Goulding System References

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[1] Epli, H., Batık, M.V., Çabuker, N.D. et al. (2023).
Relationship between psychological resilience and parental acceptance-rejection: The mediating role of self-compassion. Curr Psychol 42, 2167–2175.
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[ DOI | ARC ]

 

[2] Badanes, L. S., Dmitrieva, J., & Watamura, S. E. (2012).
Understanding Cortisol Reactivity across the Day at Child Care: The Potential Buffering Role of Secure Attachments to Caregivers. Early Child Res Q. 2012 Jan;27(1):156-165.
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[3] Polcari, A., Rabi, K., Bolger, E., & Teicher, M. H. (2014).
Parental verbal affection and verbal aggression in childhood differentially influence psychiatric symptoms and wellbeing in young adulthood. Child abuse & neglect, 38(1), 91–102.
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[4] Tomoda, A., Sheu, Y. S., Rabi, K., Suzuki, H., Navalta, C. P., Polcari, A., & Teicher, M. H. (2011).
Exposure to parental verbal abuse is associated with increased gray matter volume in superior temporal gyrus. NeuroImage, 54 Suppl 1, S280–S286.
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[5] van der Helm, E., & Walker, M. P. (2011).
Sleep and Emotional Memory Processing. Sleep medicine clinics, 6(1), 31–43.
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[6] Diering G. H. (2022).
Remembering and forgetting in sleep: Selective synaptic plasticity during sleep driven by scaling factors Homer1a and Arc. Neurobiology of stress, 22, 100512.
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[7] Doidge, N. (2007).
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[8] Ye, Z. Y., Han, Z. Y., & Zhong, B. L. (2024).
Secure base and mental health in children: a narrative review. Translational pediatrics, 13(9), 1608–1616.
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[9] Sroufe, L. A. (2005).
Attachment and development: A prospective, longitudinal study from birth to adulthood. Attachment & Human Development, 7(4), 349–367.
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[10] Ainsworth, M. D. S., Blehar, M. C., Waters, E., & Wall, S. (1978).
Patterns of attachment: A psychological study of the strange situation. Erlbaum.
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[11] Thompson, R. A. (2014).
Stress and child development. The Future of Children, 24(1), 41–59.
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[12] Feldman R. (2007).
Parent-infant synchrony and the construction of shared timing; physiological precursors, developmental outcomes, and risk conditions. Journal of child psychology and psychiatry, and allied disciplines, 48(3-4), 329–354.
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[13] Cassidy, J., & Shaver, P. R. (Eds.). (2016).
Handbook of Attachment: Theory, Research, and Clinical Applications. United States: Guilford Publications.
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[14] Tronick, E. (2007).
The neurobehavioral and social-emotional development of infants and children. W. W. Norton & Company.
https://psycnet.apa.org/record/2006-13259-000
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[15] Cummings, E. M., & Davies, P. T. (2010).
Marital conflict and children: An emotional security perspective. Guilford Press.
https://www.guilford.com/books/Marital-Conflict-and-Children/Cummings-Davies/9781462503292
[ PUB | GBL | ARC ]

 

[16] Rutter, M. (2012).
Resilience as a dynamic concept. Development and Psychopathology, 24(2), 335–344.
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[17] Strauss, M., Sitt, J. D., King, J. R., Elbaz, M., Azizi, L., Buiatti, M., Naccache, L., van Wassenhove, V., & Dehaene, S. (2015).
Disruption of hierarchical predictive coding during sleep. Proceedings of the National Academy of Sciences of the United States of America, 112(11), E1353–E1362.
https://doi.org/10.1073/pnas.1501026112
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[18] Blume, C. et al. (2017).
Preferential processing of emotionally and self-relevant stimuli persists in unconscious N2 sleep. Brain Lang. 2017 Apr;167:72-82.
https://doi.org/10.1016/j.bandl.2016.02.004
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[19] Perrin, F., García-Larrea, L., Mauguière, F., & Bastuji, H. (1999).
A differential brain response to the subject’s own name persists during sleep. Clinical neurophysiology : official journal of the International Federation of Clinical Neurophysiology, 110(12), 2153–2164.
https://doi.org/10.1016/s1388-2457(99)00177-7
[ DOI | PMD ]

 

[20] Fields R. D. (2014).
Neuroscience. Myelin–more than insulation. Science (New York, N.Y.), 344(6181), 264–266.
https://doi.org/10.1126/science.1253851
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[21] Kouider, S., Andrillon, T., Barbosa, L. S., Goupil, L., & Bekinschtein, T. A. (2014).
Inducing task-relevant responses to speech in the sleeping brain. Current Biology, 24(18), 2208–2214.
DOI: https://doi.org/10.1016/j.cub.2014.08.016
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[22] Phelps E. A. (2004).
Human emotion and memory: interactions of the amygdala and hippocampal complex. Current opinion in neurobiology, 14(2), 198–202.
https://doi.org/10.1016/j.conb.2004.03.015
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[23] Cahn, B. R., & Polich, J. (2006).
Meditation states and traits: EEG, ERP, and neuroimaging studies. Psychological bulletin, 132(2), 180–211.
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[24] Hori, T., Hayashi, M., & Morikawa, T. (1994).
Topographical EEG changes and the hypnagogic experience. In R. D. Ogilvie & J. R. Harsh (Eds.), Sleep onset: Normal and abnormal processes (pp. 237–253). American Psychological Association.
https://doi.org/10.1037/10166-014
[ DOI | ARC ]

 

[25] Walker, M. P., & Stickgold, R. (2006).
Sleep, memory, and plasticity. Annual Review of Psychology, 57, 139–166.
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[26] Stickgold, R., & Walker, M. P. (2013).
Sleep-dependent memory triage: evolving generalization through selective processing. Nature neuroscience, 16(2), 139–145.
https://doi.org/10.1038/nn.3303
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[27] Evans, J. S., & Stanovich, K. E. (2013).
Dual-Process Theories of Higher Cognition: Advancing the Debate. Perspectives on psychological science : a journal of the Association for Psychological Science, 8(3), 223–41.
https://doi.org/10.1177/1745691612460685
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[28] Schore, A.N. (2001).
Effects of a secure attachment relationship on right brain development, affect regulation, and infant mental health. Infant Ment. Health J., 22: 7-66.
https://doi.org/10.1002/1097-0355(200101/04)22:1<7::AID-IMHJ2>3.0.CO;2-N
[ DOI | ARC ]

 

[29] Payne, J. D., & Kensinger, E. A. (2010).
Sleep’s Role in the Consolidation of Emotional Episodic Memories. Current Directions in Psychological Science, 19(5), 290-295.
https://doi.org/10.1177/0963721410383978
[ DOI | ARC ]

 

[30] Coenen A. (2024).
Sensory gating and gaining in sleep: the balance between the protection of sleep and the safeness of life (a review). Journal of sleep research, 33(5), e14152.
https://doi.org/10.1111/jsr.14152
[ DOI | PMD | ARC ]

 

[31] Goldstein, A. N., & Walker, M. P. (2014).
The role of sleep in emotional brain function. Annual review of clinical psychology, 10, 679–708.
https://doi.org/10.1146/annurev-clinpsy-032813-153716
[ DOI | PMC | ARC ]

 

[32] Edlow, B. L., Takahashi, E., Wu, O., Benner, T., Dai, G., Bu, L., Grant, P. E., Greer, D. M., Greenberg, S. M., Kinney, H. C., & Folkerth, R. D. (2012).
Neuroanatomic connectivity of the human ascending arousal system critical to consciousness and its disorders. Journal of neuropathology and experimental neurology, 71(6), 531–546.
https://doi.org/10.1097/NEN.0b013e3182588293
[ DOI | PMC | ARC ]

 

[33] Ameen, M. S., Heib, D. P. J., Blume, C., & Schabus, M. (2022).
The Brain Selectively Tunes to Unfamiliar Voices during Sleep. The Journal of Neuroscience : the official journal of the Society for Neuroscience, 42(9), 1791–1803.
https://doi.org/10.1523/JNEUROSCI.2524-20.2021
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[34] Dahl, R. E. (1996).
The regulation of sleep and arousal: Development and psychopathology. Development and Psychopathology. 1996;8(1):3-27.
https://doi.org/10.1017/S0954579400006945
[ DOI | ARC ]

 

[35] Colten, H. R., Altevogt, B. M., & Institute of Medicine (US) Committee on Sleep Medicine and Research (Eds.). (2006).
Sleep Disorders and Sleep Deprivation: An Unmet Public Health Problem. National Academies Press (US).
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[36] Patel, A. K., Reddy, V., Shumway, K. R., & Araujo, J. F. (2024).
Physiology, Sleep Stages. In StatPearls. StatPearls Publishing.
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[37] Brown, R. E., Basheer, R., McKenna, J. T., Strecker, R. E., & McCarley, R. W. (2012).
Control of sleep and wakefulness. Physiological reviews, 92(3), 1087–1187.
https://doi.org/10.1152/physrev.00032.2011
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[38] Taran, S., Gros, P., Gofton, T., Boyd, G., Briard, J. N., Chassé, M., & Singh, J. M. (2023).
The reticular activating system: a narrative review of discovery, evolving understanding, and relevance to current formulations of brain death. Le système d’activation réticulaire: un compte rendu narratif de sa découverte, de l’évolution de sa compréhension et de sa pertinence pour les formulations actuelles de la mort cérébrale. Canadian journal of anaesthesia = Journal canadien d’anesthesie, 70(4), 788–795.
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[39] Carozza, S., & Leong, V. (2021).
The Role of Affectionate Caregiver Touch in Early Neurodevelopment and Parent-Infant Interactional Synchrony. Frontiers in neuroscience, 14, 613378
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[40] Travis, K. E., Scala, M., Marchman, V. A., Wu, H., Dodson, C. K., Bruckert, L., Lazarus, M. F., Poblaciones, R. V., Yeom, K. W., & Feldman, H. M. (2025).
Listening to mom in the neonatal intensive care unit: a randomized trial of increased maternal speech exposure on white matter connectivity in infants born preterm. Frontiers in human neuroscience, 19, 1673471.
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[41] Carozza, S., & Leong, V. (2021).
The Role of Affectionate Caregiver Touch in Early Neurodevelopment and Parent-Infant Interactional Synchrony. Frontiers in neuroscience, 14, 613378. https://doi.org/10.3389/fnins.2020.613378
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[42] Rasch, B., & Born, J. (2013).
About sleep’s role in memory. Physiological reviews, 93(2), 681–766.
https://doi.org/10.1152/physrev.00032.2012
[ DOI | PMC | ARC ]

 

[43] Brown, R. E., Basheer, R., McKenna, J. T., Strecker, R. E., & McCarley, R. W. (2012).
Control of sleep and wakefulness. Physiological reviews, 92(3), 1087–1187.
https://doi.org/10.1152/physrev.00032.2011
[ DOI | PMC | ARC ]

 

[44] Diekelmann, S., & Born, J. (2010).
The memory function of sleep. Nature reviews. Neuroscience, 11(2), 114–126.
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[45] Patel, A. K., Reddy, V., Shumway, K. R., & Araujo, J. F. (2024).
Physiology, Sleep Stages. In StatPearls. StatPearls Publishing.
https://www.ncbi.nlm.nih.gov/books/NBK526132/
[ NLM | PMD | ARC ]

 

[46] Stickgold, R., & Walker, M. P. (2013).
Sleep-dependent memory triage: evolving generalization through selective processing. Nature neuroscience, 16(2), 139–145.
https://doi.org/10.1038/nn.3303
[ DOI | PMC | ARC ]

 

[47] Mindell, J. A., Kuhn, B., Lewin, D. S., Meltzer, L. J., Sadeh, A., & American Academy of Sleep Medicine (2006).
Behavioral treatment of bedtime problems and night wakings in infants and young children. Sleep, 29(10), 1263–1276.
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[48] Dunn, J., & Plomin, R. (1990).
Separate lives: Why siblings are so different. Basic Books.
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[49] Feinberg, M. E., Solmeyer, A. R., & McHale, S. M. (2012).
The third rail of family systems: sibling relationships, mental and behavioral health, and preventive intervention in childhood and adolescence. Clinical child and family psychology review, 15(1), 43–57.
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[50] Ogden, P., Minton, K., & Pain, C. (2006).
Trauma and the body: A sensorimotor approach to psychotherapy. W. W. Norton & Company.
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[51] Bower, P., & Gilbody, S. (2005).
Stepped care in psychological therapies: Access, effectiveness and efficiency. British Journal of Psychiatry, 186, 11–17.
https://doi.org/10.1192/bjp.186.1.11
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[52] DeCasper, A. J., & Spence, M. J. (1986).
Prenatal maternal speech influences newborns’ perception of speech sounds. Infant Behavior and Development, 9(2), 133–150.
https://doi.org/10.1016/0163-6383(86)90025-1
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[53] DeCasper, A. J., & Fifer, W. P. (1980).
Of human bonding: Newborns prefer their mothers’ voices. Science, 208(4448), 1174–1176.
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[54] Hepper, P. G. (1991).
An Examination of Fetal Learning Before and After Birth. The Irish Journal of Psychology, 12(2), 95–107.
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[ DOI ]

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