Preconfigured dynamics in the hippocampus are guided by embryonic birthdate and rate of neurogenesis

Amaral, D., & Lavenex, P. in The Hippocampus Book ( eds P. Andersen et al.) Hippocampal Neuroanatomy (Oxford University Press, 2007).

O’keefe, J. & Nadel, L. The Hippocampus as a Cognitive Map (Oxford Univ. Press, 1978).

Redish, A. D. et al. Independence of firing correlates of anatomically proximate hippocampal pyramidal cells. J. Neurosci. 21, RC134–RC134 (2001).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Bittner, K. C. et al. Conjunctive input processing drives feature selectivity in hippocampal CA1 neurons. Nat. Neurosci. 18, 1133–1142 (2015).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Muller, R. U., Stead, M. & Pach, J. The hippocampus as a cognitive graph. J. Gen. Physiol. 107, 663–694 (1996).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Treves, A. & Rolls, E. T. Computational analysis of the role of the hippocampus in memory. Hippocampus 4, 374–391 (1994).

CAS  PubMed  Article  Google Scholar 

Slomianka, L., Amrein, I., Knuesel, I., Sørensen, J. C. & Wolfer, D. P. Hippocampal pyramidal cells: the reemergence of cortical lamination. Brain Struct. Funct. 216, 301–317 (2011).

PubMed  PubMed Central  Article  Google Scholar 

Mizuseki, K., Diba, K., Pastalkova, E. & Buzsáki, G. Hippocampal CA1 pyramidal cells form functionally distinct sublayers. Nat. Neurosci. 14, 1174–1181 (2011).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Lee, S.-H. et al. Parvalbumin-positive basket cells differentiate among hippocampal pyramidal cells. Neuron 82, 1129–1144 (2014).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Valero, M. et al. Determinants of different deep and superficial CA1 pyramidal cell dynamics during sharp-wave ripples. Nat. Neurosci. 18, 1281–1290 (2015).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Cembrowski, M. S. et al. Spatial gene-expression gradients underlie prominent heterogeneity of CA1 pyramidal neurons. Neuron 89, 351–368 (2016).

CAS  PubMed  Article  Google Scholar 

Masurkar, A. V. et al. Medial and lateral entorhinal cortex differentially excite deep versus superficial CA1 pyramidal neurons. Cell Rep. 18, 148–160 (2017).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Navas-Olive, A. et al. Multimodal determinants of phase-locked dynamics across deep-superficial hippocampal sublayers during theta oscillations. Nat. Commun. 11, 2217 (2020).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Fattahi, M., Sharif, F., Geiller, T. & Royer, S. Differential representation of landmark and self-motion information along the CA1 radial axis: self-motion generated place fields shift toward landmarks during septal inactivation. J. Neurosci. 38, 6766–6778 (2018).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Sharif, F., Tayebi, B., Buzsáki, G., Royer, S. & Fernandez-Ruiz, A. Subcircuits of deep and superficial CA1 place cells support efficient spatial coding across heterogeneous environments. Neuron 109, 363–376 (2021).

CAS  PubMed  Article  Google Scholar 

Lee, J. S., Briguglio, J. J., Cohen, J. D., Romani, S. & Lee, A. K. The statistical structure of the hippocampal code for space as a function of time, context, and value. Cell 183, 620–635 (2020).

CAS  PubMed  Article  Google Scholar 

Lee, D., Lin, B.-J. & Lee, A. K. Hippocampal place fields emerge upon single-cell manipulation of excitability during behavior. Science 337, 849–853 (2012).

CAS  PubMed  Article  Google Scholar 

Dragoi, G. & Tonegawa, S. Preplay of future place cell sequences by hippocampal cellular assemblies. Nature 469, 397–401 (2011).

CAS  PubMed  Article  Google Scholar 

McKenzie, S. et al. Preexisting hippocampal network dynamics constrain optogenetically induced place fields. Neuron 109, 1040–1054 (2021).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Valero, M., Zutshi, I., Yoon, E. & Buzsáki, G. Probing subthreshold dynamics of hippocampal neurons by pulsed optogenetics. Science 375, 570–574 (2022).

CAS  PubMed  Article  Google Scholar 

Villette, V., Malvache, A., Tressard, T., Dupuy, N. & Cossart, R. Internally recurring hippocampal sequences as a population template of spatiotemporal information. Neuron 88, 357–366 (2015).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Cavalieri, D. et al. CA1 pyramidal cell diversity is rooted in the time of neurogenesis. eLife 10, e69270 (2021).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Cossart, R. & Khazipov, R. How development sculpts hippocampal circuits and function. Physiol. Rev. 102, 343–378 (2022).

CAS  PubMed  Article  Google Scholar 

Angevine Jr, J. B. Time of neuron origin in the hippocampal region: an autoradiographic study in the mouse. Exp. Neurol. Suppl. 2, 1–70 (1965).

Deguchi, Y., Donato, F., Galimberti, I., Cabuy, E. & Caroni, P. Temporally matched subpopulations of selectively interconnected principal neurons in the hippocampus. Nat. Neurosci. 14, 495–504 (2011).

CAS  PubMed  Article  Google Scholar 

Druckmann, S. et al. Structured synaptic connectivity between hippocampal regions. Neuron 81, 629–640 (2014).

CAS  PubMed  Article  Google Scholar 

Lopes-dos-Santos, V., Ribeiro, S. & Tort, A. B. Detecting cell assemblies in large neuronal populations. J. Neurosci. Methods 220, 149–166 (2013).

PubMed  Article  Google Scholar 

Xu, H.-T. et al. Distinct lineage-dependent structural and functional organization of the hippocampus. Cell 157, 1552–1564 (2014).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Krumin, M. & Shoham, S. Generation of spike trains with controlled auto- and cross-correlation functions. Neural Comput. 21, 1642–1664 (2009).

PubMed  Article  Google Scholar 

Grosmark, A. D. & Buzsáki, G. Diversity in neural firing dynamics supports both rigid and learned hippocampal sequences. Science 351, 1440–1443 (2016).

CAS  PubMed  PubMed Central  Article  Google Scholar 

English, D. F. et al. Pyramidal cell-interneuron circuit architecture and dynamics in hippocampal networks. Neuron 96, 505–520 (2017).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Harris, K. D., Csicsvari, J., Hirase, H., Dragoi, G. & Buzsáki, G. Organization of cell assemblies in the hippocampus. Nature 424, 552–556 (2003).

CAS  PubMed  Article  Google Scholar 

Lorente de N¢, R. Studies on the structure of the cerebral cortex. II. Continuation of the study of the ammonic system. J. Psychol. Neurol. 46, 113–177 (1934).

Google Scholar 

Hebb, D. O. The Organisation of Behaviour: A Neuropsychological Theory (Science Editions, 1949).

McClelland, J. L. Incorporating rapid neocortical learning of new schema-consistent information into complementary learning systems theory. J. Exp. Psychol. Gen. 142, 1190 (2013).

PubMed  Article  Google Scholar 

Hopfield, J. J. Neural networks and physical systems with emergent collective computational abilities. Proc. Natl Acad. Sci. USA 79, 2554–2558 (1982).

CAS  PubMed  PubMed Central  Article  Google Scholar 

McKenzie, S. et al. Hippocampal representation of related and opposing memories develop within distinct, hierarchically organized neural schemas. Neuron 83, 202–215 (2014).

CAS  PubMed  PubMed Central  Article  Google Scholar 

Tse, D. et al. Schemas and memory consolidation. Science 316, 76–82 (2007).

CAS  PubMed  Article  Google Scholar 

Edelman, G. M. Neural Darwinism: selection and reentrant signaling in higher brain function. Neuron 10, 115–125 (1993).

CAS  PubMed  Article  Google Scholar 

Battaglia, F. P., Sutherland, G. R., Cowen, S. L., Mc Naughton, B. L. & Harris, K. D. Firing rate modulation: a simple statistical view of memory trace reactivation. Neural Netw. 18, 1280–1291 (2005).

PubMed  Article  Google Scholar 

György Buzsáki, M. The Brain from Inside Out (Oxford Univ. Press, 2019).

Markram, H. et al. Interneurons of the neocortical inhibitory system. Nat. Rev. Neurosci. 5, 793–807 (2004).

CAS  PubMed  Article  Google Scholar 

Yoshimura, Y. & Callaway, E. M. Fine-scale specificity of cortical networks depends on inhibitory cell type and connectivity. Nat. Neurosci. 8, 1552–1559 (2005).

CAS 

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