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Chiayu Chiu

Publications and source records attributed to Chiayu Chiu.

4 recordsLinked to original sources

Small modulation of ongoing cortical dynamics by sensory input during natural vision.

During vision, it is believed that neural activity in the primary visual cortex is predominantly driven by sensory input from the environment. However, visual cortical neurons respond to repeated presentations of the same stimulus with a high degree of variability. Although this variability has been considered to be noise owing to random spontaneous activity within the cortex, recent studies show that spontaneous activity has a highly coherent spatio-temporal structure. This raises the possibility that the pattern of this spontaneous activity may shape neural responses during natural viewing conditions to a larger extent than previously thought. Here, we examine the relationship between spontaneous activity and the response of primary visual cortical neurons to dynamic natural-scene and random-noise film images in awake, freely viewing ferrets from the time of eye opening to maturity. The correspondence between evoked neural activity and the structure of the input signal was weak in young animals, but systematically improved with age. This improvement was linked to a shift in the dynamics of spontaneous activity. At all ages including the mature animal, correlations in spontaneous neural firing were only slightly modified by visual stimulation, irrespective of the sensory input. These results suggest that in both the developing and mature visual cortex, sensory evoked neural activity represents the modulation and triggering of ongoing circuit dynamics by input signals, rather than directly reflecting the structure of the input signal itself.

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Multi-electrode recording from the developing visual pathway of awake behaving ferrets.

We have developed an effective technique for obtaining multi-electrode extracellular recordings from developing lateral geniculate nucleus (LGN) and visual cortex in awake behaving ferrets. Using this approach, we have been studying changes in the spatio-temporal patterns of spontaneous activity within the visual pathway during pre eye-opening development. In this paper, we describe the fabrication and implantation of 8- and 16-channel drivable multi-electrode arrays, which enable us to obtain high-quality multi-unit recordings from nearly 100% of our recording sites.

Animals↗

Relationship of correlated spontaneous activity to functional ocular dominance columns in the developing visual cortex.

Utilizing a multielectrode array to record spontaneous and visually evoked activity of cortical neurons in area 17, we investigate the relationship between long-range correlated spontaneous activity and functional ocular dominance columns during early ferret postnatal development (P24-P29). In regions of visual cortex containing alternating ocular dominance patches, periodic fluctuations in correlated activity are observed in which spontaneous activity is most highly correlated between cortical patches exhibiting the same eye preference. However, these fluctuations are present even within large contralateral eye-dominated bands which lack any periodic alternations in ocular dominance. Thus, the organization of ocular dominance columns cannot fully account for the patterns of correlated activity we observe. Our results suggest that patterns of long-range correlated activity reflect an intrinsic periodicity of cortical connectivity that is constrained by segregated eye-specific LGN afferents.

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