Skip to main content
Top
Published in: Lasers in Medical Science 8/2021

01-10-2021 | Original Article

Two-dimensional correlation (2D) method for improving the accuracy of OCT-based noninvasive blood glucose concentration (BGC) monitoring

Authors: Ya Su, Huiqing Liu, Hongjie Wang, Lei Chen, Guoqing Yang, Haishu Xin, X. Steve Yao

Published in: Lasers in Medical Science | Issue 8/2021

Login to get access

Abstract

The optical scattering coefficient (μs) in the dermis layer of human skin obtained with optical coherence tomography (OCT) has shown to have a strong correlation with the blood glucose concentration (BGC), which can be used for noninvasive BGC monitoring. Unfortunately, the nonhomogeneity in the skin may cause inaccuracies for the BGC analysis. In this paper, we propose a 2D correlation analysis method to identify 2D regions in the skin with μs sensitive to BGC variations and only use data in these regions to calculate μs for minimizing the inaccuracy induced by nonhomogeneity and therefore improving the accuracy of OCT-based BGC monitoring. We demonstrate the effectiveness of the 2D method with OCT data obtained with in vivo human forearm skins of nine different human subjects. In particular, we present a 3D OCT data set in a two-dimensional (2D) map of depth vs. a lateral dimension and calculate the correlation coefficient R between the μs and the BGC in each region of the 2D map with the BGC data measured with a glucose meter using finger blood. We filter out the μs data from regions with low R values and only keep the μs data with R values sufficiently high (R-filter). The filtered μs data in all the regions are then averaged to produce an average μs data. We define a term called overall relevancy (OR) to quantify the degree of correlation between the filtered/averaged μs data and the finger-blood BGC data to determine the optimal R value for such an R-filter with the highest obtained OR. We found that the optimal R for such an R-filter has an absolute value (|R|) of 0.6 or 0.65. We further show that the R-filter obtained with the 2D correlation method yields better OR between μs and the BGC than that obtained with the previously reported 1D correlation method. We believe that the method demonstrated in this paper is important for understanding the influence of BGC on μs in human skins and therefore for improving the accuracy of OCT-based noninvasive BGC monitoring, although further studies are required to validate its effectiveness.
Literature
1.
go back to reference C. C.T . Group, Nathan DM, Genuth S, Lachin J, Cleary P, Crofford O, Davis M, Rand L, Siebert C (1993) N.Engl.J.Med 329(3):977–986 C. C.T . Group, Nathan DM, Genuth S, Lachin J, Cleary P, Crofford O, Davis M, Rand L, Siebert C (1993) N.Engl.J.Med 329(3):977–986
2.
go back to reference Takashi M, Kokoro T, Fumi Y, Hiroshi O, Junichiro K, Kazunori Y, Naoki S (2015) J, Diabetes Invest 6(6):687–691CrossRef Takashi M, Kokoro T, Fumi Y, Hiroshi O, Junichiro K, Kazunori Y, Naoki S (2015) J, Diabetes Invest 6(6):687–691CrossRef
3.
go back to reference Andrews JT, Solanki J, Choudhary OP, Chouksey S, Malvia N, Chaturvedi P, Sen P (2012) J PhysConf 365:012004 Andrews JT, Solanki J, Choudhary OP, Chouksey S, Malvia N, Chaturvedi P, Sen P (2012) J PhysConf 365:012004
4.
go back to reference Larin KV, Eledrisi MS, Motamedi M, Esenaliev RO (2002) Diabetes Care 25(12):2263–2267CrossRef Larin KV, Eledrisi MS, Motamedi M, Esenaliev RO (2002) Diabetes Care 25(12):2263–2267CrossRef
5.
go back to reference Ullah H, Hussain F, Ikram M (2015) Appl Phys Bvol 120(2):1–12 Ullah H, Hussain F, Ikram M (2015) Appl Phys Bvol 120(2):1–12
6.
7.
go back to reference Esenaliev RO, Larin KV, Larina IV, Motamedi M (2001) Opt Lett 26(13):992–994CrossRef Esenaliev RO, Larin KV, Larina IV, Motamedi M (2001) Opt Lett 26(13):992–994CrossRef
8.
9.
go back to reference Kuranov RV, Sapozhnikova VV, Prough DS, Cicenaite I, Esenaliev RO (2006) Phys Med Biol 51(16):3885–3900CrossRef Kuranov RV, Sapozhnikova VV, Prough DS, Cicenaite I, Esenaliev RO (2006) Phys Med Biol 51(16):3885–3900CrossRef
10.
go back to reference Hori Y, Yasuno Y, Sakai S, Matsumoto M, Sugawara T, Madjarova VD, Yamanari M, Makita S, Yasui T, Araki T, Itoh M, Yatagai T (2006) Opt Express 14(5):1862–1877CrossRef Hori Y, Yasuno Y, Sakai S, Matsumoto M, Sugawara T, Madjarova VD, Yamanari M, Makita S, Yasui T, Araki T, Itoh M, Yatagai T (2006) Opt Express 14(5):1862–1877CrossRef
11.
go back to reference Bhandari A, Hamre B, Frette Ø, Stamnes K, Stamnes JJ (2011) Opt Express 19(15):14549CrossRef Bhandari A, Hamre B, Frette Ø, Stamnes K, Stamnes JJ (2011) Opt Express 19(15):14549CrossRef
12.
14.
go back to reference Su Y, Yao XS, Wei CJ, Wang YM, Wang HJ, Li ZH (2015) Biomed Opt Express 6(2):500–513CrossRef Su Y, Yao XS, Wei CJ, Wang YM, Wang HJ, Li ZH (2015) Biomed Opt Express 6(2):500–513CrossRef
15.
go back to reference Su Y, Yao XS, Wei CJ, Wang YM, Wang HJ, Li ZH (2016) IEEE Photonics J 8(1):1–10CrossRef Su Y, Yao XS, Wei CJ, Wang YM, Wang HJ, Li ZH (2016) IEEE Photonics J 8(1):1–10CrossRef
16.
17.
18.
go back to reference Laufer J, Simpson R, Kohl M, Essenpreis M, Cope M (1998) Phys Med Biol 43(9):2479–2489CrossRef Laufer J, Simpson R, Kohl M, Essenpreis M, Cope M (1998) Phys Med Biol 43(9):2479–2489CrossRef
19.
go back to reference Yao XS, Wang LZ, Meng Z China Patent 2015, 201310210400.0 [P] Yao XS, Wang LZ, Meng Z China Patent 2015, 201310210400.0 [P]
20.
go back to reference Turani Z, Fatemizadeh E, Blumetti T, Daveluy S, Moraes AF, Chen W, Mehregan D, Andersen PE, Nasiriavanaki M (2019) Cancer Res 79(8):2021–2030CrossRef Turani Z, Fatemizadeh E, Blumetti T, Daveluy S, Moraes AF, Chen W, Mehregan D, Andersen PE, Nasiriavanaki M (2019) Cancer Res 79(8):2021–2030CrossRef
21.
go back to reference Lee CK, Tsai MT, Chang FY, Yang CH, Shen SC, Yuan O, Yang CH (2013) Sensors 13(4):4041–4050CrossRef Lee CK, Tsai MT, Chang FY, Yang CH, Shen SC, Yuan O, Yang CH (2013) Sensors 13(4):4041–4050CrossRef
22.
go back to reference Kholodnykh AI, Petrova IY, Larin KV, Motamedi M, Esenaliev RO (2003) Appl Opt 42(16):3027–3037CrossRef Kholodnykh AI, Petrova IY, Larin KV, Motamedi M, Esenaliev RO (2003) Appl Opt 42(16):3027–3037CrossRef
23.
go back to reference Yang Y, Wang T, Biswal NC, Wang X, Sanders M, Brewer M, Zhu Q (2011) J Biomed Opt 16:2143–2152 Yang Y, Wang T, Biswal NC, Wang X, Sanders M, Brewer M, Zhu Q (2011) J Biomed Opt 16:2143–2152
24.
go back to reference Coleman AJ, Richardson TJ, Orchard G, Uddin A, Choi MJ, Lacy KE (2013) Skin Res Technol 19(1):e10–e19CrossRef Coleman AJ, Richardson TJ, Orchard G, Uddin A, Choi MJ, Lacy KE (2013) Skin Res Technol 19(1):e10–e19CrossRef
25.
go back to reference Schliesser JA, Gallimore G, Kunjukunju N, Sabates NR, Koulen P, Sabates FN (2014) Clin Ophthalmol (default):2337–2345 Schliesser JA, Gallimore G, Kunjukunju N, Sabates NR, Koulen P, Sabates FN (2014) Clin Ophthalmol (default):2337–2345
26.
go back to reference Tsukamoto Y, Kinoshita Y, Kitagawa H, Munekage M, Munekage E, Takezaki Y, Yatabe T, Yamashita K, Yamazaki R, Okabayashi T, Tarumi M, Kobayashi M, Mishina S, Hanazaki K (2013) Artif Organs 37(4):E67–E73CrossRef Tsukamoto Y, Kinoshita Y, Kitagawa H, Munekage M, Munekage E, Takezaki Y, Yatabe T, Yamashita K, Yamazaki R, Okabayashi T, Tarumi M, Kobayashi M, Mishina S, Hanazaki K (2013) Artif Organs 37(4):E67–E73CrossRef
28.
go back to reference Larin KV, Motamedi M, Ashitkov TV, Esenaliev RO (2003) Phys Med Biol 48(10):1371CrossRef Larin KV, Motamedi M, Ashitkov TV, Esenaliev RO (2003) Phys Med Biol 48(10):1371CrossRef
29.
go back to reference Graaff R, Aarnoudse JG, Zijp JR, Sloot PMA, de Mul FFM, Greve J, Koelink MH (1992) Appl Opt 31(10):1370–1376CrossRef Graaff R, Aarnoudse JG, Zijp JR, Sloot PMA, de Mul FFM, Greve J, Koelink MH (1992) Appl Opt 31(10):1370–1376CrossRef
31.
Metadata
Title
Two-dimensional correlation (2D) method for improving the accuracy of OCT-based noninvasive blood glucose concentration (BGC) monitoring
Authors
Ya Su
Huiqing Liu
Hongjie Wang
Lei Chen
Guoqing Yang
Haishu Xin
X. Steve Yao
Publication date
01-10-2021
Publisher
Springer London
Published in
Lasers in Medical Science / Issue 8/2021
Print ISSN: 0268-8921
Electronic ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-021-03244-x

Other articles of this Issue 8/2021

Lasers in Medical Science 8/2021 Go to the issue