Results for ' response frequency'

990 found
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  1.  27
    Implicit response frequency and recognition memory over time.Mary J. Bach - 1974 - Journal of Experimental Psychology 103 (4):675.
  2.  43
    Stimulus and response frequency and sequential effects in memory scanning reaction times.John Theios & Dennis G. Walter - 1974 - Journal of Experimental Psychology 102 (6):1092.
  3.  28
    Event salience and response frequency on a ten-alternative probability-learning situation.Lee R. Beach & Richard W. Shoenberger - 1965 - Journal of Experimental Psychology 69 (3):312.
  4.  16
    Influence of instructional set and response frequency on retroactive interference.Henry A. Schwartz - 1963 - Journal of Experimental Psychology 66 (2):127.
  5.  25
    Changes in visual spatial organization: Response frequency equalization versus adaptation level.William Steinberg & Robert Sekuler - 1973 - Journal of Experimental Psychology 98 (2):246.
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  6.  25
    Performance in differential conditioning and discrimination learning as a function of hunger and relative response frequency.K. W. Spence, K. P. Goodrich & L. E. Ross - 1959 - Journal of Experimental Psychology 58 (1):8.
  7.  28
    Frequency shifts and response choices.Arnold Binder - 1967 - Journal of Experimental Psychology 73 (3):485.
  8.  48
    The frequency response of skilled subjects in a pursuit tracking task.Merrill Noble, Paul M. Fitts & Claude E. Warren - 1955 - Journal of Experimental Psychology 49 (4):249.
  9.  23
    Verbal response strength as a function of cultural frequency, schedule of reinforcement, and number of trials.Margaret Jean Peterson - 1956 - Journal of Experimental Psychology 52 (6):371.
  10.  18
    Response meaningfulness in paired associates: T-l frequency, m, and number of meanings (dm).Eli Saltz & Vito Modigliani - 1967 - Journal of Experimental Psychology 75 (3):313.
  11.  36
    Perceived frequency of implicit associative responses as a function of frequency of occurrence of list items.Christine E. Vereb & James F. Voss - 1974 - Journal of Experimental Psychology 103 (5):992.
  12.  36
    The response of the cochlea to tones of low frequency.E. G. Wever, C. W. Bray & C. F. Willey - 1937 - Journal of Experimental Psychology 20 (4):336.
  13.  21
    Frequency, recency, and repetition effects on same and different response times.Raymond S. Nickerson - 1973 - Journal of Experimental Psychology 101 (2):330.
  14.  53
    Neural responses to emotional expression information in high- and low-spatial frequency in autism: evidence for a cortical dysfunction.Corrado Corradi-Dell'Acqua, Sophie Schwartz, Emilie Meaux, Bã©Nedicte Hubert, Patrik Vuilleumier & Christine Deruelle - 2014 - Frontiers in Human Neuroscience 8.
  15.  14
    Mechanical response of supercooled ethylbenzene at ultrasonic frequencies.M. Cutroni & A. Mandanici - 2004 - Philosophical Magazine 84 (13-16):1499-1506.
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  16.  12
    Pediatric Responses to Fundamental and Formant Frequency Altered Auditory Feedback: A Scoping Review.Caitlin Coughler, Keelia L. Quinn de Launay, David W. Purcell, Janis Oram Cardy & Deryk S. Beal - 2022 - Frontiers in Human Neuroscience 16.
    PurposeThe ability to hear ourselves speak has been shown to play an important role in the development and maintenance of fluent and coherent speech. Despite this, little is known about the developing speech motor control system throughout childhood, in particular if and how vocal and articulatory control may differ throughout development. A scoping review was undertaken to identify and describe the full range of studies investigating responses to frequency altered auditory feedback in pediatric populations and their contributions to our (...)
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  17.  32
    Word-frequency effect and response bias.D. E. Broadbent - 1967 - Psychological Review 74 (1):1-15.
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  18.  24
    Relation between intersession interval frequency of competing responses and rate of learning.David Premack & Richard T. Putney - 1962 - Journal of Experimental Psychology 63 (3):269.
  19.  35
    Relationship between word frequency and recognition: Perceptual process or response bias?Robert B. Zajonc & B. Nieuwenhuyse - 1964 - Journal of Experimental Psychology 67 (3):276.
  20.  31
    Brain responses to disgusting and fearful pictures with and without high spatial frequencies.Ruiz-Padial Elisabeth, Mendoza M. Teresa, Esteves Francisco & Mata-Martin Jose Luis - 2015 - Frontiers in Human Neuroscience 9.
  21.  38
    Performing Healing: Repetition, Frequency, and Meaning Response in a Chol Maya Ritual.Lydia Rodríguez & Sergio D. López - 2019 - Anthropology of Consciousness 30 (1):42-63.
    This article explores the role that repetition plays in symbolic healing through a close examination of the speech patterns and actions performed by a healer in a Chol Maya ritual aimed at curing a woman of kisiñ—the “embarrassment-sickness.” The authors examine the repetition of speech patterns in the healing chant and the frequency with which other paralinguistic elements, such as taps, co-occur with the chant verses. The sound patterns generated during the ritual, specifically those created by the rhythmic tapping (...)
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  22.  21
    A response to Striker's comments on "Word Values, Word Frequency, and Visual Duration Thresholds.".Ronald C. Johnson, Calvin W. Thompson & Gerald Frincke - 1962 - Psychological Review 69 (3):239-240.
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  23.  32
    Age differences in high frequency phasic heart rate variability and performance response to increased executive function load in three executive function tasks.Dana L. Byrd, Erin T. Reuther, Joseph P. H. McNamara, Teri L. DeLucca & William K. Berg - 2014 - Frontiers in Psychology 5:81401.
    The current study examines similarity or disparity of a frontally mediated physiological response of mental effort among multiple executive functioning tasks between children and adults. Task performance and phasic heart rate variability (HRV) were recorded in children (6 to 10 years old) and adults in an examination of age differences in executive functioning skills during periods of increased demand. Executive load levels were varied by increasing the difficulty levels of three executive functioning tasks: inhibition (IN), working memory (WM), and (...)
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  24.  24
    Recency, frequency, and probability in response prediction.John E. Overall & Lynn W. Brown - 1957 - Psychological Review 64 (5):314-323.
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  25.  41
    Context and frequency effects in the generalization of a human voluntary response.John A. Hebert, Marsha Bullock, Lynn Levitt, Kim Groves Woodward & Frank D. McGuirk - 1974 - Journal of Experimental Psychology 102 (3):456.
  26.  18
    Cue trials, frequency of presentation, and mediating responses.Margaret J. Peterson - 1964 - Journal of Experimental Psychology 67 (5):432.
  27.  9
    Individualized Responses to Ipsilesional High-Frequency and Contralesional Low-Frequency rTMS in Chronic Stroke: A Pilot Study to Support the Individualization of Neuromodulation for Rehabilitation.John Harvey Kindred, Elizabeth Carr Wonsetler, Charalambos Costas Charalambous, Shraddha Srivastava, Barbara Khalibinzwa Marebwa, Leonardo Bonilha, Steven A. Kautz & Mark G. Bowden - 2020 - Frontiers in Human Neuroscience 14.
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  28.  62
    The nature of acoustic response: The relation between sound frequency and frequency of impulses in the auditory nerve.E. G. Wever & C. W. Bray - 1930 - Journal of Experimental Psychology 13 (5):373.
  29.  56
    Retrieval bias and the response relative frequency effect in choice reaction time.Harold L. Hawkins, Kenneth Snippel, Joelle Pressen, Stephen MacKay & Dennis Todd - 1974 - Journal of Experimental Psychology 102 (5):910.
  30.  16
    Responses of somatosensory cortical neurons to spatial frequency and orientation: A progress report.Michael Santa Maria, Joseph King, Min Xie, Bibo Zheng, K. H. Pribram, Don Doherty & Karl H. Pribram - 1995 - In Joseph King & Karl H. Pribram (eds.), Scale in Conscious Experience: Is the Brain Too Important to be Left to the Specialists to Study? Mahwah, N.J.: Lawrence Erlbaum.
  31.  18
    Effects of altered frequencies upon recognition responses.Arnold Binder - 1963 - Journal of Experimental Psychology 66 (6):553.
  32.  22
    Effect of response effort requirement on relative frequency of short interresponse times: CRF and FR-5 reinforcement schedules.Harvard L. Armus - 1988 - Bulletin of the Psychonomic Society 26 (2):139-140.
  33.  38
    Stimulus versus response decisions as determinants of the relative frequency effect in disjunctive reaction-time performance.P. John Dillon - 1966 - Journal of Experimental Psychology 71 (3):321.
  34.  20
    Cortical Hemodynamic Response and Connectivity Modulated by Sub-threshold High-Frequency Repetitive Transcranial Magnetic Stimulation.Rihui Li, Thomas Potter, Jun Wang, Zhixi Shi, Chushan Wang, Lingling Yang, Rosa Chan & Yingchun Zhang - 2019 - Frontiers in Human Neuroscience 13.
  35. How everyone can have a rare property: Response to Sober on frequency-dependent causation.Deborah G. Mayo - 1987 - Philosophy of Science 54 (2):266-276.
    In a recent discussion note Sober (1985) elaborates on the argument given in Sober (1982) to show the inadequacy of Ronald Giere's (1979, 1980) causal model for cases of frequency-dependent causation, and denies that Giere's (1984) response avoids the problem he raises. I argue that frequency-dependent effects do not pose a problem for Giere's original causal model, and that all parties in this dispute have been guity of misinterpreting the counterfactual populations involved in applying Giere's model.
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  36.  12
    Effect of response effort requirement on frequency of short interresponse times.Harvard L. Armus - 1986 - Bulletin of the Psychonomic Society 24 (4):284-285.
  37.  26
    Effect of variation in associative frequency of stimulus and response members on paired-associate learning.George Mandler & Enid H. Campbell - 1957 - Journal of Experimental Psychology 54 (4):269.
  38.  18
    Manipulation of item marginal frequencies by means of multiple-response items.Richard H. Willis - 1960 - Psychological Review 67 (1):32-50.
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  39.  15
    Flicker-Driven Responses in Visual Cortex Change during Matched-Frequency Transcranial Alternating Current Stimulation.Philipp Ruhnau, Christian Keitel, Chrysa Lithari, Nathan Weisz & Toralf Neuling - 2016 - Frontiers in Human Neuroscience 10.
  40. Visual Mismatch Negativity Reflects Enhanced Response to the Deviant: Evidence From Event-Related Potentials and Electroencephalogram Time-Frequency Analysis.Xianqing Zeng, Luyan Ji, Yanxiu Liu, Yue Zhang & Shimin Fu - 2022 - Frontiers in Human Neuroscience 16.
    Automatic detection of information changes in the visual environment is crucial for individual survival. Researchers use the oddball paradigm to study the brain’s response to frequently presented stimuli and occasionally presented stimuli. The component that can be observed in the difference wave is called visual mismatch negativity, which is obtained by subtracting event-related potentials evoked by the deviant from ERPs evoked by the standard. There are three hypotheses to explain the vMMN. The sensory fatigue hypothesis considers that weakened neural (...)
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  41.  29
    Reasons, Years and Frequency of Yoga Practice: Effect on Emotion Response Reactivity.Elisabeth Mocanu, Christine Mohr, Niloufar Pouyan, Simon Thuillard & Elise S. Dan-Glauser - 2018 - Frontiers in Human Neuroscience 12.
  42.  23
    Phonological Task Enhances the Frequency-Following Response to Deviant Task-Irrelevant Speech Sounds.Kimmo Alho, Katarzyna Żarnowiec, Natàlia Gorina-Careta & Carles Escera - 2019 - Frontiers in Human Neuroscience 13.
  43.  6
    Enhancement of frequency judgments by response choice.Melvin H. Marx - 1984 - Bulletin of the Psychonomic Society 22 (1):26-28.
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  44.  19
    Inhibition of learned-response availability: Reduction of cued retrieval by frequency of occurrence and prior recall of target words.Melvin H. Marx & Yung Che Kim - 1984 - Bulletin of the Psychonomic Society 22 (1):29-32.
  45.  82
    The Sense of Sounds: Brain Responses to Phonotactic Frequency, Phonological Grammar and Lexical Meaning.Susana Silva, Marina Vigário, Barbara Leone Fernandez, Rita Jerónimo, Kai Alter & Sónia Frota - 2019 - Frontiers in Psychology 10.
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  46.  46
    Synchronization by the hand: the sight of gestures modulates low-frequency activity in brain responses to continuous speech.Emmanuel Biau & Salvador Soto-Faraco - 2015 - Frontiers in Human Neuroscience 9.
  47.  15
    Conflict-Elicited Negative Evaluations of Neutral Stimuli: Testing Overt Responses and Stimulus-Frequency Differences as Critical Side Conditions.Florian Goller, Alexandra Kroiss & Ulrich Ansorge - 2019 - Frontiers in Psychology 10.
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  48.  12
    Quality of frequency-following response to speech sounds linked with left prefrontal hemodynamic activity using fNIRS+EEG.Benjamin Zinszer, Todd Hay, Alex Athey & Bharath Chandrasekaran - 2018 - Frontiers in Human Neuroscience 12.
  49.  15
    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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  50.  36
    Disentangling Effects of Input Frequency and Morphophonological Complexity on Children's Acquisition of Verb Inflection: An Elicited Production Study of Japanese.Tomoko Tatsumi, Ben Ambridge & Julian M. Pine - 2018 - Cognitive Science 42 (S2):555-577.
    This study aims to disentangle the often-confounded effects of input frequency and morphophonological complexity in the acquisition of inflection, by focusing on simple and complex verb forms in Japanese. Study 1 tested 28 children aged 3;3–4;3 on stative and simple past forms, and Study 2 tested 30 children aged 3;5–5;3 on completive and simple past forms, with both studies using a production priming paradigm. Mixed effects models for children's responses were built to test the prediction that children's verb use (...)
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