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  1. Evidential Reasoning.Marcello Di Bello & Bart Verheij - 2011 - In G. Bongiovanni, Don Postema, A. Rotolo, G. Sartor, C. Valentini & D. Walton (eds.), Handbook in Legal Reasoning and Argumentation. Dordrecht, Netherland: Springer. pp. 447-493.
    The primary aim of this chapter is to explain the nature of evidential reasoning, the characteristic difficulties encountered, and the tools to address these difficulties. Our focus is on evidential reasoning in criminal cases. There is an extensive scholarly literature on these topics, and it is a secondary aim of the chapter to provide readers the means to find their way in historical and ongoing debates.
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  • Revealing the mechanisms of human face perception using dynamic apertures.Jennifer Murphy & Richard Cook - 2017 - Cognition 169 (C):25-35.
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  • Developmental Commonalities between Object and Face Recognition in Adolescence.Martin Jüttner, Elley Wakui, Dean Petters & Jules Davidoff - 2016 - Frontiers in Psychology 7.
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  • The sensitivity to replacement and displacement of the eyes region in early adolescence, young and later adulthood.Bozana Meinhardt-Injac, Malte Persike, Margarete Imhof & Günter Meinhardt - 2015 - Frontiers in Psychology 6.
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  • Stimulus Requirements for Face Perception: An Analysis Based on “Totem Poles”.Carrie L. Paras & Michael A. Webster - 2013 - Frontiers in Psychology 4.
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  • Identifying Sources of Configurality in Three Face Processing Tasks.Natalie Mestry, Tamaryn Menneer, Michael J. Wenger & Nick Donnelly - 2012 - Frontiers in Psychology 3.
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  • Nonconscious Influences from Emotional Faces: A Comparison of Visual Crowding, Masking, and Continuous Flash Suppression.Nathan Faivre, Vincent Berthet & Sid Kouider - 2012 - Frontiers in Psychology 3.
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  • Infants’ perception of chasing.Willem E. Frankenhuis, Bailey House, H. Clark Barrett & Scott P. Johnson - 2013 - Cognition 126 (2):224-233.
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  • Using regression to measure holistic face processing reveals a strong link with face recognition ability.Joseph DeGutis, Jeremy Wilmer, Rogelio J. Mercado & Sarah Cohan - 2013 - Cognition 126 (1):87-100.
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  • Individual Differences in (Non‐Visual) Processing Style Predict the Face Inversion Effect.Natalie A. Wyer, Douglas Martin, Tracey Pickup & C. Neil Macrae - 2012 - Cognitive Science 36 (2):373-384.
    Recent research suggests that individuals with relatively weak global precedence (i.e., a smaller propensity to view visual stimuli in a configural manner) show a reduced face inversion effect (FIE). Coupled with such findings, a number of recent studies have demonstrated links between an advantage for feature‐based processing and the presentation of traits associated with autism among the general population. The present study sought to bridge these findings by investigating whether a relationship exists between the possession of autism‐associated traits (i.e., as (...)
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  • Two Routes to Face Perception: Evidence From Psychophysics and Computational Modeling.Adrian Schwaninger, Janek S. Lobmaier, Christian Wallraven & Stephan Collishaw - 2009 - Cognitive Science 33 (8):1413-1440.
    The aim of this study was to separately analyze the role of featural and configural face representations. Stimuli containing only featural information were created by cutting the faces into their parts and scrambling them. Stimuli only containing configural information were created by blurring the faces. Employing an old‐new recognition task, the aim of Experiments 1 and 2 was to investigate whether unfamiliar faces (Exp. 1) or familiar faces (Exp. 2) can be recognized if only featural or configural information is provided. (...)
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  • Making the ineffable explicit: estimating the information employed for face classifications.Michael C. Mangini & Irving Biederman - 2004 - Cognitive Science 28 (2):209-226.
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  • Magic at the marketplace: Choice blindness for the taste of jam and the smell of tea.Lars Hall, Petter Johansson, Betty Tärning, Sverker Sikström & Thérèse Deutgen - 2010 - Cognition 117 (1):54-61.
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  • Specificity of face processing without awareness.Guomei Zhou, Lingxiao Zhang, Jinting Liu, Jiaoteng Yang & Zhe Qu - 2010 - Consciousness and Cognition 19 (1):408-412.
    The recognition memory for inverted faces is especially difficult when compared with that for non-face stimuli. This face inversion effect has often been used as a marker of face-specific holistic processing. However, whether face processing without awareness is still specific remains unknown. The present study addressed this issue by examining the face inversion effect with the technique of binocular rivalry. Results showed that invisible upright faces could break suppression faster than invisible inverted faces. Nevertheless, no difference was found for invisible (...)
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  • In what sense 'familiar'? Examining experiential differences within pathologies of facial recognition.Garry Young - 2009 - Consciousness and Cognition 18 (3):628-638.
    Explanations of Capgras delusion and prosopagnosia typically incorporate a dual-route approach to facial recognition in which a deficit in overt or covert processing in one condition is mirror-reversed in the other. Despite this double dissociation, experiences of either patient-group are often reported in the same way – as lacking a sense of familiarity toward familiar faces. In this paper, deficits in the facial processing of these patients are compared to other facial recognition pathologies, and their experiential characteristics mapped onto the (...)
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  • The content and acquisition of lexical concepts.Richard Horsey - 2006
    This thesis aims to develop a psychologically plausible account of concepts by integrating key insights from philosophy (on the metaphysical basis for concept possession) and psychology (on the mechanisms underlying concept acquisition). I adopt an approach known as informational atomism, developed by Jerry Fodor. Informational atomism is the conjunction of two theses: (i) informational semantics, according to which conceptual content is constituted exhaustively by nomological mind–world relations; and (ii) conceptual atomism, according to which (lexical) concepts have no internal structure. I (...)
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  • Faces and brains: The limitations of brain scanning in cognitive science.Christopher Mole, Corey Kubatzky, Jan Plate, Rawdon Waller, Marilee Dobbs & Marc Nardone - 2007 - Philosophical Psychology 20 (2):197 – 207.
    The use of brain scanning now dominates the cognitive sciences, but important questions remain to be answered about what, exactly, scanning can tell us. One corner of cognitive science that has been transformed by the use of neuroimaging, and that a scanning enthusiast might point to as proof of scanning's importance, is the study of face perception. Against this view, we argue that the use of scanning has, in fact, told us rather little about the information processing underlying face perception (...)
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  • Perception of Faces and Other Progressively Higher-Order Properties.Fabrizio Calzavarini & Alberto Voltolini - 2022 - Topoi 41 (4):671-684.
    On the basis of a new criterion for a property to be perceivable–a property is perceivable iff it is not only given immediately and non-volitionally, but also grasped via a holistic form of attention–in this paper we will claim that not only facial properties, but other high-order properties located in a hierarchy of high-order properties, notably gender and racial properties, are perceivable as well. Such claims will be both theoretically and empirically justified.
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  • Predicting Performances on Processing and Memorizing East Asian Faces from Brain Activities in Face-Selective Regions: A Neurocomputational Approach.Gary C.-W. Shyi, Peter K.-H. Cheng, S. -T. Tina Huang, C. -C. Lee, Felix F.-S. Tsai, Wan-Ting Hsieh & Becky Y.-C. Chen - 2020 - Frontiers in Human Neuroscience 14.
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  • Specialized Visual Experiences.Casey Landers - 2021 - Philosophical Quarterly 71 (1):74-98.
    Through extensive training, experts acquire specialized knowledge and abilities. In this paper, I argue that experts also acquire specialized visual experiences. Specifically, I articulate and defend the account that experts enjoy visual experiences that represent gestalt properties through perceptual learning. I survey an array of empirical studies on face perception and perceptual expertise that support this account. I also look at studies on perceptual adaptation that some might argue present a problem for my account. I show how the data are (...)
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  • Composite Face Effect Predicts Configural Encoding in Visual Short-Term Memory.Lilian Azer & Weiwei Zhang - 2019 - Frontiers in Psychology 10.
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  • From Global-to-Local? Uncovering the Temporal Dynamics of the Composite Face Illusion Using Distributional Analyses.Daniel Fitousi - 2019 - Frontiers in Psychology 10.
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  • The Word Composite Effect Depends on Abstract Lexical Representations But Not Surface Features Like Case and Font.Paulo Ventura, Tânia Fernandes, Isabel Leite, Vítor B. Almeida, Inês Casqueiro & Alan C.-N. Wong - 2017 - Frontiers in Psychology 8.
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  • Advances in Facial Composite Technology, Utilizing Holistic Construction, Do Not Lead to an Increase in Eyewitness Misidentifications Compared to Older Feature-Based Systems.Graham E. Pike, Nicola A. Brace, Jim Turner, Hayley Ness & Annelies Vredeveldt - 2019 - Frontiers in Psychology 10.
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  • Conjunctive Visual Processing Appears Abnormal in Autism.Ryan A. Stevenson, Aviva Philipp-Muller, Naomi Hazlett, Ze Y. Wang, Jessica Luk, Jong Lee, Karen R. Black, Lok-Kin Yeung, Fakhri Shafai, Magali Segers, Susanne Feber & Morgan D. Barense - 2019 - Frontiers in Psychology 9.
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  • Task Dependent Effects of Head Orientation on Perceived Gaze Direction.Tarryn Balsdon & Colin W. G. Clifford - 2018 - Frontiers in Psychology 9.
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  • Brain Activity Related to the Judgment of Face-Likeness: Correlation between EEG and Face-Like Evaluation.Yuji Nihei, Tetsuto Minami & Shigeki Nakauchi - 2018 - Frontiers in Human Neuroscience 12.
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  • Intuitive Face Judgments Rely on Holistic Eye Movement Pattern.Laura F. Mega & Kirsten G. Volz - 2017 - Frontiers in Psychology 8.
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  • Seeing Double: Exploring the Phenomenology of Self-Reported Absence of Rivalry in Bistable Pictures.Elisa Filevich, Maxi Becker, Yuan-hao Wu & Simone Kühn - 2017 - Frontiers in Human Neuroscience 11.
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  • Taking the Perfect Selfie: Investigating the Impact of Perspective on the Perception of Higher Cognitive Variables.Tobias M. Schneider & Claus-Christian Carbon - 2017 - Frontiers in Psychology 8.
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  • The Neural Basis of Individual Face and Object Perception.Rebecca Watson, Elisabeth M. J. Huis in ’T. Veld & Beatrice de Gelder - 2016 - Frontiers in Human Neuroscience 10:171072.
    We routinely need to process the identity of many faces around us, and how the brain achieves this is still the subject of much research in cognitive neuroscience. To date, insights on face identity processing have come from both healthy and clinical populations. However, in order to directly compare results across and within participant groups, and across different studies, it is crucial that a standard task is utilised which includes different exemplars (for example, non-face stimuli along with faces), is memory-neutral, (...)
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  • Aberrant early visual neural activity and brain-behavior relationships in anorexia nervosa and body dysmorphic disorder.Wei Li, Tsz M. Lai, Sandra K. Loo, Michael Strober, Iman Mohammad-Rezazadeh, Sahib Khalsa & Jamie Feusner - 2015 - Frontiers in Human Neuroscience 9.
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  • Spatio-temporal dynamics and laterality effects of face inversion, feature presence and configuration, and face outline.Ksenija Marinkovic, Maureen G. Courtney, Thomas Witzel, Anders M. Dale & Eric Halgren - 2014 - Frontiers in Human Neuroscience 8.
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  • Impaired holistic processing of left-right composite faces in congenital prosopagnosia.Tina T. Liu & Marlene Behrmann - 2014 - Frontiers in Human Neuroscience 8.
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  • What can individual differences reveal about face processing?Galit Yovel, Jeremy B. Wilmer & Brad Duchaine - 2014 - Frontiers in Human Neuroscience 8.
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  • Individual differences in cortical face selectivity predict behavioral performance in face recognition.Lijie Huang, Yiying Song, Jingguang Li, Zonglei Zhen, Zetian Yang & Jia Liu - 2014 - Frontiers in Human Neuroscience 8:86621.
    In functional magnetic resonance imaging studies, object selectivity is defined as a higher neural response to an object category than other object categories. Importantly, object selectivity is widely considered as a neural signature of a functionally-specialized area in processing its preferred object category in the human brain. However, the behavioral significance of the object selectivity remains unclear. In the present study, we used the individual differences approach to correlate participants’ face selectivity in the face-selective regions with their behavioral performance in (...)
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  • 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.
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  • Investigating the Features of the M170 in Congenital Prosopagnosia.Davide Rivolta, Romina Palermo, Laura Schmalzl & Mark A. Williams - 2012 - Frontiers in Human Neuroscience 6.
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  • XML extraction Test-DEC09-2.Benjamin J. Balas, Charles A. Nelson, Alissa Westerlund, Vanessa Vogel-Farley, Tracy Riggins & Dana Kuefner - 2010 - Frontiers in Human Neuroscience 4.
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  • A Theory of Interactive Parallel Processing: New Capacity Measures and Predictions for a Response Time Inequality Series.James T. Townsend & Michael J. Wenger - 2004 - Psychological Review 111 (4):1003-1035.
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  • Attending to Race Does Not Increase Race Aftereffects.Nicolas Davidenko, Chan Q. Vu, Nathan H. Heller & John M. Collins - 2016 - Frontiers in Psychology 7.
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  • The Limited Impact of Exposure Duration on Holistic Word Processing.Changming Chen, Najam ul Hasan Abbasi, Shuang Song, Jie Chen & Hong Li - 2016 - Frontiers in Psychology 7.
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  • Effects of Part- and Whole-Object Primes on Early MEG Responses to Mooney Faces and Houses.Mara Steinberg Lowe, Gwyneth A. Lewis & David Poeppel - 2016 - Frontiers in Psychology 7.
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  • Distinct representations of configural and part information across multiple face-selective regions of the human brain.Golijeh Golarai, Dara G. Ghahremani, Jennifer L. Eberhardt & John D. E. Gabrieli - 2015 - Frontiers in Psychology 6.
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  • The Facial Expressive Action Stimulus Test. A test battery for the assessment of face memory, face and object perception, configuration processing, and facial expression recognition.Beatrice de Gelder, Elisabeth M. J. Huis in ‘T. Veld & Jan Van den Stock - 2015 - Frontiers in Psychology 6:162648.
    There are many ways to assess face perception skills. In this study, we describe a novel task battery FEAST (Facial Expression Action Stimulus Test) developed to test recognition of identity and expressions of human faces as well as stimulus control categories. The FEAST consists of a neutral and emotional face memory task, a face and object identity matching task, a face and house part-to-whole matching task, and a human and animal facial expression matching task. The identity and part-to-whole matching tasks (...)
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  • On the particular vulnerability of face recognition to aging: a review of three hypotheses. [REVIEW]Isabelle Boutet, Vanessa Taler & Charles A. Collin - 2015 - Frontiers in Psychology 6.
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  • Developmental changes in analytic and holistic processes in face perception.Jane E. Joseph, Michelle D. DiBartolo & Ramesh S. Bhatt - 2015 - Frontiers in Psychology 6.
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  • Inversion effects reveal dissociations in facial expression of emotion, gender, and object processing.Pamela M. Pallett & Ming Meng - 2015 - Frontiers in Psychology 6.
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  • Face perception and processing in early infancy: inborn predispositions and developmental changes.Francesca Simion & Elisa Di Giorgio - 2015 - Frontiers in Psychology 6.
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  • A face detection bias for horizontal orientations develops in middle childhood.Benjamin J. Balas, Jamie Schmidt & Alyson Saville - 2015 - Frontiers in Psychology 6:144351.
    Faces are complex stimuli that can be described via intuitive facial features like the eyes, nose, and mouth, “configural” features like the distances between facial landmarks, and features that correspond to computations performed in the early visual system (e.g. oriented edges). With regard to this latter category of descriptors, adult face recognition relies disproportionately on information in specific spatial frequency and orientation bands: Many recognition tasks are performed more accurately when adults have access to mid-range spatial frequencies (8-16 cycles/face) and (...)
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