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Articles

Super-recognition in development: A case study of an adolescent with extraordinary face recognition skills

, &
Pages 357-376 | Received 24 Jun 2016, Accepted 01 Nov 2017, Published online: 22 Nov 2017

References

  • Althoff, R. R., & Cohen, N. J. (1999). Eye-movement-based memory effect: A reprocessing effect in face perception. Journal of Experimental Psychology: Learning, Memory, and Cognition, 25(4), 997–1010.
  • Aylward, E. H., Park, J. E., Field, K. M., Parsons, A. C., Richards, T. L., Cramer, S. C., & Meltzoff, A. N. (2005). Brain activation during face perception: Evidence of a developmental change. Journal of Cognitive Neuroscience, 17(2), 308–319. doi: 10.1162/0898929053124884
  • Baron-Cohen, S., Hoekstra, R. A., Knickmeyer, R., & Wheelwright, S. (2006). The autism-spectrum quotient (AQ)—Adolescent version. Journal of Autism and Developmental Disorders, 36(3), 343–350. doi: 10.1007/s10803-006-0073-6
  • Baron-Cohen, S., Wheelwright, S., Hill, J., Raste, Y., & Plumb, I. (2001). The “reading the mind in the eyes” test revised version: A study with normal adults, and adults with Asperger syndrome or high-functioning autism. Journal of Child Psychology and Psychiatry, 42(2), 241–251. doi: 10.1111/1469-7610.00715
  • Barton, J. (2008). Structure and function in acquired prosopagnosia: Lessons from a series of 10 patients with brain damage. Journal of Neuropsychology, 2, 197–225. doi: 10.1348/174866407X214172
  • Barton, J., Cherkasova, M., & Hefter, R. (2004). The covert priming effect of faces in prosopagnosia. Neurology, 63, 2062–2068. doi: 10.1212/01.WNL.0000145772.77040.24
  • Bate, S., Bennetts, R., Mole, J. A., Ainge, J. A., Gregory, N. J., Bobak, A. K., & Bussunt, A. (2015). Rehabilitation of face-processing skills in an adolescent with prosopagnosia: Evaluation of an online perceptual training programme. Neuropsychological Rehabilitation, 25(5), 733–762. doi: 10.1080/09602011.2014.973886
  • Bate, S., & Cook, S. J. (2012). Covert recognition relies on affective valence in developmental prosopagnosia: Evidence from the skin conductance response. Neuropsychology, 26(5), 670–674. doi: 10.1037/a0029443
  • Bate, S., Cook, S. J., Duchaine, B., Tree, J. J., Burns, E. J., & Hodgson, T. L. (2014). Intranasal inhalation of oxytocin improves face processing in developmental prosopagnosia. Cortex, 50, 55–63. doi: 10.1016/j.cortex.2013.08.006
  • Bate, S., Haslam, C., Tree, J. J., & Hodgson, T. L. (2008). Evidence of an eye movement-based memory effect in congenital prosopagnosia. Cortex, 44(7), 806–819. doi: 10.1016/j.cortex.2007.02.004
  • Bate, S., Parris, B., Haslam, C., & Kay, J. (2010). Socio-emotional functioning and face recognition ability in the normal population. Personality and Individual Differences, 48(2), 239–242. doi: 10.1016/j.paid.2009.10.005
  • Bennetts, R. J., Butcher, N., Lander, K., Udale, R., & Bate, S. (2015). Movement cues aid face recognition in developmental prosopagnosia. Neuropsychology, 29(6), 855–860. doi: 10.1037/neu0000187
  • Bennetts, R. J., Murray, E., Boyce, T., & Bate, S. (2017). Prevalence of face recognition deficits in middle childhood. Quarterly Journal of Experimental Psychology, Advance online publication. doi: 10.1080/17470218.2016.1167924
  • Bobak, A. K., Bennetts, R. J., Parris, B. A., Jansari, A., & Bate, S. (2016). An in-depth cognitive examination of individuals with superior face recognition skills. Cortex, 82, 48–62. doi: 10.1016/j.cortex.2016.05.003
  • Bobak, A. K., Dowsett, A. J., & Bate, S. (2016). Solving the border control problem: Evidence of enhanced face matching in individuals with extraordinary face recognition skills. PloS One, 11(2), e0148148. doi: 10.1371/journal.pone.0148148
  • Bobak, A. K., Hancock, P. J., & Bate, S. (2016). Super-recognisers in action: Evidence from face-matching and face memory tasks. Applied Cognitive Psychology, 30(1), 81–91. doi: 10.1002/acp.3170
  • Bobak, A. K., Parris, B. A., Gregory, N. J., Bennetts, R. J., & Bate, S. (2017). Eye-movement strategies in developmental prosopagnosia and “super” face recognition. Quarterly Journal of Experimental Psychology, Advance online publication. doi: 10.1080/17470218.2016.1161059
  • Bowles, D. C., McKone, E., Dawel, A., Duchaine, B. C., Palermo, R., Schmalzl, L., … Yovel, G. (2009). Diagnosing prosopagnosia: Effects of ageing, sex, and participant-stimulus ethnic match on the Cambridge face memory test and Cambridge face perception test. Cognitive Neuropsychology, 26, 423–455. doi: 10.1080/02643290903343149
  • Bruce, V., & Young, A. W. (1986). Understanding face recognition. British Journal of Psychology, 77, 305–327. doi: 10.1111/j.2044-8295.1986.tb02199.x
  • Calder, A. J., Young, A. W., Keane, J., & Dean, M. (2000). Configural information in facial expression perception. Journal of Experimental Psychology: Human Perception and Performance, 26(2), 527–551.
  • Carey, S., & Diamond, R. (1994). Are faces perceived as configurations more by adults than by children? Visual Cognition, 1(3), 253–274. doi: 10.1080/13506289408402302
  • Carey, S., Diamond, R., & Woods, B. (1980). Development of face recognition: A maturational component? Developmental Psychology, 16, 257–269. doi: 10.1037/0012-1649.16.4.257
  • Chatterjee, G., & Nakayama, K. (2012). Normal facial age and gender perception in developmental prosopagnosia. Cognitive Neuropsychology, 29(5-6), 482–502. doi: 10.1080/02643294.2012.756809
  • Chung, M. S., & Thomson, D. M. (1995). Development of face recognition. British Journal of Psychology, 86(1), 55–87. doi: 10.1111/j.2044-8295.1995.tb02546.x
  • Crawford, J. R, & Garthwaite, P. H. (2005). Testing for suspected impairments and dissociations in single-case studies in neuropsychology: evaluation of alternatives using Monte Carlo simulations and revisedtests for dissociations. Neuropsychology, 19(3), 318–331. doi: 10.1037/0894-4105.19.3.318
  • Crawford, J. R., & Garthwaite, P. H. (2002). Investigation of the single case in neuropsychology: Confidence limits on the abnormality of test scores and test score differences. Neuropsychologia, 40(8), 1196–1208. doi: 10.1016/S0028-3932(01)00224-X
  • Crawford, J. R., & Garthwaite, P. H. (2007). Comparison of a single case to a control or normative sample in neuropsychology: Development of a Bayesian approach. Cognitive Neuropsychology, 24(4), 343–372. doi: 10.1080/02643290701290146
  • Crawford, J. R., Garthwaite, P. H., & Porter, S. (2010). Point and interval estimates of effect sizes for the case-controls design in neuropsychology: Rationale, methods, implementations, and proposed reporting standards. Cognitive Neuropsychology, 27(3), 245–260. doi: 10.1080/02643294.2010.513967
  • Crookes, K., & McKone, E. (2009). Early maturity of face recognition: No childhood development of holistic processing, novel face encoding, or face-space. Cognition, 111, 219–247. doi: 10.1016/j.cognition.2009.02.004
  • Croydon, A., Pimperton, H., Ewing, L., Duchaine, B. C., & Pellicano, E. (2014). The Cambridge face memory test for children (CFMT-C): A new tool for measuring face recognition skills in childhood. Neuropsychologia, 62, 60–67. doi: 10.1016/j.neuropsychologia.2014.07.008
  • Dalrymple, K. A., Corrow, S., Yonas, A., & Duchaine, B. (2012). Developmental prosopagnosia in childhood. Cognitive Neuropsychology, 29(5-6), 393–418. doi: 10.1080/02643294.2012.722547
  • Dalrymple, K. A., Elison, J. T., & Duchaine, B. (2016). Face-selective and domain-general visual processing deficits in children with developmental prosopagnosia. Quarterly Journal of Experimental Psychology, Advance online publication. doi: 10.1080/17470218.2015.1122642
  • Dalrymple, K. A., Garrido, L., & Duchaine, B. (2014). Dissociation between face perception and face memory in adults, but not children, with developmental prosopagnosia. Developmental Cognitive Neuroscience, 10, 10–20. doi: 10.1016/j.dcn.2014.07.003
  • Dalrymple, K. A., & Palermo, R. (2016). Guidelines for studying developmental prosopagnosia in adults and children. Wiley Interdisciplinary Reviews: Cognitive Science, 7, 73–87.
  • Davies-Thompson, J., Pancaroglu, R., & Barton, J. (2014). Acquired prosopagnosia structural basis and processing impairments. Frontiers in Bioscience, E6, 159–174. doi: 10.2741/E699
  • DeGutis, J., Chatterjee, G., Mercado, R. J., & Nakayama, K. (2012). Face gender recognition in developmental prosopagnosia: Evidence for holistic processing and use of configural information. Visual Cognition, 20(10), 1242–1253. doi: 10.1080/13506285.2012.744788
  • DeGutis, J., Cohan, S., Mercado, R. J., Wilmer, J., & Nakayama, K. (2012). Holistic processing of the mouth but not the eyes in developmental prosopagnosia. Cognitive Neuropsychology, 29, 419–446. doi: 10.1080/02643294.2012.754745
  • De Haan, E. H. (1999). A familial factor in the development of face recognition deficits. Journal of Clinical and Experimental Neuropsychology, 21(3), 312–315. doi: 10.1076/jcen.21.3.312.917
  • de Heering, A., Rossion, B., & Maurer, D. (2012). Developmental changes in face recognition during childhood: Evidence from upright and inverted faces. Cognitive Development, 27, 17–27. doi: 10.1016/j.cogdev.2011.07.001
  • Dennett, H. W., McKone, E., Tavashmi, R., Hall, A., Pidcock, M., Edwards, M., & Duchaine, B. (2012). The Cambridge car memory test: A task matched in format to the Cambridge face memory test, with norms, reliability, sex differences, dissociations from face memory, and expertise effects. Behavior Research Methods, 44(2), 587–605. doi: 10.3758/s13428-011-0160-2
  • De Renzi, E., Faglioni, P., Grossi, D., & Nichelli, P. (1991). Apperceptive and associative forms of prosopagnosia. Cortex, 27(2), 213–221. doi: 10.1016/S0010-9452(13)80125-6
  • Diamond, R., & Carey, S. (1977). Developmental changes in the representation of faces. Journal of Experimental Child Psychology, 23(1), 1–22. doi: 10.1016/0022-0965(77)90069-8
  • Duchaine, B. (2011). Developmental prosopagnosia: Cognitive, neural, and developmental investigations. In A. J. Calder, G. Rhodes, M. H. Johnson, & J. V. B. Haxby (Eds.), The Oxford handbook of face perception (pp. 821–838). New York, NY: Oxford University Press.
  • Duchaine, B., Germine, L., & Nakayama, K. (2007). Family resemblance: Ten family members with prosopagnosia and within-class object agnosia. Cognitive Neuropsychology, 24(4), 419–430. doi: 10.1080/02643290701380491
  • Duchaine, B., Murray, H., Turner, M., White, S., & Garrido, L. (2009). Normal social cognition in developmental prosopagnosia. Cognitive Neuropsychology, 26(7), 620–634. doi: 10.1080/02643291003616145
  • Duchaine, B., & Nakayama, K. (2006). The Cambridge face memory test: Results for neurologically intact individuals and an investigation of its validity using inverted face stimuli and prosopagnosic participants. Neuropsychologia, 44(4), 576–585. doi: 10.1016/j.neuropsychologia.2005.07.001
  • Duchaine, B. C., Parker, H., & Nakayama, K. (2003). Normal recognition of emotion in a prosopagnosic. Perception, 32(7), 827–838. doi: 10.1068/p5067
  • Duchaine, B., & Yovel, G. (2015). A revised neural framework for face processing. Annual Review of Vision Science, 1, 393–416. doi: 10.1146/annurev-vision-082114-035518
  • Duchaine, B. C., Yovel, G., Butterworth, E. J., & Nakayama, K. (2006). Prosopagnosia as an impairment to face-specific mechanisms: Elimination of the alternative hypotheses in a developmental case. Cognitive Neuropsychology, 23(5), 714–747. doi: 10.1080/02643290500441296
  • Dutağacı, H., Yörük, E., & Sankur, B. (2008). Comparative analysis of global hand appearance-based person recognition. Journal of Electronic Imaging, 17(1), 011018–011018. doi: 10.1117/1.2890986
  • Eisenbarth, H., & Alpers, G. W. (2011). Happy mouth and sad eyes: Scanning emotional facial expressions. Emotion, 11(4), 860–865. doi: 10.1037/a0022758
  • Flin, R. H. (1980). Age effects in children’s memory for unfamiliar faces. Developmental Psychology, 16(4), 373–374. doi: 10.1037/0012-1649.16.4.373
  • Freire, A., Lee, K., & Symons, L. A. (2000). The face-inversion effect as a deficit in encoding of configural information: Direct evidence. Perception, 29, 159–170. doi: 10.1068/p3012
  • Fuhrmann, D., Knoll, L. J., Sakhardande, A. L., Speekenbrink, M., Kadosh, K. C., & Blakemore, S. J. (2016). Perception and recognition of faces in adolescence. Scientific Reports, 6, 180. doi: 10.1038/srep33497
  • Germine, L. T., Duchaine, B., & Nakayama, K. (2011). Where cognitive development and aging meet: Face learning ability peaks after age 30. Cognition, 118(2), 201–210. doi: 10.1016/j.cognition.2010.11.002
  • Gobbini, M. I., & Haxby, J. V. (2007). Neural systems for recognition of familiar faces. Neuropsychologia, 45(1), 32–41. doi: 10.1016/j.neuropsychologia.2006.04.015
  • Golarai, G., Ghahremani, D. G., Whitfield-Gabrieli, S., Reiss, A., Eberhardt, J. L., Gabrieli, J. D., & Grill-Spector, K. (2007). Differential development of high-level visual cortex correlates with category-specific recognition memory. Nature Neuroscience, 10(4), 512–522.
  • Golarai, G., Liberman, A., Yoon, J. M., & Grill-Spector, K. (2010). Differential development of the ventral visual cortex extends through adolescence. Frontiers in Human Neuroscience, 3, 43–61. doi: 10.3389/neuro.09.080.2009
  • Habota, T., McLennan, S. N., Cameron, J., Ski, C. F., Thompson, D. R., & Rendell, P. G. (2015). An investigation of emotion recognition and theory of mind in people with chronic heart failure. PLoS One, 10, e0141607. doi: 10.1371/journal.pone.0141607
  • Haxby, J. V, Hoffman, E. A, & Gobbini, M. I. (2000). The distributed human neuralsystem for face perception. Trends in Cognitive Sciences, 4, 223–233. doi: 10.1016/S1364-6613(00)01482-0
  • Henderson, J. M., Williams, C. C., & Falk, R. J. (2005). Eye movements are functional during face learning. Memory and Cognition, 33(1), 98–106. doi: 10.3758/BF03195300
  • Herzmann, G., Danthiir, V., Schacht, A., Sommer, W., & Wilhelm, O. (2008). Toward a comprehensive test battery for face cognition: Assessment of the tasks. Behavior Research Methods, 40, 840–857. doi: 10.3758/BRM.40.3.840
  • Hsiao, J. H., & Cottrell, G. (2008). Two fixations suffice in face recognition. Psychological Science, 19, 998–1006. doi: 10.1111/j.1467-9280.2008.02191.x
  • Humphreys, K., Avidan, G., & Behrmann, M. (2007). A detailed investigation of facial expression processing in congenital prosopagnosia as compared to acquired prosopagnosia. Experimental Brain Research, 176(2), 356–373. doi: 10.1007/s00221-006-0621-5
  • Humphreys, G., & Riddoch, M. J. (1993). Birmingham object recognition battery. Hove: Lawrence Erlbaum Publishers.
  • Johnston, P., Kaufman, J., Bajic, J., Sercombe, A., Michie, P., & Karayanidis, F. (2011). Facial emotion and identity processing development in 5- to 15-year-old children. Frontiers in Psychology, 2, 26. doi: 10.3389/fpsyg.2011.00026
  • Lawrence, K., Bernstein, D., Pearson, R., Mandy, W., Campbell, R., & Skuse, D. (2008). Changing abilities in recognition of unfamiliar face photographs through childhood and adolescence: Performance on a test of non-verbal immediate memory (Warrington RMF) from 6 to 16 years. Journal of Neuropsychology, 2(1), 27–45. doi: 10.1348/174866407X231074
  • Lundqvist, D., Flykt, A., & Öhman, A. (1998). The Karolinska directed emotional faces (KDEF). CD-ROM from Department of Clinical Neuroscience, Psychology Section, Karolinska Institutet, Stockholm, Sweden. ISBN 91-630-7164-9.
  • Luria, S. M., & Strauss, M. S. (1978). Comparison of eye movements over faces in photographic positives and negatives. Perception, 7(3), 349–358. doi: 10.1068/p070349
  • Macmillan, N. A, & Creelman, C. D. (2005). Detection Theory: A User's Guide (2nd ed.). Mahwah, N.J.: Lawrence Erlbaum Associates.
  • Marotta, J. J., McKeeff, T. J., & Behrmann, M. (2002). The effects of rotation and inversion on face processing in prosopagnosia. Cognitive Neuropsychology, 19(1), 31–47. doi: 10.1080/02643290143000079
  • Maurer, D., Le Grand, R., & Mondloch, C. J. (2002). The many faces of configural processing. Trends in Cognitive Sciences, 6(6), 255–260. doi: 10.1016/S1364-6613(02)01903-4
  • McGugin, R. W., Van Gulick, A. E., & Gauthier, I. (2016). Cortical thickness in fusiform face area predicts face and object recognition performance. Journal of Cognitive Neuroscience, 28, 282–294. doi: 10.1162/jocn_a_00891
  • McKone, E., Hall, A., Pidcock, M., Palermo, R., Wilkinson, R. B., Rivolta, D., … O’Connor, K. B. (2011). Face ethnicity and measurement reliability affect face recognition performance in developmental prosopagnosia: Evidence from the Cambridge face memory test–Australian. Cognitive Neuropsychology, 28(2), 109–146. doi: 10.1080/02643294.2011.616880
  • McKone, E., & Yovel, G. (2009). Why does picture-plane inversion sometimes dissociate perception of features and spacing in faces, and sometimes not? Toward a new theory of holistic processing. Psychonomic Bulletin & Review, 16(5), 778–797. doi: 10.3758/PBR.16.5.778
  • Moulier, V., Gaudeau-Bosma, C., Isaac, C., Allard, A. C., Bouaziz, N., Sidhoumi, D., … Janue, L. D. (2016). Effect of repetitive transcranial magnetic stimulation on mood in healthy subjects. Socioaffective Neuroscience & Psychology, 6, 29672. doi: 10.3402/snp.v6.29672
  • Németh, K., Zimmer, M., Schweinberger, S. R., Vakli, P., & Kovács, G. (2014). The background of reduced face specificity of N170 in congenital prosopagnosia. PLoS One, 9, e101393. doi: 10.1371/journal.pone.0101393
  • Orban de Xivry, J. J., Ramon, M., Lefèvre, P., & Rossion, B. (2008). Reduced fixation on the upper area of personally familiar faces following acquired prosopagnosia. Journal of Neuropsychology, 2, 245–268. doi: 10.1348/174866407X260199
  • Palermo, R., O’Connor, K. B., Davis, J. M., Irons, J., & McKone, E. (2013). New tests to measure individual differences in matching and labelling facial expressions of emotion, and their association with ability to recognise vocal emotions and facial identity. PloS One, 8(6), e68126. doi: 10.1371/journal.pone.0068126
  • Palermo, R, Rossion, B, Rhodes, G, Laguesse, R, Tez, T, & Hall, B. (2017). Do people have insight into their face recognition abilities? The Quarterly. The Quarterly Journal of Experimental Psychology, 70(2), 218–233. doi: 10.1080/17470218.2016.1161058
  • Palermo, R., Willis, M. L., Rivolta, D., McKone, E., Wilson, C. E., & Calder, A. J. (2011). Impaired holistic coding of facial expression and facial identity in congenital prosopagnosia. Neuropsychologia, 49(5), 1226–1235. doi: 10.1016/j.neuropsychologia.2011.02.021
  • Pallett, P. M., & Dobkins, K. R. (2013). Development of face discrimination abilities, and relationship to magnocellular pathway development, between childhood and adulthood. Visual Neuroscience, 30(5-6), 251–262. doi: 10.1017/S0952523813000217
  • Pelphrey, K. A., Sasson, N. J., Reznick, J. S., Paul, G., Goldman, B. D., & Piven, J. (2002). Visual scanning of faces in autism. Journal of Autism and Developmental Disorders, 32(4), 249–261. doi: 10.1023/A:1016374617369
  • Peters, J. C., Vlamings, P., & Kemner, C. (2013). Neural processing of high and low spatial frequency information in faces changes across development: Qualitative changes in face processing during adolescence. European Journal of Neuroscience, 37(9), 1448–1457. doi: 10.1111/ejn.12172
  • Peterson, M. F., & Eckstein, M. P. (2012). Looking just below the eyes is optimal across face recognition tasks. Proceedings of the National Academy of Sciences, 109, E3314–E3323. doi: 10.1073/pnas.1214269109
  • Peterson, M. F., & Eckstein, M. P. (2013). Individual differences in eye movements during face identification reflect observer-specific optimal points of fixation. Psychological Science, 24(7), 1216–1225. doi: 10.1177/0956797612471684
  • Peterson, E., & Miller, S. F. (2012). The eyes test as a measure of individual differences: How much of the variance reflects verbal IQ. Frontiers in Psychology, 3, 220. doi: 10.3389/fpsyg.2012.00220
  • Picci, G., & Scherf, K. S. (2016). From caregivers to peers: Puberty shapes human face perception. Psychological Science, 27(11), 1461–1473. doi: 10.1177/0956797616663142
  • Piepers, D. W., & Robbins, R. A. (2012). A review and clarification of the terms “holistic,” “configural,” and “relational” in the face perception literature. Frontiers in Psychology, 3, 559. doi: 10.3389/fpsyg.2012.00559
  • Ramon, M, Miellet, S, Dzieciol, A. M, Konrad, B. N, Dresler, M, & Caldara, R. (2016). Super-memorizers are not super-recognizers. PloS one, 11(3), e0150972. doi: 10.1371/journal.pone.0150972
  • Realtime Landscaping Plus [Computer software]. Bonney Lake, Washington: Idea Spectrum Inc.
  • Richler, J. J., Palmeri, T. J., & Gauthier, I. (2012). Meanings, mechanisms, and measures of holistic processing. Frontiers in Psychology, 3, 553. doi: 10.3389/fpsyg.2012.00553
  • Robertson, D. J., Noyes, E., Dowsett, A. J., Jenkins, R., & Burton, A. M. (2016). Face recognition by metropolitan police super-recognisers. PloS One, 11(2), e0150036. doi: 10.1371/journal.pone.0150036
  • Rodrigues, S. M., Saslow, L. R., Garcia, N., John, O. P., & Keltner, D. (2009). Oxytocin receptor genetic variation relates to empathy and stress reactivity in humans. Proceedings of the National Academy of Sciences, 106(50), 21437–21441. doi: 10.1073/pnas.0909579106
  • Rossion, B. (2013). The composite face illusion: A whole window into our understanding of holistic face perception. Visual Cognition, 21(2), 139–253. doi: 10.1080/13506285.2013.772929
  • Russell, R., Chatterjee, G., & Nakayama, K. (2012). Developmental prosopagnosia and super-recognition: No special role for surface reflectance processing. Neuropsychologia, 50(2), 334–340. doi: 10.1016/j.neuropsychologia.2011.12.004
  • Russell, R., Duchaine, B., & Nakayama, K. (2009). Super-recognizers: People with extraordinary face recognition ability. Psychonomic Bulletin & Review, 16(2), 252–257. doi: 10.3758/PBR.16.2.252
  • Savran, A., Alyüz, N., Dibeklioğlu, H., Çeliktutan, O., Gökberk, B., Sankur, B., & Akarun, L. (2008). Bosphorus database for 3D face analysis. In Biometrics and identity management (pp. 47–56). Berlin: Springer.
  • Scherf, K. S., Behrmann, M., Humphreys, K., & Luna, B. (2007). Visual category-selectivity for faces, places and objects emerges along different developmental trajectories. Developmental Science, 10(4), F15–F30. doi: 10.1111/j.1467-7687.2007.00595.x
  • Scherf, K. S., Luna, B., Avidan, G., & Behrmann, M. (2011). “What” precedes “which”: developmental neural tuning in face-and place-related cortex. Cerebral Cortex, 21, 1963–1980. doi: 10.1093/cercor/bhq269
  • Scherf, K. S., Thomas, C., Doyle, J., & Behrmann, M. (2013). Emerging structure–function relations in the developing face processing system. Cerebral Cortex, 24, 2964–2980. doi: 10.1093/cercor/bht152
  • Schmalzl, L., Palermo, R., Green, M., Brunsdon, R., & Coltheart, M. (2008). Training of familiar face recognition and visual scan paths for faces in a child with congenital prosopagnosia. Cognitive Neuropsychology, 25, 704–729. doi: 10.1080/02643290802299350
  • Schwarzer, G., Huber, S., Grüter, M., Grüter, T., Groß, C., Hipfel, M., & Kennerknecht, I. (2007). Gaze behaviour in hereditary prosopagnosia. Psychological Research, 71(5), 583–590. doi: 10.1007/s00426-006-0068-0
  • Schyns, P. G., Bonnar, L., & Gosselin, F. (2002). Show me the features! Understanding recognition from the use of visual information. Psychological Science, 13(5), 402–409. doi: 10.1111/1467-9280.00472
  • Sekiguchi, T. (2011). Individual differences in face memory and eye fixation patterns during face learning. Acta Psychologica, 137(1), 1–9. doi: 10.1016/j.actpsy.2011.01.014
  • Slessor, G., Riby, D. M., & Finnerty, A. N. (2013). Age-related differences in processing face configuration: The importance of the eye region. The Journals of Gerontology Series B: Psychological Sciences and Social Sciences, 68(2), 228–231. doi: 10.1093/geronb/gbs059
  • Stephan, B. C. M., & Caine, D. (2009). Aberrant pattern of scanning in prosopagnosia reflects impaired face processing. Brain and Cognition, 69(2), 262–268. doi: 10.1016/j.bandc.2008.07.015
  • Susilo, T., Germine, L., & Duchaine, B. (2013). Face recognition ability matures late: Evidence from individual differences in young adults. Journal of Experimental Psychology: Human Perception and Performance, 39(5), 1212–1217.
  • Thomas, A. L., Lawler, K., Olson, I. R., & Aguirre, G. K. (2008). The Philadelphia face perception battery. Archives of Clinical Neuropsychology, 23, 175–187. doi: 10.1016/j.acn.2007.10.003
  • Tippett, L., Miller, L., & Farah, M. J. (2000). Prosopamnesia: A selective impairment in face learning. Cognitive Neuropsychology, 17, 241–255. doi: 10.1080/026432900380599
  • Unoka, Z., Fogd, D., Füzy, M., & Csukly, G. (2011). Misreading the facial signs: Specific impairments and error patterns in recognition of facial emotions with negative valence in borderline personality disorder. Psychiatry Research, 189, 419–425. doi: 10.1016/j.psychres.2011.02.010
  • Van Belle, G., Ramon, M., Lefèvre, P., & Rossion, B. (2010). Fixation patterns during recognition of personally familiar and unfamiliar faces. Frontiers in Psychology, 1(20), 1–8.
  • Verdejo-García, A., Rivas-Pérez, C., Vilar-López, R., & Pérez-García, M. (2007). Strategic self-regulation, decision-making and emotion processing in poly-substance abusers in their first year of abstinence. Drug and Alcohol Dependence, 86, 139–146. doi: 10.1016/j.drugalcdep.2006.05.024
  • Wechsler, D. (1999). Wechsler Abbreviated Scale of Intelligence: Administration and scoringmanual. San Antonio, TX: The Psychological Corporation.
  • Wechsler, D, Coalson, D. L, & Raiford, S. E. (2008). WAIS-IV technical and interpretive manual. San Antonio, TX: Pearson.
  • Weigelt, S., Koldewyn, K., Dilks, D., Balas, B., McKone, E., & Kanwisher, N. (2014). Domain-specific development of face memory but not face perception. Developmental Science, 17(1), 47–58. doi:10.1016/j.dcn.2014.07.003 doi: 10.1111/desc.12089
  • Weigelt, S, Koldewyn, K, & Kanwisher, N. (2012). Face identity recognition in autism spectrumdisorders: a review of behavioral studies. Neuroscience & Biobehavioral Reviews, 36(3), 1060–1084. doi: 10.1016/j.neubiorev.2011.12.008
  • Wilmer, J. B., Germine, L., Chabris, C. F., Chatterjee, G., Gerbasi, M., & Nakayama, K. (2012). Capturing specific abilities as a window into human individuality: The example of face recognition. Cognitive Neuropsychology, 29(5-6), 360–392. doi: 10.1080/02643294.2012.753433
  • Wilmer, J. B., Germine, L., Chabris, C. F., Chatterjee, G., Williams, M., Loken, E., … Duchaine, B. (2010). Human face recognition ability is specific and highly heritable. Proceedings of the National Academy of Sciences, 107(11), 5238–5241. doi: 10.1073/pnas.0913053107
  • Wilson, C. E., Palermo, R., Schmalzl, L., & Brock, J. (2010). Specificity of impaired facial identity recognition in children with suspected developmental prosopagnosia. Cognitive Neuropsychology, 27(1), 30–45. doi: 10.1080/02643294.2010.490207
  • Yang, H., Susilo, T., & Duchaine, B. (2016). The anterior temporal face area contains invariant representations of face identity that can persist despite the loss of right FFA and OFA. Cerebral Cortex, 26, 1096–1107. doi: 10.1093/cercor/bhu289
  • Young, A. W., Perrett, D. I., Calder, A. J., Sprengelmeyer, R., & Ekman, P. (2002). Facial expressions of emotion: Stimuli and tests (FEEST). Bury St. Edmunds: Thames Valley Test Company. Ref Type: Computer Program.
  • Young, A. W., Rowland, D., Calder, A. J., Etcoff, N. L., Seth, A., & Perrett, D. I. (1997). Facial expression megamix: Tests of dimensional and category accounts of emotion recognition. Cognition, 63(3), 271–313. doi: 10.1016/S0010-0277(97)00003-6
  • Yovel, G., & Kanwisher, N. (2008). The representations of spacing and part-based information are associated for upright faces but dissociated for objects: Evidence from individual differences. Psychonomic Bulletin & Review, 15(5), 933–939. doi: 10.3758/PBR.15.5.933

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