Matches in SemOpenAlex for { <https://semopenalex.org/work/W2023709233> ?p ?o ?g. }
- W2023709233 abstract "Visual scan paths exhibit complex, stochastic dynamics. Even during visual fixation, the eye is in constant motion. Fixational drift and tremor are thought to reflect fluctuations in the persistent neural activity of neural integrators in the oculomotor brainstem, which integrate sequences of transient saccadic velocity signals into a short term memory of eye position. Despite intensive research and much progress, the precise mechanisms by which oculomotor posture is maintained remain elusive. Drift exhibits a stochastic statistical profile which has been modelled using random walk formalisms. Tremor is widely dismissed as noise. Here we focus on the dynamical profile of fixational tremor, and argue that tremor may be a signal which usefully reflects the workings of the oculomotor postural control. We identify signatures reminiscent of a certain flavour of transient neurodynamics; toric travelling waves which rotate around a central phase singularity. Spiral waves play an organisational role in dynamical systems at many scales throughout nature, though their potential functional role in brain activity remains a matter of educated speculation. Spiral waves have a repertoire of functionally interesting dynamical properties, including persistence, which suggest that they could in theory contribute to persistent neural activity in the oculomotor postural control system. Whilst speculative, the singularity hypothesis of oculomotor postural control implies testable predictions, and could provide the beginnings of an integrated dynamical framework for eye movements across scales." @default.
- W2023709233 created "2016-06-24" @default.
- W2023709233 creator A5016174173 @default.
- W2023709233 creator A5090032106 @default.
- W2023709233 date "2014-01-01" @default.
- W2023709233 modified "2023-09-26" @default.
- W2023709233 title "Capture of fixation by rotational flow; a deterministic hypothesis regarding scaling and stochasticity in fixational eye movements" @default.
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