scholarly article | Q13442814 |
P50 | author | Ruili Xie | Q59430997 |
P2093 | author name string | George D Pollak | |
Joshua X Gittelman | |||
P2860 | cites work | Whole-cell patch-clamp recording reveals subthreshold sound-evoked postsynaptic currents in the inferior colliculus of awake bats | Q60148898 |
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GABA inputs control discharge rate primarily within frequency receptive fields of inferior colliculus neurons | Q71503926 | ||
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Features of contralaterally evoked inhibition in the inferior colliculus | Q73539734 | ||
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Dissecting the circuitry of the auditory system. | Q35032120 | ||
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Role of GABA in shaping frequency tuning and creating FM sweep selectivity in the inferior colliculus | Q38561352 | ||
The cochlea of Tadarida brasiliensis: specialized functional organization in a generalized bat. | Q42518333 | ||
Iontophoresis in vivo demonstrates a key role for GABA(A) and glycinergic inhibition in shaping frequency response areas in the inferior colliculus of guinea pig. | Q43732548 | ||
Evidence of a functionally segregated pathway from dorsal cochlear nucleus to inferior colliculus | Q43945331 | ||
GABAergic inputs shape responses to amplitude modulated stimuli in the inferior colliculus | Q44063769 | ||
Response selectivity for species-specific calls in the inferior colliculus of Mexican free-tailed bats is generated by inhibition | Q44168259 | ||
Nonlinear spectrotemporal sound analysis by neurons in the auditory midbrain. | Q45013465 | ||
Neural mechanisms underlying selectivity for the rate and direction of frequency-modulated sweeps in the inferior colliculus of the pallid bat. | Q45347182 | ||
GABA and glycine in the central auditory system of the mustache bat: structural substrates for inhibitory neuronal organization | Q46250707 | ||
Intracellular recording reveals temporal integration in inferior colliculus neurons of awake bats | Q46315797 | ||
Leading inhibition to neural oscillation is important for time-domain processing in the auditory midbrain | Q46384284 | ||
Powerful, onset inhibition in the ventral nucleus of the lateral lemniscus | Q46427691 | ||
Differing roles of inhibition in hierarchical processing of species-specific calls in auditory brainstem nuclei. | Q46681170 | ||
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GABAergic and glycinergic inhibition sharpens tuning for frequency modulations in the inferior colliculus of the big brown bat. | Q47868222 | ||
Contribution of GABA- and glycine-mediated inhibition to the monaural temporal response properties of neurons in the inferior colliculus. | Q47918208 | ||
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Comparison of responses of neurons in the mouse inferior colliculus to current injections, tones of different durations, and sinusoidal amplitude-modulated tones | Q48165532 | ||
Single-unit responses in the inferior colliculus of decerebrate cats. I. Classification based on frequency response maps | Q48167003 | ||
Spectrotemporal receptive fields in the inferior colliculus revealing selectivity for spectral motion in conspecific vocalizations. | Q48180718 | ||
Processing of sinusoidally frequency modulated signals in the nuclei of the lateral lemniscus of the big brown bat, Eptesicus fuscus | Q48318490 | ||
The effects of GABAergic inhibition on monaural response properties of neurons in the mustache bat's inferior colliculus | Q48340948 | ||
GABAergic circuits sharpen tuning curves and modify response properties in the mustache bat inferior colliculus | Q48410309 | ||
Frequency tuning properties of neurons in the inferior colliculus of an FM bat | Q48484686 | ||
Intracellular recordings in response to monaural and binaural stimulation of neurons in the inferior colliculus of the cat. | Q48628285 | ||
The columnar region of the ventral nucleus of the lateral lemniscus in the big brown bat ( Eptesicus fuscus ): synaptic arrangements and structural correlates of feedforward inhibitory function | Q48654841 | ||
Analysis of frequency-modulated and complex sounds by single auditory neurones of bats | Q49152348 | ||
A cheap earphone for small animals with good frequency response in the ultrasonic frequency range. | Q50510446 | ||
Analysis of frequency-modulated sounds by auditory neurones of echo-locating bats. | Q51250535 | ||
SYNAPTIC MECHANISMS OF EXCITATION AND INHIBITION IN THE CENTRAL AUDITORY PATHWAY | Q51282206 | ||
P433 | issue | 35 | |
P304 | page(s) | 9469-9481 | |
P577 | publication date | 2007-08-01 | |
P1433 | published in | Journal of Neuroscience | Q1709864 |
P1476 | title | Rethinking tuning: in vivo whole-cell recordings of the inferior colliculus in awake bats | |
P478 | volume | 27 |
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Q28741537 | Anesthetic state modulates excitability but not spectral tuning or neural discrimination in single auditory midbrain neurons |
Q48704902 | Asymmetric temporal interactions of sound-evoked excitatory and inhibitory inputs in the mouse auditory midbrain |
Q26991645 | Central gain control in tinnitus and hyperacusis |
Q26865651 | Circuits for processing dynamic interaural intensity disparities in the inferior colliculus |
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Q30412697 | Development of intrinsic connectivity in the central nucleus of the mouse inferior colliculus. |
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Q30474369 | Facilitatory mechanisms shape selectivity for the rate and direction of FM sweeps in the inferior colliculus of the pallid bat |
Q30475147 | Forward suppression in the auditory cortex is frequency-specific. |
Q39013803 | Frequency tuning of synaptic inhibition underlying duration-tuned neurons in the mammalian inferior colliculus |
Q30400977 | Frequency-specific adaptation and its underlying circuit model in the auditory midbrain |
Q46314686 | Individual Differences in Human Auditory Processing: Insights From Single-Trial Auditory Midbrain Activity in an Animal Model |
Q44399741 | Inferring synaptic inputs given a noisy voltage trace via sequential Monte Carlo methods |
Q42325931 | Inhibition shapes response selectivity in the inferior colliculus by gain modulation |
Q60045470 | Inhibitory Neural Circuits in the Mammalian Auditory Midbrain |
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Q30487806 | Intracellular recordings from combination-sensitive neurons in the inferior colliculus |
Q30474516 | It's about time: how input timing is used and not used to create emergent properties in the auditory system |
Q53922555 | Large somatic synapses on neurons in the ventral lateral lemniscus work in pairs. |
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Q30421295 | Linear coding of complex sound spectra by discharge rate in neurons of the medial nucleus of the trapezoid body (MNTB) and its inputs |
Q30462154 | Mechanisms of spectral and temporal integration in the mustached bat inferior colliculus |
Q30482043 | Mechanisms underlying directional selectivity for frequency-modulated sweeps in the inferior colliculus revealed by in vivo whole-cell recordings |
Q36171176 | Multiple mechanisms shape FM sweep rate selectivity: complementary or redundant? |
Q92881496 | Preserving Inhibition during Developmental Hearing Loss Rescues Auditory Learning and Perception |
Q30490958 | Retuning of inferior colliculus neurons following spiral ganglion lesions: a single-neuron model of converging inputs |
Q30467563 | Selectivity for spectral motion as a neural computation for encoding natural communication signals in bat inferior colliculus |
Q30455461 | Sensitivity to temporal modulation rate and spectral bandwidth in the human auditory system: fMRI evidence |
Q30480784 | Temporal features of spectral integration in the inferior colliculus: effects of stimulus duration and rise time |
Q30449748 | The dominance of inhibition in the inferior colliculus |
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Q30487386 | Timing of sound-evoked potentials and spike responses in the inferior colliculus of awake bats |
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