Mia Thomaidou

188 53. Manaï M, van Middendorp H, Veldhuijzen DS, Huizinga TWJ, Evers AWM. How to Prevent, Minimize, or Extinguish Nocebo Effects in Pain: A Narrative Review on Mechanisms, Predictors, and Interventions. Vol 4. Lippincott Williams and Wilkins; 2019:e699. doi:10.1097/PR9.0000000000000699 54. Turk DC, Wilson HD. Fear of Pain as a Prognostic Factor in Chronic Pain: Conceptual Models, Assessment, and Treatment Implications. doi:10.1007/s11916-010- 55. Britton JC, Lissek S, Grillon C, Norcross MA, Pine DS. Development of anxiety: the role of threat appraisal and fear learning. Depression and Anxiety. 2011;28(1):5-17. doi:10.1002/da.20733 56. Bradley MM, Silakowski T, Lang PJ. Fear of pain and defensive activation. Pain. 2008;137(1):156-163. doi:10.1016/j.pain.2007.08.027 57. Ochsner KN, Ludlow DH, Knierim K, et al. Neural correlates of individual differences in pain-related fear and anxiety. Pain. 2006;120(1-2):69-77. 58. Perusini JN, Fanselow MS. Neurobehavioral perspectives on the distinction between fear and anxiety. Learning and Memory. 2015;22(9):417-425. doi:10.1101/lm.039180.115 59. Sylvers P, Lilienfeld SO, LaPrairie JL. Differences between trait fear and trait anxiety: Implications for psychopathology. Clinical Psychology Review. 2011;31(1):122. 60. Davis M. The role of the amygdala in fear-potentiated startle: implications for animal models of anxiety. Trends in Pharmacological Sciences. 1992;13(C):35-41. 61. Moberg C, Curtin J. Alcohol Selectively Reduces Anxiety but Not Fear: Startle Response During Unpredictable Versus Predictable Threat. Article in Journal of Abnormal Psychology. Published online 2009. doi:10.1037/a0015636 62. Davis M. Neural systems involved in fear and anxiety measured with fearpotentiated startle. American Psychologist. 2006;61(8):741-756. doi:10.1037/0003- 63. Hamm AO. Fear, anxiety, and their disorders from the perspective of psychophysiology. Psychophysiology. 2020;57(2). doi:10.1111/psyp.13474 64. Grillon C. Models and mechanisms of anxiety: Evidence from startle studies. Psychopharmacology. 2008;199(3):421-437. doi:10.1007/s00213-007-1019-1 65. Bennett KP, Dickmann JS, Larson CL. If or when? Uncertainty’s role in anxious anticipation. Psychophysiology. 2018;55(7):e13066. doi:10.1111/psyp.13066 66. Anderson NE, Wan L, Young KA, Stanford MS. Psychopathic traits predict startle habituation but not modulation in an emotional faces task. Personality and Individual Differences. 2011;50(5):712-716. doi:10.1016/j.paid.2010.12.023 67. Gramsch C, Kattoor J, Icenhour A, et al. Learning pain-related fear: Neural mechanisms mediating rapid differential conditioning, extinction and reinstatement processes in human visceral pain. Neurobiology of Learning and Memory. 2014;116:36. 68. Benson S, Kattoor J, Kullmann JS, et al. Towards understanding sex differences in visceral pain: Enhanced reactivation of classically-conditioned fear in healthy women. Neurobiology of Learning and Memory. 2014;109:113-121. 69. Piedimonte A, Guerra G, Vighetti S, Carlino E. Measuring expectation of pain: Contingent negative variation in placebo and nocebo effects. European Journal of Pain. 2017;21(5):874-885. doi:10.1002/ejp.990 70. Vlaeyen JWS. Learning to predict and control harmful events. PAIN. 2015;156(4):S86-S93. doi:10.1097/j.pain.0000000000000107 71. Meulders A, Rousseau A, Vlaeyen JWS. Motor intention as a trigger for fear of movement-related pain: An experimental cross-US reinstatement study. Journal of Experimental Psychopathology JEP. 2015;6:206-228. doi:10.5127/jep.043614

RkJQdWJsaXNoZXIy MTk4NDMw