Results for 'stimulus generalization curves for auditory intensity, pigeon'

986 found
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  1.  25
    On the form of stimulus generalization curves for auditory intensity.Eric G. Heinemann & Sheila Chase - 1970 - Journal of Experimental Psychology 84 (3):483.
  2.  24
    Conditional stimulus control.Eric G. Heinemann & Sheila Chase - 1970 - Journal of Experimental Psychology 84 (2):187.
  3.  36
    Analysis of stimulus generalization with a psychophysical method.Eric G. Heinemann, Edward Avin, Mary A. Sullivan & Sheila Chase - 1969 - Journal of Experimental Psychology 80 (2p1):215.
  4.  30
    Supplementary report: Stimulus generalization gradients along a luminosity continuum.Gary Olson & Richard A. King - 1962 - Journal of Experimental Psychology 63 (4):414.
  5.  26
    Influence of frequency on the estimation of time for auditory, visual, and tactile modalities: The kappa effect.Darryl A. Yoblick & Gavriel Salvendy - 1970 - Journal of Experimental Psychology 86 (2):157.
  6.  22
    Stimulus generalization along one and two dimensions in pigeons.Charles M. Butter - 1963 - Journal of Experimental Psychology 65 (4):339.
  7.  14
    The Roles of Consonant, Rime, and Tone in Mandarin Spoken Word Recognition: An Eye-Tracking Study.Ting Zou, Yutong Liu & Huiting Zhong - 2022 - Frontiers in Psychology 12.
    This study investigated the relative role of sub-syllabic components in spoken word recognition of Mandarin Chinese using an eye-tracking experiment with a visual world paradigm. Native Mandarin speakers were presented with four pictures and an auditory stimulus. They were required to click the picture according to the sound stimulus they heard, and their eye movements were tracked during this process. For a target word, nine conditions of competitors were constructed in terms of the amount of their phonological (...)
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  8.  25
    Stimulus generalization as a function of UCS intensity in eyelid conditioning.John J. Porter - 1962 - Journal of Experimental Psychology 64 (3):311.
  9.  52
    TMS effects on subjective and objective measures of vision: Stimulation intensity and pre- versus post-stimulus masking.Tom A. de Graaf, Sonja Cornelsen, Christianne Jacobs & Alexander T. Sack - 2011 - Consciousness and Cognition 20 (4):1244-1255.
    Transcranial magnetic stimulation can be used to mask visual stimuli, disrupting visual task performance or preventing visual awareness. While TMS masking studies generally fix stimulation intensity, we hypothesized that varying the intensity of TMS pulses in a masking paradigm might inform several ongoing debates concerning TMS disruption of vision as measured subjectively versus objectively, and pre-stimulus versus post-stimulus TMS masking. We here show that both pre-stimulus TMS pulses and post-stimulus TMS pulses could strongly mask visual stimuli. (...)
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  10.  21
    Surface Stickiness Perception by Auditory, Tactile, and Visual Cues.Hyungeol Lee, Eunsil Lee, Jiye Jung & Junsuk Kim - 2019 - Frontiers in Psychology 10:471990.
    This study aimed to explore the psychophysical bases of multisensory surface stickiness perception by investigating how sensitively humans perceive different levels of stickiness intensity conveyed by auditory, tactile, and visual cues. First, we sorted five different sticky stimuli by perceived intensity in ascending order for each modality separately and evaluated the discrimination sensitivities of each participant using a fitted psychometric curve. Results showed that perceptual intensity orders were not identical to physical intensity order and that the sequential order of (...)
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  11.  46
    Suppression of Pitch Labeling: No Evidence for an Impact of Absolute Pitch on Behavioral and Neurophysiological Measures of Cognitive Inhibition in an Auditory Go/Nogo Task.Marielle Greber & Lutz Jäncke - 2020 - Frontiers in Human Neuroscience 14:585505.
    Pitch labeling in absolute pitch (AP), the ability to recognize the pitch class of a sound without an external reference, is effortless, fast, and presumably automatic. Previous studies have shown that pitch labeling in AP can interfere with task demands. In the current study, we used a cued auditory Go/Nogo task requiring same/different decisions to investigate both behavioral and electrophysiological correlates of increased inhibitory demands related to automatic pitch labeling. The task comprised two Nogo conditions: a Nogo condition with (...)
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  12.  50
    Measurement of sensory intensity.Richard M. Warren - 1981 - Behavioral and Brain Sciences 4 (2):175-189.
    The measurement of sensory intensity has had a long history, attracting the attention of investigators from many disciplines including physiology, psychology, physics, mathematics, philosophy, and even chemistry. While there has been a continuing doubt by some that sensation has the properties necessary for measurement, experiments designed to obtain estimates of sensory intensity have found that a general rule applies: Equal stimulus ratios produce equal sensory ratios. Theories concerning the basis for this simple psychophysical rule are discussed, with emphasis given (...)
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  13.  27
    Time-intensity equivalence relations for auditory pulse trains.Irwin Pollack - 1973 - Journal of Experimental Psychology 100 (2):239.
  14.  1
    General conditions for research ethics in data-intensive medical research.Urban Wiesing & Florian Funer - 2024 - Ethik in der Medizin 36 (4):459-472.
    Definition of the problem The research and regulatory levels for data-intensive research in medicine are divergent. This results in a heterogeneous global field of regulating institutions with regionally unequal regulations, both in terms of the depth and restrictiveness of regulations. Despite or precisely because of the lack of globally binding regulation, nonbinding or only partially binding normative guidelines can also serve as orientation. But how should such normative regulation be designed in view of data-intensive research in medicine and what should (...)
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  15.  31
    Stimulus generalization after training on three stimuli: A test of the summation hypothesis.Harry I. Kalish & Norman Guttman - 1959 - Journal of Experimental Psychology 57 (4):268.
  16.  32
    Stimulus generalization as a function of testing procedure and response measure.Richard H. Hiss & David R. Thomas - 1963 - Journal of Experimental Psychology 65 (6):587.
  17.  37
    Training-Induced Changes in Rapid Auditory Processing in Children With Specific Language Impairment: Electrophysiological Indicators.Anna Dacewicz, Aneta Szymaszek, Kamila Nowak & Elzbieta Szelag - 2018 - Frontiers in Human Neuroscience 12:322883.
    The brain’s ability to recognize acoustic changes occurring in rapid temporal succession is important for speech and successful language development. Children with specific language impairment (SLI) are characterized by deficient dynamics of temporal information processing (TIP) in the millisecond time range accompanied by disordered language development. Furthermore, previous studies have found that intervention based on amelioration of TIP resulted in improvement of both language and other cognitive functions. This study aimed to explain the changes associated with TIP training from the (...)
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  18.  21
    Stimulus generalization as a function of drive shift.Robert B. Zajonc & David V. Cross - 1965 - Journal of Experimental Psychology 69 (4):363.
  19.  68
    Do Auditory Mismatch Responses Differ Between Acoustic Features?HyunJung An, Shing Ho Kei, Ryszard Auksztulewicz & Jan W. H. Schnupp - 2021 - Frontiers in Human Neuroscience 15.
    Mismatch negativity is the electroencephalographic waveform obtained by subtracting event-related potential responses evoked by unexpected deviant stimuli from responses evoked by expected standard stimuli. While the MMN is thought to reflect an unexpected change in an ongoing, predictable stimulus, it is unknown whether MMN responses evoked by changes in different stimulus features have different magnitudes, latencies, and topographies. The present study aimed to investigate whether MMN responses differ depending on whether sudden stimulus change occur in pitch, duration, (...)
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  20.  18
    Formulation of a generalization surface for the simultaneous variation of stimulus and response similarity.Michael Shea - 1969 - Journal of Experimental Psychology 80 (2p1):353.
  21.  65
    Measuring consciousness: Task accuracy and awareness as sigmoid functions of stimulus duration.Kristian Sandberg, Bo Martin Bibby, Bert Timmermans, Axel Cleeremans & Morten Overgaard - 2011 - Consciousness and Cognition 20 (4):1659-1675.
    When consciousness is examined using subjective ratings, the extent to which processing is conscious or unconscious is often estimated by calculating task performance at the subjective threshold or by calculating the correlation between accuracy and awareness. However, both these methods have certain limitations. In the present article, we propose describing task accuracy and awareness as functions of stimulus intensity as suggested by Koch and Preuschoff . The estimated lag between the curves describes how much stimulus intensity must (...)
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  22.  48
    Stimulus generalization of a positive conditioned reinforcer: III. The new learning method.Salvatore C. Caronite & David R. Thomas - 1966 - Journal of Experimental Psychology 71 (3):385.
  23.  17
    Certain relationships between stimulus intensity and stimulus generalization.William Heyman - 1957 - Journal of Experimental Psychology 53 (4):239.
  24.  48
    Audiovisual Cross-Modal Correspondences in the General Population.Cesare Parise & Charles Spence - 2013 - In Julia Simner & Edward M. Hubbard (eds.), Oxford Handbook of Synesthesia. Oxford University Press.
    For more than a century now, researchers have acknowledged the existence of seemingly arbitrary crossmodal congruency effects between dimensions of sensory stimuli in the general population. Such phenomena, known by a variety of terms including 'crossmodal correspondences', involve individual stimulus properties, rely on a crossmodal mapping of unisensory features, and appear to be shared by the majority of individuals. In other words, members of the general population share underlying preferences for specific pairings across the senses. Crossmodal correspondences between complementary (...)
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  25.  26
    A model for stimulus generalization in Pavlovian conditioning.John M. Pearce - 1987 - Psychological Review 94 (1):61-73.
  26.  28
    Stimulus generalization after equal training on two stimuli.Harry I. Kalish & Norman Guttman - 1957 - Journal of Experimental Psychology 53 (2):139.
  27.  35
    Stimulus generalization following fixed interval training.Dorothy S. Konick & David R. Thomas - 1968 - Journal of Experimental Psychology 77 (4):689.
  28.  23
    Stimulus generalization along the dimension of S+ as a function of discrimination learning with and without error.Joseph Lyons - 1969 - Journal of Experimental Psychology 81 (1):95.
  29.  31
    Stimulus intensity dynamism (V) and stimulus generalization.Clark L. Hull - 1949 - Psychological Review 56 (2):67-76.
  30.  13
    Similarity space for auditory signals differing in frequency and intensity.Irwin Pollack & Naif Khouri - 1979 - Bulletin of the Psychonomic Society 13 (4):209-211.
  31.  23
    Stimulus generalization as a function of level of motivation.David R. Thomas & Richard A. King - 1959 - Journal of Experimental Psychology 57 (5):323.
  32.  14
    A Cognitive Interpretation of Intensity Effects in Stimulus Generalization.Frank Restle - 1964 - Psychological Review 71 (6):514-516.
  33.  27
    Stimulus generalization of a positive conditioned reinforcer: II. Effects of discrimination training.David R. Thomas & Salvatore C. Caronite - 1964 - Journal of Experimental Psychology 68 (4):402.
  34.  34
    Relative priming of temporal local-global levels in auditory hierarchical stimuli.Alexandra List & Timothy Justus - 2010 - Attention, Perception, and Psychophysics 72 (1):193–208.
    Priming is a useful tool for ascertaining the circumstances under which previous experiences influence behavior. Previously, using hierarchical stimuli, we demonstrated (Justus & List, 2005) that selectively attending to one temporal scale of an auditory stimulus improved subsequent attention to a repeated (vs. changed) temporal scale; that is, we demonstrated intertrial auditory temporal level priming. Here, we have extended those results to address whether level priming relied on absolute or relative temporal information. Both relative and absolute temporal (...)
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  35.  59
    Discriminability and stimulus generalization.Norman Guttman & Harry I. Kalish - 1956 - Journal of Experimental Psychology 51 (1):79.
  36.  42
    Intensity of the conditioned stimulus and strength of conditioning: II. The conditioned galvanic skin response to an auditory stimulus.David A. Grant & Dorothy E. Schneider - 1949 - Journal of Experimental Psychology 39 (1):35.
  37.  26
    A model for stimulus generalization and discrimination.Robert R. Bush & Frederick Mosteller - 1951 - Psychological Review 58 (6):413-423.
  38.  37
    Stimulus generalization of a positive conditioned reinforcer: IV. Concurrent generalization of reinforcing and discriminative stimulus functions following fixed-interval training.David R. Thomas & Donald V. Derosa - 1966 - Journal of Experimental Psychology 72 (2):260.
  39.  25
    Primary stimulus generalization in discrimination learning as a function of number of trials and incidental cue differences.Leopold O. Walder - 1961 - Journal of Experimental Psychology 61 (2):178.
  40.  26
    Is Emotional Magnitude Spatialized? A Further Investigation.Kevin J. Holmes, Candelaria Alcat & Stella F. Lourenco - 2019 - Cognitive Science 43 (4):e12727.
    Accumulating evidence suggests that different magnitudes (e.g., number, size, and duration) are spatialized in the mind according to a common left–right metric, consistent with a generalized system for representing magnitude. A previous study conducted by two of us (Holmes & Lourenco, ) provided evidence that this metric extends to the processing of emotional magnitude, or the intensity of emotion expressed in faces. Recently, however, Pitt and Casasanto () showed that the earlier effects may have been driven by a left–right mapping (...)
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  41.  23
    Combining Gamma With Alpha and Beta Power Modulation for Enhanced Cortical Mapping in Patients With Focal Epilepsy.Mario E. Archila-Meléndez, Giancarlo Valente, Erik D. Gommer, João M. Correia, Sanne ten Oever, Judith C. Peters, Joel Reithler, Marc P. H. Hendriks, William Cornejo Ochoa, Olaf E. M. G. Schijns, Jim T. A. Dings, Danny M. W. Hilkman, Rob P. W. Rouhl, Bernadette M. Jansma, Vivianne H. J. M. van Kranen-Mastenbroek & Mark J. Roberts - 2020 - Frontiers in Human Neuroscience 14.
    About one third of patients with epilepsy have seizures refractory to the medical treatment. Electrical stimulation mapping is the gold standard for the identification of “eloquent” areas prior to resection of epileptogenic tissue. However, it is time-consuming and may cause undesired side effects. Broadband gamma activity recorded with extraoperative electrocorticography during cognitive tasks may be an alternative to ESM but until now has not proven of definitive clinical value. Considering their role in cognition, the alpha and beta bands could further (...)
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  42.  37
    Common or distinct deficits for auditory and visual hallucinations?Johanna C. Badcock & Murray T. Maybery - 2005 - Behavioral and Brain Sciences 28 (6):757-758.
    The dual-deficit model of visual hallucinations (Collerton et al. target article) is compared with the dual-deficit model of auditory hallucinations (Waters et al., in press). Differences in cognitive mechanisms described may be superficial. Similarities between these models may provide the basis for a general model of complex hallucinations extended across disorders and modalities, involving shared (overlapping) cognitive processes.
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  43.  26
    Effects of context on the postdiscrimination gradient of stimulus generalization.John W. Donahoe, James H. McCroskery & W. Kirk Richardson - 1970 - Journal of Experimental Psychology 84 (1):58.
  44.  50
    Analysis of the Validity of Kuznets Curve of Energy Intensity among D-8 Countries: Panel-ARDL Approach.Parto Fazli & Ebrahim Abbasi - 2018 - International Letters of Social and Humanistic Sciences 81:1-12.
    Publication date: 16 April 2018 Source: Author: Parto Fazli, Ebrahim Abbasi The objective of the study is to test experimentally the Kuznets curve of energy intensity in selected developing countries with the focus of D-8 countries during 1990-2014. According to the results, and by using the static and dynamic estimators and the Panel- ARDL model, the Kuznets curve was accepted for energy intensity and the per capita income threshold was estimated $3931.25. The urbanization rate and the degree of industrialization have (...)
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  45.  28
    Joint effects of stimulus intensity and preparatory interval on simple auditory reaction time.Jack Botwinick - 1969 - Journal of Experimental Psychology 80 (2p1):348.
  46.  32
    Effects of discrimination training on stimulus generalization for human subjects.Theodore J. Doll & David R. Thomas - 1967 - Journal of Experimental Psychology 75 (4):508.
  47.  27
    Comparison of stimulus generalization following variable-ratio and variable-interval training.David R. Thomas & Richard W. Switalski - 1966 - Journal of Experimental Psychology 71 (2):236.
  48.  15
    Stimulus intensity, site of stimulation, and individual reactivity as determinants of the energy threshold for pricking pain.Donald J. Dillon - 1968 - Journal of Experimental Psychology 77 (4):559.
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  49.  72
    Piéron's Law Holds During Stroop Conflict: Insights Into the Architecture of Decision Making.Tom Stafford, Leanne Ingram & Kevin N. Gurney - 2011 - Cognitive Science 35 (8):1553-1566.
    Piéron's Law describes the relationship between stimulus intensity and reaction time. Previously (Stafford & Gurney, 2004), we have shown that Piéron's Law is a necessary consequence of rise-to-threshold decision making and thus will arise from optimal simple decision-making algorithms (e.g., Bogacz, Brown, Moehlis, Holmes, & Cohen, 2006). Here, we manipulate the color saturation of a Stroop stimulus. Our results show that Piéron's Law holds for color intensity and color-naming reaction time, extending the domain of this law, in line (...)
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  50.  37
    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.
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