Chronic orthostatic and antiorthostatic restraint induce neuroendocrine, immune and neurophysiologial disorders in rats.
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I. Assenmacher | J. Boissin | L. Givalois | I Assenmacher | M Mekaouche | D Maurel | G Barbanel | L Givalois | J Boissin | F Malaval | G Ixart | G. Barbanel | G. Ixart | M. Mekaouche | F. Malaval | D. Maurel
[1] P. Opstad,et al. Circadian rhythm of hormones is extinguished during prolonged physical stress, sleep and energy deficiency in young men. , 1994, European journal of endocrinology.
[2] G. V. Loon,et al. Differential Plasma β-Endorphin, β-Lipotropin, and Adrenocorticotropin Responses to Stress in Rats , 1985 .
[3] I. Assenmacher,et al. Chronic restraint enhances interleukin-1-beta release in the basal state and after an endotoxin challenge, independently of adrenocorticotropin and corticosterone release. , 1994, Neuroimmunomodulation.
[4] F. Booth,et al. Protein metabolism and beta-myosin heavy-chain mRNA in unweighted soleus muscle. , 1989, The American journal of physiology.
[5] X J Musacchia. An assessment of suspension systems: models that reproduce responses to weightlessness. , 1992, The Physiologist.
[6] V. Popovic,et al. Hormonal changes in antiorthostatic rats , 1982 .
[7] G. Chrousos,et al. Immobilization stress rapidly decreases hypothalamic corticotropin-releasing hormone secretion in vitro in the male 344/N Fischer rat. , 1993, Life sciences.
[8] C S Leach,et al. An overview of the endocrine and metabolic changes in manned space flight. , 1981, Acta astronautica.
[9] I. Assenmacher,et al. Serotoninergic system and circadian rhythms of ACTH and corticosterone in rats. , 1980, The American journal of physiology.
[10] G Sonnenfeld,et al. Influence of suspension on the expression of protective immunological memory to murine Listeria monocytogenes infection , 1993, Journal of leukocyte biology.
[11] I. Assenmacher,et al. Adrenocorticotropic regulations after bilateral lesions of the paraventricular or supraoptic nuclei and in Brattleboro rats. , 1982, Neuroendocrinology.
[12] D. Desplanches,et al. Effect of spontaneous recovery or retraining after hindlimb suspension on aerobic capacity. , 1987, Journal of applied physiology.
[13] E. Schiffrin,et al. Specific binding of atrial natriuretic factor to renal glomeruli during day or night antiorthostatic suspension in the rat. , 1988, Life Science.
[14] G Sonnenfeld,et al. Influence of antiorthostatic suspension on resistance to murine Listeria monocytogenes infection , 1994, Journal of leukocyte biology.
[15] M Hughes-Fulford,et al. Review of the biological effects of weightlessness on the human endocrine system. , 1993, Receptor.
[16] H. Sweeney,et al. Changes in fiber composition of soleus muscle during rat hindlimb suspension. , 1988, Journal of applied physiology.
[17] M. Cantin,et al. Early (1 to 24h) plasma atrial natriuretic factor changes in the rat during antiorthostatic hypokinetic suspension. , 1987, Biochemical and biophysical research communications.
[18] J M Steffen,et al. Disuse atrophy, plasma corticosterone, and muscle glucocorticoid receptor levels. , 1987, Aviation, space, and environmental medicine.
[19] S. Jacob,et al. Metabolism of branched-chain amino acids in leg muscles from tail-cast suspended intact and adrenalectomized rats. , 1989, Metabolism: clinical and experimental.
[20] P. Hagan,et al. Endotoxin-stimulated production of rat hypothalamic interleukin-1 beta in vivo and in vitro, measured by specific immunoradiometric assay. , 1993, Journal of molecular endocrinology.
[21] X. J. Musacchia,et al. Model for antiorthostatic hypokinesia: head-down tilt effects on water and salt excretion. , 1980, Journal of applied physiology: respiratory, environmental and exercise physiology.
[22] R. Geenen,et al. Chronic stress affects immunologic but not cardiovascular responsiveness to acute psychological stress in humans. , 1994, The American journal of physiology.
[23] H. Yokogoshi,et al. Changes in vitamin A status following prolonged immobilization (simulated weightlessness). , 1992, Life sciences.