16 papers · ranked by Valyu relevance
Keita Mitani, Makio Kashino
The processing of time intervals is fundamental for sensorimotor and cognitive functions. Perceptual and motor timing are often performed concurrently (e.g., playing a musical instrument). Although previous studies have shown the influence of body movements on time perception, how we perceive self-produced time…
Keita Mitani, Makio Kashino
We examined whether auditory feedback assists the post hoc error correction of temporal reproduction, and the perception of self-produced time intervals in the subsecond and suprasecond ranges. Here, we employed a temporal reproduction task with a single motor response at a point in time with and without auditory…
Pirathitha Ravichandran-Schmidt, Joachim Hass
Coordinated movements, speech, and other actions are impossible without precise timing. Computational models of interval timing are expected to provide key insights into the underlying mechanisms of timing, which are currently largely unknown. So far, existing models have only been partially replicating key…
Olga Sysoeva, Victor Bolshakov, Oksana Galakhova, Evgeny Machnev + 5 more
Time perception is a fundamental yet often underappreciated component of athletic performance. Athletes across various disciplines must continuously process temporal information to coordinate movements, anticipate events, and make effective decisions under pressure. This narrative review synthesizes current knowledge…
Ivan Šerbetar, Asgeir Mamen, Diego Minciacchi
Objectives: Sub-second motor timing is critical for skilled performance in domains such as sport, music, and safety-critical multitasking; however, its robustness under cognitive load remains unresolved. Dual-task paradigms offer a method to test whether attentional demands selectively disrupt temporal precision. This…
Shu-Chen Guan, Ying-Zi Xiong, Cong Yu
Subsecond temporal perception is critical for understanding time-varying events. Many studies suggest that subsecond timing is an intrinsic property of neural dynamics, distributed across sensory modalities and brain areas. Furthermore, we hypothesize the existence of a more abstract and conceptual representation of…
Debopam Acharjee, Asit Baran Mahato, Mrinal Kanti Panda, Subhadip Ghosh
Single-particle photoluminescence (PL) measurements have been extensively utilized to investigate the charge carrier dynamics and recombination processes in quantum dots (QDs). Among these techniques, single dot blinking studies are effective for probing relatively slower processes with timescales >10 milliseconds…
Trevor Knuth, Lindsay Glesener
Solar flares are known to release a large amount of energy into accelerating electrons. Studying small timescale (≤ 2s) fluctuations in nonthermal X-ray flux offers the opportunity to probe the nature of those acceleration mechanisms. By comparing the durations, differences in timing between energy bands, and the…
Ying-Zi Xiong, Shu-Chen Guan, Cong Yu
A central theme in time perception research is whether subsecond timing relies on a dedicated centralized clock, or on distributed neural temporal dynamics. A fundamental constraint is the interval- and modality-specificity in perceptual learning of temporal interval discrimination (TID), which argues against a…
Geoffrey Schoenbaum, Federico Sanabria, Angela Langdon, Alicia Izquierdo + 3 more
'Alicia Izquierdo' 'Shamini Warda' 'Jaana Simola' 'Devin B. Terhune'] Recent primate studies suggest a potential link between pupil size and subjectively elapsed duration. Here, we sought to investigate the relationship between pupil size and perceived duration in human participants performing two temporal bisection…
D. M. Hewitt, M. P. Snelders, J. W. T. Hessels, Kenzie Nimmo + 8 more
'Joscha N. Jahns-Schindler' 'L. G. Spitler' 'K. Gourdji' 'G H Hilmarsson' 'Daniele Michilli' 'O. S. Ould-Boukattine' 'Paul Scholz' 'Andrew Seymour'] FRB 20121102A is the first known fast radio burst (FRB) from which repeat bursts were detected, and one of the best-studied FRB sources in the literature. Here we report…
Shany Grossman, Chen Guata, Slav Pesin, Rafael Malach + 1 more
Retinal input is frequently lost due to eye blinks, yet humans rarely notice these gaps in visual input. While previous studies focused on the psychophysical and neural correlates of diminished awareness to blinks, the impact of blinks on the perceived time of concurrent events is unknown. Here, we investigated whether…
James Battat, Louisa Ruixue Huang, E. Schlerman, Thomas W. Murphy + 2 more
'Nicholas Colmenares' 'Russ E. Davis'] The Apache Point Observatory Lunar Laser-ranging Operation (APOLLO) began millimeterprecision ranging to the Moon in 2006. Until now, a comprehensive validation of APOLLO system range accuracy has not been possible because of centimeter-scale deficiencies in computational models…
Mohammed A. Chamma, Fereshteh Rajabi, Aishwarya Kumar, Martin Houde
We survey the spectro-temporal properties of fast radio bursts from FRB 20121102A observed by earlier studies across a wide range of frequencies. We investigate 167 bursts from FRB 20121102A spanning frequencies 1–7.5GHz, durations of less than 1 ms to approximately 10 ms, with low and high energies, and with different…
D. Davis, E. Capote
inspiral range Authors: ['D. Davis' 'E. Capote'] The inspiral range is the most common metric for characterizing the performance of ground-based gravitational-wave interferometers. However, there is no clear formalism for working with frequencydependent inspiral range quantities. We introduce a metric for the…
Marion Brickwedde, Yulia Bezsudnova, Anna Kowalczyk, Ole Jensen + 1 more
Brain-computer interfaces (BCI) based on steady-state visual evoked potentials (SSVEPs/SSVEFs) are among the most commonly used BCI systems. They require participants to covertly attend to visual objects flickering at specified frequencies. The attended location is decoded in real-time by analysing the power of…