Acta Laser Biology Sinica, Volume. 33, Issue 2, 123(2024)
A Study on Propagation of Near-infrared Diffuse Light in Human Tissues and Detectors Arrangement
[1] [1] SHANG Y, LI T, YU G. Clinical applications of near-infrared dif- fuse correlation spectroscopy and tomography for tissue blood flow monitoring and imaging[J]. Physiological Measurement, 2017, 38(4): R1-R26.
[2] [2] COCHRAN J M, CHUNG S H, LEPROUX A, et al. Longitudinal optical monitoring of blood flow in breast tumors during neoad- juvant chemotherapy[J]. Physics in Medicine & Biology, 2017, 62( 12): 4637-4653.
[3] [3] ZHANG Xiaojuan, XU Jinrong, GUI Zhiguo, et al. Near-infrared diffuse optical blood flow imaging combined with Tikhonov regularization method[J]. China Medical Devices, 2018, 33( 12): 26-30.
[4] [4] ZUO J, ZHANG X, LU J, et al. Impact of reconstruction algo- rithms on diffuse correlation tomography blood flow imaging[J]. IEEE Access, 2020, 8: 31882-31891.
[5] [5] LI Zhe, FENG Jinchao, JIA Kebin . Diffusion correlation spec- troscopy for tissue blood flow detection and its clinical applica- tions[J]. Advances in Laser and Optoelectronics, 2022, 59(6): 111-124.
[6] [6] HAO Lifang, DI Wenqi, GAO Guoya, et al. Cerebral blood flow tomography based on near-infrared diffuse light technology[J]. China Medical Devices, 2023, 38(3): 33-38.
[7] [7] BARTLETT M F, JORDAN S M, HUEBER D M, et al. Impact of changes in tissue optical properties on near-infrared diffuse cor- relation spectroscopy measures of skeletal muscle bloodflow[J]. Journal ofApplied Physiology, 2021, 130(4): 1183-1195.
[8] [8] GONG Xiaorui, MA Rui. Clinical significance and research prog ress of tumor markers[J]. Medicine and Philosophy (B), 2018, 39( 12): 48-52.
[9] [9] LI Jiangtao, HU Wenyan, ZHAO Longlian, et al. Accuracy of internal lesion detection in apples by frequency-domain near- infrared optical imaging[J]. Spectroscopy and Spectral Analysis, 2019, 39(9): 2836-2841.
[10] [10] BUDIDHA K, CHATTERJEE S, QASSEM M, et al. Monte Carlo characterization of short-wave infrared optical wavelengths for biosensing applications[C]//2021 43rd Annual International Con- ference of the IEEE Engineering in Medicine & Biology Society (EMBC). IEEE, 2021: 4285-4288.
[12] [12] FENG Shijie, GUI Zhiguo, ZHANG Xiaojuan, et al. Design of a fiber optic probe for blood flow imaging based on 3D printing technology[J]. China Medical Devices, 2022, 37(2): 24-28.
[13] [13] YANG Ming, SUN Quanchang, HOU Huayi. Design of a fiber optic probe based on Monte-Carlo simulation and application of the probe in skin NADH fluorescence spectroscopy[J]. Laser & Optoelectronics Progress, 2021, 58(22): 433-440.
[14] [14] MONGA D, SONI S, SATSANGI P. Role of optical properties on photon distribution in a biological tissue using Monte Carlo method[J]. 2017, 76(3): 154-159.
[15] [15] AL-HALAWANI R, CHATTERJEE S, KYRIACOU PANAYIOTIS A. Monte Carlo simulation of the effect of Human skin melanin in light-tissue interactions[C]//2022 44th Annual International Con- ference of the IEEE Engineering in Medicine & Biology Society (EMBC). IEEE, 2022: 1598-1601.
[16] [16] HAYAKAWA C K, MALENFANT L, RANASINGHESAGARA J, et al. MCCL: an open-source software application for Monte Carlo simulations of radiative transport[J]. Journal of Biomedical Optics, 2022, 27(8): 1-19.
[17] [17] WANG Y, BU Y, WANG X. Modeling and Monte Carlo simulation on light transmission, absorption, and photoelectric conversion in core-shell nanoparticles for photocatalysis[J]. Physica B: Con- densed Matter, 2023, 666: 415123.1-415123.15.
[18] [18] XU S, YUE P, XU D L. Joint scattering and reflection impulse re- sponse modeling for non-line-of-sight underwater wireless optical links[C]//2023 International Conference on Ubiquitous Commu- nication (Ucom). IEEE, 2023: 243-247.
[19] [19] SUN Danni, ZHU Qibing, HUANG Min. Evaluation of line-scan imaging system for detecting defects inside tissues using improved Monte Carlo simulation and optical density algorithm[J]. Laser & Optoelectronics Progress, 2023, 60( 12): 342-349.
[20] [20] LI Ting. MC simulation of light transmission in three-dimensional structured tissues and functional brain imaging[D]. Wuhan: Hua- zhong University of Science and Technology, 2010.
[21] [21] GUO J, MENG S, SU H, et al. Non-invasive optical monitoring of human lungs: Monte Carlo modeling of photon migration in visible Chinese human and an experimental test on a human[J]. Biomedical Optics Express, 2022, 13( 12): 6389-6403.
[22] [22] FINLAYSON L, BARNARD I R M, MCMILLAN L, et al. Depth penetration of light into skin as a function of wavelength from 200 to 1 000 nm[J]. Photochemistry and Photobiology, 2022, 98(4): 974-981.
[23] [23] CHAN M H, HUANG W T, CHEN K C, et al. The optical re- search progress of nanophosphors composed of transition elements in the fourth period of near-infrared windows I and II for deep- tissue theranostics[J]. Nanoscale, 2022, 14( 19): 7123-7136.
[24] [24] WEI Menglin, YAN Rongguo, MEI Zhusong, et al. Research on cerebral oximetry monitoring device based on near infrared spec- troscopy[J]. Software Guide, 2023, 22(9): 96-102.
[25] [25] ZHANG Xiaojuan. Research on diffuse correlation blood flow im- aging technique based on N-order linear algorithm[D]. Taiyuan: North University of China, 2021.
[26] [26] LIU Qingzhen . Study on non-invasive measurement of human hemoglobin concentration by near infrared spectroscopy[D]. Tianjin: Tianjin University, 2005.
[27] [27] JIN Liu. Research on key technology of human fat thickness mea- surement based on Monte Carlo simulation[D]. Beijing: Beijing University of Technology, 2017.
[28] [28] NIWAYAMA M, UNNO N. Tissue oximeter with selectable mea- surement depth using spatially resolved near-infrared spectroscopy [J]. Sensors, 2021, 21( 16): 5573-5583.
[29] [29] GUO J J, DUAN X J, ZHAO X Z, et al. Monte Carlo simulation of light propagation in breast tissue[C]//2022 12th International Conference on Information Technology in Medicine and Education (ITME). IEEE, 2022: 219-222.
[30] [30] YAN S, TRAN A P, FANG Q. Dual-grid mesh-based Monte Carlo algorithm for efficient photon transport simulations in complex three-dimensional media[J]. Journal of Biomedical Optics, 2019, 24(2): 1-4.
Get Citation
Copy Citation Text
GUONan, HAO Huiyan, LIU Wenyu, ZHAO Hui. A Study on Propagation of Near-infrared Diffuse Light in Human Tissues and Detectors Arrangement[J]. Acta Laser Biology Sinica, 2024, 33(2): 123
Category:
Received: Oct. 10, 2023
Accepted: --
Published Online: Aug. 14, 2024
The Author Email: Huiyan HAO (haohuiyan@nuc.edu.cn)