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Macdonald, J.

Publications and source records attributed to Macdonald, J..

2 recordsLinked to original sources

Alpha power and stimulus-evoked activity dissociate metacognitive reports of attention, visibility and confidence in a visual detection task

Variability in the detection and discrimination of weak visual stimuli has been linked to oscillatory neural activity. In particular, the amplitude of activity in the alpha-band (8-12 Hz) has been shown to impact upon the objective likelihood of stimulus detection, as well as measures of subjective visibility, attention, and decision confidence. We aimed to clarify how preparatory alpha influences performance and phenomenology, by recording simultaneous subjective measures of attention and confidence (Experiment 1), or attention and visibility (Experiment 2) on a trial-by-trial basis in a visual detection task. Across both experiments, alpha amplitude was negatively and linearly correlated with the intensity of subjective attention. In contrast to this linear relationship, we observed a quadratic relationship between the strength of alpha oscillations and subjective ratings of confidence and visibility. We find that this same quadratic relationship links alpha amplitude to the strength of stimulus evoked responses. Visibility and confidence judgements corresponded to the strength of evoked responses, but confidence, uniquely, incorporated information about attentional state. As such, our findings reveal distinct psychological and neural correlates of metacognitive judgements of attentional state, stimulus visibility, and decision confidence.

neuroscience↗

Cryo-EM Structures of Amyloid-β 42 Filaments from Human Brain

Filament assembly of amyloid-{beta} peptides ending at residue 42 (A{beta}42) is a central event in Alzheimers disease. We report the cryo-EM structures of A{beta}42 filaments from brain. Two structurally related S-shaped protofilament folds give rise to two types of filaments. Type I filaments were found mostly in the brains of individuals with sporadic Alzheimers disease and Type II filaments in individuals with familial Alzheimers disease and other conditions. The structures of A{beta}42 filaments from brain differ from those of filaments assembled in vitro. By contrast, in AppNL-F knock-in mice, A{beta}42 deposits were made of Type II filaments. Knowledge of A{beta}42 filament structures from human brain may lead to the development of inhibitors of assembly and improved imaging agents.

neuroscience↗