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Asadian, A.

Publications and source records attributed to Asadian, A..

3 recordsLinked to original sources

Shared symmetry detection with divergent temporal dynamics in marmosets and humans

Symmetry is a fundamental organizing principle of mid-level vision, yet which aspects of human symmetry processing are shared across primates remains unclear. Using steady-state visual evoked potentials during passive viewing, we compared responses to two well-matched wallpaper groups, double reflection (PMM) and four-fold rotation (P4), in common marmosets and humans, using identical stimuli. Marmosets showed robust reflection-symmetry responses comparable in relative magnitude, temporal dynamics and scalp distribution to those of humans. Rotation responses were also reliable but transient, lacking the sustained late component prominent in humans. This dissociation suggests that feedforward computations underlying symmetry detection are conserved across primates, whereas sustained processing that elaborates symmetry representations (likely recurrent or feedback in origin) is reduced in marmosets, particularly for rotation. These findings establish marmosets as a tractable model for symmetry processing and open a path to intracortical recording in accessible extrastriate cortex.

neuroscience↗

Overcoming the skull barrier for noninvasive transcranial functional ultrasound imaging in marmosets

Functional ultrasound (fUS) imaging enables high-resolution mapping of brain hemodynamics but is limited in primates by acoustic attenuation of the cranium. With topical application of ethylenediaminetetraacetic acid (EDTA), we were able to visualized cortical and deep vasculature in marmoset brains. We localized robust, stimulus-locked blood flow changes in cortical and subcortical regions contralateral to peripheral tactile stimulation. Beyond stimulus-evoked responses, resting-state cerebral blood flow also varied with the depth of isoflurane anesthesia. These findings advance translational ultrasound neuroimaging by offering a non-destructive alternative to a craniotomy.

neuroscience↗

iSleep: Continuous, binocular pupil tracking in sleep and reduced consciousness for physiological monitoring, predictions and interventions

Monitoring pupil dynamics is a key tool in understanding arousal. Pupil size can serve as a biomarker for the autonomic nervous system balance as well as for identifying brain states. While internal states can also be self-reported when awake, automated detection and non-invasive monitoring is crucial during sleep and reduced consciousness. Here, we introduce iSleep, an innovative pupil tracking and analysis framework for sleep in humans. It features comfortable, humidified eye-tracking goggles and a platform for integrated analysis and prediction capabilities. We show that iSleep allows safe and continuous access to binocular pupil size and ocular dynamics during sleep and anesthesia. iSleep reveals that pupillary fluctuations correlate tightly with brain activity, heartbeat, and breathing, and can reliably predict brain states. Pupil constrictions reflect parasympathetic drive and likely serve a protective function for deep sleep stability; while dilations indicate arousals. Unexpectedly, we observed a decoupling of binocular movements during periods of sleep, indicating alterations in reflexes which usually govern voluntary eye movements. Finally, iSleep was tested in surgery patients under general anesthesia, revealing dynamic pupil changes to noxious stimuli, suggesting the potential for nociception monitoring during surgeries. In summary, iSleep offers an easy-to-use, robust alternative to read out brain states during sleep and anesthesia, opening new avenues in monitoring, diagnostics, and treatments, previously obscured by closed eyelids.

neuroscience↗