Results for ' auditory reaction time'

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  1.  30
    Individual differences in simple auditory reaction times of hands, feet and jaws.S. H. Seashore & R. H. Seashore - 1941 - Journal of Experimental Psychology 29 (4):342.
  2.  18
    Auditory reaction time as a function of stimulus intensity, frequency, and rise time.Jeffrey L. Santee & David L. Kohfeld - 1977 - Bulletin of the Psychonomic Society 10 (5):393-396.
  3.  14
    The effect of certain variables on visual and auditory reaction times.G. Forbes - 1945 - Journal of Experimental Psychology 35 (2):153.
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  4.  19
    Joint effects of stimulus intensity and preparatory interval on simple auditory reaction time.Jack Botwinick - 1969 - Journal of Experimental Psychology 80 (2p1):348.
  5.  10
    Secular Slowing of Auditory Simple Reaction Time in Sweden.Guy Madison, Michael A. Woodley of Menie & Justus Sänger - 2016 - Frontiers in Human Neuroscience 10:190223.
    There are indications that simple reaction time might have slowed in Western countries, based on both cohort- and multi-study comparisons. A possible limitation of the latter method in particular is measurement error stemming from methods variance, which results from the fact that instruments and experimental conditions change over time and between studies. We therefore set out to measure the simple auditory reaction time (SRT) of 7,081 individuals (2,997 males and 4,084 females) born in Sweden (...)
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  6.  46
    Effects of 24-hour sleep deprivation on rate of decrement in a 10-minute auditory reaction time task.Hans O. Lisper & Anders Kjellberg - 1972 - Journal of Experimental Psychology 96 (2):287.
  7.  26
    Stimulus intensity effects between and within subjects in auditory reaction time: A variable criterion analysis.G. Robert Grice, Robert Nullmeyer & V. Alan Spiker - 1979 - Bulletin of the Psychonomic Society 14 (3):143-145.
  8.  26
    Auditory S-R compatibility: Reaction time as a function of ear-hand correspondence and ear-response-location correspondence.J. Richard Simon, James V. Hinrichs & John L. Craft - 1970 - Journal of Experimental Psychology 86 (1):97.
  9.  15
    Effects of the intensity of auditory and visual ready signals on simple reaction time.David L. Kohfeld - 1969 - Journal of Experimental Psychology 82 (1p1):88.
  10.  39
    Effects of an auditory signal on visual reaction time.Ira H. Bernstein, Mark H. Clark & Barry A. Edelstein - 1969 - Journal of Experimental Psychology 80 (3p1):567.
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  11.  20
    A comparison of choreic with normal children on the basis of simple reaction times to visual and auditory stimuli.D. A. Bradshaw - 1937 - Journal of Experimental Psychology 20 (2):184.
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  12.  12
    Effect of prewarning on increase in reaction time in an auditory monitoring task.Hans O. Lisper, Lennart Melin & Per O. Sjoden - 1973 - Journal of Experimental Psychology 101 (2):378.
  13.  16
    Effects of signal frequency on increase in reaction time in a 10-minute auditory monitoring task.Hans O. Lisper & Stig Ericsson - 1973 - Journal of Experimental Psychology 98 (2):316.
  14.  35
    Effects of an irrelevant auditory stimulus on visual choice reaction time.J. Richard Simon & John L. Craft - 1970 - Journal of Experimental Psychology 86 (2):272.
  15.  32
    Effects of some variations in auditory input upon visual choice reaction time.Ira H. Bernstein & Barry A. Edelstein - 1971 - Journal of Experimental Psychology 87 (2):241.
  16.  8
    Factors Influencing Saccadic Reaction Time: Effect of Task Modality, Stimulus Saliency, Spatial Congruency of Stimuli, and Pupil Size.Shimpei Yamagishi & Shigeto Furukawa - 2020 - Frontiers in Human Neuroscience 14.
    It is often assumed that the reaction time of a saccade toward visual and/or auditory stimuli reflects the sensitivities of our oculomotor-orienting system to stimulus saliency. Endogenous factors, as well as stimulus-related factors, would also affect the saccadic reaction time. However, it was not clear how these factors interact and to what extent visual and auditory-targeting saccades are accounted for by common mechanisms. The present study examined the effect of, and the interaction between, stimulus (...)
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  17.  13
    Rejection positivity predicts trial-to-trial reaction times in an auditory selective attention task: a computational analysis of inhibitory control.Sufen Chen & Robert D. Melara - 2014 - Frontiers in Human Neuroscience 8.
  18.  17
    Ear Preference in a Simple Reaction-Time Task.J. Richard Simon - 1967 - Journal of Experimental Psychology 75 (1):49.
  19.  45
    Simple reaction time as a function of stimulus intensity in decibels of light and sound.David L. Kohfeld - 1971 - Journal of Experimental Psychology 88 (2):251.
  20.  22
    A study of reaction time using factorial design.B. Baxter - 1942 - Journal of Experimental Psychology 31 (5):430.
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  21.  6
    Age-related decrease in motor contribution to multisensory reaction times in primary school children.Areej A. Alhamdan, Melanie J. Murphy & Sheila G. Crewther - 2022 - Frontiers in Human Neuroscience 16:967081.
    Traditional measurement of multisensory facilitation in tasks such as speeded motor reaction tasks (MRT) consistently show age-related improvement during early childhood. However, the extent to which motor function increases with age and hence contribute to multisensory motor reaction times in young children has seldom been examined. Thus, we aimed to investigate the contribution of motor development to measures of multisensory (auditory, visual, and audiovisual) and visuomotor processing tasks in three young school age groups of children (n = (...)
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  22.  18
    Reaction time to onset and offset of lights and tones: Reactions toward the changed element in a two-element display.J. Richard Simon, John L. Craft & John B. Webster - 1971 - Journal of Experimental Psychology 89 (1):197.
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  23.  8
    Temporal Characteristics of Sensory Interaction in Choice Reaction Times.Lenore K. Morrell - 1968 - Journal of Experimental Psychology 77 (1):14.
  24.  18
    Heart rate and disjunctive reaction time: The effects of discrimination requirements.Connie C. Duncan-Johnson & Michael G. Coles - 1974 - Journal of Experimental Psychology 103 (6):1160.
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  25.  19
    Group factors in simple and discriminative reaction times.R. H. Seashore, R. Starmann, W. E. Kendall & J. S. Helmick - 1941 - Journal of Experimental Psychology 29 (4):346.
  26.  22
    A choice reaction time test of ideomotor theory.Anthony G. Greenwald - 1970 - Journal of Experimental Psychology 86 (1):20.
  27.  24
    Effects of timing signal of simple reaction time with "non-aging" foreperiods.Marilyn Granjon, Jean Requin, Henri Durup & Guy Reynard - 1973 - Journal of Experimental Psychology 101 (1):139.
  28.  18
    Altered Inhibitory Mechanisms in Parkinson’s Disease: Evidence From Lexical Decision and Simple Reaction Time Tasks.Alban Letanneux, Jean-Luc Velay, François Viallet & Serge Pinto - 2021 - Frontiers in Human Neuroscience 15.
    IntroductionAlthough the motor signs of Parkinson’s disease are well defined, nonmotor symptoms, including higher-level language deficits, have also been shown to be frequent in patients with PD. In the present study, we used a lexical decision task to find out whether access to the mental lexicon is impaired in patients with PD, and whether task performance is affected by bradykinesia.Materials and MethodsParticipants were 34 nondemented patients with PD, either without medication or under optimum medication. A total of 19 age-matched control (...)
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  29.  18
    Naming latency facilitation: An analysis of the encoding component in recognition reaction time.Kim Kirsner - 1972 - Journal of Experimental Psychology 95 (1):171.
  30.  11
    Talking to Cows: Reactions to Different Auditory Stimuli During Gentle Human-Animal Interactions.Annika Lange, Lisa Bauer, Andreas Futschik, Susanne Waiblinger & Stephanie Lürzel - 2020 - Frontiers in Psychology 11:579346.
    The quality of the animal-human relationship and, consequently, the welfare of animals can be improved by gentle interactions such as stroking and talking. The perception of different stimuli during these interactions likely plays a key role in their emotional experience, but studies are scarce. During experiments, the standardization of verbal stimuli could be increased by using a recording. However, the use of a playback might influence the perception differently than ‘live’ talking, which is closer to on-farm practice. Thus, we compared (...)
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  31.  77
    Merging the Psychophysical Function With Response Times for Auditory Detection of One vs. Two Tones.Jennifer J. Lentz & James T. Townsend - 2022 - Frontiers in Psychology 13.
    The purpose of this study is to take preliminary steps to unify psychoacoustic techniques with reaction-time methodologies to address the perceptual mechanisms responsible for the detection of one vs. multiple sounds. We measured auditory redundancy gains for auditory detection of pure tones widely spaced in frequency using the tools of Systems Factorial Technology to evince the system architecture and workload capacity in two different scenarios. We adopted an experimental design in which the presence or absence of (...)
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  32.  6
    The processing of auditory and visual recognition of self-stimuli.Susan M. Hughes & Shevon E. Nicholson - 2010 - Consciousness and Cognition 19 (4):1124-1134.
    This study examined self-recognition processing in both the auditory and visual modalities by determining how comparable hearing a recording of one’s own voice was to seeing photograph of one’s own face. We also investigated whether the simultaneous presentation of auditory and visual self-stimuli would either facilitate or inhibit self-identification. Ninety-one participants completed reaction-time tasks of self-recognition when presented with their own faces, own voices, and combinations of the two. Reaction time and errors made when (...)
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  33.  12
    Temporal malleability to auditory feedback perturbation is modulated by rhythmic abilities and auditory acuity.Miriam Oschkinat, Philip Hoole, Simone Falk & Simone Dalla Bella - 2022 - Frontiers in Human Neuroscience 16:885074.
    Auditory feedback perturbation studies have indicated a link between feedback and feedforward mechanisms in speech production when participants compensate for applied shifts. In spectral perturbation studies, speakers with a higher perceptual auditory acuity typically compensate more than individuals with lower acuity. However, the reaction to feedback perturbation is unlikely to be merely a matter of perceptual acuity but also affected by the prediction and production of precise motor action. This interplay between prediction, perception, and motor execution seems (...)
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  34.  10
    Subjective reports of stimulus, response, and decision times in speeded tasks: How accurate are decision time reports?Jeff Miller, Paula Vieweg, Nicolas Kruize & Belinda McLea - 2010 - Consciousness and Cognition 19 (4):1013-1036.
    Four experiments examined how accurately participants can report the times of their own decisions. Within an auditory reaction time task, participants reported the time at which the tone was presented, they decided on the response, or the response key was pressed. Decision time reports were checked for plausibility against the actual RTs, and we compared the effects of experimental manipulations on these two measures to see whether the reported decision times showed appropriate effects. In addition, (...)
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  35.  19
    Visual and auditory coding in a memory matching task.Larry E. Wood - 1974 - Journal of Experimental Psychology 102 (1):106.
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  36.  10
    Strength of auditory stimulus-response compatability as a function of task complexity.James Callan, Diane Klisz & Oscar A. Parsons - 1974 - Journal of Experimental Psychology 102 (6):1039.
  37.  13
    Cross-modal self-recognition: The role of visual, auditory, and olfactory primes.S. Platek - 2004 - Consciousness and Cognition 13 (1):197-210.
    Three priming experiments were conducted to determine how information about the self from different sensory modalities/cognitive domains affects self-face recognition. Being exposed to your body odor, seeing your name, and hearing your name all facilitated self-face recognition in a reaction time task. No similar cross-modal facilitation was found among stimuli from familiar or novel individuals. The finding of a left-hand advantage for self-face recognition was replicated when no primes were presented. These data, along with other recent results suggest (...)
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  38.  19
    The Conditioned Eyelid Reaction.H. Cason - 1922 - Journal of Experimental Psychology 5 (3):153.
  39.  37
    Comparison of the effect of auditory versus visual stimulation on information capacity of discrete motor responses.W. W. Breen, M. J. De Haemer & G. K. Poock - 1969 - Journal of Experimental Psychology 82 (2):395.
  40.  13
    Effects of three-dimension movie visual fatigue on cognitive performance and brain activity.Ryota Akagi, Hiroki Sato, Tatsuya Hirayama, Kosuke Hirata, Masahiro Kokubu & Soichi Ando - 2022 - Frontiers in Human Neuroscience 16:974406.
    To further develop three-dimensional (3D) applications, it is important to elucidate the negative effects of 3D applications on the human body and mind. Thus, this study investigated differences in the effects of visual fatigue on cognition and brain activity using visual and auditory tasks induced by watching a 1-h movie in two dimensions (2D) and 3D. Eighteen young men participated in this study. Two conditions were randomly performed for each participant on different days, namely, watching the 1-h movie on (...)
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  41.  28
    Brain Hemispheres Swap Dominance for Processing Semantically Meaningful Pitch.Xiao-Dong Wang, Hong Xu, Zhen Yuan, Hao Luo, Ming Wang, Hua-Wei Li & Lin Chen - 2021 - Frontiers in Human Neuroscience 15.
    The question of what determines brain laterality for auditory cognitive processing is unresolved. Here, we demonstrate a swap of hemisphere dominance from right to left during semantic interpretation of Chinese lexical tones in native speakers using simultaneously recorded mismatch negativity response and behavioral reaction time during dichotic listening judgment. The mismatch negativity, which is a brain wave response and indexes auditory processing at an early stage, indicated right hemisphere dominance. In contrast, the behavioral reaction (...), which reflects auditory processing at a later stage, indicated a right ear listening advantage, or left hemisphere dominance. The observed swap of hemisphere dominance would not occur when the lexical tone was substituted with a meaningless pure tone. This swap reveals dependence of hemisphere labor division initially on acoustic and then on functional cues of auditory inputs in the processing from sound to meaning. (shrink)
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  42. Unconsciously learning task-irrelevant perceptual sequences.Xiuyan Guo, Shan Jiang, Hongyi Wang, Lei Zhu, Jinghua Tang, Zoltan Dienes & Zhiliang Yang - 2013 - Consciousness and Cognition 22 (1):203-211.
    We demonstrated unconscious learning of task-irrelevant perceptual regularities in a Serial Reaction Time task in both visual and auditory domains. Participants were required to respond to different letters or syllables which occurred in random order. Unbeknownst to participants, the color of the two letters or the tone of the syllables varied according to certain rules. Reaction times indicated that people indeed learnt both the color and tonal regularities indicating that task-irrelevant sequence structure can be learned perceptually. (...)
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  43.  43
    Development of Different Forms of Skill Learning Throughout the Lifespan.Ágnes Lukács & Ferenc Kemény - 2015 - Cognitive Science 39 (2):383-404.
    The acquisition of complex motor, cognitive, and social skills, like playing a musical instrument or mastering sports or a language, is generally associated with implicit skill learning . Although it is a general view that SL is most effective in childhood, and such skills are best acquired if learning starts early, this idea has rarely been tested by systematic empirical studies on the developmental pathways of SL from childhood to old age. In this paper, we challenge the view that childhood (...)
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  44.  17
    Degree of Language Experience Modulates Visual Attention to Visible Speech and Iconic Gestures During Clear and Degraded Speech Comprehension.Linda Drijvers, Julija Vaitonytė & Asli Özyürek - 2019 - Cognitive Science 43 (10):e12789.
    Visual information conveyed by iconic hand gestures and visible speech can enhance speech comprehension under adverse listening conditions for both native and non‐native listeners. However, how a listener allocates visual attention to these articulators during speech comprehension is unknown. We used eye‐tracking to investigate whether and how native and highly proficient non‐native listeners of Dutch allocated overt eye gaze to visible speech and gestures during clear and degraded speech comprehension. Participants watched video clips of an actress uttering a clear or (...)
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  45.  41
    Is there evidence for a noisy computation deficit in developmental dyslexia?Yufei Tan, Valérie Chanoine, Eddy Cavalli, Jean-Luc Anton & Johannes C. Ziegler - 2022 - Frontiers in Human Neuroscience 16:919465.
    The noisy computation hypothesis of developmental dyslexia (DD) is particularly appealing because it can explain deficits across a variety of domains, such as temporal, auditory, phonological, visual and attentional processes. A key prediction is that noisy computations lead to more variable and less stable word representations. A way to test this hypothesis is through repetition of words, that is, when there is noise in the system, the neural signature of repeated stimuli should be more variable. The hypothesis was tested (...)
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  46.  19
    Procedural-Memory, Working-Memory, and Declarative-Memory Skills Are Each Associated With Dimensional Integration in Sound-Category Learning.Carolyn Quam, Alisa Wang, W. Todd Maddox, Kimberly Golisch & Andrew Lotto - 2018 - Frontiers in Psychology 9.
    This paper investigates relationships between procedural-memory, declarative-memory, and working-memory skills and adult native English speakers’ novel sound-category learning. Participants completed a sound-categorization task that required integrating two dimensions: one native (vowel quality), one non-native (pitch). Similar information-integration category structures in the visual and auditory domains have been shown to be best learned implicitly (e.g., Maddox, Ing, & Lauritzen, 2006). Thus, we predicted that individuals with greater procedural-memory capacity would better learn sound categories, because procedural memory appears to support implicit (...)
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  47.  7
    High-Frequency Binaural Beats Increase Cognitive Flexibility: Evidence from Dual-Task Crosstalk.Bernhard Hommel, Roberta Sellaro, Rico Fischer, Saskia Borg & Lorenza S. Colzato - 2016 - Frontiers in Psychology 7:214422.
    Increasing evidence suggests that cognitive-control processes can be configured to optimize either persistence of information processing (by amplifying competition between decision-making alternatives and top-down biasing of this competition) or flexibility (by dampening competition and biasing). We investigated whether high-frequency binaural beats, an auditory illusion suspected to act as a cognitive enhancer, have an impact on cognitive-control configuration. We hypothesized that binaural beats in the gamma range bias the cognitive-control style toward flexibility, which in turn should increase the crosstalk between (...)
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  48.  5
    The Social Meaning of Contextualized Sibilant Alternations in Berlin German.Melanie Weirich, Stefanie Jannedy & Gediminas Schüppenhauer - 2020 - Frontiers in Psychology 11.
    In Berlin, the pronunciation of /ç/ as [ɕ] is associated with the multi-ethnic youth variety. This alternation is also known to be produced by French learners of German. While listeners form socio-cultural interpretations upon hearing language input, the associations differ depending on the listeners’ biases and stereotypes toward speakers or groups. Here, the contrast of interest concerns two speaker groups using the [ç]–[ɕ] alternation: multi-ethnic adolescents from Berlin neighborhoods carrying low social prestige in mainstream German society and French learners of (...)
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  49.  83
    Moral development, executive functioning, peak experiences and brain patterns in professional and amateur classical musicians: Interpreted in light of a Unified Theory of Performance.Frederick Travis, Harald S. Harung & Yvonne Lagrosen - 2011 - Consciousness and Cognition 20 (4):1256-1264.
    This study compared professional and amateur classical musicians matched for age, gender, and education on reaction times during the Stroop color-word test, brainwaves during an auditory ERP task and during paired reaction-time tasks, responses on the Gibbs Sociomoral Reflection questionnaire, and self-reported frequencies of peak experiences. Professional musicians were characterized by: lower color-word interference effects , faster categorization of rare expected stimuli , and a trend for faster processing of rare unexpected stimuli , higher scores on (...)
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  50.  3
    A comparison of connectionist models of music recognition and human performance.Catherine Stevens & Cyril Latimer - 1992 - Minds and Machines 2 (4):379-400.
    Current artificial neural network or connectionist models of music cognition embody feature-extraction and feature-weighting principles. This paper reports two experiments which seek evidence for similar processes mediating recognition of short musical compositions by musically trained and untrained listeners. The experiments are cast within a pattern recognition framework based on the vision-audition analogue wherein music is considered an auditory pattern consisting of local and global features. Local features such as inter-note interval, and global features such as melodic contour, are derived (...)
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