Attention is a neurocognitive process composed by subprocesses located in several brain areas and controlled by specific neurotransmitters (Petersen & Posner, 2012). This process aims to select relevant information and modulates sensory processing, perception, memory, and learning. This selection of information processing – based on the combination of perceptual noise exclusion and signal enhancement – is fundamental in developing fine object representations in the brain (see Corbetta & Shulman, 2011; Petersen & Posner, 2012; Roelfsema, van Ooyen, & Watanabe, 2010, for reviews). Alerting and orienting are the two main processes involved in reading acquisition. Alerting is defined as the multisensory attentional process that increases performance during tasks (Petersen & Posner, 2012), producing a phasic change in alertness (e.g., Ronconi et al., 2016). The alerting system can already be measured in the infant brain (e.g., Ronconi, Facoetti et al., 2014).

(2019). Role of Visual Attention in Developmental Dyslexia . Retrieved from http://hdl.handle.net/10446/153272

Role of Visual Attention in Developmental Dyslexia

Gori, Simone
2019-01-01

Abstract

Attention is a neurocognitive process composed by subprocesses located in several brain areas and controlled by specific neurotransmitters (Petersen & Posner, 2012). This process aims to select relevant information and modulates sensory processing, perception, memory, and learning. This selection of information processing – based on the combination of perceptual noise exclusion and signal enhancement – is fundamental in developing fine object representations in the brain (see Corbetta & Shulman, 2011; Petersen & Posner, 2012; Roelfsema, van Ooyen, & Watanabe, 2010, for reviews). Alerting and orienting are the two main processes involved in reading acquisition. Alerting is defined as the multisensory attentional process that increases performance during tasks (Petersen & Posner, 2012), producing a phasic change in alertness (e.g., Ronconi et al., 2016). The alerting system can already be measured in the infant brain (e.g., Ronconi, Facoetti et al., 2014).
2019
Facoetti, Andrea; Franceschini, Sandro; Gori, Simone
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/153272
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