波佩尔. 意识的限度: 关于时间与意识的新见解[M]. 李百涵, 韩力, 译. 北京: 北京大学出版社, 1995: 47.
|
黄希庭.心理学导论[M].北京:人民教育出版社, 2015:250.
|
凤四海, 黄希庭.时间知觉理论和实验范型[J].心理科学, 2004(5):1157-1160.
|
BADDELEY A. Working memory[J]. Science, 1992, 255(5044):556-559. doi: 10.1126/science.1736359
|
MILLER G A. The magic number seven, plus or minus two: Some limits on our capacity for processing of information[J]. Psychological review, 1956, 63(2): 81-93. doi: 10.1037/h0043158
|
COWAN N. The magical number 4 in short-term memory: A reconsideration of mental storage capacity[J]. Behavioral and brain sciences, 2001, 24(1): 87-185. doi: 10.1017/S0140525X01003922
|
FRAISSE P. Cognition of time in human activity. Cognition in motivation and learning[M]. Hillsdale, New York: Lawrence erlbaum, 1981:233-258.
|
JENSEN O. Maintenance of multiple working memory items by temporal segmentation[J]. Neuroscience, 2006, 139(1): 237-249. doi: 10.1016/j.neuroscience.2005.06.004
|
KOENE R A, HASSELMO M E. First-in-first-out item replacement in a model of short-term memory based on persistent spiking[J]. Cerebral cortex, 2007, 17(8): 1766-1781. doi: 10.1093/cercor/bhl088
|
LISMAN J E, IDIART M A. Storage of 7 plus/minus 2 short-term memories in oscillatory subcycles[J]. Science, 1995, 267(5203): 1512-1515. doi: 10.1126/science.7878473
|
CHEN Y G, CHEN X, KUANG C W, HUANG X T. Neural oscillatory correlates of duration maintenance in working memory[J]. Neuroscience, 2015, 290: 389-397. doi: 10.1016/j.neuroscience.2015.01.036
|
YU X L, CHEN Y G, QIU J J, HUANG X T. Neural oscillations associated with auditory duration maintenance in working memory[J]. Scientific reports, 7(1), 5695-5703. doi: 10.1038/s41598-017-06078-2
|
PENNEY T B, GIBBON J, MECK W H. Differential effects of auditory and visual signals on clock speed and temporal memory[J]. Journal of experimental psychology: human perception and performance, 2000, 26(6): 1770-1789. doi: 10.1037/0096-1523.26.6.1770
|
WEARDEN J H, TODD N, JONES L. When do auditory/visual differences in duration judgements occur?[J]. The quarterly journal of experimental psychology, 2006, 59(10):1709-1724. doi: 10.1080/17470210500314729
|
WEARDEN J H, NORTON R, MARTIN S, MONTFORD-BEBB O. Internal clock processes and the filled-duration illusion[J]. Journal of experimental psychology: human perception & performance, 2007, 33(3):716-729.
|
郭秀艳, 聂晶.大学生实时距、空时距估计的比较研究[J].心理发展与教育, 2003(3):58-62.
|
HOOPEN G T, MIYAUCHI R, NAKAJIMA Y. Time-based illusions in the auditory mode. In GRONDIN S (Ed.), Psychology of time[M]. Bingley, UK: Emerald, 2008:139-187.
|
ZWICKER E. Subjective and objective duration of sound impulses and sound pauses[J]. Acustica, 1970, 22(4):214-218.
|
CRAIG J C. A constant error in the perception of brief temporal intervals[J]. Attention, perception and psychophysics, 1973, 13(1):99-104. doi: 10.3758/BF03207241
|
GIBBON J, CHURCH R M. Sources of variance in an information processing theory of timing. In ROITBLAT H L, et al. (Eds. ), Animal cognition[M]. Hillsdale, NJ: Erlbaum, 1984: 465-488.
|
HASUO E, NAKAJIMA Y, TOMIMATSU E, GRONDIN S, UEDA K. The occurrence of the filled duration illusion: a comparison of the method of adjustment with the method of magnitude estimation[J]. Acta psychologica, 2014, 147(2):111-121.
|
TSE C Y, PENNEY T B. Preattentive timing of empty intervals is from marker offset to onset.[J]. Psychophysiology, 2006, 43(2):172-179. doi: 10.1111/psyp.2006.43.issue-2
|
DELORME A, MAKEIG S. EEGLAB: An open source toolbox for analysis of single-trial EEG dynamics including independent component analysis[J]. Journal of neuroscience methods, 2004, 134(1): 9-21. doi: 10.1016/j.jneumeth.2003.10.009
|
HSIEH L T, EKSTROM A D, RANGANATH C. Neural oscillations associated with item and temporal order maintenance in working memory[J]. Journal of neuroscience, 2011, 31(30): 10803-10810. doi: 10.1523/JNEUROSCI.0828-11.2011
|
ROBERTS B M, HSIEH L T, RANGANATH C. Oscillatory activity during maintenance of spatial and temporal information in working memory[J]. Neuropsychologia, 2013, 51(2): 349-357. doi: 10.1016/j.neuropsychologia.2012.10.009
|
JUNG T P, MAKEIG S, HUMPHRIES C, LEE T W, MCKEOWN M J, IRAGUI V, SEJNOWSKI T J. Removing electroencephalographic artifacts by blind source separation[J]. Psychophysiology, 2000, 37(2):163-178. doi: 10.1016/S0167-8760(00)00088-X
|
JUNG T P, MAKEIG S, WESTERFIELD M, TOWNSEND J, COURCHESNE E, SEJNOWSKI T J. Removal of eye activity artifacts from visual event-related potentials in normal and clinical subjects[J]. Clinical neurophysiology, 2000, 111(10):1745-1758. doi: 10.1016/S1388-2457(00)00386-2
|
MAKERIG S, DELORME A, WESTERFIELD M, JUNG T P, TOWNSEND J, COURCHESNE E, SEJNOWSKI T J. Electroencephalographic brain dynamics following manually responded visual targets[J]. Plos biology, 2004, 2(6):e176. doi: 10.1371/journal.pbio.0020176
|
MAKERIG S. Auditory event-related dynamics of the EEG spectrum and effects of exposure to tones[J]. Electroencephalography and clinical neurophysiology, 1993, 86(4):283-293. doi: 10.1016/0013-4694(93)90110-H
|
GREENHOUSE S W, GEISSER S. On methods in the analysis of profile data[J]. Psychometrika, 1959, 24(2):95-112. doi: 10.1007/BF02289823
|
LEVINE T R, HULLETT C R. Eta squared, partial eta squared, and misreporting of effect size in communication research[J]. Human communication research, 2002, 28(4):612-625. doi: 10.1111/hcre.2002.28.issue-4
|