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Czarnecka, M.

Publications and source records attributed to Czarnecka, M..

2 recordsLinked to original sources

Association between Cortical Thickness and Functional Response to Linguistic Processing in the Occipital Cortex of Early Blind Individuals

Blindness has been shown to induce changes in the structural and functional organization of the brain. However, few studies have investigated the relationship between these structural and functional changes. In this study, we examined cortical thickness within occipital regions of interest in 38 early blind individuals and explored its relationship to functional activation during linguistic processing. Participants engaged in tactile Braille reading and auditory processing tasks involving words, pseudowords, and control conditions to assess various aspects of linguistic processing. Linear mixed models revealed a significant association between cortical thickness and functional activation in the occipital cortex during linguistic tasks. Specifically, lower cortical thickness in the middle occipital gyrus, the calcarine sulcus, and the parieto-occipital sulcus were linked to increased activation during orthographic processing in blind participants (Braille pseudowords vs. Braille nonsense-symbols). Similarly, lower cortical thickness in the calcarine sulcus and parieto-occipital sulcus was associated with greater functional activation during phonological processing (auditory pseudowords vs. auditory control). These findings align with prior research suggesting that structural and functional adaptations in the visual cortex of blind individuals may be influenced by developmental mechanisms such as pruning or myelination. This study highlights the interplay between cortical structure and functional reorganization in the blind brain.

neuroscience↗

Artificial light at night enhances the defensive behavior in aquatic shredders under predation risk

Caddisfly larvae (Trichoptera) are mostly nocturnal aquatic invertebrates that contribute to the decomposition of coarse organic matter, such as plant litter in streams. Artificial light at night (ALAN) can interfere with their behavior, particularly in the presence of predation threat. We investigated the effects of various types of ALAN on Lepidostoma hirtum, a common caddisfly species in running waters. We tested its behavior (activity and tendency to shelter) in darkness, as well as under white warm LED light and HPS (sodium lamp) light (2 lux), with and without the presence of predation cues (crushed conspecifics). We found that in darkness caddisflies did not change their behavior in the presence of predation threat. When exposed to ALAN only, caddisflies decreased their activity compared to dark nights, regardless of the type of light. The presence of both predation threat and ALAN enhanced a defensive behavior in caddisflies, especially under LED light. They not only reduced their activity, but also spent more time in shelter, compared to other treatments. This study highlights that impact of ALAN on the behavior of nocturnal aquatic invertebrates may vary depending on the spectral composition of light and may be intensified in the presence of predation threat.

animal behavior and cognition↗