Zacytuj

Angilletta MJ, Youngblood JP, Neel LK, VandenBrooks JM. The Neuroscience of Adaptive Thermoregulation. Neurosci Lett 2019; 692:127-136. Search in Google Scholar

Rowsey J. Thermoregulation: cytokines involved in fever and exercise. Annu Rev Nurs Res 2013; 31: 19-46. Search in Google Scholar

Zila I, Brozmanova A, Javorka M, Calkovska A, Javorka K. Effects of hypovolemia on hypercapnic ventilatory response in experimental hyperthermia. Physiol Pharmacol 2007; 58(2): 781-790. Search in Google Scholar

Kahraman L, Thach BT. Inhibitory effects of hyperthermia on mechanisms involved in autoresuscitation from hypoxic apnea in mice: a model for thermal stress causing SIDS. J Appl Physiol 2004; 97(2): 669-74. Search in Google Scholar

Kiyatkin EA. Brain hyperthermia as physiological and pathological phenomena. Brain Res Brain Res Rev 2005; 50(1): 27-56. Search in Google Scholar

White M. Components and mechanisms of thermal hyperpnea. J Appl Physiol 2006; 101(2): 655-663. Search in Google Scholar

Hubbard RW, Bowers WD, Mathew WT. Rat model of acute heat stroke mortality. J Applied Physiol 1977; 42(6): 809-816. Search in Google Scholar

Hubbard RW, Criss RE, Elliott LP. Diagnostic significance of selected serum enzymes in a rat heat stroke model. J Applied Physiol 1979; 46(2): 334-339. Search in Google Scholar

Shido O, Nagasaka T. Thermoregulatory responses to acute body heating in rats acclimated to continuous heat exposure. J Applied Physiol 1990; 68(1):59-65 Search in Google Scholar

Kielblock AJ, Strydom NB, Burger FJ, Pretorius PJ, Manjoo M. Cardiovascular origins of heat stroke pathophy siology. An anesthetized rat model. Aviation, Space Environ Med 1982; 53: 171-178. Search in Google Scholar

Duborvitz V. Brooke MH. Development and Decay of Systemic Thermotolerance in Rats. Muscle Biopsy: A Modern Approach, Elsevier; 1973. Search in Google Scholar

Suzuki M, Misawa A, Tanaka Y, Nagashima K. Assessment of axillary temperature for the evaluation of normal body temperature of healthy young adults at rest in a thermoneutral environment. J Physiol Anthropol 2017; 36(1):18. Search in Google Scholar

Nixdorf-Miller A, Hunsaker DM, Hunsaker JC. Hypothermia and Hyperthermia Medicolegal Investigation of Morbidity and Mortality From Exposure to Environmental Temperature Extremes. Arch Pathol Lab Med 2006; 130(9): 1297-1304. Search in Google Scholar

Nakazawa M, Miyagawa ST, Morishima M, Kajio F, Takao A. Effects of Environmental Hyperthermia on Cardiovascular Function in the Rat Embryo. Ped Res 1999; 30:6. Search in Google Scholar

Roncal Jimenez CA, Ishimoto T, Lanaspa MA, Rivard CJ, Nakagawa T, Ejaz AA, et al. Fructokinase activity mediates dehydration-induced renal injury. Kidney Int. 2014; 86(2):294–302. Search in Google Scholar

McGill MR. The past and present of serum aminotransferases and the future of liver injury biomarkers. EXCLI J. 2016 15;15:817-828. Search in Google Scholar

Council for International Organizations and Medical Sciences; World Health Organization. International ethical guidelines for biomedical research involving human subjects. Geneva, Switzerland: World Health Organization; 2002; accessed on August 2020. Search in Google Scholar

Demers G. “Guidelines for Laboratory Animal Care” — ICLAS President presentation at the Workshop on Development and Science Based Guideines for Laboratory Animal Care, Washington D.C; 2003. Search in Google Scholar

Childs C. Body temperature and clinical thermometry. Handb Clin Neurol 2018; 157: 467-482. Search in Google Scholar

Weshler Z, Kapp DS, Lord PF, Hayes T. Isr J Med Sci 1989; 25(1):15-9. Search in Google Scholar

Krishna M. Patterns of necrosis in liver disease. Clin Liver Dis (Hoboken). 2017; 30;10(2):53-56. Search in Google Scholar

Nadesan K, Kumari C, Afiq M. Dancing to death: A case of heat stroke. Journal of Forensic and Legal Medicine 2017; 50:1-5. Search in Google Scholar

Wang F, Zhang Y, Li J, Xia H, Zhang D, Yao S. The pathogenesis and therapeutic strategies of heat stroke-induced liver injury. Crit Care 2022; 26(1):391. Search in Google Scholar

Hall DM, Buettner GR, Oberley LW, Xu L, Matthes RD, Gisolfi CV. Mechanisms of circulatory and intestinal barrier dysfunction during whole body hyperthermia. Am J Physiol Heart Circ Physiol 2001; 280:H509-H521. Search in Google Scholar

Snipe RMJ, Khoo A, Kitic CM, Gibson PR, Costa RJS. The impact of exertional-heat stress on gastrointestinal integrity, gastrointestinal symptoms, systemic endotoxin and cytokine profile. Eur J Appl Physiol 2018; 118:389-400. Search in Google Scholar

Gill JR. Pancreatitis: A Forensic Perspective. Acad Forensic Pathol 2016; 6(2):237-248. Search in Google Scholar

Grisé K, Kim F, McFadden D. Hyperthermia induces heat-shock protein expression, reduces pancreatic injury, and improves survival in necrotizing pancreatitis. Pancreas 2000; 21(2):120-5. Search in Google Scholar

Ahmed RR, Mazher KH. Histological, Histochemical and Biochemical Changes in the Liver, Kidney, Lung and Spleen under the Effect of Repetitive Hyperthermia in Rat Neonates. IJCP. 2009; 2:91-101. Search in Google Scholar

Liu CH, Wang CC, Lin HC, Chen IH, Tsai MK, Shiang JC. Pulmonary edema comPlicating exertional heat stroke: a case series. Resuscitation & Intensive Care Med 2016; 1:147-153. Search in Google Scholar

White MG, Luca LE, Nonner D, Saleh O, Hu B, Barrett EF, Barrett JN. Cellular mechanisms of neuronal damage from hyperthermia. Prog Brain Res 2007; 162:347-71. Search in Google Scholar

eISSN:
2668-7763
Język:
Angielski
Częstotliwość wydawania:
6 razy w roku
Dziedziny czasopisma:
Medicine, Clinical Medicine, other