全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

新技术和新方法在中药性状与显微鉴别中的应用

Keywords: 性状鉴别,显微鉴别,电子鼻,电子舌,组织化学定位,荧光显微技术,X射线相衬显微技术,计算机图像技术

Full-Text   Cite this paper   Add to My Lib

Abstract:

中药鉴定对保证用药的安全性与有效性具有重要意义。性状与显微鉴别是中药鉴定的2种常用方法。该文综述了近年来新技术和新方法在中药性状与显微鉴别中的应用。对电子鼻、电子舌、组织化学定位、荧光显微技术、X射线相衬显微技术和计算机图像技术等进行了介绍。

References

[1]  Buck L, Axel R. A novel multigene family may encode odorant receptors: a molecular basis for odor recognition [J]. Cell, 1991, 65(1): 175.
[2]  谭洁,罗敏敏.嗅球对嗅觉信息的处理 [J].生物物理学报,2010,26(3): 194.
[3]  毕丽君,高宏岩.电子鼻(EN)及其在多领域中的应用 [J].医学信息,2006,19(7): 1283.
[4]  Ampuero S, Bosset J O. The electronic nose applied to dairy products: a review [J]. Sens Actuators B, 2003, 94(1): 1.
[5]  Peris M, Escuder-Gilabert L. A 21st century technique for food control: electronic noses [J]. Anal Chim Acta, 2009, 638(1): 1.
[6]  刘辉, 牛智有. 电子鼻技术及其应用研究进展 [J]. 中国测试, 2009, 35(3): 6.
[7]  刘红秀,姬生国,庄家俊,等.基于仿生嗅觉的中药材鉴别的实现 [J].广东药学院学报,2009,25(4): 503.
[8]  刘红秀,骆德汉,李卫东,等.基于电子鼻的中药材鉴别新方法研究 [J].辽宁中医药大学学报,2011,13(10): 32.
[9]  刘红秀,骆德汉,姬生国,等.基于电子鼻的中药材类别及新鲜度鉴别 [J].吉林中医药,2011,31(6): 580.
[10]  彭华胜, 程铭恩, 张玲, 等. 基于电子鼻技术的野生白术与栽培白术气味比较 [J]. 中药材, 2010, 33(4): 503.
[11]  Ye T, Jin C, Zhou J, et al. Can odors of TCM be captured by electronic nose? The novel quality control method for musk by electronic nose coupled with chemometrics [J]. J Pharm Biomed Anal, 2011, 55(5): 1239.
[12]  Ciosek P, Wróblewski W. Sensor arrays for liquid sensing-electronic tongue systems [J]. Analyst, 2007, 132(10): 963.
[13]  Winquist F, Wide P, Lundstrm I. An electronic tongue based on voltammetry [J]. Anal Chim Acta, 1997, 357(1/2): 21.
[14]  Winquist F, Krantz-Rülcker C, Lundstrm I. Electronic tongues [J]. MRS Bull, 2004, 29(10): 726.
[15]  Woertz K, Tissen C, Kleinebudde P, et al. Taste sensing systems (electronic tongues) for pharmaceutical applications [J]. Int J Pharm, 2011, 417(1/2): 256.
[16]  李文敏, 吴纯洁, 黄学思, 等. 电子鼻和电子舌技术及其在中药加工炮制中的应用展望 . 焦作:中华中医药学会四大怀药与地道药材研究论坛暨中药炮制分会第二届第五次学术会与第三届会员代表大会, 2007: 42.
[17]  盛良.用电子鼻、电子舌检测中西药物共同药效物质基础 [J].现代中西医结合杂志,2008,27(18): 2778.
[18]  Kataoka M, Tokuyama E, Miyanaga Y, et al. The taste sensory evaluation of medicinal plants and Chinese medicines [J]. Int J Pharm, 2008, 351(1/2): 36.
[19]  郑艳,徐珞珊,王峥涛.组织化学在药用植物研究中的应用 [J].现代中药研究与实践,2007,22(3): 61.
[20]  谭玲玲,胡正海,蔡霞,等.北柴胡营养器官中主要化学成分的组织化学定位及其含量比较 [J].分子细胞生物学报,2007,40(4): 214.
[21]  鄢丹, 韩玉梅, 骆骄阳, 等. 板蓝根木皮比与药效及化学成分的相关性分析 [J]. 中药材, 2011, 34(1): 43.
[22]  赵静,庞其昌,马骥,等.中药黄连饮片活性成分分布的检测研究 [J].光谱学与光谱分析,2011,31(6): 1692.
[23]  Liang Z T, Shi Y X, Chen H B, et al. Histochemical analysis of the root tuber of Polygonum multiflorum Thunb. (Fam. Polygonaceae) [J]. Microsc Res Tech, 2011, 74(6): 488.
[24]  蔡宗苇. 直接分析植物组织切片化学成分的方法:中国, 200610164872. 7 . 2008-06-11.
[25]  崔泽实,郭德伦.荧光显微镜的功能配置及应用要点 [J].医疗装备,2004,17(9): 4.
[26]  Liang Z T, Jiang Z H, Leung K S, et al. Distinguishing the medicinal herb Oldenlandia diffusa from similar species of the same genus using fluorescence microscopy [J]. Microsc Res Tech, 2006, 69(4): 277.
[27]  Liang Z, Chen H, Zhao Z. An experimental study on four kinds of Chinese herbal medicines containing alkaloids using fluorescence microscope and microspectrometer [J]. J Microsc, 2009, 233(1): 24.
[28]  Chu C, Liu H J, Qi L W, et al. Combination of normal light and fluorescence microscopy for authentication of five Lonicera species flower buds [J]. Microsc Res Tech, 2011, 74(2): 133.
[29]  Gardner J W, Bartlett P N. A brief history of electronic nose [J]. Sens Actuators B, 1994, 18(19): 211.
[30]  Baldwin E A, Bai J, Plotto A, et al. Electronic noses and tongues: applications for the food and pharmaceutical industries [J]. Sensors, 2011, 11(5): 4744.
[31]  Wang Y Q, Liang Z T, Li Q, et al. Identification of powdered Chinese herbal medicines by fluorescence microscopy, part 1: fluorescent characteristics of mechanical tissues, conducting tissues, and ergastic substances [J]. Microsc Res Tech, 2011, 74(3): 269.
[32]  陈建文,高鸿奕,李儒新,等. X 射线相衬成像 [J].物理学进展,2005,25(2): 174.
[33]  Mayo S C, Davis T J, Gureyev T E, et al. X-ray phase-contrast microscopy and microtomography [J]. Opt Express, 2003, 11(19): 2289.
[34]  Wei X, Xiao T Q, Liu L X, et al. Typical microstructures of Chinese medicines with X-ray microscopy in phase contrast [J]. Chin Phys Lett, 2005, 22(9): 2255.
[35]  Wei X, Xiao T Q, Liu L X, et al. Application of X-ray phase contrast imaging to microscopic identification of Chinese medicines [J]. Phys Med Biol, 2005, 50(18): 4277.
[36]  黄璐琦, 胡之璧. 中药鉴定新技术新方法及其应用 [M]. 北京:人民卫生出版社, 2010: 41.
[37]  Tong C S, Choy S K, Zhao Z Z, et al. Identification of starch grains in microscopic images based on granulometric operations [J]. Microsc Res Tech, 2007, 70(8): 724.
[38]  Tong C S, Choy S K, Chiu S N, et al. Characterization of shapes for use in classification of starch grains images [J]. Microsc Res Tech, 2008, 71(9): 651.
[39]  Choy S K, Tong C S, Zhao Z Z. A novel and effective multistage classification system for microscopic starch grain images [J]. Microsc Res Tech, 2010, 73(1): 77.
[40]  Au D T, Chen H B, Jiang Z H, et al. A novel method to identify the Chinese herbal medicine Wuzhimaotao by quantification of laticifers [J]. Microsc Res Tech, 2009, 72(4): 293.
[41]  国家药典委员会. 中华人民共和国药典中药材显微鉴别图鉴[M]. 北京:人民卫生出版社, 2009: 3.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133