NYUEast China Normal UniversityNYU Shanghai
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Publications

1.

Wang, Q., Shi, B., Jia, J., Hu, J., Li, H., Jin, X.*, & Chen, A.* (2025). Distinct role of primate DLPFC and LIP in hierarchical control of learned saccade sequences. iScience, 28, 1, 111694.

2.

Yu, Y., Cai, Q.*, Lin, L.*, & Huang, C-C.* (2025). Fiber length distribution characterizes the brain network maturation during early school-age. NeuroImage, 308, 121066.

3.

Zhou, H-M., Lin, W-P., Jiang, W-L., Qu, H-C., Wang, W-K., Jia, M-H., Deng, L-H., Zhang, S-J.*, & Yin, D-M.* (2025). Quantification of extracellular glutamate levels using fluorescence lifetime imaging of the red genetically encoded biosensor Rncp-iGluSnFR1. Microchemical Journal, 212, 113571.

4.

Li., L.*, Rushton, S.K.*, Chen, R.R., & Chen, J. (2025). Use of target drift in heading judgments. Journal of Vision, 25(7):9, 1–18.

5.
6.

Chang, J., Li, Z., Wang, Z., Tao, L.*, & Xiao, Z. C.* (2025). Minimizing information loss reduces spiking neuronal networks to differential equationsJournal of Computational Physics, 537, 114117.

7.

Yang, J., Yan, F.-F., Wang, T., Wang, Z., Ma, Q., Xiao, J., Yang, X., Lu, Z.-L.*, & Huang, C.-B.* (2025). Anterograde interference in multitask perceptual learning. npj Science of Learning, 10, 23.

8.

Lu, Z.-L.*, Yang, S., & Dosher, B. A. (2025). Hierarchical Bayesian Augmented Hebbian Reweighting Model of Perceptual Learning. Journal of Vision, 25(4):9, 1–23.

9.

Yu, D.*, Perry, L., Kerwin, T., Yang, J., & Lu, Z-L. (2025). Assessment of visual function under various lighting conditions in a cohort of active older drivers: dimensionality and principal metrics. Frontiers in Neuroscience, 19:1511366.

10.

He, X., Ruan, X., Shen, M., Yuan, J., Li, C., Yang, Y., Zhu, J., Cui, R., Lu, Z.-L.*, Chen, J. F.*, & Hou, F.* (2025). The Temporal Window of Visual Processing throughout Adulthood. Frontiers in Neuroscience, 19:1547959.

11.

Kerwin, T.*, Wrabel, C., Yu, D., Lu, Z.-L. & Yang, J. (2025). Mesopic and glare driving performance in a driving simulatorTraffic Injury Prevention, 1-7.

12.

Chen, G., & Zhang, J.* (2025). The neuronal and synaptic representations of spatial release from masking in the rat auditory cortex. Frontiers in Neuroscience, 19:1562183.

13.

Li, Z., & Wang, Y.* (2025). Aggressive and non-aggressive parental discipline: Longitudinal associations with children's peer problemsJournal of Applied Developmental Psychology, 98, 101809.

14.

Yang, Y., & Wang, Y.* (2025). Preschool and preadolescent antecedents of externalizing problems: A machine learning approachEuropean Child & Adolescent Psychiatry. 

15.
16.

Liu, S.*, Yu, Ke., Wu, K., Gao, X., Li, X. (2025). Reform of Neuroanatomy Virtual Simulation Laboratory Teaching in Psychology Education. Research and Exploration in Laboratory. 44(1), 112-116.

17.

An, O., Fang, Y., Cheng, Y., Liu, H., Yang, W., Shan, Y., de Villers-Sidani, E., Zhang, G.*, & Zhou, X.* (2025). Acoustic Enrichment Prevents Early Life Stress-Induced Disruptions in Sound Azimuth ProcessingJournal of Neuroscience, 45 (18) e2287242025.

18.

Zhang, B., Geddes, C.E., & Jin, X*. (2025). Complementary corticostriatal circuits orchestrate action repetition and switchingScience Advances, 11(21), eadt0854.

19.

Li, L.*, Shen, X., & Kuai S. (2025). Distinct detection and discrimination sensitivities in visual processing of real versus unreal optic flow. Psychonomic Bulletin & Review.

20.

Hsu, C., Huang, C.*, Hsu, C., Bi, Y., Tzeng, O., & Lin, C.* (2025). Revisiting human language and speech production network: a meta-analytic connectivity modeling studyNeuroimage, 306, 121008.

21.
22.

Zhu, M., & Cai, Q.* (2025). Hemispheric co-lateralization of language and spatial attention reduces performance in dual-taskBrain and Language, 262, 105537.

23.

Waz, S., Wang, Y., & Lu, Z.-L.* (2025). qPRF: A system to accelerate population receptive field modeling. NeuroImage, 306, 120994.

24.

Ye, Y., Xian, Y., Liu, F., Lu, Z.-L., Zhou, X.*, & Zhao, J.* (2025). Low-concentration atropine (0.01%) on quantitative contrast sensitivity function in Chinese children with myopia. International Journal of Ophthalmology, 18(1):117-124.

25.
26.

Wang, X., Huang, C-C., Tsai, S-J., Lin, C-P., & Cai, Q.* (2024). The aging trajectories of brain functional hierarchy and its impact on cognition across the adult lifespan. Frontiers in Aging Neuroscience, 16.

27.

Yu, X.*, Li, J., Zhu, H., Tian, X., & Lau, E. (2024). Electrophysiological hallmarks for event relations and event roles in working memory. Frontiers in Neuroscience, 17.

28.

Yang, F., Zhu, H., Cao, X., Li, H., Fang, X., Yu, L., Li S., Wu, Z., Li, C., Zhang, C.*, & Tian, X.* (2024). Impaired motor-to-sensory transformation mediates auditory hallucinations. PLOS Biology, 22(10): e3002836.

29.

Jia, G., Sun, Y., An, P., Wu, W., Shen, Y., Liu, H., Shan, Y., Wang, J., Lai, C.S.W., Schreiner, C.E., He, H., & Zhou, X.* (2024). Auditory training remodels hippocampus-related memory in adult rats. Cerebral Cortex, 34(2).

30.

Liu, X., He, D., Zhu, M., Li, Y., Lin, L.,* & Cai, Q.* (2024). Hemispheric dominance in reading system alters contribution to face processing lateralization across development. Developmental Cognitive Neuroscience, 69, 101418.

31.

Xiao, Z.-C., Lin, K. K., & Young, L.-S. (2024). Efficient models of cortical activity via local dynamic equilibria and coarse-grained interactions. PNAS, 121(27) e2320454121.

32.

Dosher, B. A., & Lu, Z.-L. (2024). Perceptual Learning: Learning, memory, and models. The Oxford Handbook of Human Memory, Two Volume Pack: Foundations and Applications (Vol. 1, pp. 288–333). Oxford University Press.

33.

Meng, J., Song, Y., He, W., Lu, Z.-L., Chen, Y., Wei, L., Zhang, K., Qi, J., Du, Y., Lu, Y., & Zhu, X. (2024). A Novel Artificial Intelligence-Based Classification of Highly Myopic Eyes Based on Visual Function and Fundus Features. Translational Vision Science & Technology, 13(9).

34.

Kwak, Y., Zhao, Y., Lu, Z.-L., Hanning, N.M., & Carrasco, M. (2024). Presaccadic Attention Enhances and Reshapes the Contrast Sensitivity Function Differentially around the Visual Field. eNeuro, 11(9).

35.

Kong, L., Zeng, F., Zhang, Y., Li, L., & Chen, A.* (2024). The influence of form on motion signal processing in the ventral intraparietal area of macaque monkeys. Heliyon, 10(17).

36.

Han, M., & Kuai, S-G.* (2024). Toolkits for virtual reality research in psychology. Advances in Psychological Science, 32 (11): 1800-1813.

37.

Wu, K., & Liu, S*. (2024). Hippocampal dopamine as a key regulator for learning deficits in Parkinson’s disease. Neural Regeneration Research, 19(6), 1193-1194.

38.

Wu, X., Xie, J., & Wang, Y.* (2024). Adjustment problems and school bullying in grade school: Differentiating between- and within-person associationsJournal of Applied Developmental Psychology, 95, 101722. 

39.

Zhao, Y., Lesmes, L.A., Dorr, M., & Lu, Z.-L.* (2024). ­Using hierarchical Bayesian modeling to enhance statistical inference on contrast sensitivity. Translational Vision Science & Technology, 13(12):17.

40.
41.

Yang, J.*, Alshaikh, E., Yu, D., Kerwin, T., Rundus, C., Zhang, F., Wrabel, C.G., Perry, L., & Lu, Z.-L., (2024). Visual Function and Driving Performance Under Different Lighting Conditions in Older Drivers: Preliminary Results From an Observational StudyJMIR Formative Research, 8:e58465.

42.

Ji, H., Wang, Y.*, & Lü, W. (2024). Childhood trauma and social anxiety in adolescents: Mediating role of cardiovascular response to social stressPsychophysiology, 61(12), e14688.

43.

Bai, Z., Li, P., Gao, X., Zu, G., Jiang, A., Wu, K., Mechawar, N., Turecki, G., Lehnert, K., Snell, R.G., Zhou, J., Hu, J., Yan, B., Chen, L., Li, W., Chen, Y.*, Liu, S.*, Zhu, Y.*, & You, L.* (2024). Exploring PDE5A upregulation in bipolar disorder: insights from single-nucleus RNA sequencing of human basal ganglia. Translational Psychiatry, 14(1), 494.

44.

Zhao, Y., Liu, J., Dosher, B.A., & Lu, Z.-L.* (2024). Estimating the Trial-by-Trial Learning Curve in Perceptual Learning with Hierarchical Bayesian Modeling. Journal of Cognitive Enhancement, 8: 346-363.

45.
46.

Lu, Z.-L.*, Zhao, Y., Lesmes, L.A., & Dorr, M. (2024). Quantifying the Functional Relationship between Visual Acuity and Contrast Sensitivity Function. Investigative Ophthalmology & Visual Science, 65(12):33. 

47.

Xian, Y., Ye, Y., Sun, L., Shen, Y., Zhang, X., Lu, Z.-L., Zhou, X.*, & Zhao, J.* (2024). Comparison of the quantitative contrast sensitivity function between early keratoconus and normal eyes. BMC Ophthalmology, 24:458.

48.

Zhao, Y., Lesmes, L.A., Dorr, M., & Lu, Z.-L.* (2024). Predicting contrast sensitivity functions with digital twins. Scientific Reports, 14:24100.

49.

Hong, B., Chen, J., Huang, W., Li, L.* (2024). Serial dependence in smooth pursuit eye movements of preadolescent children and adults. Investigative Ophthalmology & Visual Science. 65(14): 37.

50.

Yang, J., Zhang, H., & Lim, S.* (2024). Sensory-memory interactions via modular structure explain errors in visual working memory. eLife, 13:RP95160.

51.

Li, Y., Hu, X., Zhou, F., Guo, X., Yang, X., Liu, R., Li, D., Dai, M., Wu, K., Wu, J., Hou, F., Lesmes, L.A., Lu, Z.-L.*, & Wang, Y.* (2024). Reduced contrast sensitivity function and outer retina thickness in convalescent Vogt-Koyanagi-Harada disease. Eye, 39, 366-372.

52.

Yan, X., & Jin, X. (2024). Shedding light on gene therapy of Parkinson’s disease in non-human primates. The Innovation, 5 (2): 100581.

53.

Zhao, Y., Liu, J., Dosher, B.A., & Lu, Z.-L.* (2024). Enabling identification of component processes in perceptual learning with nonparametric hierarchical Bayesian modeling. Journal of Vision, 24(5): 8.

54.

Liu, J., Huang, C., Cotter, S.A., Chan, L.Y.L., Yu, Y., Jia, Y., Ye, Q., Feng, L., Yao, Y., Jiang, R., Xiao, C., Xu, Z., Zhuang, Y., He, Y., Zhou, Y., Chen, X., Yuan, J., Wen, Y., Yu, W., Pang, Y., Lu, Z.-L., Thompson, B., & Li, J. (2024). Novel quantitative contrast sensitivity function enhances the prediction of treatment outcome and recurrence in amblyopia. iOVS, 65(5): 31. 

55.

Chen, X., Wang, L., & Wang, Y.* (2024). Experiences of bullying and victimization and adolescents' life satisfaction: A meta-analysisAggression and Violent Behavior, 76, 101930.

56.

Wang, Y.*, & Ji, H. (2024). Hot and cool executive function in the development of behavioral problems in grade schoolDevelopment and Psychopathology. Published online 2024:1-11. doi:10.1017/S0954579424000415.

57.

Kwak, Y.*, Lu, Z.-L., & Carrasco, M. (2024). How the window of visibility varies around polar angle. Journal Of Vision, 24(12), 4.

58.

Zhang, J., Zhou, H., Zhu, Z., Ding, Y., He, Y., Wei, X., Xiao, C., Li, Y., Lin, W., & Yin, D.* (2024). Adolescent administration of ketamine impairs excitatory synapse formation onto parvalbumin-positive GABAergic interneurons in mouse prefrontal cortex. Biochemical and Biophysical Research Communications. 725, 150272.

59.

Wang, L., Zhou, X., Zeng, F., Cao, M., Zuo, S., Yang, J., Kusunoki, M., Wang, H., Zhoug, Y-D., Chen, A., & Kwok, S.C.* (2024). Mixed selectivity coding of content-temporal detail by dorsomedial posterior parietal neuronsJournal of Neuroscience, 44(3), e1677232023.

60.

Zhao, B., Zhang, H., Liu, Y., Zu, G., Zhang, Y., Hu, J., Liu, S., & You, L*. (2024). Forebrain excitatory neuron-specific loss of Brpf1 attenuates excitatory synaptic transmission and impairs spatial and fear memoryNeural Regeneration Research, 19(5): 1133-1141.

61.

Pang, R., Peng, J., Cao, K., Sun, Y., Pei, X.T., Yang, D., Lu, Z.-L., Wang, N.* (2024). Association between contrast sensitivity function and structural damage in primary open-angle glaucoma. British Journal of Ophthalmology, 108(6), 801-806.

62.

Luo, Y.*, Lohrenz, T., Lumpkin, E.A., Montague, P.R., & Kishida, K.T.* (2024). The expectations humans have of a pleasurable sensation asymmetrically shape neuronal responses and subjective experiences to hot sauce. PLOS Biology. 22(10), e3002818.

63.

Li, B., Ding, Z., De Deyne, S., & Cai, Q.* (2024) A large-scale database of Mandarin Chinese word associations from the Small World of Words projectBehavior Research Methods. 57, 34.

64.

Tu, Y., Li, X., Lu, Z.-L.*, & Wang, Y.* (2024). Adaptive smoothing of retinotopic maps based on Teichmüller parametrizationMedical Image Analysis, 93: 103074.

65.

Pang, R., Peng, J., Zhang, Q., Cao, K., Lu, Z.-L., Wang, N.* (2024). Correlation of contrast sensitivity with ganglion cell/inner plexiform layer thickness and damage location in glaucoma with varying severityEye, 38, 1308-1313.

66.

Chen, X., Liu, J., Xu, Z., Zhuang, Y., Zhou, Y., He Y., Yao, Y., Yuan, J., Feng, L., Ye, Q., Wen Y., Jia, Y., Lu, Z.-L., Lin, X.*, & Li, J.* (2024). Binocular summation with quantitative contrast sensitivity function: A novel parameter to evaluate binocular function in intermittent exotropiaInvestigative Ophthalmology & Visual Science, 65(1): 3.

67.

Wang, Y.*, Wu, X., & Chen, H. (2023). Mothers' depressive symptoms and children's behavioral adjustment: The role of parental negative emotional statesJournal of Family Psychology, 37(8), 1220-1229.

68.
69.

van der Merwe, R.K., Nadel, J.A., Copes-Finke, D., Pawelko, S., Scott, J.S., Ghanem, M., Fox, M., Morehouse, C., McLaughlin, R., Maddox, C., Albert-Lyons, R., Malaki, G., Groce, V., Turocy, A., Aggadi, N., Jin, X., & Howard, C.D. (2023). Characterization of striatal dopamine projections across striatal subregions in behavioral flexibility. European Journal of Neuroscience, 58(12): 4466-4486.

70.

Han, Z., Zhu, H., Shen, Y., & Tian, X.* (2023). Segregation and integration of sensory features by flexible temporal characteristics of independent neural representationsCerebral Cortex, 33(16): 9542-9553.

71.

Zhou, J., Zhang., Z., Wu, M., Liu, H., Pang, Y., Bartlett, A., Peng, Z., Ding, W., Rivkin, A., Lagos, W.N., Williams, E., Lee, C-T., Miyazaki, P.A., Aldridge, A., Zeng, Q., Salinda, J.L.A., Clayffey, N., Liem, M., Fitzpatrick, C., Boggeman, L., Yao, Z., Smith, K.A., Tasic, B., Altshul, J., Kenworthy, M.A., Valadon, C., Nery, J.R., Castanon, R.G., Patne, N.S., Vu M., Rashid, M., Jacobs, M., Ito, T., Osteen, J., Emerson, N., Lee, J., Cho, S., Rink, J., Huang, H-H., Pinto-Duartec, A., Dominguez, B., Smith, J.B., O’Connor, C., Zeng, H., Chen, S., Lee, K-F., Mukamel, E.A., Jin, X., Behrens, M.M., Ecker, J.R., & Callaway, E.M. (2023). Brain-wide correspondence of neuronal epigenomics and distant projectionsNature, 624, 355–365.

72.
73.

Lu, Z.-L.*, Zhao, Y., Lesmes, L.A., Dorr, M. (2023). Quantification of expected information gain in visual acuity and contrast sensitivity testsScientific Reports, 13, 16795.

74.
75.

Li, Y., & Zhang, J*. (2023). Binaural advantages in sound temporal information processing by neurons in the rat inferior colliculusFrontiers in Neuroscience, 17:1308052.

76.

Hou, F.*, Lu, Z.-L., Bex, P., & Reynauld, A. (2023). Editorial: The contrast sensitivity function: from laboratory to clinic, volume II. Frontiers in Neuroscience, 17: 1336649.

77.

Lin, R., Zeng, F., Wang, Q., & Chen, A.* (2023). Cross-Modal Plasticity during Self-Motion Perception. Brain Sciences, 13(11):1504.

78.

Liu, J.*, Lu, Z.-L. & Dosher, B.* (2023). Informational feedback accelerates learning in challenging multi-alternative perceptual judgments. Vision Research, 213: 108318.

79.

Jiang, L., Zhang, R., Tao, L., Zhang, Y., Zhou, Y.*, & Cai, Q.* (2023). Neural mechanisms of musical structure and tonality, and the effect of musicianship. Frontiers in Psychology, 14.

80.

Deng, C-L., Sun, L., Zhou, C., & Kuai, S-G.* (2023). Dual-Gain Mode of Head-Gaze Interaction Improves the Efficiency of Object Positioning in a 3D Virtual EnvironmentInternational Journal of Human–Computer Interaction, 40(8), 2067-2082.

81.

Dosher, B. A. & Lu, Z.-L. (2023). Perceptual learning: Perception and experience. Oxford Research Encyclopedia of Psychology. https://doi.org/10.1093/acrefore/9780190236557.013.847

82.

Liu, Y., Yu, X., An, F., & Wang, Y.* (2023). School bullying and self-efficacy in adolescence: A meta-analysisJournal of Adolescence, 95(8), 1541-1552.

83.

Teng, L.* (2023). The Epistemic Insignificance of Phenomenal ForcePhilosophy and Phenomenological Research, 1-22.

84.

Dosher, B.*, Liu, J., Lu, Z.-L. (2023). Learning spatial frequency identification through reweighted decodingJournal of Vision,23(6):3, 1-31.

85.

Zhao, Y.,  Lesmes, L.A., Dorr, M., Lu, Z.-L.* (2023). Collective endpoint of visual acuity and contrast sensitivity function from hierarchical Bayesian joint modelingJournal of Vision, 23(6):13, 1-23.

86.

Chu, Q., Ma, O., Huang, Y., & Tian, X.* (2023). Dual-stream cortical pathways mediate sensory predictionCerebral Cortex, 33(14): 8890-8903.

87.

Lin, L., Ruan, X., Liu, R., Zhu, J., Zhang, W., Lu, Z.-L.*, Lu, F.*, & Hou, F.* (2023). Perceptual learning changes the amplitude not the shape of the temporal window of visual processing. Journal of Experimental Psychology: Learning and Memory, and Cognition.

88.

Ye, Y., Xian, Y., Liu, F., Lu, Z.-L., Zhou, X. & Zhao, J.* (2023). Characteristics and related parameters of quick contrast sensitivity function in Chinese ametropia children. Eye & Contact Lens: Science & Clinical Practice, 49(6), 224-233. 

89.

Ta, D., Mallak, N. J., Lu, Z.-L.*, & Wang, Y.* (2023). Protocol for Quantitative Characterization of the Human Retinotopic Map based on the Quasiconformal Mapping. Star Protocols, 4(2), 102246.

90.

Xiong, Y., Tu, Y., Lu, Z.-L., & Wang, Y. (2023). Characterizing visual cortical magnification with topological smoothing and optimal transportation. Medical Imaging 2023: Image Processing, 12464, 451-459.

91.

Ye, Y., Aruma, A., Zhao, W., Lu, Z.-L., Zhao, X.*, & Zhao, J.* (2023). A novel quick contrast sensitivity function test in Chinese adults with myopia and its related parameters. Graefe's Archive for Clinical and Experimental Ophthalmology.

92.
93.

Tu, Y., Jin, H., Xu, M., Liu, W., Hu, X., Wang, M., Ye, J., Liu, Z., Gao, M., Hou, F., Lu, Z.-L.*, & Wu, W.* (2023). Reduced contrast sensitivity function correlated with superficial retinal capillary plexus impairment in early stage of dysthyroid optic neuropathy. Eye and Vision 10 (11).

94.

Chen, S., Yang, Q., & Lim, S.* (2023). Efficient inference of synaptic plasticity rule with Gaussian process regression. iScience, 26 (3): 106182.

95.

Jiang, L., Zhang, R., Tao, L., Zhang, Y., Zhou, Y.*, & Cai, Q.* (2023). Neural mechanisms of musical syntax and tonality, and the effect of musicianshipFrontiers in Psychology, 14:1092051.

96.

Zhang, R., Wang, J., Lin, H., Turk-Browne, N.B., & Cai, Q.* (2023). Neural signatures of second language proficiency in narrative processingCerebral Cortex, 33(13), 8477-8484.

97.

Cheng, Y., Chen, R., Su, B., Zhang, G., Sun, Y., An, P., Fang, Y., Zhang, Y., Shang, Y., de Villers-Sidani, É., Wang, Y., Zhou, X.* (2023). Pairing with enriched sound exposure restores auditory processing degraded by an antidepressantJournal of Neuroscience, 43 (16): 2850-2859.

98.

Ding, C-Y., Ding, Y-T., Ji, H., Wang, Y-Y., Zhang, X.*, & Yin, D-M*. (2023). Genetic labeling reveals spatial and cellular expression pattern of neuregulin 1 in mouse brain. Cell & Bioscience, 13(1):79. 

99.

Zhang, Y., Chen, Y., Xin, Y., Peng, B., & Liu, S.* (2023). Norepinephrine system at the interface of attention and rewardProgress in Neuropsychopharmacology & Biological Psychiatry. 125, 110751.

100.

Gu, L., Ren, M., Lin, L.*, & Xu, J.* (2023). Calbindin-Expressing CA1 Pyramidal Neurons Encode Spatial Information More Efficiently. eNeuro, 10 (3), 0411-22.2023.

101.

Wu, Z., Chen, A.*, & Cai, X. *(2023). Neuronal Response to Reward and Luminance in Macaque LIP During Saccadic ChoiceNeurosci. Bull. 39(1),14-28.

102.

Xian, Y., Sun, L., Ye, Y., Zhang, X., Zhao, W., Shen, Y., Lu, Z.-L., Zhou, X.*, & Zhao, J.* (2023). The characteristics of quick contrast sensitivity function in keratoconus and its correlation with corneal topography. Ophthalmology and Therapy, 12, 293–305.

103.
104.

Wei, L., Meng, J., Cheng, K., He, W., Qi, J., Lu, Z-L., Lu, Y., & Zhu, X., (2022). Contrast Sensitivity Function: A More Sensitive Index for Assessing Protective Effects of the Cilioretinal Artery on Macular Function in High Myopia. Investigative Ophthalmology & Visual Science, 63(13): 25.

105.

Guo, D., Meng, J., Zhang, K., He, W., Ma, S., Lu, Z-L., Lu, Yi., & Zhu, X. (2022). Tolerance to lens tilt and decentration of two multifocal intraocular lenses: using the quick contrast sensitivity function method. Eye and Vision, 9, 45.

106.
107.

Lu, Y., Jin, P., Ding, N., & Tian, X. (2022). Delta-band neural tracking primarily reflects rule-based chunking instead of semantic relatedness between words. Cerebral Cortex, bhac354.

108.

Zhou, C., Miao, MC., Chen, XR. Hu, YF., Chang, Q., Yan, MY., Kuai, SG*. (2022). Human-behaviour-based social locomotion model improves the humanization of social robots. Nature Machine Intelligence, 4, 1040–1052.

109.
110.

Teng, L. (2022). A metacognitive account of phenomenal forceMind & Language, 1– 21.

111.

Wang, T., Bai, Y., Zheng, X., Liu, X., Xing, S., Wang, L., Wang, H., Feng, G., Li, C. (2022).  Sapap4 deficiency leads to postsynaptic defects and abnormal behaviors relevant to hyperkinetic neuropsychiatric disorder in mice. Cereb Cortex, bhac123.

112.

Cai, Y., Jin, Z., Zhai., C., Wang, H., Wang, J., Tang, Y., Kwok, S. C (2022). Time-sensitive prefrontal involvement in associating confidence with task performance illustrates metacognitive introspection in monkeysCommun Biol 5(1):799.

113.

Peng, W., Xie, Y., Liao, C., Bai ,Y., Wang, H.*, and Li, C. * (2022). Spatiotemporal patterns of gliosis and neuroinflammation in presenilin 1/2 conditional double knockout miceFrontiers In Aging Neuroscience. 14:966153.

114.

Xu, Z., Zhuang, Y., Chen, Z., Hou, F., Chan, L., Feng, L., Ye, Q., He, Y., Zhou, Y., Jia, Y., Yuan, J., Lu, Z.-L., & Li, J. (2022). Assessing the contrast sensitivity function in myopic parafovea: A qCSF study, Frontiers in Neuroscience, Special issue: The Contrast Sensitivity Function: From Laboratory to Clinic (II), 16:971009.

115.

Lu, Z.-L., & Dosher, B. A. (2022). Current directions in visual perceptual learning. Nature Review Psychology, 1, 654–668.

116.

Tu, Y., Li, X., Lu, Z.-L., & Wang, Y. (2022). Protocol for Topology-preserving smoothing of retinotopic maps. STAR Protocols, 3(3), 101614.

117.

Gong, L., Zhao, J., Dai, Y., Wang, Z., Hou, F., Zhang, Y., Lu, Z-L., Zhou, J., (2022). Improving iconic memory through contrast detection training with HOA-corrected vision. Fundamental Research.

118.

Yang, S.E., Wilson, J.D., Lu, Z-L., Cranmer, S. (2022). Functional connectivity signatures of political ideology. PNAS Nexus, 1(3), pgac066.

119.

Tang, B., Li, K., Cheng, Y., Zhang, G., An, P., Sun, Y., Fang, Y., Liu, H., Shen, Y., Zhang, Y., Shan, Y., de Villers-Sidani, E., & Zhou, X. (2022). Developmental Exposure to Bisphenol a Degrades Auditory Cortical Processing in RatsNeurosci. Bull. https://doi.org/10.1007/s12264-022-00891-0.

120.

Yang, J., Yan, F.-F., Chen, L., Xi, J., Fan, S., Zhang, P., Lu, Z.-L., & Huang, C.-B. (2022). Identifying Long- and Short-term Processes in Perceptual Learning, Psychological Science, 33(5), 830-843.

121.

Liu, X., Wang, Y.,  Ying, X., Zhang, F., Huang, J., Yu, H., Wang, Q., Zheng, M., Hou, F., Lesmes, L., Lu, Z.-L., Lu, F, & Mao, X. (2022). Contrast sensitivity is associated with chorioretinal thickness and vascular density of eyes in simple early-stage high myopia, Frontiers in Medicine, 9:847817. 

122.

Proix, T., Delgado Saa, J., Christen, A., Martin, S., Pasley, B.N., Knight, R.T., Tian, X., Poeppel, D., Doyle, W.K., Devinsky, O., Arnal, L.H., Megevand, P., & Giraud, A-L. (2022). Imagined speech can be decoded from low- and cross-frequency intracranial EEG featuresNature communications, 13(1), 1-14.

123.

Gu, J., & Lim, S. (2022). Unsupervised learning for robust working memory. PLoS Computational Biology, 18(5).

124.

Chen, R., & Li, L.* (2022). Effects of divided attention on the visual control of steering toward a goal. Journal of Experimental Psychology: Human Perception and Performance, 48(6), 597–612. 

125.

Tu, Y., Lu, Z.-L., & Wang, Y. (2022). Diffeomorphic Registration for Retinotopic Maps of Multiple Visual Regions. Brain Structure and Function

126.

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