Skip to main content
Top
Published in: Lasers in Medical Science 8/2019

01-10-2019 | Laser | Original Article

Inverse heat transfer analysis in detecting tissue optical properties using laser

Authors: Khalid Salem Shibib, Dhuha Shaker

Published in: Lasers in Medical Science | Issue 8/2019

Login to get access

Abstract

A new methodology has been proposed to measure optical properties of homogeneous tissue where a laser beam is used to induce heat to a tissue. The induced heat increased the temperature inside the tissue, which is detected by a thermocouple. These readings are compared with that obtained from the solution of the finite element solution that used iterative values of optical properties in determining temperature distribution. The two temperature distributions are used to determine tissue optical properties using the Levenberg-Marquardt iteration. An accurate result is obtained in determining absorption coefficient and reduced scattering coefficient. The work is extended to obtain three parameters (i.e., absorption coefficient, scattering coefficient, and anisotropy). The only limitation is that the temperature readings have to be measured with a high-accuracy thermocouple (i.e., less than 0.4% of maximum-recorded temperature).
Literature
1.
go back to reference Poulon F, Mehidine H, Juchaux M, Varlet P, Devaux B, Pallud J, Abi Haidar D (2017) Optical properties, spectral, and lifetime measurements of central nervous system tumors in humans. Sci Rep 7:13995CrossRefPubMedPubMedCentral Poulon F, Mehidine H, Juchaux M, Varlet P, Devaux B, Pallud J, Abi Haidar D (2017) Optical properties, spectral, and lifetime measurements of central nervous system tumors in humans. Sci Rep 7:13995CrossRefPubMedPubMedCentral
2.
go back to reference Thomas Gladytz et.al, Tissue optical properties from spatially resolved reflectance: calibration and in vivo application on rat kidney,(2017) European Conference on Biomedical Optics, Munich, Proc SPIE 10412, Diffuse Optical Spectroscopy and Imaging VI, 104120Q Thomas Gladytz et.al, Tissue optical properties from spatially resolved reflectance: calibration and in vivo application on rat kidney,(2017) European Conference on Biomedical Optics, Munich, Proc SPIE 10412, Diffuse Optical Spectroscopy and Imaging VI, 104120Q
3.
go back to reference Cheong WF, Prahl SA, Welch AJ (1990) A review of the optical properties of biological tissues. IEEE J Quantum Electron 26:2166–2185CrossRef Cheong WF, Prahl SA, Welch AJ (1990) A review of the optical properties of biological tissues. IEEE J Quantum Electron 26:2166–2185CrossRef
4.
go back to reference Patterson MS, Wilson BC, Wyman DR (1991) The propagation of optical radiation in tissue II. Optical properties of tissues and resulting fluence distributions. Lasers Med Sci 6:379–390CrossRef Patterson MS, Wilson BC, Wyman DR (1991) The propagation of optical radiation in tissue II. Optical properties of tissues and resulting fluence distributions. Lasers Med Sci 6:379–390CrossRef
5.
go back to reference Wilson BC, Patterson MS, Flock ST (1987) Indirect versus direct techniques for the measurement of the optical properties of tissues. Photochem Photobiol 46:601–608CrossRefPubMed Wilson BC, Patterson MS, Flock ST (1987) Indirect versus direct techniques for the measurement of the optical properties of tissues. Photochem Photobiol 46:601–608CrossRefPubMed
6.
go back to reference Reichman J (1973) Determination of absorption and scattering coefficients for nonhomogeneous media. 1: theory. Appl.Opt. 12:1811–1815CrossRefPubMed Reichman J (1973) Determination of absorption and scattering coefficients for nonhomogeneous media. 1: theory. Appl.Opt. 12:1811–1815CrossRefPubMed
7.
go back to reference Egan WG, Hilgeman TW, Reichman J (1973) Determination of absorption and scattering coefficients for nonhomogeneous media. 2: experiment. Appl Opt 12:1816–1823CrossRefPubMed Egan WG, Hilgeman TW, Reichman J (1973) Determination of absorption and scattering coefficients for nonhomogeneous media. 2: experiment. Appl Opt 12:1816–1823CrossRefPubMed
8.
go back to reference Yoon G, Prahl SA, Welch AJ (1989) Accuracies of the diffusion approximation and its similarity relations for laser irradiated biological media. Appl Opt 28:2250–2255CrossRefPubMed Yoon G, Prahl SA, Welch AJ (1989) Accuracies of the diffusion approximation and its similarity relations for laser irradiated biological media. Appl Opt 28:2250–2255CrossRefPubMed
9.
go back to reference M.Necati ozisik, Helcio R. B. Orlande ,Inverse heat transfer, newYork,Tayler & Francis, Inc.(2000) M.Necati ozisik, Helcio R. B. Orlande ,Inverse heat transfer, newYork,Tayler & Francis, Inc.(2000)
10.
go back to reference Dhiraj K. Sardar(et.al), (2004) Optical characterization of bovine retinal tissues, J Biomed Opt 9(3).pp. 624–631 Dhiraj K. Sardar(et.al), (2004) Optical characterization of bovine retinal tissues, J Biomed Opt 9(3).pp. 624–631
11.
go back to reference Brugmans MJP et.al. (1991) Temperature response of biological materials to pulsed non-ablative CO2 laser irradiation, Lasers Surg Med 11(6) , 6, pp. 587–594 Brugmans MJP et.al. (1991) Temperature response of biological materials to pulsed non-ablative CO2 laser irradiation, Lasers Surg Med 11(6) , 6, pp. 587–594
12.
go back to reference Holman JP (2010) Heat transfer, 10th edn. McGraw-Hill, New York Holman JP (2010) Heat transfer, 10th edn. McGraw-Hill, New York
13.
go back to reference Pradeep Gopalakrishnan, Influence of laser parameters on selective retinal photocoagulation for macular diseases. Ph.D. thesis, University of CINCINNATI, 2005 Pradeep Gopalakrishnan, Influence of laser parameters on selective retinal photocoagulation for macular diseases. Ph.D. thesis, University of CINCINNATI, 2005
14.
go back to reference Bo chen, Experimental and modeling study of thermal response of skin and cornea wavelengths laser irradiation. Ph.D thesis , University of Texas at Austin (2007) Bo chen, Experimental and modeling study of thermal response of skin and cornea wavelengths laser irradiation. Ph.D thesis , University of Texas at Austin (2007)
15.
go back to reference S.S. Rao, The finite element method in engineering,4th ed. Elsevier Science & Technology Books Miami(2004) S.S. Rao, The finite element method in engineering,4th ed. Elsevier Science & Technology Books Miami(2004)
16.
go back to reference Hafid M, Lacroix M (2016) Prediction of the thermal parameters of a high-temperature metallurgical reactor using inverse heat transfer. Int Sch Sci Res Innov 10(6):1042–1048 Hafid M, Lacroix M (2016) Prediction of the thermal parameters of a high-temperature metallurgical reactor using inverse heat transfer. Int Sch Sci Res Innov 10(6):1042–1048
17.
go back to reference Hafid M, Lacroix M (2016) Inverse heat transfer analysis of a melting furnace using Levenberg-Marquardt method international scholarly and scientific research & innovation. 10(7):1270–1277 Hafid M, Lacroix M (2016) Inverse heat transfer analysis of a melting furnace using Levenberg-Marquardt method international scholarly and scientific research & innovation. 10(7):1270–1277
18.
go back to reference Hafid M, Lacroix M An inverse heat transfer algorithm for predicting the thermal properties of tumors during cryosurgery international scholarly and scientific research & innovation. 11(6):352–360 Hafid M, Lacroix M An inverse heat transfer algorithm for predicting the thermal properties of tumors during cryosurgery international scholarly and scientific research & innovation. 11(6):352–360
19.
go back to reference Wyman DR, Whelan WM, Wilson BC (1992) Interstitial laser photocoagulation :Nd:YAG 1064 nm optical fiber source compared to point heat source. Lasers Surg Med 12(2017):659–664CrossRefPubMed Wyman DR, Whelan WM, Wilson BC (1992) Interstitial laser photocoagulation :Nd:YAG 1064 nm optical fiber source compared to point heat source. Lasers Surg Med 12(2017):659–664CrossRefPubMed
Metadata
Title
Inverse heat transfer analysis in detecting tissue optical properties using laser
Authors
Khalid Salem Shibib
Dhuha Shaker
Publication date
01-10-2019
Publisher
Springer London
Keyword
Laser
Published in
Lasers in Medical Science / Issue 8/2019
Print ISSN: 0268-8921
Electronic ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-019-02767-8

Other articles of this Issue 8/2019

Lasers in Medical Science 8/2019 Go to the issue