paton (1998)
  3. Katz, L. C. & Shatz, C. J. Synaptic activity and the construction of cortical circuits. Science 274, 1133–1138 (1996). (10.1126/science.274.5290.1133) / Science by LC Katz (1996)
  4. Hanse, E., Durand, G. M., Garaschuk, O. & Konnerth, A. Activity-dependent wiring of the developing hippocampal neuronal circuit. Sem. Cell Dev. Biol. 8, 35–42 (1997). (10.1006/scdb.1996.0119) / Sem. Cell Dev. Biol. by E Hanse (1997)
  5. Yuste, R., Peinado, A. & Katz, L. C. Neuronal domains in developing neocortex. Science 257, 665–669 (1992). (10.1126/science.1496379) / Science by R Yuste (1992)
  6. Kandler, K. & Katz, L. C. Coordination of neuronal activity in developing visual cortex by gap junction-mediated biochemical communication. J. Neurosci. 18, 1419–1427 (1998). (10.1523/JNEUROSCI.18-04-01419.1998) / J. Neurosci. by K Kandler (1998)
  7. Feller, M. B., Wellis, D. P., Stellwagen, D., Werblin, F. S. & Shatz, C. J. Requirement for cholinergic synaptic transmission in the propagation of spontaneous retinal waves. Science 272, 1182–1187 (1996). (10.1126/science.272.5265.1182) / Science by MB Feller (1996)
  8. Leinekugel, X., Medina, I., Khalilov, I., Ben-Ari, Y. & Khazipov, R. Ca2+ oscillations mediated by the synergistic excitatory action of GABAA and NMDA receptors in the neonatal hippocampus. Neuron 18, 243–255 (1997). (10.1016/S0896-6273(00)80265-2) / Neuron by X Leinekugel (1997)
  9. Garaschuk, O., Hanse, E. & Konnerth, A. Developmental profile and synaptic origin of early network oscillations in the CA1 region of rat neonatal hippocampus. J. Physiol. (Lond.) 507, 219–236 (1998). (10.1111/j.1469-7793.1998.219bu.x) / J. Physiol. (Lond.) by O Garaschuk (1998)
  10. Wong, R. O., Chernjavsky, A., Smith, S. J. & Shatz, C. J. Early functional neural networks in the developing retina. Nature 374, 716–718 (1995). (10.1038/374716a0) / Nature by RO Wong (1995)
  11. Penn, A. A., Riquelme, P. A., Feller, M. B. & Shatz, C. J. Competition in retinogeniculate patterning driven by spontaneous activity. Science 279, 2108–2112 (1998). (10.1126/science.279.5359.2108) / Science by AA Penn (1998)
  12. Owens, D. F., Boyce, L. H., Davis, M. B. & Kriegstein, A. R. Excitatory GABA responses in embryonic and neonatal cortical slices demonstrated by gramicidin perforated-patch recordings and calcium imaging. J. Neurosci. 16, 6414–6423 (1996). (10.1523/JNEUROSCI.16-20-06414.1996) / J. Neurosci. by DF Owens (1996)
  13. Flint, A. C., Dammerman, R. S. & Kriegstein, A. R. Endogenous activation of metabotropic glutamate receptors in neocortical development causes neuronal calcium oscillations. Proc. Natl. Acad. Sci. USA 96, 12144–12149 (1999). (10.1073/pnas.96.21.12144) / Proc. Natl. Acad. Sci. USA by AC Flint (1999)
  14. Schwartz, T. H. et al. Network of coactive neurons in developing layer 1. Neuron 20, 541–552 (1998). (10.1016/S0896-6273(00)80993-9) / Neuron by TH Schwartz (1998)
  15. Blue, M. E. & Parnavelas, J. G. The formation and maturation of synapses in the visual cortex of the rat. II. Quantitative analysis. J. Neurocytol. 12, 697–712 (1983). (10.1007/BF01181531) / J. Neurocytol. by ME Blue (1983)
  16. Juraska, J. M. & Fifkova, E. An electron microscope study of the early postnatal development of the visual cortex of the hooded rat. J. Comp. Neurol. 183, 257–267 (1979). (10.1002/cne.901830204) / J. Comp. Neurol. by JM Juraska (1979)
  17. Dalva, M. B. & Katz, L. C. Rearrangements of synaptic connections in visual cortex revealed by laser photostimulation. Science 265, 255–258 (1994). (10.1126/science.7912852) / Science by MB Dalva (1994)
  18. Braitenberg, V. & Schüz, A. Anatomy of the Cortex 141–146 (Springer, New York, 1991). (10.1007/978-3-662-02728-8_26) / Anatomy of the Cortex by V Braitenberg (1991)
  19. Galuske, R. A. & Singer, W. The origin and topography of long-range intrinsic projections in cat visual cortex: a developmental study. Cereb. Cortex 6, 417–430 (1996). (10.1093/cercor/6.3.417) / Cereb. Cortex by RA Galuske (1996)
  20. Weliky, M. & Katz, L. C. Functional mapping of horizontal connections in developing ferret visual cortex: experiments and modeling. J. Neurosci. 14, 7291–7305 (1994). (10.1523/JNEUROSCI.14-12-07291.1994) / J. Neurosci. by M Weliky (1994)
  21. Singer, W. & Gray, C. M. Visual feature integration and the temporal correlation hypothesis. Annu. Rev. Neurosci. 18, 555–586 (1995). (10.1146/annurev.ne.18.030195.003011) / Annu. Rev. Neurosci. by W Singer (1995)
  22. Yuste, R. & Katz, L. C. Control of postsynaptic Ca2+ influx in developing neocortex by excitatory and inhibitory neurotransmitters. Neuron 6, 333–344 (1991). (10.1016/0896-6273(91)90243-S) / Neuron by R Yuste (1991)
  23. Denk, W., Strickler, J. H. & Webb, W. W. Two-photon laser scanning fluorescence microscopy. Science 248, 73–76 (1990). (10.1126/science.2321027) / Science by W Denk (1990)
  24. Williams, R. M., Piston, D. W. & Webb, W. W. Two-photon molecular excitation provides intrinsic 3-dimensional resolution for laser-based microscopy and microphotochemistry. FASEB J. 8, 804–813 (1994). (10.1096/fasebj.8.11.8070629) / FASEB J. by RM Williams (1994)
  25. Yuste, R. & Denk, W. Dendritic spines as basic functional units of neuronal integration. Nature 375, 682–684 (1995). (10.1038/375682a0) / Nature by R Yuste (1995)
  26. Svoboda, K., Denk, W., Kleinfeld, D. & Tank, D. W. In vivo dendritic calcium dynamics in neocortical pyramidal neurons. Nature 385, 161–165 (1997). (10.1038/385161a0) / Nature by K Svoboda (1997)
  27. Blue, M. E. & Parnavelas, J. G. The formation and maturation of synapses in the visual cortex of the rat. I. Qualitative analysis. J. Neurocytol. 12, 599–616 (1983). (10.1007/BF01181526) / J. Neurocytol. by ME Blue (1983)
  28. Yuste, R., Nelson, D. A., Rubin, W. W. & Katz, L. C. Neuronal domains in developing neocortex: mechanisms of coactivation. Neuron 14, 7–17 (1995). (10.1016/0896-6273(95)90236-8) / Neuron by R Yuste (1995)
  29. Kullmann, D. M., Erdemli, G. & Asztely, F. Long-term potentiation of AMPAR- and NMDAR-mediated signals: evidence for presynaptic expression and extrasynaptic glutamate spill-over. Neuron 17, 1–20 (1996). (10.1016/S0896-6273(00)80178-6) / Neuron by DM Kullmann (1996)
  30. Flint, A. C., Liu, X. & Kriegstein, A. R. Nonsynaptic glycine receptor activation during early neocortical development. Neuron 20, 43–53 (1998). (10.1016/S0896-6273(00)80433-X) / Neuron by AC Flint (1998)
  31. Ben-Ari, Y., Cherubini, E., Corradetti, R. & Gaiarsa, J. L. Giant synaptic potentials in immature rat CA3 hippocampal neurones. J. Physiol. (Lond.) 416, 303–325 (1989). (10.1113/jphysiol.1989.sp017762) / J. Physiol. (Lond.) by Y Ben-Ari (1989)
  32. Blake, J. F., Yates, R. G., Brown, M. W. & Collingridge, G. L. 6-Cyano-7-nitroquinoxaline-2,3-dione as an excitatory amino acid antagonist in area CA1 of rat hippocampus. Br. J. Pharmacol. 97, 71–76 (1989). (10.1111/j.1476-5381.1989.tb11925.x) / Br. J. Pharmacol. by JF Blake (1989)
  33. Durand, G. M., Kovalchuk, Y. & Konnerth, A. Long-term potentiation and functional synapse induction in developing hippocampus. Nature 381, 71–75 (1996). (10.1038/381071a0) / Nature by GM Durand (1996)
  34. Isaac, J. T. R., Crair, M. C., Nicoll, R. A. & Malenka, R. C. Silent synapses during development of thalamocortical inputs. Neuron 18, 269–280 (1997). (10.1016/S0896-6273(00)80267-6) / Neuron by JTR Isaac (1997)
  35. Feller, M. B., Butts, D. A., Aaron, H. L., Rokhsar, D. S. & Shatz, C. J. Dynamic processes shape spatiotemporal properties of retinal waves. Neuron 19, 293–306 (1997). (10.1016/S0896-6273(00)80940-X) / Neuron by MB Feller (1997)
  36. Leinekugel, X., Khalilov, I., Ben-Ari, Y. & Khazipov, R. Giant depolarizing potentials: the septal pole of the hippocampus paces the activity of the developing intact septohippocampal complex in vitro. J. Neurosci. 18, 6349–6357 (1998). (10.1523/JNEUROSCI.18-16-06349.1998) / J. Neurosci. by X Leinekugel (1998)
  37. Konnerth, A., Heinemann, U. & Yaari, Y. Slow transmission of neural activity in hippocampal area CA1 in absence of active chemical synapses. Nature 307, 69–71 (1984). (10.1038/307069a0) / Nature by A Konnerth (1984)
  38. LoTurco, J. J., Owens, D. F., Heath, M. J. S., Davis, M. B. E. & Kriegstein, A. R. GABA and glutamate depolarize cortical progenitor cells and inhibit DNA synthesis. Neuron 15, 1287–1298 (1995). (10.1016/0896-6273(95)90008-X) / Neuron by JJ LoTurco (1995)
  39. Ghosh, A. & Greenberg, M. E. Calcium signaling in neurons: molecular mechanisms and cellular consequences. Science 268, 239–247 (1995). (10.1126/science.7716515) / Science by A Ghosh (1995)
  40. Gu, X. & Spitzer, N. C. Breaking the code: regulation of neuronal differentiation by spontaneous calcium transients. Dev. Neurosci. 19, 33–41 (1997). (10.1159/000111183) / Dev. Neurosci. by X Gu (1997)
  41. Komuro, H. & Rakic, P. Intracellular Ca2+ fluctuations modulate the rate of neuronal migration. Neuron 17, 275–285 (1996). (10.1016/S0896-6273(00)80159-2) / Neuron by H Komuro (1996)
  42. Kater, S. B., Mattson, M. P., Cohan, C. & Connor, J. Calcium regulation of the neuronal growth cone. Trends Neurosci. 11, 315–321 (1988). (10.1016/0166-2236(88)90094-X) / Trends Neurosci. by SB Kater (1988)
  43. Kirsch, J. & Betz, H. Glycine-receptor activation is required for receptor clustering in spinal neurons. Nature 392, 717–720 (1998). (10.1038/33694) / Nature by J Kirsch (1998)
  44. Gomez, T. M. & Spitzer, N. C. In vivo regulation of axon extension and pathfinding by growth-cone calcium transients. Nature 397, 350–355 (1999). (10.1038/16927) / Nature by TM Gomez (1999)
  45. Edwards, F., Konnerth, A., Sakmann, B. & Takahashi, T. A thin slice preparation for patch clamp recordings from neurones of the mammalian central nervous system. Pflügers Arch. 414, 600–612 (1989). (10.1007/BF00580998) / Pflügers Arch. by F Edwards (1989)
  46. Konnerth, A. Patch-clamping in slices of mammalian CNS. Trends Neurosci. 13, 321–323 (1990). (10.1016/0166-2236(90)90137-Y) / Trends Neurosci. by A Konnerth (1990)
Dates
Type When
Created 23 years, 1 month ago (July 26, 2002, 4:43 a.m.)
Deposited 2 years, 3 months ago (May 18, 2023, 7:39 p.m.)
Indexed 2 weeks, 5 days ago (Aug. 7, 2025, 4:51 a.m.)
Issued 25 years, 3 months ago (May 1, 2000)
Published 25 years, 3 months ago (May 1, 2000)
Published Print 25 years, 3 months ago (May 1, 2000)
Funders 0

None

@article{Garaschuk_2000, title={Large-scale oscillatory calcium waves in the immature cortex}, volume={3}, ISSN={1546-1726}, url={http://dx.doi.org/10.1038/74823}, DOI={10.1038/74823}, number={5}, journal={Nature Neuroscience}, publisher={Springer Science and Business Media LLC}, author={Garaschuk, Olga and Linn, Jennifer and Eilers, Jens and Konnerth, Arthur}, year={2000}, month=may, pages={452–459} }