At the dated check, the references listed below either did not resolve in
Crossref or DataCite, or carried a retraction notice. Each one is shown with the
registry record that put it there.
The 118 checked references that resolve
resolves10.1152/jn.01170.2003Characterization of Neocortical Principal Cells and Interneurons by Network Interactions and Extracellular Features
resolves10.1038/srep45508Organization of prefrontal network activity by respiration-related oscillations
resolves10.1152/jn.1995.73.4.1691Dentate EEG spikes and associated interneuronal population bursts in the hippocampal hilar region of the rat
resolves10.1089/acm.2005.11.189Sudarshan Kriya Yogic Breathing in the Treatment of Stress, Anxiety, and Depression: Part I—Neurophysiologic Model
resolves10.1002/hipo.22488Hippocampal sharp wave‐ripple: A cognitive biomarker for episodic memory and planning
resolves10.1038/nn.3952What does gamma coherence tell us about inter-regional neural communication?
resolves10.1038/nn.2732Hippocampal replay in the awake state: a potential substrate for memory consolidation and retrieval
resolves10.1093/cercor/bhq009Origin of Active States in Local Neocortical Networks during Slow Sleep Oscillation
resolves10.1016/j.nlm.2013.09.015Persistence of amygdala gamma oscillations during extinction learning predicts spontaneous fear recovery
resolves10.1152/jn.00116.2003Massively Parallel Recording of Unit and Local Field Potentials With Silicon-Based Electrodes
resolves10.1523/jneurosci.23-22-07993.2003Ketamine-Xylazine-Induced Slow (< 1.5 Hz) Oscillations in the Rat Piriform (Olfactory) Cortex Are Functionally Correlated with Respiration
resolves10.1038/nn.3760Independent control of gamma and theta activity by distinct interneuron networks in the olfactory bulb
resolves10.1038/nn.2384Selective suppression of hippocampal ripples impairs spatial memory
resolves10.1038/nn.4637Reactivations of emotional memory in the hippocampus–amygdala system during sleep
resolves10.1038/nn1856Dual functions of mammalian olfactory sensory neurons as odor detectors and mechanical sensors
resolves10.1038/nn.3869Encoding of fear learning and memory in distributed neuronal circuits
resolves10.1016/j.neuron.2006.10.023Integration and Segregation of Activity in Entorhinal-Hippocampal Subregions by Neocortical Slow Oscillations
resolves10.1016/j.cell.2015.10.047Htr2a-Expressing Cells in the Central Amygdala Control the Hierarchy between Innate and Learned Fear
resolves10.1038/ncomms4572Whisker barrel cortex delta oscillations and gamma power in the awake mouse are linked to respiration
resolves10.1016/j.neuron.2016.02.010Coordinated Excitation and Inhibition of Prefrontal Ensembles during Awake Hippocampal Sharp-Wave Ripple Events
resolves10.1038/nn1825Coordinated memory replay in the visual cortex and hippocampus during sleep
resolves10.1038/nn.42514-Hz oscillations synchronize prefrontal–amygdala circuits during fear behavior
resolves10.1126/science.aan6203Learning-enhanced coupling between ripple oscillations in association cortices and hippocampus
resolves10.1038/nrn2886Spiking activity propagation in neuronal networks: reconciling different perspectives on neural coding
resolves10.1152/jn.00858.2013Neocortical inhibitory activities and long-range afferents contribute to the synchronous onset of silent states of the neocortical slow oscillation
resolves10.1088/1741-2560/8/1/014001Poly(3,4-ethylenedioxythiophene) (PEDOT) polymer coatings facilitate smaller neural recording electrodes
resolves10.1038/nn.4304Hippocampo-cortical coupling mediates memory consolidation during sleep
resolves10.1016/j.neuron.2009.08.037Theta Oscillations Provide Temporal Windows for Local Circuit Computation in the Entorhinal-Hippocampal Loop
resolves10.1038/nn.2894Hippocampal CA1 pyramidal cells form functionally distinct sublayers
resolves10.1038/s41467-018-03988-1Olfactory inputs modulate respiration-related rhythmic activity in the prefrontal cortex and freezing behavior
resolves10.1038/nature12076Hierarchy of orofacial rhythms revealed through whisking and breathing
resolves10.1152/jn.1975.38.2.356Theory of current source-density analysis and determination of conductivity tensor for anuran cerebellum
resolves10.1523/jneurosci.0575-04.2004The Ventral Striatum in Off-Line Processing: Ensemble Reactivation during Sleep and Modulation by Hippocampal Ripples
resolves10.1016/j.jneumeth.2005.12.005Current-source density estimation based on inversion of electrostatic forward solution: Effects of finite extent of neuronal activity and conductivity discontinuities
resolves10.1073/pnas.1103612108Inhibition recruitment in prefrontal cortex during sleep spindles and gating of hippocampal inputs
resolves10.1038/nn.2337Replay of rule-learning related neural patterns in the prefrontal cortex during sleep
resolves10.1523/jneurosci.4278-11.2012Respiration Drives Network Activity and Modulates Synaptic and Circuit Processing of Lateral Inhibition in the Olfactory Bulb
resolves10.1038/nn.4457A cortical–hippocampal–cortical loop of information processing during memory consolidation
resolves10.1038/79848Cellular and network mechanisms of rhythmic recurrent activity in neocortex
resolves10.1523/jneurosci.0294-11.2011Relationships between Hippocampal Sharp Waves, Ripples, and Fast Gamma Oscillation: Influence of Dentate and Entorhinal Cortical Activity
resolves10.1073/pnas.0810524105Dynamic cross-frequency couplings of local field potential oscillations in rat striatum and hippocampus during performance of a T-maze task
resolves10.1038/nn.4074Determinants of different deep and superficial CA1 pyramidal cell dynamics during sharp-wave ripples
resolves10.1002/cne.24415Efferent projections of excitatory and inhibitory preBötzinger Complex neurons
resolves10.1002/hipo.450050110Intracellular correlates of hippocampal theta rhythm in identified pyramidal cells, granule cells, and basket cells
The 16 references without a DOI — listed, not checked
no DOI — not checkedAnalysis of the electrical activity of the olfactory epithelium
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no DOI — not checkedUncorrected values are artifactually higher. Inset, example non-uniform prior distribution of the respiratory phase. (D) Top, example inspiration-triggered time histogram for an example prefrontal neuron. Bottom, color-coded normalized inspiration-triggered time histograms for all prefrontal neurons (n = 1640 cells), ordered by increasing normalized firing rate. (E) Depth-resolved average preferred phase for all prefrontal neurons (n = 1263 cells; n = 11 mice), assessed in relation to the phase of the respiration and the phase of the local LFP. (F) Translaminar average preferred phase for all prefrontal neurons (n = 58 cells; n = 6 mice), assessed in relation to the phase of the respiration and the phase of the local LFP. (G) Left, schematic of a single-shank angled high-density polytrode inserted in the dorsal mPFC. Right, Example high-resolution inspiration-triggered CSD of the mPFC respiration-related oscillation using a single-shank
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no DOI — not checkedNote strong peak in 2-4 Hz power reflecting DG LFP entrained by respiration (B) Cumulative distribution of the respiratory phase modulation strength for all CA1 putative pyramidal cells (n = 169 neurons), grouped based on their location within the pyramidal layer into deep (n = 46 cells), middle (n = 48 cells) and superficial (n = 75 cells) cells. (C) Example olfactory bulb gamma-and CA1lm gamma-triggered LFP traces and translaminar CSD in the dorsal hippocampus. (D) Left, schematic depiction of the neuronal alignment of CA1 pyramidal cells and DG granule cells, aligned to the CSD profiles as described in Methods section. Right, example CSD profiles of the dorsal hippocampus of the same animal, triggered on the peak of sharp-wave ripple (SWR) events, the troughs of theta oscillations, inspiratory events and the two types of dentate spikes (DS1 and DS2). The power of the ripple-band and the CSD magnitude and LFP power for the two types of dentate spikes
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