光谱学与光谱分析, 2016, 36 (7): 2031, 网络出版: 2016-12-23  

太赫兹技术用于关节软骨检测的研究进展

Current Status and Recent Advances in Research and Application of THz Technology in Articular Cartilage Detection
作者单位
1 吉林大学仪器科学与电气工程学院, 吉林 长春 130061
2 中国科学院重庆绿色智能技术研究院, 太赫兹技术研究中心, 跨尺度制造技术重庆市重点实验室, 重庆 400714
摘要
骨关节炎是主要由软骨组织损伤与退化引起的常见关节疾病, 是影响人类健康的重大疾病之一, 对于关节软骨组织早期病变的检测可以大大提高疾病的治愈率, 然而相关的临床诊断技术尚未发现。 近年来, 太赫兹技术在医学领域日益受到关注。 与传统方法相比, 太赫兹辐射能量低, 不会产生电离辐射, 可高灵敏、 无损伤地对生物组织进行成像检测, 因此在关节软骨诊断方面具有较大的应用潜力。 本文简要介绍了关节软骨的生理与病理情况以及目前关节软骨检测的主要方法, 重点总结了太赫兹技术应用于关节软骨检测方面的相关研究工作, 分别包括对动物与人类关节软骨的检测, 探讨了太赫兹技术在关节软骨检测中所面临的挑战与未来研究展望。
Abstract
Osteoarthritis is a common arthritis disease caused by cartilage tissue damage and degeneration, which is one of the large epidemics that affect human health. The early detection of the pathological changes of articular cartilage can greatly improve the cure rate of disease, but the relevant clinical diagnosis technology has not been developed. In recent years, the applications and researches of terahertz technology are increasingly valued and it has drawn great attention in the field of medicine. Compared with traditional methods, the terahertz radiation is low-energy and non-ionizing whose spectral-fingerprinting capability is well-known in the biological world. Meanwhile, THz technology has a great potential in diagnosis of articular cartilage early degeneration. This paper briefly introduces the physiological and pathological conditions of the articular cartilage, the current clinical techniques of articular cartilage detection. It mainly summarizes the terahertz technology used for detecting articular cartilage, including detection of animal and human cartilage respectively. At last, the challenges and development prospects of terahertz technology in articular cartilage detection are discussed.
参考文献

[1] Peter H Siegel. Microwave Theory and Techniques, 2002, 50: 910.

[2] Zhang Cunlin, Mu Kaijun. Laser & Optoelectronics Progress, 2010, 47(2): 023001.

[3] QI Na, ZHANG Zhuo-yong, XIONG Yu-hong(齐 娜, 张卓勇, 相玉红). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2013, 33(8): 2064.

[4] HE Ming-xia, CHEN Tao, YANG Ji-long, et al(何明霞, 陈 涛, 杨吉龙, 等). TUMOR(肿瘤), 2012, 32(12): 1039.

[5] Son J H. Journal of Applied Physics, 2009, 105(10).

[6] Lawrence R C, Hochberg M C, Kelsey J L. J. Rheumatol, 1989, 16(4): 427.

[7] DOU Xiao-li, DUAN Xiao-qin, XIA Ling, et al(窦晓丽, 段晓琴, 夏 玲, 等). Journal of Clinical Rehabilitative Tissue Engineering Research(中国组织工程研究与临床康复), 2011, 15(20): 3763.

[8] DAI Ling-hui, DU Ning(代岭辉, 杜 宁). China. J. Orthop & Trauma(中国骨伤), 2009, 22(9): 721.

[9] Pickwell-MacPherson E, Huang S Y, Sun Y W, et al. Ieee Eng. Med. Bio., 2008: 3751.

[10] L Hou-shan, SUN Tie-zheng, LIU Zhong-hou(吕厚山, 孙铁铮, 刘忠厚). Chin. J. Osteoporos(中国骨质疏松杂志), 2004, 10(1): 7.

[11] GAO Lin-feng, ZHENG Jun-zheng, ZHUO Wei-hai, et al(高林峰, 郑钧正, 卓维海, 等). Radiation Protection(辐射防护), 2014, 34(5): 274.

[12] GAO Yan, XU Jun-chao(高 艳, 徐钧超). Chin. J. Orthop(中华骨科杂志), 2003, 23(3): 137.

[13] DONG Xia, SUN Wei, LIU Peng, et al(董 霞, 孙 巍, 刘 鹏, 等). China Prac. Med.(中国实用医药), 2013, 8(3): 25.

[14] TU Qian, CHEN Jing, LUO Shu-xiang, et al(凃 茜, 陈 菁, 罗述祥, 等). Chinese Journal of CT and MRI(中国CT和MRI杂志), 2005, 3(1): 54.

[15] MA Li-feng, GUO Ai, YU Fei, et al(马立峰, 郭 艾, 喻 飞, 等). Chin. J. Injury Repair and Wound Healing(中华损伤与修复杂志), 2012, 7(1): 67.

[16] XIE Hai-zhu, CUI Shu-an, SHI Ying-hong, et al(谢海柱, 崔书安, 史英红, 等). J. Med. Imaging(医学影像学杂志), 2009, 19(8): 1024.

[17] CHEN Jia-xiang, SONG Gui-fang, MA Yan(陈家祥, 宋桂芳, 马 岩). Chinese Journal of CT and MRI(中国CT和MRI杂志), 2008, 6(2): 55.

[18] DING Ai-min, XIONG Jie-xia, PEI Yu-wen, et al(丁爱民, 熊洁霞, 裴宇文, 等). Chinese Journal of CT and MRI(中国CT和MRI杂志), 2005, 3(2): 55.

[19] Pickwell-MacPherson E, Kan W C, Lee W S, et al. Ieee Mtt-S International Microwave Symposium Digest, Vols 1-4, 2008: 1540.

[20] Fu L L K, Maffulli N, Yip K M H, et al. Clin Rheumatol, 1998, 17(3): 227.

[21] Fu L L K, Maffulli N, Chan K M. Clin Rheumatol, 2001, 20(2): 98.

[22] Poole A R, Kojima T, Yasuda T, et al. Clin. Orthop. Relat R, 2001, 391: S26.

[23] Kan K W C, Lee W S, Cheung W H, et al. 2008 33rd International Conference on Infrared, Millimeter and Terahertz Waves, Vols 1 and 2, 2008: 570.

[24] Kan K W C, Pickwell-MacPherson E, Cheung W H. 2008 5th International Summer School and Symposium on Medical Devices and Biosensors, 2008: 250.

[25] Kan K W C, Lee W S, Cheung W H, et al. 2009 34th International Conference on Infrared, Millimeter, and Terahertz Waves, Vols 1 and 2, 2009: 83.

[26] Kan W C, Lee W S, Cheung W H, et al. Biomed Opt. Express, 2010, 1(3): 967.

[27] Baughman W, Wilbert D S, Balci S, et al. Int. Conf. Infra. Milli., 2011.

[28] Jung E, Park H, Han H, et al. 2009 34th International Conference on Infrared, Millimeter, and Terahertz Waves, Vols 1 and 2, 2009: 856.

[29] Venables D S, Schmuttenmaer C A. J. Chem. Phys., 2000, 113(24): 11222.

[30] Jung E, Choi H J, Lim M, et al. Biomed Opt. Express, 2012, 3(5): 1110.

[31] Jung E, Park H, Moon K, et al. J. Infrared Millim. Te., 2012, 33(6): 593.

[32] Yokus H, Baughman W, Balci S, et al. Proc. Spie., 2013, 8585.

[33] FENG Hua, LI Fei, CHEN Tu-nan(冯 华, 李 飞, 陈图南). Journal of Terahertz Science and Electronic Information Technology(太赫兹科学与电子信息学报), 2013, 11(6): 827.

[34] Ferguson B, ZHANG Xi-cheng(Ferguson B, 张希成). Physics(物理), 2003, 32(5): 291.

[35] MU Kai-jun, ZHANG Zhen-wei, ZHANG Cun-lin(牧凯军, 张振伟, 张存林). Journal of CAEIT(中国电子科学研究院学报), 2009, 14(3): 226.

[36] ZHOU Jun, LIU Sheng-gang(周 俊, 刘盛纲). Modern Applied Physics(现代应用物理), 2014, 5(2): 85.

马宇婷, 张瑾, 施长城, 李薇, 韩晓惠, 彭晓昱, 魏东山, 杜春雷, 崔洪亮. 太赫兹技术用于关节软骨检测的研究进展[J]. 光谱学与光谱分析, 2016, 36(7): 2031. MA Yu-ting, ZHANG Jin, SHI Chang-cheng, LI Wei, HAN Xiao-hui, PENG Xiao-yu, WEI Dong-shan, DU Chun-lei, CUI Hong-liang. Current Status and Recent Advances in Research and Application of THz Technology in Articular Cartilage Detection[J]. Spectroscopy and Spectral Analysis, 2016, 36(7): 2031.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!