The anatomy, organisation and development of contralateral callosal projections of the mouse somatosensory cortex
Анатомия, организация и развитие контралатеральных каллозных проекций соматосенсорной коры мыши
2017-01-01
SCID: 54.1/k7qnhesv
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contralateral callosal projectionsdevelopmental exuberance (axon innervation and arborisation)dorsomedial to ventrolateral axonal targetinghomotopic and heterotopic circuitsmouse primary somatosensory cortex
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Abstract (AI)
Background: Alterations in the development of neuronal connectivity can result in dramatic outcomes for brain function. In the cerebral cortex, most sensorimotor and higher-order functions require coordination between precise regions of both hemispheres through the axons that form the corpus callosum. However, little is known about how callosal axons locate and innervate their contralateral targets. Methods: Here, we use a combination of in utero electroporation, retrograde tracing, sensory deprivation and high-resolution axonal quantification to investigate the development, organisation and activity dependence of callosal axons arising from the primary somatosensory cortex of mice. Results: We show that distinct contralateral projections arise from different neuronal populations and form homotopic and heterotopic circuits. Callosal axons innervate the contralateral hemisphere following a dorsomedial to ventrolateral and region-specific order. Furthermore, we identify two periods of region- and layer-specific developmental exuberance that correspond to initial callosal axon innervation and subsequent arborisation. Early sensory deprivation affects only the latter of these events. Conclusion: Taken together, these results reveal the main developmental events of contralateral callosal targeting and may aid future understanding of the formation and pathologies of brain connectivity.
Key Findings
1
Callosal axons innervate the contralateral hemisphere in a dorsomedial-to-ventrolateral and region-specific sequence.
2
Combining in utero electroporation, retrograde tracing, sensory deprivation and high-resolution quantification delineates the main developmental events of contralateral callosal targeting.
3
Distinct contralateral projections originate from different neuronal populations in mouse primary somatosensory cortex, forming both homotopic and heterotopic circuits.
4
Early sensory deprivation selectively disrupts the later arborisation-related developmental exuberance but does not affect the initial innervation phase.
5
Two periods of region- and layer-specific developmental exuberance were identified: one corresponding to initial callosal axon innervation and a later one to arborisation.
Research Object
Contralateral callosal axons/projections originating from the mouse primary somatosensory cortex
Research Subject
Their development, anatomical organisation, homotopic/heterotopic targeting patterns, region- and layer-specific timing of innervation and arborisation, and activity (sensory deprivation) dependence
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2017-01-01
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