Results for 'delay vs. trace heart rate classical discrimination conditioning, interstimulus interval, rabbit'

976 found
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  1.  27
    Delay versus trace heart-rate classical discrimination conditioning in rabbits as a function of interstimulus interval.Alexander A. Manning, Neil Schneiderman & Daniel S. Lordahl - 1969 - Journal of Experimental Psychology 80 (2p1):225.
  2.  28
    Comparison of trace and delay classical eyelid conditioning as a function of interstimulus interval.Susan M. Ross & Leonard E. Ross - 1971 - Journal of Experimental Psychology 91 (1):165.
  3.  13
    Effects of trace versus delay conditioning, interstimulus interval variability, and instructions on UCR diminution.William W. Grings & Anne M. Schell - 1971 - Journal of Experimental Psychology 90 (1):136.
  4.  12
    Divergences among rabbit response systems during three-tone classical discrimination conditioning.Arthur L. Yehle - 1968 - Journal of Experimental Psychology 77 (3p1):468.
  5.  9
    Heart rate changes accompanying differential classical conditioning of somatic response systems in the rabbit.D. A. Powell & Mark Lipkin - 1975 - Bulletin of the Psychonomic Society 5 (1):28-30.
  6.  13
    Second interval discrimination conditioning of the GSR as a function of UCS intensity and trace and delay conditioning paradigms.Arthur R. Zeiner - 1968 - Journal of Experimental Psychology 78 (2p1):276.
  7.  13
    Gradual increase vs. constant-intensity shock during rabbit heart rate conditioning.Arthur L. Yehle & Hsiu-Ying Lai - 1976 - Bulletin of the Psychonomic Society 7 (3):292-294.
  8.  27
    Classical eyelid conditioning as a function of sustained and shifted interstimulus intervals.Harvey C. Ebel & William F. Prokasy - 1963 - Journal of Experimental Psychology 65 (1):52.
  9.  33
    Interstimulus interval effects in GSR discrimination conditioning.Russell A. Lockhart & William W. Grings - 1964 - Journal of Experimental Psychology 67 (3):209.
  10.  20
    Cognitive processes during differential trace and delayed conditioning of the gsr.Paul E. Baer & Marcus J. Fuhrer - 1968 - Journal of Experimental Psychology 78 (1):81.
  11.  22
    Effects of interstimulus interval and discrimination learning in eyelid conditioning using between- and within-ss designs.Gregory A. Kimble, Thomas B. Leonard & Lawrence C. Perlmuter - 1968 - Journal of Experimental Psychology 77 (4):652.
  12.  46
    Response shaping at long interstimulus intervals in classical eyelid conditioning.William F. Prokasy, Harvey C. Ebel & Donald D. Thompson - 1963 - Journal of Experimental Psychology 66 (2):138.
  13.  26
    Heart rate conditioning of goldfish, Carassius auratus, with intermittent vs. continuous CS.Richard T. Erspamer & Merle E. Meyer - 1979 - Bulletin of the Psychonomic Society 13 (6):381-382.
  14.  21
    Heart rate and somatic-motor coupling during classical aversive conditioning in humans.Paul A. Obrist - 1968 - Journal of Experimental Psychology 77 (2):180.
  15.  38
    Time estimation and the interstimulus interval function in classical conditioning.Kurt J. Teller, Richard Dieter & Milton D. Suboski - 1972 - Journal of Experimental Psychology 95 (2):445.
  16.  41
    Differential classical eyelid conditioning as a function of CS intensity, CS rise time, and interstimulus interval.Susan M. Wilcox & Leonard E. Ross - 1969 - Journal of Experimental Psychology 82 (2):272.
  17.  14
    Differential rabbit eyelid conditioning as a function of age, interstimulus interval, and cue similarity.Peter W. Frey - 1969 - Journal of Experimental Psychology 81 (2):326.
  18.  31
    Heart rate during conditioning in humans: Effects of UCS intensity, vagal blockade, and adrenergic block of vasomotor activity.Paul A. Obrist, Donald M. Wood & Mario Perez-Reyes - 1965 - Journal of Experimental Psychology 70 (1):32.
  19.  17
    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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  20.  13
    Response latency as a function of interstimulus interval in conditioned eyelid discrimination.William E. Vandament - 1969 - Journal of Experimental Psychology 82 (3):561.
  21.  10
    Verbal discrimination learning theory and differential eyelid conditioning to related words at three interstimulus intervals.Louise C. Perry - 1976 - Bulletin of the Psychonomic Society 7 (3):299-302.
  22.  15
    Associative symmetry: VI. The effect of varying the interstimulus interval upon backward learning during classical conditioning.Leonard Brosgole & Fred C. Annicelli - 1976 - Bulletin of the Psychonomic Society 8 (3):201-204.
  23.  35
    Diminution and recovery of the UCR in delayed and trace classical GSR conditioning.Ronald Baxter - 1966 - Journal of Experimental Psychology 71 (3):447.
  24.  14
    Effects of hypothermia on Pavlovian conditioning in the rabbit: II. Heart rate response.Lawrence G. Stava & Ralph B. Hupka - 1976 - Bulletin of the Psychonomic Society 7 (3):246-248.
  25.  14
    Effects of interstimulus interval length and variability on habituation of autonomic components of the orienting response.Robert J. Gatchel & Peter J. Lang - 1974 - Journal of Experimental Psychology 103 (4):802.
  26.  26
    Trace and delay differential classical eyelid conditioning in human adults.Susan M. Ross, Leonard E. Ross & Deborah Werden - 1974 - Bulletin of the Psychonomic Society 3 (3):224-226.
  27.  14
    Experimental Study on the Effect of Urban Road Traffic Noise on Heart Rate Variability of Noise-Sensitive People.Chao Cai, Yanan Xu, Yan Wang, Qikun Wang & Lu Liu - 2022 - Frontiers in Psychology 12.
    Epidemiological studies have confirmed that long-term exposure to road traffic noise can cause cardiovascular diseases, and when noise exposure reaches a certain level, the risk of related CDs significantly increases. Currently, a large number of Chinese residents are exposed to high noise exposure, which could greatly increase the risk of cardiovascular disease. On the other hand, relevant studies have found that people with high noise sensitivity are more susceptible to noise. And it is necessary to pay more attention to the (...)
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  28.  14
    HIIT Models in Addition to Training Load and Heart Rate Variability Are Related With Physiological and Performance Adaptations After 10-Weeks of Training in Young Futsal Players.Fernando de Souza Campos, Fernando Klitzke Borszcz, Renan Felipe Hartmann Nunes & Luiz Guilherme Antonacci Guglielmo - 2021 - Frontiers in Psychology 12:636153.
    Introduction: The present study aimed to investigate the effects of two high-intensity interval training shuttle-run-based models, over ten weeks on aerobic, anaerobic, and neuromuscular parameters, and the association of the training load and heart rate variability with the change in the measures in young futsal players. Methods: Eleven young male futsal players participated in this study. This pre-post study design was performed during a typical 10 weeks training period. HIIT sessions were conducted at 86% and 100% of peak (...)
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  29.  9
    The interstimulus interval and the latency of the conditioned eyelid response.C. Alan Boneau - 1958 - Journal of Experimental Psychology 56 (6):464.
  30.  25
    Interstimulus interval and CS duration effects in differential conditioning.Laird S. Cermak & Delos D. Wickens - 1969 - Journal of Experimental Psychology 79 (2p1):233.
  31.  14
    Discrimination, contrast, and chaining effects of prior training without discriminanda and response-contingent delay of discriminandum presentation.John R. Platt, Peter C. Senkowski & Robert Mann - 1969 - Journal of Experimental Psychology 82 (1p1):38.
  32.  35
    Interstimulus interval and time estimation in ratings of signaled shock aversiveness.Milton D. Suboski, Tonnar G. Brace, Louise A. Jarrold, Kurt J. Teller & Richard Dieter - 1972 - Journal of Experimental Psychology 96 (2):407.
  33.  11
    Acquisition and extinction rates as determinants of age changes in discrimination shift behavior.Donald J. Dickerson, Neil Novik & Sharon A. Gould - 1972 - Journal of Experimental Psychology 95 (1):116.
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  34.  16
    Probability of conditioned responses as a function of variable intertrial intervals.Karl Haberlandt, Kevin C. Hails & Robert Leghorn - 1974 - Journal of Experimental Psychology 102 (3):522.
  35.  15
    Bimodal Presentation Speeds up Auditory Processing and Slows Down Visual Processing.Christopher W. Robinson, Robert L. Moore & Thomas A. Crook - 2018 - Frontiers in Psychology 9:395363.
    Many situations require the simultaneous processing of auditory and visual information, however, stimuli presented to one sensory modality can sometimes interfere with processing in a second sensory modality (i.e., modality dominance). The current study further investigated modality dominance by examining how task demands and bimodal presentation affect speeded auditory and visual discriminations. Participants in the current study had to quickly determine if two words, two pictures, or two word-picture pairings were the same or different, and we manipulated task demands across (...)
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  36.  14
    Conditioning the human heart rate with noise as the unconditioned stimulus.George De Leon - 1964 - Journal of Experimental Psychology 68 (5):518.
  37.  13
    Heart rate and muscle tension correlates of conditioned suppression in humans.Janice A. Di Giusto, Eros L. Di Giusto & Maurice G. King - 1974 - Journal of Experimental Psychology 103 (3):515.
  38.  7
    Reducing Generalization of Conditioned Fear: Beneficial Impact of Fear Relevance and Feedback in Discrimination Training.Katharina Herzog, Marta Andreatta, Kristina Schneider, Miriam A. Schiele, Katharina Domschke, Marcel Romanos, Jürgen Deckert & Paul Pauli - 2021 - Frontiers in Psychology 12.
    Anxiety patients over-generalize fear, possibly because of an incapacity to discriminate threat and safety signals. Discrimination trainings are promising approaches for reducing such fear over-generalization. Here we investigated the efficacy of a fear-relevant vs. a fear-irrelevant discrimination training on fear generalization and whether the effects are increased with feedback during training. Eighty participants underwent two fear acquisition blocks, during which one face, but not another face, was associated with a female scream. During two generalization blocks, both CSs plus (...)
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  39.  25
    Effects of stimulus complexity, interstimulus interval, and masking task conditions in differential eyelid conditioning.Melanie J. Mayer & Leonard E. Ross - 1969 - Journal of Experimental Psychology 81 (3):469.
  40.  12
    Gsr conditioning with long interstimulus intervals.Mitchel C. Morrow & Thomas E. Keough - 1968 - Journal of Experimental Psychology 77 (3p1):460.
  41.  27
    Effect of interstimulus interval on conditioning of voluntary instructed responses.Lawrence C. Perlmuter, Alan M. Fink, Gary A. Taylor & Gregory A. Kimble - 1969 - Journal of Experimental Psychology 79 (3p1):403.
  42. Heart-rate conditioning when pentobarbital injections are paired with amphetamine injections.S. Revusky, V. Davey & M. Zagorski - 1987 - Bulletin of the Psychonomic Society 25 (5):345-345.
  43.  9
    Conditioning of the rabbit nictitating membrane response as a function of trials per session and ISI with a short intersession interval.W. Ronald Salafia, Anthony P. Daston & Linda J. Martino - 1976 - Bulletin of the Psychonomic Society 7 (3):343-344.
  44.  13
    Reversal of an instrumental discrimination by classical discriminative conditioning.Milton A. Trapold, Douglas M. Gross & George W. Lawton - 1968 - Journal of Experimental Psychology 78 (4p1):686.
  45.  41
    Differences Between High vs. Low Performance Chess Players in Heart Rate Variability During Chess Problems.Juan P. Fuentes-García, Santos Villafaina, Daniel Collado-Mateo, Ricardo de la Vega, Pedro R. Olivares & Vicente Javier Clemente-Suárez - 2019 - Frontiers in Psychology 10.
    Background: Heart rate variability (HRV) has been considered as a measure of heart-brain interaction and autonomic modulation, and it is modified by cognitive and attentional tasks. In cognitive tasks, HRV was reduced in participants who achieved worse results. This could indicate the possibility of HRV predicting cognitive performance, but this association is still unclear in a high cognitive load sport such as chess Objective: To analyse modifications on HRV and subjective perception of stress, difficulty and complexity in (...)
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  46.  24
    Effect of explicit trial-by-trial information about shock probability in long interstimulus interval GSR conditioning.Arne Ohman, Par A. Bjorkstrand & Per E. Ellstrom - 1973 - Journal of Experimental Psychology 98 (1):145.
  47.  11
    Effect of UCS intensity upon the acquisition of conditioned responses acquired under a lengthened interstimulus interval.Kenneth R. Burstein - 1965 - Journal of Experimental Psychology 70 (2):147.
  48.  17
    Cognitive factors in heart rate conditioning.Bishwa B. Chatterjee & Charles W. Eriksen - 1962 - Journal of Experimental Psychology 64 (3):272.
  49.  15
    Heart rate conditioning in goldfish (Carassius auratus) and not in rainbow trout.Richard T. Erspamer & Merle E. Meyer - 1978 - Bulletin of the Psychonomic Society 11 (6):347-348.
  50.  15
    Human eyelid conditioning as a function of interstimulus interval.Harold D. Fishbein & Mary Leblanc - 1967 - Journal of Experimental Psychology 75 (1):130.
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