Detection of hypoxia and inflammatory processes in tissues by fluorescence spectroscopy in vivo

被引:0
作者
Petritskaya, E. [1 ]
Abaeva, L. [1 ]
Lapitan, D. [1 ]
Kulikov, D. [1 ]
Smirnova, O. [1 ]
Guseva, I. [1 ]
Rogatkin, D. [1 ]
机构
[1] Moscow Reg Res & Clin Inst MONIKI, Moscow 129110, Russia
来源
2014 INTERNATIONAL CONFERENCE LASER OPTICS | 2014年
关键词
fluorescence spectroscopy; tissue; noninvasive diagnostics; hypoxia; inflammatory processes; porphyrins;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
in experiments with the use of laser fluorescence spectroscopy (LFS) in vivo both for endogenous porphyrin at occlusive ischemia and for exogenous phthalocyanine of aluminum at induced inflammatory processes the enhanced autofluorescence in the red waveband was detected. It means that the LFS in vivo can be an effective tool for the registration of both the ischemic hypoxia and inflammatory processes in clinics.
引用
收藏
页数:1
相关论文
共 50 条
[41]   Fluorescence Spectroscopy Based Detection of Adulteration in Desi Ghee [J].
Saleem, M. .
JOURNAL OF FLUORESCENCE, 2020, 30 (01) :181-191
[42]   Fluorescence Spectroscopy for Rapid Detection and Classification of Bacterial Pathogens [J].
Sohn, Miryeong ;
Himmelsbach, David S. ;
Barton, Franklin E., II ;
Fedorka-Cray, Paula J. .
APPLIED SPECTROSCOPY, 2009, 63 (11) :1251-1255
[43]   Portable fluorescence lifetime spectroscopy system for in-situ interrogation of biological tissues [J].
Nogueira, Marcelo Saito ;
Cosci, Alessandro ;
Teixeira Rosa, Ramon Gabriel ;
Salvio, Ana Gabriela ;
Pratavieira, Sebastiao ;
Kurachi, Cristina .
JOURNAL OF BIOMEDICAL OPTICS, 2017, 22 (12)
[44]   Two-photon fluorescence spectroscopy for identification of healthy and malignant biological tissues [J].
Xu, MG ;
Gu, M ;
Thompson, EW ;
Williams, ED .
OPTICAL DIAGNOSTICS OF LIVING CELLS III, 2000, 3921 :249-254
[45]   Experimental verification of a theory for the time-resolved fluorescence spectroscopy of thick tissues [J].
Cerussi, AE ;
Maier, JS ;
Fantini, S ;
Franceschini, MA ;
Mantulin, WW ;
Gratton, E .
APPLIED OPTICS, 1997, 36 (01) :116-124
[46]   Fluorescence spectroscopy for the detection of potentially malignant disorders of the oral cavity: analysis of 30 cases [J].
Francisco, A. L. N. ;
Correr, W. R. ;
Azevedo, L. H. ;
Galletta, V. K. ;
Pinto, C. A. L. ;
Kowalski, L. P. ;
Kurachi, C. .
LASER PHYSICS, 2014, 24 (01)
[47]   Calibration standards for multicenter clinical trials of fluorescence spectroscopy for in vivo diagnosis [J].
Marín, NM ;
MacKinnon, N ;
MacAulay, C ;
Chang, SK ;
Atkinson, EN ;
Cox, D ;
Serachitopol, D ;
Pikkula, B ;
Follen, M ;
Richards-Kortum, R .
JOURNAL OF BIOMEDICAL OPTICS, 2006, 11 (01)
[48]   How infrared and fluorescence spectroscopy can shed new light on the characterization of bitumen and its ageing processes [J].
Werkovits, Stefan ;
Hofer, Kristina ;
Schoeberl, Tobias Raphael ;
Hofko, Bernhard ;
Grothe, Hinrich .
ROAD MATERIALS AND PAVEMENT DESIGN, 2024, 25 (sup1) :72-83
[49]   Femtosecond optical Kerr gate fluorescence spectroscopy for ultrafast relaxation processes [J].
Takeda, J ;
Nakajima, K ;
Kurita, S ;
Tomimoto, S ;
Saito, S ;
Suemoto, T .
JOURNAL OF LUMINESCENCE, 2000, 87-9 :927-929
[50]   Elastic Light Single-Scattering Spectroscopy for the Detection of Cervical Precancerous Ex vivo [J].
Denkceken, Tuba ;
Simsek, Tayup ;
Erdogan, Gulgun ;
Pestereli, Elif ;
Karaveli, Seyda ;
Ozel, Deniz ;
Bilge, Ugur ;
Canpolat, Murat .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 2013, 60 (01) :123-127