Jill K. Leutgeb


Peer-reviewed Publications

 
  • Viana da Silva S, Haberl MG, Gaur K, Patel R, Narayan G, Ledakis M, Fu ML, Vieira M, Koo EH, Leutgeb JK, Leutgen S (2023) Localized APP expression results in progressive network dysfunction by disorganizing spike timing. Neuron, 112:1-17. [Link]

  • Yiu Y-H, Leutgeb JK, Leibold C (2022) Directional Tuning of Phase Precession Properties in the Hippocampus. J Neuroscience, 16;42:2282-2297. [PDF]

  • Quirk CR, Zutshi I, Srikanth S, Fu ML, Mariano ND, Wright MK, Parsey DF, Lui S, Siretskiy RE, Huynh TL, Leutgeb JK, Leutgeb S (2021) Precisely timed theta oscillations are selectively required during the encoding phase of memory. Nat Neurosci, 24:1614-1627. [PDF]

  • Sabariego M, Schӧnwald A, Boublil BL, Zimmerman DT, Ahmadi S, Gonzalez N, Leibold C, Clark RE, Leutgeb JK, Leutgeb S (2019) Time cells in the hippocampus are neither dependent on mEC inputs nor necessary for spatial working memory. Neuron, 120:1235-1248. [PDF]

  • Chenani A*, Sabariego M*, Schlesiger MI, Leutgeb JK, Leutgeb S, Leibold C (2019) Hippocampal CA1 replay becomes less prominent but more rigid without inputs from medial entorhinal cortex. Nat Commun. doi: 10.1038/s41467-019-09280-0. *These authors contributed equally. [PDF]

  • Diehl GW, Hon OJ, Leutgeb S, Leutgeb JK (2019) Stability of medial entorhinal cortex representations over time. Hippocampus, 29:284-302. [PDF]

  • Ewell LA, Fischer KB, Leibold C, Leutgeb S, Leutgeb JK (2019) The impact of pathological high-frequency oscillations on hippocampal network activity in rats with chronic epilepsy. eLife, 8:e42148. [PDF]

    • Ewell LA, Fischer KB, Leibold C, Leutgeb S, Leutgeb JK (2019) Data from: The impact of pathological high frequency oscillations on hippocampal network activity in rats with chronic epilepsy. Dryad Digital Repository. doi:10.5061/dryad.c89124p. [Resource Link]

    • Reviewed and highlighted in Epilepsy Currents. [Link]

  • Mankin EA, Thurley K, Chenani A, Haas O, Debs L, Henke J, Galinato M, Leutgeb JK, Leutgeb S, Leibold C (2019) The hippocampal code for space in Mongolian gerbils. Hippocampus, doi:10.1002/hipo.23075. [PDF]

  • Sanders H, Ji D, Sasaki T, Leutgeb JK, Wilson MA, Lisman JE (2019) Temporal coding and rate remapping: Representation of non-spatial information in the hippocampus. Hippocampus, 29:111-127. [PDF]

  • Zutshi I, Fu ML, Lilascharoen V, Leutgeb JK, Byungkook L, Leutgeb S (2018) Speed but not head direction cells are integrated into the grid cell network in mEC superficial layers. Nat Commun, 9:3701-3716. [PDF]

  • Sasaki T*, Piatti VC*, Hwaun E, Ahmadi S, Lisman JE, Leutgeb S, Leutgeb JK (2018) Dentate network activity is necessary for spatial working memory by supporting CA3 sharp-wave ripple generation and prospective firing of CA3 neurons. Nat Neurosci,21:258-269. *These authors contributed equally. [PDF]

  • Schlesiger MI, Boublil BL, Hales JB, Leutgeb JK, Leutgeb S (2018) Hippocampal global remapping can occur without inputs from the medial entorhinal cortex. Cell Reports, 22:3152-3159. [PDF]

  • Zutshi I*, Brandon MP*, Fu ML, Donegan ML, Leutgeb JK, Leutgeb S (2018) Hippocampal Neural Circuits Respond to Optogenetic Pacing of Theta Frequencies by Generating Accelerated Oscillation Frequencies. Curr Biol. 28:1179-1188. *These authors contributed equally.[PDF]

  • Diehl GW, Hon OJ, Leutgeb S, Leutgeb JK (2017) Grid and non-grid cells in medial entorhinal cortex represent spatial location and environmental features with complementary coding schemes. Neuron, 94: 83-92. [PDF]

    • Reviewed in Faculty of 1000 Prime. [Link]

  • Zutshi I, Leutgeb JK, Leutgeb S (2017) Theta sequences of grid cell populations can provide a movement-direction signal. Curr Opin Behav Sci, 17:147-154. [PDF]

  • Lippi G, Fernandes CC, Ewell LA, John D, Romoli B, Curia G, Taylor SR, Frady EP, Jensen AB, Liu JC, Chaabane MM, Belal C, Nathanson JL, Zoli M, Leutgeb JK, Biagini G, Yeo GW, Berg DK (2016) Micro RNA-101 regulates multiple developmental programs to constrain excitation in adult neural networks. Neuron, 92:1337-1351. [PDF]

  • Ewell LA, Liang L, Armstrong C, Soltesz I, Leutgeb S, Leutgeb JK (2015) Brain state is a major factor in preseizure hippocampal network activity and influences success of seizure intervention. J Neuroscience, 35:15635-48. [PDF]

    • Reviewed and highlighted in Epilepsy Currents. [Link]

  • Mankin EA, Diehl GW, Sparks FT, Leutgeb S, Leutgeb JK (2015) Hippocampal CA2 activity patterns change over time to a larger extent than between spatial contexts. Neuron, 85:190-201. [PDF]

    • Featured article with accompanied Preview article in Neuron. [Link]

  • Sasaki T, Leutgeb S, Leutgeb JK (2015) Spatial and memory circuits in the medial entorhinal cortex. Curr Opin Neurobiol, 32: 16-23. [PDF]

  • Schlesiger MI*, Cannova CC*, Boublil BL, Hales JB, Mankin EA, Brandon MP, Leutgeb JK, Leibold C, Leutgeb S (2015) The medial entorhinal cortex is necessary for temporal organization of hippocampal neuronal activity. Nat Neurosci 18, 1123-1132. *These authors contributed equally. [PDF]

  • Hales JB*, Schlesiger MI*, Leutgeb JK, Squire LR, Leutgeb S**, Clark RE** (2014) Medial entorhinal cortex lesions only partially disrupt hippocampal place cells and hippocampus-dependent place memory. Cell Reports 9, 893-901. *These authors contributed equally. **These authors contributed equally. [PDF]

    • Reviewed in Faculty of 1000Prime. [Link]

  • Brandon MP, Koenig J, Leutgeb JK, Leutgeb S (2014) New and distinct hippocampal place codes are generated in a new environment during septal inactivation. Neuron, 82:789-796. [PDF]

    • Featured article with accompanied Preview article in Neuron. [Link]

    • Reviewed in Faculty of 1000Prime. [Link]

  • Lu L*, Leutgeb JK*, Tsao A, Henriksen EJ, Leutgeb S, Barnes CA, Witter MP, Moser M-B, Moser EI (2013) Impaired hippocampal rate coding after lesions of the lateral entorhinal cortex. Nat Neurosci, 16:1085-1093. *These authors contributed equally. [PDF]

  • Piatti VC, Ewell LA, Leutgeb JK (2013) Neurogenesis in the dentate gyrus: carrying the message or dictating the tone. Front Neuroscience 7:50. [PDF]

  • Schlesiger MI, Cressey JC, Boublil B, Koenig J, Melvin NR, Leutgeb JK, Leutgeb S (2013) Hippocampal activation during the recall of remote spatial memories in radial maze tasks. Neurobiol Learn Mem, 106:324-333. [PDF]

  • Mankin EA, Sparks FT, Slayyeh B, Sutherland RJ, Leutgeb S, Leutgeb JK (2012) A neuronal code for extended time in the hippocampus. PNAS, 109:19462-19467. [PDF]

    • Reviewed in Faculty of 1000Prime. [Link]

  • Koenig J, Linder AN, Leutgeb JK, Leutgeb S (2011) The spatial periodicity of grid cells is not sustained during reduced theta oscillations. Science, 332:592-595. [PDF]

    • Publication was reviewed and highlighted in Nature Reviews Neuroscience. [Link]

    • Reviewed in Faculty of 1000 Prime. [Link]

  • Alme CB, Buzzetti RA, Marrone DF, Leutgeb JK, Chawla MK, Schaner MJ, Bohanick JD, Khoboko T, Leutgeb S, Moser EI, Moser MB, McNaughton BL, Barnes CA (2010) Hippocampal granule cells opt for early retirement. Hippocampus, 20:1109-1123. [PDF]

  • Colgin LL*, Leutgeb S*, Jezek K, Leutgeb JK, Moser EI, McNaughton BL, Moser MB (2010) Attractor-map versus autoassociation based attractor dynamics in the hippocampal network. J Neurophysiol, 104:35-50. [PDF] *These authors contributed equally.

  • Leutgeb JK, Leutgeb S, Moser M-B, Moser EI (2007) Pattern separation in dentate gyrus and CA3 of the hippocampus. Science, 315:961-966. [PDF]

    • Featured article with accompanied Preview article in Neuroscience. [Link]

    • Reviewed in Faculty of 1000Prime. [Link]

  • Leutgeb S, Leutgeb JK (2007) Pattern separation, pattern completion and new neuronal codes within a continuous CA3 map. Learn Mem 14:745-757. [PDF]

  • Leutgeb S, Leutgeb JK, Moser EI, Moser M-B (2006) Fast rate coding in hippocampal CA3 cell assemblies. Hippocampus 16:765-774. [PDF]

  • Leutgeb JK, Leutgeb S, Treves A, Meyer R, Barnes CA, McNaughton BL, Moser, M-B, Moser EI (2006) Progressive transformation of hippocampal neuronal representations in "morphed" environments. Neuron 48:345-358. [PDF]

  • Leutgeb JK, Leutgeb S, Treves A, Meyer R, Barnes CA, McNaughton BL, Moser, M-B, Moser EI (2005) Progressive transformation of hippocampal neuronal representations in "morphed" environments. Neuron 48:345-358. [PDF]

    • Featured article with accompanied Preview article in Neuron. [Link]

    • Reviewed in Faculty of 1000Prime. [Link]

  • Leutgeb S, Leutgeb JK, Barnes CA, Moser EI, McNaughton BL, Moser M-B (2005) Independent codes for spatial and episodic memory in hippocampal neuronal ensembles. Science 309:619-623. [PDF]

    • Publication was accompanied by a Perspective in Neuroscience. [Link]

    • Reviewed in Faculty of 1000Prime. [Link]

  • Leutgeb S, Leutgeb JK, Moser M-B, Moser EI (2005) Place cells, spatial maps and the population code for memory. Curr Opin Neurobiol 15:738-746. [PDF]

  • Leutgeb JK, Frey JU, Behnisch T (2005) Single cell analysis of activity-dependent cyclic AMP-responsive element-binding protein phosphorylation during long-lasting long-term potentiation in area CA1 of mature rat hippocampal-organotypic cultures. Neuroscience 131:601-610. [PDF]

  • Leutgeb S, Leutgeb JK, Treves A, Moser M-B, Moser EI (2004) Distinct ensemble codes in hippocampal areas CA3 and CA1. Science 305:1295-1298. [PDF]

    • Publication was accompanied by a Perspective in Science. [Link]

    • Reviewed in Faculty of 1000Prime. [Link]

  • Leutgeb JK, Frey JU, Behnisch T (2003) LTP in cultured hippocampal-entorhinal cortex slices from young adult (P25-30) rats. J Neurosci Methods 130:19-32. [PDF]

 

Book Chapters

 
  • Leutgeb JK, Leutgeb S (2014) The contribution of hippocampal subregions to memory coding. In: The Cognitive Neurosciences, 5th Edition (Gazzaniga, M, Ed.) MIT Press. Book chapter.

  • Leutgeb S, Leutgeb JK (2014) Remapping to discriminate contexts with hippocampal population codes. In: Space, Time, and Memory in the Hippocampal Formation (Derdikman D; Knierim JJ, Eds.). Springer, Dordrecht. Book chapter.

  • Leutgeb JK, Mankin EA, Leutgeb S (2013) Population coding by place cells and grid cells. In: Principles of neural coding (Panzeri S and Quian R, Eds.). CRC Press. Book chapter.