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Visualization of Cortical Modules in Flattened Mammalian Cortices
Published on: January 22, 2018
Development of intrinsic connections in cat somatosensory cortex
1Department of Anatomy and Cell Biology and Program in Neuroscience, Uniformed Services University of the Health Sciences, Bethesda, Maryland 20814, USA.
Insights
Cat somatosensory cortex connections develop rapidly, transforming from a diffuse network at birth to a patchy, clustered system by the first postnatal week. This early organization is crucial for brain development.
Area of Science:
- Neuroscience
- Developmental Neuroscience
- Cortical Development
Background:
- Corticocortical connectivity in adult cats exhibits a patchy organization.
- Understanding the developmental trajectory of these connections is essential for comprehending cortical circuit formation.
Purpose of the Study:
- To investigate the developmental timeline of clustered corticocortical connections in the developing cat somatosensory cortex.
- To determine when the transition from a diffuse to a patchy network occurs during early postnatal development.
Main Methods:
- Intracortical injections of biocytin and carbocyanine dye (DiI) in cats at various postnatal ages.
- Histological analysis and retrograde labeling to trace neuronal connections.
- Spatial point process analysis and autocorrelation analysis to quantify neuronal clustering and axonal distribution.
Main Results:
- Early postnatal days (1-3) showed diffuse axonal and cell distribution.
- By postnatal day 6, well-defined clusters of labeled cells and axons emerged, forming a patchy network.
- Spatial analysis confirmed significantly higher neuron density in clusters and periodicity in axonal distribution by postnatal day 6.
Conclusions:
- Cat somatosensory cortex corticocortical connections develop from a diffuse to a patchy network within the first postnatal week.
- This rapid development precedes that seen in other cortical areas, like the visual cortex.
- Suggests fundamental differences in the organizational principles of different cortical areas.
Abstract:
We explored the development of clustered connections in cat somatosensory cortex by using intracortical injections of biocytin and carbocyanine dye (DiI). Biocytin injections in adults revealed clusters of retrogradely labeled cells, affirming earlier reports of the patchy nature of corticocortical connectivity in the adult cat somatosensory cortex. On postnatal days (PNDs) 1 and 3, a diffuse distribution of axons and labeled cells were found after DiI injections. A dramatic rearrangement of connections had taken place by PND 6. Well-defined clusters of labeled cells surrounded the injection site. Intercluster zones were relatively free of labeled cells and contained few labeled axons. At later ages (PNDs 12 and 15), a clear patchy distribution of intrinsic connections was seen. We analyzed neuronal clustering by using spatial point process analysis, which corroborated our qualitative observations. The density of labeled neurons was significantly higher in clusters than in the intercluster zones on PND 6. Autocorrelations run on profile plots of optical density values, along paths parallel to the edge of the injection sites (reflecting axonal distributions), revealed significant periodicity (P < .05; center-to-center approximately 750 pm) by PND 6. These data demonstrate that corticocortical connections in cat somatosensory cortex develop from a diffuse network at birth, which transforms into a patchy network by the end of the 1st postnatal week. This is substantially earlier than the development of local circuits in the cat visual cortex and may reflect fundamental differences in the organization of the two cortices.
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