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State Institution “The Filatov Institute of Eye Diseases and Tissue Therapy of the National Academy of Medical Sciences of Ukraine”, Odesa,Ukraine
Published:2024,
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LUKYAN ANATYCHUK, ROMAN KOBYLIANSKYI, OLEG ZADOROZHNYY, et al. Ocular surface heat flux density as a biomarker related to diabetic retinopathy (pilot study). [J]. Aopr, 2024, 4(3): 107-111.
LUKYAN ANATYCHUK, ROMAN KOBYLIANSKYI, OLEG ZADOROZHNYY, et al. Ocular surface heat flux density as a biomarker related to diabetic retinopathy (pilot study). [J]. Aopr, 2024, 4(3): 107-111. DOI: 10.1016/j.aopr.2024.03.004.
1 J. Terrien, M. Perret, F. AujardBehavioral thermoregulation in mammals: a review Front Biosci (Landmark ed), 16 (2011), pp. 1428-1444, 10.2741/3797
2 C.L. Tan, Z.A. KnightRegulation of body temperature by the nervous system Neuron, 98 (2018), pp. 31-48, 10.1016/j.neuron.2018.02.022
3 R. RefinettiCircadian rhythmicity of body temperature and metabolism Temperature, 7 (2020), pp. 321-362, 10.1080/23328940.2020.1743605
4 W. ChenThermometry and interpretation of body temperature Biomed Eng Lett, 9 (2019), pp. 3-17, 10.1007/s13534-019-00102-2
5 M. Ajčević, A. Buoite Stella, G. Furlanis, et al.A novel non-invasive thermometer for continuous core body temperature: comparison with tympanic temperature in an acute stroke clinical setting Sensors, 22 (2022), p. 4760, 10.3390/s22134760
6 C. Wang, H. Jiao, L. Anatychuk, et al.Development of a temperature and heat flux measurement system based on microcontroller and its application in ophthalmology Meas Sci Rev, 22 (2022), pp. 73-79, 10.2478/msr-2022-0009
7 G.P. Kenny, R.J. Sigal, R. McGinnBody temperature regulation in diabetes Temperature, 3 (2016), pp. 119-145, 10.1080/23328940.2015.1131506
8 A.R. Scott, T. Bennett, I.A. MacdonaldDiabetes mellitus and thermoregulation Can J Physiol Pharmacol, 65 (1987), pp. 1365-1376, 10.1139/y87-215
9 S. Hajat, A. Haines, C. Sarran, et al.The effect of ambient temperature on type-2-diabetes: case-crossover analysis of 4+ million GP consultations across England Environ Health, 16 (2017), p. 73, 10.1186/s12940-017-0284-7
10 N. Papanas, K. Papatheodorou, D. Papazoglou, et al.Foot temperature in type 2 diabetic patients with or without peripheral neuropathy Exp Clin Endocrinol Diabetes, 117 (2009), pp. 44-47, 10.1055/s-2008-1081498
11 B. Chandrasekar, A.P. Rao, M. Murugesan, et al.Ocular surface temperature measurement in diabetic retinopathy Exp Eye Res, 211 (2021), Article 108749, 10.1016/j.exer.2021.108749
12 L. Anatychuk, O. Zadorozhnyy, V. Naumenko, et al.Device development for ocular surface temperature and heat flux density measurement Curr Eye Res, 48 (2023), pp. 441-446, 10.1080/02713683.2023.2165104
13 L.I. Anatychuk, N.V. Pasyechnikova, V.А. Naumenko, et al.A thermoelectric device for ophthalmic heat flux density measurements: results of piloting in healthy individuals J Ophthalmol (Ukraine), 3 (2019), pp. 45-51, 10.31288/oftalmolzh201934551
14 L. Anatychuk, N. Pasyechnikova, V. Naumenko, et al.Temperature and heat flux density of the eye surface in healthy individuals with different subfoveal thickness of the choroid Acta Ophthalmol, 100 (2022), p. S267, 10.1111/j.1755-3768.2022.035
15 J. Aliò, M. PadronInfluence of age on the temperature of the anterior segment of the eye: measurements by infrared thermometry Ophthalmic Res, 14 (1982), pp. 153-159, 10.1159/000265187
16 R.F. SpaideAge-related choroidal atrophy Am J Ophthalmol, 147 (2009), pp. 801-810, 10.1016/j.ajo.2008.12.010
17 V. Ambiya, A. Kumar, V.K. Baranwal, et al.Change in subfoveal choroidal thickness in diabetes and in various grades of diabetic retinopathy Int J Retina Vitreous, 4 (2018), p. 34, 10.1186/s40942-018-0136-9
18 R. MapstoneDeterminants of corneal temperature Br J Ophthalmol, 52 (1968), pp. 729-741, 10.1136/bjo.52.10.729
19 A. Sudhalkar, J.K. Chhablani, A. Venkata, et al.Choroidal thickness in diabetic patients of Indian ethnicity Indian J Ophthalmol, 63 (2015), pp. 912-916, 10.4103/0301-4738.176024
20 O. Zadorozhnyy, A. Korol, V. Naumenko, et al.Heat exchange in the human eye: a review J Ophthalmol (Ukraine), 6 (2022), pp. 50-58, 10.31288/oftalmolzh202265058
21 P.B. Morgan, M.P. Soh, N. Efron, et al.Potential applications of ocular thermography Optom Vis Sci, 70 (1993), pp. 568-576, 10.1097/00006324-199307000-00008
22 A.F. Emery, P. Kramar, A.W. Guy, et al.Microwave induced temperature rises in rabbit eyes in cataract research J Heat Tran, 97 (1975), pp. 123-128, 10.1115/1.3450259
23 P. Brusini, M.L. Salvetat, M. ZeppieriHow to measure intraocular pressure: an updated review of various tonometers J Clin Med, 10 (2021), p. 3860, 10.3390/jcm10173860
24 C. Kniestedt, J. Stürmer, R.L. StamperClinical alert: damage to Goldmann applanation tonometer tips Acta Ophthalmol, 83 (2005), pp. 129-130, 10.1111/j.1600-0420.2005.00360.x
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