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1 of the variance in severity of posttraumatic stress reaction.
2 ed to play a critical role in signaling cell stress reactions.
3 ent at a traumatic event may also experience stress reactions.
4 ria for Gulf War illness, and post-traumatic stress reactions.
5 ity factors that increase the risk of combat stress reactions among soldiers once deployed to a war z
6 s per 1000; 95% CI, 11.8 to 19.6), and acute stress reaction and adjustment disorders (12.0 excess ca
7 3.9 to 23.5), and 16.4 excess cases of acute stress reaction and adjustment disorders (95% CI, 12.2 t
8 FoxO-Smad synexpression group suggests that stress reactions and adaptive functions accompany the cy
9 ential of ongoing stress to compound initial stress reactions and lead to a delayed increase in PTSD
10 h greater negative emotionality, aggression, stress reaction, and alienation but lower well-being; pa
11 After pediatric injury, transient traumatic stress reactions are common, and about 1 in 6 children a
13 eexisting trauma, addressing acute traumatic stress reactions associated with the injury event, minim
14 have been reported in self-esteem as well as stress reactions, but so far their interactions have not
15 -up assessments, which suggests that adverse stress reactions cannot necessarily be expected to dissi
17 into the IDTC state seems to be an inherent stress reaction for survival toward unfavorable environm
18 vin mononucleotide and regulates the general stress reaction in Bacillus subtilis in response to blue
20 The X-XO system was capable of producing a stress reaction in zebrafish sperm reducing its sperm mo
21 ohormonal activation, hypothalamic-pituitary stress reaction, inflammation and immune cell signaling,
23 sex-specific associations of self-esteem and stress reaction on behavioral, hormonal and neural level
24 ertional leg pain includes stress fractures, stress reaction, periostitis, claudication, popliteal ar
25 cal and psychiatric conditions, acute combat stress reaction, post-traumatic stress disorder, and pos
28 developing severe and chronic posttraumatic stress reactions that are associated with chronic anxiet
29 function of the Sup35p prion domain, and the stress reaction to prion infection suggest that [PSI+] i
30 y stressful in the short run, but that acute stress reactions to such an event further predict later
31 dence that 12/15LO modulates brain oxidative stress reactions using ApoE-/- mice crossbred with 12/15
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