Long-term effects of prenatal drug exposure on the neural correlates of memory at encoding and retrieval.
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B. Salmeron | T. Ross | M. Black | F. Geng | T. Riggins | Tracy Riggins
[1] Carter Wendelken,et al. Age- and performance-related differences in hippocampal contributions to episodic retrieval , 2016, Developmental Cognitive Neuroscience.
[2] M. Black,et al. Prenatal Drug Exposure Moderates the Association between Stress Reactivity and Cognitive Function in Adolescence , 2014, Developmental Neuroscience.
[3] S. Ghetti,et al. Development of memory for spatial context: Hippocampal and cortical contributions , 2013, Neuropsychologia.
[4] S. Ghetti,et al. Developmental differences in hippocampal and cortical contributions to episodic retrieval , 2013, Cortex.
[5] M. Black,et al. Systematic Review of Prenatal Cocaine Exposure and Adolescent Development , 2013, Pediatrics.
[6] Hallvard Røe Evensmoen,et al. Long-axis specialization of the human hippocampus , 2013, Trends in Cognitive Sciences.
[7] Michael C. Anderson,et al. Strength of Coupling within a Mnemonic Control Network Differentiates Those Who Can and Cannot Suppress Memory Retrieval , 2013, The Journal of Neuroscience.
[8] C. Bauer,et al. Developmental and behavioral consequences of prenatal cocaine exposure: a review , 2012, Journal of Perinatology.
[9] B. Salmeron,et al. Memory ability and hippocampal volume in adolescents with prenatal drug exposure. , 2012, Neurotoxicology and teratology.
[10] B. Lester,et al. Impact of prenatal exposure to cocaine and tobacco on diffusion tensor imaging and sensation seeking in adolescents. , 2011, The Journal of pediatrics.
[11] Xiaoping P. Hu,et al. Increased “default mode” activity in adolescents prenatally exposed to cocaine , 2011, Human brain mapping.
[12] Hongkeun Kim,et al. Neural activity that predicts subsequent memory and forgetting: A meta-analysis of 74 fMRI studies , 2011, NeuroImage.
[13] Dana M. DeMaster,et al. Developmental Differences in Medial Temporal Lobe Function during Memory Encoding , 2010, The Journal of Neuroscience.
[14] M. Black,et al. A Review of the Effects of Prenatal Cocaine Exposure Among School-Aged Children , 2010, Pediatrics.
[15] C. Grady,et al. Event-related fMRI studies of episodic encoding and retrieval: Meta-analyses using activation likelihood estimation , 2009, Neuropsychologia.
[16] K. Christoff,et al. Experience sampling during fMRI reveals default network and executive system contributions to mind wandering , 2009, Proceedings of the National Academy of Sciences.
[17] Heekyeong Park,et al. Neural correlates of successful encoding of semantically and phonologically mediated inter-item associations , 2008, NeuroImage.
[18] Kaia L. Vilberg,et al. Memory retrieval and the parietal cortex: A review of evidence from a dual-process perspective , 2008, Neuropsychologia.
[19] Charan Ranganath,et al. Prefrontal Cortex and Long-Term Memory Encoding: An Integrative Review of Findings from Neuropsychology and Neuroimaging , 2007, The Neuroscientist : a review journal bringing neurobiology, neurology and psychiatry.
[20] Scott T. Grafton,et al. Wandering Minds: The Default Network and Stimulus-Independent Thought , 2007, Science.
[21] Kiralee M. Hayashi,et al. Dynamic mapping of normal human hippocampal development , 2006, Hippocampus.
[22] Kristina M. Visscher,et al. The neural bases of momentary lapses in attention , 2006, Nature Neuroscience.
[23] Kevin S. LaBar,et al. Co-activation of the amygdala, hippocampus and inferior frontal gyrus during autobiographical memory retrieval , 2005, Neuropsychologia.
[24] Karl Magnus Petersson,et al. The role of precuneus and left inferior frontal cortex during source memory episodic retrieval , 2005, NeuroImage.
[25] Henrik Walter,et al. Emotional context during encoding of neutral items modulates brain activation not only during encoding but also during recognition , 2005, NeuroImage.
[26] S. M. Daselaar,et al. When less means more: deactivations during encoding that predict subsequent memory , 2004, NeuroImage.
[27] B. Rossion,et al. Revisiting Snodgrass and Vanderwart's Object Pictorial Set: The Role of Surface Detail in Basic-Level Object Recognition , 2004, Perception.
[28] H. Spiers,et al. Prefrontal and medial temporal lobe interactions in long-term memory , 2003, Nature Reviews Neuroscience.
[29] M. Black,et al. Ongoing Maternal Drug Use, Parenting Attitudes, and a Home Intervention: Effects on Mother-Child Interaction at 18 Months , 2002, Journal of developmental and behavioral pediatrics : JDBP.
[30] K. Paller,et al. Observing the transformation of experience into memory , 2002, Trends in Cognitive Sciences.
[31] N. Tzourio-Mazoyer,et al. Automated Anatomical Labeling of Activations in SPM Using a Macroscopic Anatomical Parcellation of the MNI MRI Single-Subject Brain , 2002, NeuroImage.
[32] R. Buckner,et al. Neural Correlates of Episodic Retrieval Success , 2000, NeuroImage.
[33] Maureen M. Black,et al. Mother-Infant Interaction: Effects of a Home Intervention and Ongoing Maternal Drug Use , 2000, Journal of clinical child psychology.
[34] J L Lancaster,et al. Automated Talairach Atlas labels for functional brain mapping , 2000, Human brain mapping.
[35] S. Hans. Demographic and psychosocial characteristics of substance-abusing pregnant women. , 1999, Clinics in perinatology.
[36] Jack L. Lancaster,et al. The Talairach Daemon a database server for talairach atlas labels , 1997 .
[37] Richard S. J. Frackowiak,et al. Recalling Routes around London: Activation of the Right Hippocampus in Taxi Drivers , 1997, The Journal of Neuroscience.
[38] A. Pickering,et al. Spatial memory deficits in patients with unilateral damage to the right hippocampal formation , 1997, Neuropsychologia.
[39] Marilyn Jones-Gotman,et al. Right hippocampal excision impairs learning and recall of a list of abstract designs , 1986, Neuropsychologia.
[40] Brenda Milner,et al. The role of the right hippocampus in the recall of spatial location , 1981, Neuropsychologia.
[41] M. Farah,et al. Adolescents with and without gestational cocaine exposure: Longitudinal analysis of inhibitory control, memory and receptive language. , 2011, Neurotoxicology and teratology.
[42] P. Lang,et al. International Affective Picture System (IAPS): Instruction Manual and Affective Ratings (Tech. Rep. No. A-4) , 1999 .
[43] Y. Miyashita. Inferior temporal cortex: where visual perception meets memory. , 1993, Annual review of neuroscience.
[44] Kaia L. Vilberg,et al. Brain Networks Underlying Episodic Memory Retrieval This Review Comes from a Themed Issue on Macrocircuits Memory Signals within the Mtl , 2022 .