Modified synaptic dynamics predict neural activity patterns in an auditory field within the frontal cortex

被引:11
作者
Lopez-Jury, Luciana [1 ]
Mannel, Adrian [1 ]
Garcia-Rosales, Francisco [1 ]
Hechavarria, Julio C. [1 ]
机构
[1] Goethe Univ, Inst Zellbiol & Neurowissensch, Max von Laue Str 13, D-60438 Frankfurt, Germany
关键词
auditory cortex; bats; integrate-and-fire; prefrontal cortex; sound coding; PREFRONTAL CORTEX; PYRAMIDAL NEURONS; ENCODING PRECISION; BAT; RESPONSES; INTERNEURONS; CONNECTIONS; VARIABILITY; PROJECTIONS; INHIBITION;
D O I
10.1111/ejn.14600
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Frontal areas of the mammalian cortex are thought to be important for cognitive control and complex behaviour. These areas have been studied mostly in humans, non-human primates and rodents. In this article, we present a quantitative characterization of response properties of a frontal auditory area responsive to sound in the brain of Carollia perspicillata, the frontal auditory field (FAF). Bats are highly vocal animals, and they constitute an important experimental model for studying the auditory system. We combined electrophysiology experiments and computational simulations to compare the response properties of auditory neurons found in the bat FAF and auditory cortex (AC) to simple sounds (pure tones). Anatomical studies have shown that the latter provides feedforward inputs to the former. Our results show that bat FAF neurons are responsive to sounds, and however, when compared to AC neurons, they presented sparser, less precise spiking and longer-lasting responses. Based on the results of an integrate-and-fire neuronal model, we suggest that slow, subthreshold, synaptic dynamics can account for the activity pattern of neurons in the FAF. These properties reflect the general function of the frontal cortex and likely result from its connections with multiple brain regions, including cortico-cortical projections from the AC to the FAF.
引用
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页码:1011 / 1025
页数:15
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