1. Schema representations in distinct brain networks support narrative memory during encoding and retrieval

    This article has 3 authors:
    1. Rolando Masís-Obando
    2. Kenneth A Norman
    3. Christopher Baldassano
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    • Curated by eLife

      Evaluation Summary:

      This paper reports a methodologically rigorous investigation into the neural mechanisms supporting encoding and retrieval of specific and general information in the context of memory schemas for events, or "scripts." Its findings will be of general interest to neuroscientists and cognitive psychologists who work both with typical young adults (as studied int he present works) and in particular populations (e.g., development and/or aging; patients with brain damage). The work is particularly comprehensive in how it links both specific and general narrative representation at both encoding and retrieval with later memory behavior, which is a notable strength.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. Reviewer #1 agreed to share their name with the authors.)

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    This article has 3 evaluationsAppears in 2 listsLatest version Latest activity
  2. Hippocampal sharp wave-ripples and the associated sequence replay emerge from structured synaptic interactions in a network model of area CA3

    This article has 11 authors:
    1. András Ecker
    2. Bence Bagi
    3. Eszter Vértes
    4. Orsolya Steinbach-Németh
    5. Mária R Karlócai
    6. Orsolya I Papp
    7. István Miklós
    8. Norbert Hájos
    9. Tamás F Freund
    10. Attila I Gulyás
    11. Szabolcs Káli
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    • Curated by eLife

      Evaluation Summary:

      The theoretical study by Ecker et al. designs a minimal yet biologically plausible spiking neural network model for hippocampal region CA3 in order to pinpoint the mechanistic sources of important features of population activity (namely sharp wave ripples and replay) observed in vivo. It reproduces many properties of these network events and offers explanations for the observed dynamics. In doing so it demonstrates that the synaptic connectivity patterns formed during spatial exploration may be crucial to the occurrence of these phenomena. The study will be of interest primarily to theoretical researchers because of the many innovative approaches fielded to design the network and analyse its dynamics, and potentially also to experimentalists investigating the hippocampus.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. Reviewer #1 and Reviewer #3 agreed to share their name with the authors.)

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    This article has 5 evaluationsAppears in 1 listLatest version Latest activity
  3. Finger somatotopy is preserved after tetraplegia but deteriorates over time

    This article has 5 authors:
    1. Sanne Kikkert
    2. Dario Pfyffer
    3. Michaela Verling
    4. Patrick Freund
    5. Nicole Wenderoth
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    • Curated by eLife

      Evaluation Summary:

      This paper investigates the stability of the somatotopic organization of somatosensory cortex after spinal cord injury that results in tetraplegia. The findings suggest that somatotopic maps are preserved, degrading very slowly over decades, but that the amount of spared function is a poor predictor of somatotopic stability. These findings contribute to a developing story on how sensory representations are formed and maintained and has implications for the development of brain-machine interfaces for individuals with tetraplegia. The study is interesting and the manuscript is well-written. There remain concerns about some choices taken in the analyses.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. Reviewer #3 agreed to share their name with the authors.)

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    This article has 5 evaluationsAppears in 1 listLatest version Latest activity
  4. NMDA receptors in visual cortex are necessary for normal visuomotor integration and skill learning

    This article has 3 authors:
    1. Felix C Widmer
    2. Sean M O'Toole
    3. Georg B Keller
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    • Curated by eLife

      Evaluation Summary:

      This study examined the mechanism underlying the development of prediction-error related responses of neurons in the primary visual cortex (V1) evoked by the mismatch between self-generated locomotor movement and visual feedback. The authors show that unilateral gene knockout of NMDA receptors or CaMKII in the primary visual cortex impaired the mismatch-related responses in V1. The experiments are well thought out and the paper is well presented. The results suggesting a role for local plasticity in V1 will be of great interest to those researchers interested in neural circuit development as well as cortical functions.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. The reviewers remained anonymous to the authors.)

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    This article has 3 evaluationsAppears in 1 listLatest version Latest activity
  5. Individual history of winning and hierarchy landscape influence stress susceptibility in mice

    This article has 6 authors:
    1. Katherine B LeClair
    2. Kenny L Chan
    3. Manuella P Kaster
    4. Lyonna F Parise
    5. Charles Joseph Burnett
    6. Scott J Russo
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    • Curated by eLife

      Evaluation Summary:

      This report by LeClair et al. shows the importance of considering social dominance rank and history of winning/losing rank to define susceptibility to stress in mice. It has many strengths, including an elegant experimental design, including experiments in both males and females, and carefully considering two models of social defeat in females, and an excellent writing and representation of the data.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. Reviewer #2 agreed to share their name with the authors.)

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    This article has 2 evaluationsAppears in 1 listLatest version Latest activity
  6. Developmental emergence of two-stage nonlinear synaptic integration in cerebellar interneurons

    This article has 9 authors:
    1. Celia Biane
    2. Florian Rückerl
    3. Therese Abrahamsson
    4. Cécile Saint-Cloment
    5. Jean Mariani
    6. Ryuichi Shigemoto
    7. David A DiGregorio
    8. Rachel M Sherrard
    9. Laurence Cathala
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    • Curated by eLife

      Evaluation Summary:

      Using a range of cutting-edge techniques, the authors of this manuscript explore the functional consequences of developmental changes in dendritic morphology and synapse distribution in a GABAergic interneuron. The experiments are carefully performed and represent a thorough investigation of the structural and functional changes in synaptic inputs and postsynaptic dendritic branching patterns, an important topic for both developmental neurobiologists and synaptic physiologists. The data support most conclusions, but alternative interpretations remain possible and should be further considered.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. The reviewers remained anonymous to the authors.)

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    This article has 5 evaluationsAppears in 1 listLatest version Latest activity
  7. Dorsal premammillary projection to periaqueductal gray controls escape vigor from innate and conditioned threats

    This article has 17 authors:
    1. Weisheng Wang
    2. Peter J Schuette
    3. Mimi Q La-Vu
    4. Anita Torossian
    5. Brooke C Tobias
    6. Marta Ceko
    7. Philip A Kragel
    8. Fernando MCV Reis
    9. Shiyu Ji
    10. Megha Sehgal
    11. Sandra Maesta-Pereira
    12. Meghmik Chakerian
    13. Alcino J Silva
    14. Newton S Canteras
    15. Tor Wager
    16. Jonathan C Kao
    17. Avishek Adhikari
    This article has been curated by 1 group:
    • Curated by eLife

      Evaluation Summary:

      Wang et al. explores the relationship between the vigor of behavioral escape and cholecystokinin-expressing neurons in the premammillary nucleus of the hypothalamus that project to the periaqueductal gray. The experiments presented use a range of complementary approaches and techniques to perform a comprehensive examination of the circuitry underlying a particular aversively motivated behavior. However, a lack of clarity and specificity in how experiments and results are described, as well as a missed opportunity to relate this work to recent publications by many of the same authors, soften the conclusions that can be drawn from the manuscript in its current form.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. Reviewer #3 agreed to share their name with the authors.)

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    This article has 5 evaluationsAppears in 1 listLatest version Latest activity
  8. Modality-specific tracking of attention and sensory statistics in the human electrophysiological spectral exponent

    This article has 7 authors:
    1. Leonhard Waschke
    2. Thomas Donoghue
    3. Lorenz Fiedler
    4. Sydney Smith
    5. Douglas D Garrett
    6. Bradley Voytek
    7. Jonas Obleser
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    • Curated by eLife

      Evaluation Summary:

      This manuscript reports on two separate investigations. In the first, the authors provide novel evidence from two anaesthesia challenges that the slope of the 1/f structure of the power spectrum of the EEG fluctuates in a manner that tracks the presumed excitation : inhibition (E:I) balance of the tissue generating the EEG signal. Next they show that fluctuations in this slope also covary in systematic and modality- and stimulus-specific ways with behavioural performance on a multimodal attention task. These observations have potential foundational implications for how this previously unappreciated component of the EEG can be interpreted in terms of brain physiology and function. While the methodology employed is novel and interesting, the data as they stand, do not yet support the strong conclusions proposed by the authors.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. Reviewer #1 and Reviewer #2 agreed to share their names with the authors.)

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    This article has 5 evaluationsAppears in 1 listLatest version Latest activity
  9. Sleep-dependent upscaled excitability, saturated neuroplasticity, and modulated cognition in the human brain

    This article has 6 authors:
    1. Mohammad Ali Salehinejad
    2. Elham Ghanavati
    3. Jörg Reinders
    4. Jan G Hengstler
    5. Min-Fang Kuo
    6. Michael A Nitsche
    This article has been curated by 1 group:
    • Curated by eLife

      Evaluation Summary:

      Sleep serves vital functions for the body and particularly the brain, and accordingly these functions are impaired by sleep deprivation, as has been repeatedly shown for different cognitive processes. However, the neural mechanisms of such effects of sleep loss are still poorly understood. This manuscript is of interest to both sleep researchers and cognitive neuroscientists looking for insights into the effects of sleep deprivation across a broad range of methods and measures. The reported studies comprehensively investigate cortical excitability and plasticity with non-invasive brain stimulation, as well as electrophysiological markers and behavior. The studies confirm and extend previous findings, stating that, in general, sleep deprivation results in higher cortical excitability as well as a negative impact on cognitive processes.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. The reviewers remained anonymous to the authors.)

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    This article has 4 evaluationsAppears in 1 listLatest version Latest activity
  10. Distributed coding of duration in rodent prefrontal cortex during time reproduction

    This article has 6 authors:
    1. Josephine Henke
    2. Raven Bunk
    3. Dina von Werder
    4. Stefan Häusler
    5. Virginia L Flanagin
    6. Kay Thurley
    This article has been curated by 1 group:
    • Curated by eLife

      Evaluation Summary:

      This study investigates the neural underpinnings of the bias property of timing, namely an overestimation for short and underestimation for long intervals, during an interval reproduction task in the medial prefrontal cortex of gerbils. The key novel result is that only neural populations with mixed responses, including ramping activity with linear increasing and slope-changing modulations as a function of reproduced durations, can encode the bias effect. Overall, experiment and data analysis are technically sound, and the conclusions are mostly well supported. However, the interpretation is too broad, and the manuscript would benefit of a more focused framing.

      (This preprint has been reviewed by eLife. We include the public reviews from the reviewers here; the authors also receive private feedback with suggested changes to the manuscript. Reviewer #1 agreed to share their name with the authors.)

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    This article has 4 evaluationsAppears in 1 listLatest version Latest activity
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