- 創傷后應激障礙
- 王慶松 譚慶榮
- 1298字
- 2019-12-27 12:11:42
參考文獻
1.Adamec R,Holmes A,Blundell J. Vulnerability to lasting anxiogenic effects of brief exposure to predator stimuli:sex,serotonin and other factors-relevance to PTSD. Neurosci Biobehav Rev. 2008,32(7):1287-1292.
2.Berardi A,Trezza V,Campolongo P. Modeling specific phobias and posttraumatic stress disorder in rodents:the challenge to convey both cognitive and emotional features. Rev Neurosci. 2012:1-13.
3.Brown VM,Morey RA. Neural systems for cognitive and emotional processing in posttraumatic stress disorder. Front Psychol. 2012,3:449.
4.Campos AC,Ferreira FR,Silva WA,Guimaraes FS. Predator threat stress promotes long lasting anxiety-like behaviors and modulates synaptophysin and CB1 receptors expression in brain areas associated with PTSD symptoms. Neurosci Lett. 2012.
5.Cohen H,Kaplan Z,Koresh O,Matar MA,Geva AB,Zohar J. Early post-stressor intervention with propranolol is ineffective in preventing posttraumatic stress responses in an animal model for PTSD. Eur Neuropsychopharmacol. 2011,21(3):230-40.[PMID:21194896]
6.Griffith J. Suicide and war:the mediating effects of negative mood,posttraumatic stress disorder symptoms,and social support among army National Guard soldiers. Suicide Life Threat Behav. 2012,42(4):453-69.
7.Herrmann L,Ionescu IA,Henes K,Golub Y,Wang NX,Buell DR,et al. Long-lasting hippocampal synaptic protein loss in a mouse model of posttraumatic stress disorder. PLoS One. 2012,7(8):e42603.
8.Kozlovsky N,Matar MA,Kaplan Z,Zohar J,Cohen H. The role of the galaninergic system in modulating stress-related responses in an animal model of posttraumatic stress disorder. Biol Psychiatry. 2009,65(5):383-391.[PMID:19095221]
9.Kung JC,Chen TC,Shyu BC,Hsiao S,Huang AC. Anxiety-and depressive-like responses and c-fos activity in preproenkephalin knockout mice:oversensitivity hypothesis of enkephalin deficit-induced posttraumatic stress disorder. J Biomed Sci. 2010,17:29.
10.Liu D,Xiao B,Han F,Wang E,Shi Y. Single-prolonged stress induces apoptosis in dorsal raphe nucleus in the rat model of posttraumatic stress disorder. BMC Psychiatry. 2012,12(1):211.
11.McLay RN,Graap K,Spira J,Perlman K,Johnston S,Rothbaum BO,et al. Development and testing of virtual reality exposure therapy for post-traumatic stress disorder in active duty service members who served in Iraq and Afghanistan. Mil Med. 2012,177(6):635-642.
12.Smith-Bell CA,Burhans LB,Schreurs BG. Predictors of susceptibility and resilience in an animal model of posttraumatic stress disorder.Behav Neurosci. 2012,126(6):749-761.
13.Wang Q,Yu K,Wang J,Lin H,Wu Y,Wang W. Predator stressinduced persistent emotional arousal is associated with alterations of plasma corticosterone and hippocampal steroid receptors in rat. Behav Brain Res,2012,230(1):167-174.
14.安獻麗,鄭希耕. 創傷后應激障礙的動物模型及其神經生物學機制. 心理科學進展,2008(3):371-377.
15.曹碧茵,施建蓉,童瑤,等. 心理應激動物模型的研制及其應用.中國行為醫學科學,2005(2):99-100.
16.陳淑媛,賀薇,石玉秀. 海馬-HPA軸-PTSD的相關性. 中外醫療,2010,29(25):187,189.
17.董瑞婕,吳愛勤. 注射糖皮質激素和慢性束縛應激抑郁樣大鼠模型的比較及其機制探討. 上海精神醫學,2009(2):71-73,88.
18.劉媛,王莉,伍亞民. 創傷后應激障礙的實驗動物模型. 中國臨床神經科學,2010(4):436-439.
19.陸邵佳,李凌江. 創傷后應激障礙患者下丘腦-垂體-腎上腺軸系統研究進展. 神經疾病與精神衛生,2010,10(4):406-408.
20.娜琴,程飚,陳阿梅. 應激動物模型構建方法及效果評價的研究進展. 中國組織工程研究與臨床康復,2011(11):2051-2054.
21.陶嶸. 創傷后應激障礙大鼠模型的情景恐懼記憶神經機制的研究. 中南大學,2006.
22.王芳. PTSD大鼠模型的實驗研究. 卒中與神經疾病雜志,2012(1):80-81.
23.王禾. PTSD動物模型的制備及其發病機制的研究. 第三軍醫大學,2003.
24.王慶松,吳渝憲,王偉文,等. 捕食應激致大鼠的持續性情緒喚醒障礙. 中國臨床康復,2006,(42):57-60.
25.肖蓉,張小遠. 醫學心理學研究中實驗動物模型及應用概述. 健康心理學雜志,2003,11(4):264-266
26.張黎明,張有志,李云峰. 創傷后應激障礙的神經生物學研究進展. 中國藥理學通報,2010,26(6):704-707.
27.張婭玲,白艷秋,彭正午,等. 創傷后應激障礙(PTSD)的生物學研究概述. 現代生物醫學進展,2011,11(1):172-175,168.
28.趙中興,伍亞民. 一種新的大鼠創傷后應激障礙模型的建立及其行為學檢測. 第三軍醫大學學報,2012(10):928-932.
29.周光興. 人類疾病動物模型復制方法學. 上海∶上海科學技術文獻出版社,2008.
30.Berardi A,Trezza V,Palmery M,et al. An updated animal model capturing both the cognitive and emotional features of post-traumatic stress disorder(PTSD). Front Behav Neurosci,2014,8:142.
31.Wilson CB,Ebenezer PJ,McLaughlin LD,et al. Predator Exposure/Psychosocial Stress Animal Model of Post-Traumatic Stress Disorder Modulates Neurotransmitters in the Rat Hippocampus and Prefrontal Cortex. PLoS One. 2014,9(2):e89104.