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1 mechanical stress, immune response, and even emotional stress.
2 1 stabilization in anti-apoptotic effects of emotional stress.
3  and to reactivate on physical, hormonal, or emotional stress.
4 art failure syndrome precipitated by intense emotional stress.
5 ine and autonomic PVH outputs in response to emotional stress.
6 amo-pituitary-adrenal (HPA) axis response to emotional stress.
7 th left ventricular dysfunction after sudden emotional stress.
8  and none reflected evidence of cognitive or emotional stress.
9  to a number of stimuli, such as coldness or emotional stress.
10 m, often precipitated by cold temperature or emotional stress.
11  and to reactivate on physical, hormonal, or emotional stress.
12 e common than deaths during exercise or with emotional stress: 82% versus 16%.
13                           Physical exertion, emotional stress and environmental temperature were the
14  changes may confer increased sensitivity to emotional stress and impaired social competence, contrib
15  adipose tissue in sensing and responding to emotional stress and in behavioral regulation, however,
16  but also for the regulation of responses to emotional stress and other autonomic functions.
17  opportunity to examine the relation between emotional stress and sudden cardiac death.
18  in animal models raise the question whether emotional stress can cause striatal degeneration in susc
19                            Episodes of acute emotional stress can have significant adverse effects on
20                                              Emotional stress can precipitate severe, reversible left
21                                        Acute emotional stress can produce left ventricular contractil
22 hic ventricular tachycardia with physical or emotional stress, for which current therapy with beta-bl
23 left ventricular dysfunction precipitated by emotional stress has been reported, but the mechanism re
24      Nonpharmacological approaches to manage emotional stress in patients with and without coronary a
25 esent new data also implicating psychosocial/emotional stress in RCAN1 induction.
26 bute to alterations in HPA axis responses to emotional stress in sensitization and habituation paradi
27 teristics, patient survival, or the level of emotional stress in the medical team and did not result
28 itry providing for dorsal mPFC modulation of emotional stress-induced HPA activation.
29                 We found that NE, as well as emotional stress, induces phosphorylation of GluR1 at si
30                                              Emotional stress is associated with increased risk of ca
31                                     Although emotional stress is associated with ischemic heart disea
32 experience in mounting adaptive responses to emotional stress, it follows that the LC-to-mPFC pathway
33 the week after the earthquake, suggests that emotional stress may precipitate cardiac events in peopl
34   Lateralization of cerebral activity during emotional stress may stimulate the heart asymmetrically
35                    It can be precipitated by emotional stress, neurologic injury, and numerous other
36 , hospital anxiety and depression scale, and emotional stress of carers (general health questionnaire
37 iety, depression, and number of falls, or on emotional stress of carers.
38 use of their religion as they coped with the emotional stress of RA.
39 sudden cardiac death in the setting of acute emotional stress should receive a beta-blocker.
40 few weeks, often associated with physical or emotional stress, suggests a trigger initiating a nervou
41 ardiovascular events in the setting of acute emotional stress, the anatomical substrate and physiolog
42 ubstrate and physiological pathways by which emotional stress triggers cardiovascular events are only
43 thalamo-pituitary-adrenal (HPA) responses to emotional stress via influences on neuroendocrine effect
44 tients are often associated with exercise or emotional stress, which suggests a prominent role for th

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