Open Access

Thermovision in Medical and Environmental Applications


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[1] Mandura H. (ed): Pomiary termowizyjne w praktyce. Agencja Wydawnicza PAKu, Warszawa 2004. Search in Google Scholar

[2] Hussey D.L., Biagioni P.A., Lamey P.J.: Thermographic measurement of temperature change during resin composite polymerization in vivo. Journal of Dentistry, 23, 5, 1995, 267-171.10.1016/0300-5712(95)91149-H7560372 Search in Google Scholar

[3] Saxena A.K., Schleef J, Morcate J.J., Schaarschmidt K., Willital G.H.: Thermography of Clostridium perfringensinfection in childhood. Pediatr Surg Int, 15, 1999, 75-76.10.1007/s0038300505199914364 Search in Google Scholar

[4] Mačianskytė D., Adaškevičius R.: Automatic detection of human maxillofacial tumors by using thermal imaging: A preliminary study Sensors, 22, 5, 2022. Search in Google Scholar

[5] Baic A., Plaza D., Lange B., Michalecki Ł., Stanek A.: Twelve-month evaluation of temperature effects of radiotherapy in patients after mastectomy. Int. Journal of Environmental Research and Public Health, 19, 2022.10.3390/ijerph19052834891053435270526 Search in Google Scholar

[6] Goetz C., Foertsch D., Schoenberger J., Uhl E.: Thermography – a valuable tool to test hydrocephalus shunt patency. Acta Neurochir (Wien), 147, 2005, 1167-1173.10.1007/s00701-005-0608-116133774 Search in Google Scholar

[7] Badža V., Jovanþevic V., Fratric F., Roglic G., Sudarov N.: Possibilities of thermovision application in sport and sport rehabilitation. Vojnosanitetski pregled, 69 (10), 2012, 904-907.10.2298/VSP1210904B Search in Google Scholar

[8] Maksymowicz K., Dudek K., Bauer J., Jurek T., Drozd R.: Assessment of the possibilities of application of the thermovision technique in medico-legal diagnosis. Theoretical basis. Annales Academiae Medicae Stetinensis, 53, 2007, 102-106. Search in Google Scholar

[9] Cholewka A., Kasprzyk T., Stanek A., Sieroń-Stołtny K., Drzazga Z.: May thermal imaging be useful in cyclist endurance tests?, Journal of Thermal Analysis and Calorimetry, 123 (3), 2016, s. 1973-1979.10.1007/s10973-015-4662-5 Search in Google Scholar

[10] Englisz-Jurgielewicz B., Cholewka A., Firganek E., Knefel G., Kawecki M., Glik J, Nowak M., Sieroń K., Stanek A.: Evaluation of hyperbaric oxygen therapy effects in hard-to-heal wounds using thermal imaging and planimetry, Journal of Thermal Analysis and Calorimetry, 141(4), 2020, 1465-1475.10.1007/s10973-019-09129-0 Search in Google Scholar

[11] Ivanitsky G.R.: Modern matrix thermovision in biomedicine, Physics-Uspekhi, 49 (12), 2006, 1263.10.1070/PU2006v049n12ABEH006163 Search in Google Scholar

[12] Gizińska M., Rutkowski R., Szymczak-Bartz L., Romanowski W., Straburzyńska-Lupa A.: Thermal imaging for detecting temperature changes within the rheumatoid foot, Journal of Thermal Analysis and Calorimetry, 145 (1), 2021, pp. 77-85.10.1007/s10973-020-09665-0 Search in Google Scholar

[13] Stokowiec K., Kotrys-Działak D., Mochocka D., Sokołowski M.: Heat and power plant chimneys thermal inspection with an infrared camera. Int. Conf. on Energy and Green Computing (Marocco), E3S Web Conf., 336, 2022, 00005.10.1051/e3sconf/202233600005 Search in Google Scholar

[14] Orzechowski T., Orman Ł.: Badania termowizyjne jako narzędzie do szacowania wpływu parametrów pracy emitora na propagację zanieczyszczeń powietrza. Ochrona Powietrza i Problemy Odpadów, 38, 4, 2004, 139-145. Search in Google Scholar

[15] Żygadło M., Orzechowski T., Latosińska J.: Monitorowanie przemian biotermicznych w składowiskach odpadów techniką termowizyjną. Konferencja „Termografia i termometria w podczerwieni”, Łódź 2000, 120-125. Search in Google Scholar

[16] Sobrino J.A., Jiménez-Muñoz J.C., Zarco-Tejada P.J., Sepulcre-Cantó G., de Miguel E.: Land surface temperature derived from airborne hyperspectral scanner thermal infrared data. Remote Sensing of Environment, 102, 2006, 99-115.10.1016/j.rse.2006.02.001 Search in Google Scholar

[17] Fisher J.I., Mustard J.F.: High spatial resolution sea surface climatology from Landsat thermal infrared data. Remote Sensing of Environment, 90, 2004, 293-307.10.1016/j.rse.2004.01.008 Search in Google Scholar

[18] Antczak I., Banaś A., Kapuścińska I.: The use of thermovision in the estimation of thermal energy losses of buildings, Structure and Environment, 3, 2011. Search in Google Scholar

[19] Costa M., Grant O.M., Chaves M.M.: Thermography to explore plant-environment interactions, Journal of Experimental Botany, 64 (13), 2013, pp. 3937-3949.10.1093/jxb/ert02923599272 Search in Google Scholar

[20] Maldague X.P.V.: Theory and practice of infrared technology for nondestructive testing. John Wiley & Sons, 2001. Search in Google Scholar

eISSN:
2657-6902
Language:
English
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4 times per year
Journal Subjects:
Architecture and Design, Architecture, Architects, Buildings, Construction, Materials, Engineering, Introductions and Overviews, other