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Morrone, M. C.

Publications and source records attributed to Morrone, M. C..

2 recordsLinked to original sources

A new counter-intuitive therapy for adult amblyopia

Visual cortex plasticity is high during a critical period of early postnatal development, but rapidly diminishes with the transition to adulthood. Accordingly, visual disorders such as amblyopia (lazy eye), can be treated early in life by long-term occlusion of the non-amblyopic eye, but may become irreversible in adults, because of the decline in brain plasticity. Here we show that a novel counter-intuitive approach can promote the recovery of visual function in adult amblyopic patients: short-term occlusion of the amblyopic (not the fellow) eye, combined with physical exercise (cycling). After six brief (2h) training sessions, visual acuity improved in all ten patients (0.15{+/-}0.02 LogMar), and six of them also recovered stereopsis. The improvement was preserved for up to one year after training. A control experiment revealed that physical activity was crucial for the recovery of visual acuity and stereopsis. Thus, we propose a non-invasive therapeutic strategy for adult human amblyopia based an inverse-occlusion and physical exercise procedure.

neuroscience

Short-term plasticity of 7T BOLD ocular dominance and spatial frequency representation in adult human primary visual cortex

Visual cortex, particularly V1, is considered to be resilient to plastic changes in adults. In particular, ocular dominance is assumed to be hard-wired after the end of the critical period. We show that short-term (2h) monocular deprivation in adult humans boosts the BOLD response to the deprived eye, changing ocular dominance of V1 vertices, consistently with homeostatic plasticity. The boost is strongest in V1, present in V2, V3 & V4 but absent in V3a and MT. Assessment of spatial frequency tuning in V1 by a population Receptive-Field technique shows that deprivation primarily boosts high spatial frequencies, consistent with a primary involvement of the parvocellular pathway. Crucially, the V1 deprivation effect correlates across participants with the perceptual increase of the deprived eye dominance assessed with binocular rivalry, suggesting a common origin. Our results demonstrate that visual cortex, particularly the ventral pathway, retains a high potential for homeostatic plasticity in the human adult.

neuroscience