[1. Brengelmann GL. Dilemma of body temperature measurement. Man in Stressful Environments, Shiraki K, Yousef MK. Springfield, IL: CC Thomas Publishers. 1987 5-22;]Search in Google Scholar
[2. Sund-Levander M, Forsberg C, Wahren LK. Normal oral, rectal, tympanic and axillary body temperature in adult men and women: a systematic literature review. Scand J Caring Sci. 2002 Jun;16(2):122-8;10.1046/j.1471-6712.2002.00069.x]Search in Google Scholar
[3. Blatteis CM. Methods of body temperature measurement. Physiology and pathophysiology of temperature regulation. River Edge, NJ: World Scientific Publishing. 1998 273-9;10.1142/9789812816979_bmatter]Search in Google Scholar
[4. Elsner R, Gooden B. Diving and asphyxia. A comparative study of animals and man. Monogr Physiol Soc. 1983;40:1-168;10.1017/CBO9780511735714]Search in Google Scholar
[5. Pan AW, He J, Kinouchi Y, Yamaguchi H., Miyamoto H. Blood flow in the carotid artery during breath-holding in relation to diving bradycardia. Eur J Appl Physiol Occup Physiol. 1997;75(5):388-95. DOI:10.1007/s004210050177;10.1007/s004210050177]DOI öffnenSearch in Google Scholar
[6. Joulia F, Steinberg JG, Wolff F, Gavarry O, Jammes Y. Reduced oxidative stress and blood lactic acidosis in trained breath-hold human divers. Respir Physiol Neurobiol. 2002 Oct 23;133(1-2):121-30;10.1016/S1569-9048(02)00133-7]Search in Google Scholar
[7. Andersson J, Schagatay E, Gislén A, Holm B. Cardiovascular responses to cold-water immersions of the forearm and face, and their relationship to apnoea Respir Physiol Neurobiol. 2002 Oct 23;133(1-2):121-30;]Search in Google Scholar
[8. Słomko J, Kozakiewicz M, Klawe JJ, Tafil-Klawe M, Siermontowski P, Zalewski P. Circadian Rhythm of Core Body Temperature (Part II): Hyperbaric Environment Influence on Circadian Rhythm of Core Body Temperature. Polish Hyperbaric Research. 2016 Dec 1;57(4):19-25. DOI: 10.1515/phr-2016-0022;]Search in Google Scholar
[9. McKenzie JE, Osgood DW. Validation of a new telemetric core temperature monitor. J Therm Biol. 2004, 29(7), 605-611; 10.1016/j.jtherbio.2004.08.020]DOI öffnenSearch in Google Scholar
[10. Zalewski P, Klawe JJ, Buszko K, Tafil-Klawe M, Łukowicz M. Daily measurement of internal and external body temperature with the use of VitalSense system. Acta Bio-Optica et Informatica Medica, 2008, 2, 14;]Search in Google Scholar
[11. Byrne C, Lim CL. The ingestible telemetric body core temperature sensor: a review of validity and exercise applications. Br J Sports Med. 2007 Mar;41(3):126-33. Epub 2006 Dec 18. DOI:10.1136/bjsm.2006.026344;10.1136/bjsm.2006.026344246522917178778]DOI öffnenSearch in Google Scholar
[12. Nelson W, Tong YL, Lee JK, Halberg F. Methods for cosinor-rhythmometry. Chronobiologia, 1979, 6(4), 305;]Search in Google Scholar
[13. Storch KF, Paz C, Signorovitch J, Raviola E, Pawlyk B, Li T, Weitz CJ. Intrinsic circadian clock of the mammalian retina: importance for retinal processing of visual information. Cell, 2007, 130(4), 730-741;10.1016/j.cell.2007.06.045204002417719549]Search in Google Scholar
[14. Ian David Blum. Cosinor-FDR. https://github.com/storchlab, 2014;]Search in Google Scholar
[15. Cornelissen G. Cosinor-based rhythmometry. Theor Biol Med Model. 2014 Apr 11;11:16. doi: 10.1186/1742- 4682-11-16;10.1186/1742-4682-11-16399188324725531]DOI öffnenSearch in Google Scholar
[16. Xiong J, Lian Z, Zhou, X, You J, Lin Y. Effects of temperature steps on human health and thermal comfort. Building and Environment, 2015, 94 144-154;10.1016/j.buildenv.2015.07.032]Search in Google Scholar
[17. Moran MJ. Engineering thermodynamics. In The CRC Handbook of Mechanical Engineering, Second Edition. 2004, CRC Press, 271.10.1201/9781420041583.ch2]Search in Google Scholar