Somatosensory and visual crossmodal plasticity in the anterior auditory field of early-deaf cats
It is well known that the post-natal loss of sensory input in one modality can result in crossmodal reorganization of the deprived cortical areas, but deafness fails to induce crossmodal effects in cat primary auditory cortex (A1). Because the core auditory regions (A1, and anterior auditory field A...
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Veröffentlicht in: | Hearing research 2011-10, Vol.280 (1-2), p.38-47 |
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Zusammenfassung: | It is well known that the post-natal loss of sensory input in one modality can result in crossmodal reorganization of the deprived cortical areas, but deafness fails to induce crossmodal effects in cat primary auditory cortex (A1). Because the core auditory regions (A1, and anterior auditory field AAF) are arranged as separate, parallel processors, it cannot be assumed that early-deafness affects one in the same manner as the other. The present experiments were conducted to determine if crossmodal effects occur in the anterior auditory field (AAF). Using mature cats (n = 3), ototoxically deafened postnatally, single-unit recordings were made in the gyral and sulcal portions of the AAF. In contrast to the auditory responsivity found in the hearing controls, none of the neurons in early-deafened AAF were activated by auditory stimulation. Instead, the majority (78%) were activated by somatosensory cues, while fewer were driven by visual stimulation (44%; values include unisensory and bimodal neurons). Somatosensory responses could be activated from all locations on the body surface but most often occurred on the head, were often bilateral (e.g., occupied portions of both sides of the body), and were primarily excited by low-threshold hair receptors. Visual receptive fields were large, collectively represented the contralateral visual field, and exhibited conventional response properties such as movement direction and velocity preferences. These results indicate that, following post-natal deafness, both somatosensory and visual modalities participate in crossmodal reinnervation of the AAF, consistent with the growing literature that documents deafness-induced crossmodal plasticity outside A1.
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► Early-deafness induced crossmodal reorganization of auditory cortex AAF. ► Most deafened AAF neurons responded to somatosensory cues; visual also effective. ► Somatosensory receptive fields were often bilateral; lacked global somatotopy. ► Visual receptive fields collectively covered visual space; lacked global retinotopy. ► Crossmodal effects vigorous at neuronal level, but disorganized at regional level. |
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ISSN: | 0378-5955 1878-5891 1878-5891 |
DOI: | 10.1016/j.heares.2011.02.004 |