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Thermovision analysis of surface body temperature changes after thermal stimulation treatments in healthy men

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Among thermal stimulation treatments that have a beneficial effect on the human body general application of cold and various forms of massage are mentioned which can be assessed by means of thermovision analysis. The aim of the study was to evaluate changes in the distribution of surface body temperature under the influence of whole-body cryostimulation, classical massage and hot stone massage. Materials and methods: The study was conducted on a group of 40 men aged 20–24 years. They were subjected to a cryostimulation treatment at –120 °C and –140 °C, and to heat-stimulating treatments in the form of massages. Before the treatment, blood pressure and heart rate were measured. Temperature distribution in the 12 areas of the body surface was recorded using a Thermo Vision A20M Thermo Vision Camera with Therma CAM Researcher 2.8 software. Results: Statistically significant differences between cryostimulation treatments in the left upper limb and the back of the trunk were found. After heat-stimulating treatments, a statistically significant increase in temperature after classic massage was observed in the lower limbs, and a similar increase in temperature was noted in the rear of the pectoral girdle and of the trunk after hot stone massage. Conclusions: The thermovision analysis showed a great variation of body surface temperature depending on the body area. The higher changes in temperature, of up to 20%, were found within the upper and lower extremities in the group treated with cryostimulation. After heat-stimulating treatments, lower temperature differences, of 2–6%, were observed, the largest within the trunk and the lower limbs.
Rocznik
Strony
79--87
Opis fizyczny
Bibliogr. 25 poz., rys., tab., wykr.
Twórcy
autor
  • Faculty of Physiotherapy, University School of Physical Education Wrocław, Wrocław, Poland
autor
  • Faculty of Sport Science, University School of Physical Education Wrocław, Wrocław, Poland
  • Faculty of Health Sciences, Medical University Wrocław, Wrocław, Poland
  • Faculty of Physiotherapy, University School of Physical Education Wrocław, Wrocław, Poland
  • Faculty of Physiotherapy, University School of Physical Education Wrocław, Wrocław, Poland
Bibliografia
  • [1] ADAMCZYK-BUJNIEWICZ H., KUBACKI J., Local and distant thermal changes as the reaction to the massage application, Balneologia Polska, 2006, 3, 170–175.
  • [2] AMMER K., The Glamorgan protocol for recording and evaluation of thermal images of the human body, Thermol. Int., 2008, 18, 125–129.
  • [3] BANFI G., LOMBARDI G., COLOMBINI A., MELEGATI G., Wholebody cryotherapy in athletes, Sports Med., 2010, 40, 509–517.
  • [4] BOGUSZEWSKI D., ADAMCZYK J.G., ANDERSZ N., MROZEK N., PIEJKO K., JANICKA M., BIAŁOSZEWSKI D., Impact of classical massage on temperature, strength and flexibility of upper limbs muscles in healthy men, TSS, 2015, 22 (2), 71–75.
  • [5] BOGUSZEWSKI D., ADAMCZYK J.G., URBAŃSKA N., MROZEK N., PIEJKO K., JANICKA M., BIAŁOSZEWSKI D., Using thermal imaging to assess the effect of classical massage on selected physiological parameters of upper limbs, Biomedical Human Kinetics, 2014, 6, 146–150, DOI: 10.2478/bhk-2014-0024.
  • [6] COSTELLO J., MCINERNEY C.D., BLEAKLEY C.M., SELFE J., DONNELLY A.E., The use of thermal imaging in assessing skin temperature following cryotherapy: a review, J. Therm. Biol., 2012, 37 (2), 103–110.
  • [7] CHOLEWKA A., DRZAZGA Z., SIERON A., STANEK A., Thermovision diagnostics in chosen spine diseases treated by whole body cryotherapy, J. Therm. Anal. Calorim., 2010, 102, 113–119.
  • [8] CHOLEWKA A., DRZAZGA Z., SIEROŃ A., Monitoring of whole body cryotherapy effects by thermal imaging; preliminary report, Phys. Med., 2008, 22, 57–62.
  • [9] CHWAŁCZYŃSKA A., GRUSZKA K., CAŁKOSIŃSKI I., SOBIECH K.A., Thermovision analysis changes of human surface temperature in cold pressor test, BioMed. Res. Int., 2015, art. ID 783642 [5 p.], DOI: 10.1155/2015/783642.
  • [10] DĘBIEC-BĄK A., PAWIK Ł., SKRZEK A., Thermoregulation of football players after cryotherapy in thermography, J. Therm. Anal. Calorim., 2016, 126 (3), 1633–1644, DOI: 10.1007/s10973-016-5623-3.
  • [11] DĘBIEC-BĄK A., SKRZEK A., PODBIELSKA H., Application of thermovision for estimation of the optimal and safe parameters of the whole body cryotherapy, J. Therm. Anal. Calorim., 2013, 111, 1853–1859.
  • [12] HINDS T., MCEWAN I., PERKES J., DAWSON E., BALL D., GEORGE K., Effects of massage on limb and skin blood flow after quadriceps massage, Med. Sci. Sports Exerc., 2004, 36 (8), 1308–1313.
  • [13] GRUSZKA K., Thermovision evaluation of the body surface temperature distribution after some thermal stimulation application, Doctoral thesis, Pomeranian Medical University in Szczecin, Szczecin 2014.
  • [14] KLIMEK A.T., LUBKOWSKA A., SZYGUŁA Z., CHUDECKA M., FRĄCZEK M., The influence of the ten session of the whole body cryostimulation on aerobic and anaerobic capacity, IJOMER, 2010, 23, 181–189.
  • [15] MATOS F., NEVES E.B., NORTE M., ROSA C., REIS V.M., ALVES J.V., The use of thermal imaging to monitor skin temperature during cryotherapy: a systematic review, Infrared Phys. Techn., 2015, 73, 194–203, DOI: 10.1016/j.infrared.2015.09.013.
  • [16] MOREIRA D.G., COSTELLO J.T., BRITO C.J., ADAMCZYK J.D.G., AMMER K., BACH A.J.E., COSTA C.M.A., EGLIN C., FERNANDES A.A., FERNÁNDEZ-CUEVAS I., FERREIRA J.J.A., FORMENTI D., FOURNET D., HAVENITH G., HOWELL K., JUNG A., KENNY G.P., KOLOSOVAS-MACHUCA E.S., MALEY M.J., MERLA A., PASCOE D.D., PRIEGO QUESADA J.I., SCHWARTZ R.G., SEIXAS A.R.D., SELFE J., VAINER B.G., SILLERO-QUINTANA M., Thermographic imaging in sports and exercise medicine: A Delphi study and consensus statement on the measurement of human skin temperature, J. Therm. Biol., 2017, 69, 155–162.
  • [17] PODBIELSKA H., SKRZEK A., Wykorzystywanie niskich temperatur w biomedycynie, A. Skrzek (eds.), Oficyna Wydawnicza Politechniki Wrocławskiej, 2012, 33–38.
  • [18] RING E.F.J., AMMER K., The technique of thermal imaging in medicine, Thermol. Int., 2000, 10, 7–14.
  • [19] SOBIECH K.A., CHWAŁCZYŃSKA A., GRUSZKA K., JĘDRZEJEWSKI G., Zastosowanie termowizji w ocenie zmian temperatury powierzchniowej ciała po kąpieli morsów (regular winter swimmer), PAK, 2014, 60, 1112–1115.
  • [20] SOBIECH K.A., SKRZEK A., DĘBIEC-BĄK A., GRUSZKA K., SOCHA M., JONAK W., Dynamics of body temperature changes in women due to the whole-body cryotherapy: preliminary communication, Acta Bio-Optica Inform. Med., 2009, 15, 315–318.
  • [21] WESTERLUND T., OKSA J., SMOLANDER J., MIKKELSSON M., Thermal responses during and after whole-body cryotherapy (–110 °C), J. Therm. Biol., 2003, 28, 601–608.
  • [22] WESTERLUND T., SMOLANDER J., UUSITALO-KOSKINEN A., MIKKELSSON M., The blood pressure responses to an acute and long-term whole-body cryotherapy (–110 °C) in men and women, J. Therm. Biol., 2004, 36, 264–268.
  • [23] WITOŚ M., DEMCZUK-WŁODARCZYK E., PODBIELSKA H., Termowizyjna ocena zmian temperatury w okolicy grzbietowej pod wpływem masażu relaksacyjnego gorącymi kamieniami, Acta Bio-Opt. Inform. Med., 2009, 15, 239–243.
  • [24] ZALEWSKI P., BUSZKO K., KLAWE J.J., TAFIL-KLAWE M., LEWANDOWSKI A., SŁOMIŃSKI K., PANOWICZ I., Influence of the whole body cryotherapy on the body temperature in chosen regions in reference to the body mass index, Acta BioOpt. Inform. Med., 2009, 15, 129–136.
  • [25] ŻUK M., DĘBIEC-BĄK A., PAWIK Ł., SKRZEK A., Influence of massage deep in quadriceps soccer players, in isokinetic testing and thermography, Journal of Education, Health and Sport, 2016, 6 (7), 236–251.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9c248148-d070-4e28-b2a5-65a05afd951b
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