Fluorescence spectroscopy of exogenous, exogenously-induced and endogenous fluorophores for the photodetection and photodynamic therapy of cancer
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[1] P. Nowell. Mechanisms of tumor progression. , 1986, Cancer research.
[2] E. Smit,et al. Results of Two Years Experience with Fluorescence Bronchoscopy in Detection of Preinvasive Bronchial Neoplasia , 2008 .
[3] Tetsuya Utsui,et al. Development of the Autofluorescence Endoscope Imaging System , 2008 .
[4] S. Franceschi,et al. Incidence of infiltrating cancer following superficial bladder carcinoma , 1993, International journal of cancer.
[5] P. Brazdil,et al. Analysis of results , 1995 .
[6] A E Profio,et al. FLUORESCENCE SPECTRA IN LUNG WITH PORPHYRIN INJECTION , 1989, Photochemistry and photobiology.
[7] K. Schomacker,et al. Autofluorescence guided biopsy for the early diagnosis of bladder carcinoma. , 1998, The Journal of urology.
[8] H Anholt,et al. Use of 5-aminolevulinic acid esters to improve photodynamic therapy on cells in culture. , 1997, Cancer research.
[9] H. Bergh,et al. In Vivo Fluence Rate Effect in Photodynamic Therapy of Early Cancers with Tetra(m‐hydroxyphenyl)chlorin , 1996, Photochemistry and photobiology.
[10] P. Speight,et al. Photodynamic therapy using mTHPC for malignant disease in the oral cavity , 1997, International journal of cancer.
[11] H. Bergh,et al. Clinical photodynamic therapy for superficial cancer in the oesophagus and the bronchi: 514 nm compared with 630 nm light irradiation after sensitization with Photofrin II. , 1998, British Journal of Cancer.
[12] H. Bergh,et al. Rapid Communication: Stability of the Fluorescence Measurement of Foscan® in the Normal Human Oral Cavity as an Indicator of its Content in Early Cancers of the Esophagus and the Bronchi , 1999, Photochemistry and photobiology.
[13] Michele T. Cooper,et al. Cutaneous phototoxic occurrences in patients receiving Photofrin® , 1990, Lasers in surgery and medicine.
[14] Joachim Mühling,et al. Photodynamic therapy of primary nonmelanomatous skin tumours of the head and neck , 1999, Lasers in surgery and medicine.
[15] B. Steinberg,et al. Comparative biodistribution of meta‐Tetra (Hydroxyphenyl) chlorin in multiple species: Clinical implications for photodynamic therapy , 1997, Lasers in surgery and medicine.
[16] A E Profio,et al. Detection of dysplasia and carcinoma in situ with a lung imaging fluorescence endoscope device. , 1993, The Journal of thoracic and cardiovascular surgery.
[17] Gregg Staerkel,et al. Cervical Precancer Detection Using a Multivariate Statistical Algorithm Based on Laser‐Induced Fluorescence Spectra at Multiple Excitation Wavelengths , 1996, Photochemistry and photobiology.
[18] I Itzkan,et al. Autofluorescence characteristics of oral mucosa , 1997, Head & neck.
[19] N Ramanujam,et al. Development of a multivariate statistical algorithm to analyze human cervical tissue fluorescence spectra acquired in vivo , 1996, Lasers in surgery and medicine.
[20] D. Wallace. Cancer of the bladder. , 1968, The American journal of roentgenology, radium therapy, and nuclear medicine.
[21] Photodynamic ablation of early cancers of the stomach by means of mTHPC and laser irradiation: preliminary clinical experience , 1998 .
[22] T J Dougherty,et al. Fluorescence bronchoscopy for detection of lung cancer. , 1979, Chest.
[23] W Lohmann,et al. Significance of autofluorescence for the optical demarcation of field cancerisation in the upper aerodigestive tract. , 1997, Acta oto-laryngologica.
[24] D. Harris,et al. Endogenous porphyrin fluorescence in tumors , 1987, Lasers in surgery and medicine.
[25] H. Kato,et al. the Harwood Academic Publishers imprint, part of The Gordon and Breach Publishing Group. Printed in Singapore. Early Detection of Bronchial Lesions Using System of , 2022 .
[26] Harald B. Steen,et al. Photodynamic therapy with 5-aminoolevulinic acid-induced porphyrins and DMSO/EDTA for basal cell carcinoma , 1994, Other Conferences.
[27] E. Sevick-Muraca,et al. Quantitative optical spectroscopy for tissue diagnosis. , 1996, Annual review of physical chemistry.
[28] N. Brown,et al. Kinetics of endogenous protoporphyrin IX induction by aminolevulinic acid: preliminary studies in the bladder. , 1994, The Journal of urology.
[29] J C Kennedy,et al. Endogenous protoporphyrin IX, a clinically useful photosensitizer for photodynamic therapy. , 1992, Journal of photochemistry and photobiology. B, Biology.
[30] V. Devita,et al. Cancer : Principles and Practice of Oncology , 1982 .
[31] H. Bergh,et al. Photodynamic therapy for early squamous cell carcinomas of the esophagus, bronchi, and mouth with m-tetra (hydroxyphenyl) chlorin. , 1997, Archives of otolaryngology--head & neck surgery.
[32] Martin Leonhard,et al. Early detection of lung cancer , 2010 .
[33] J. Kennedy,et al. Photodynamic therapy with endogenous protoporphyrin IX: basic principles and present clinical experience. , 1990, Journal of photochemistry and photobiology. B, Biology.
[34] P J M George,et al. Fluorescence bronchoscopy for the early detection of lung cancer , 1999, Thorax.
[35] Alberto Colasanti,et al. Noninvasive spectroscopic analysis of dermatological lesions excited with N2 laser , 1995, European Conference on Biomedical Optics.
[36] J Moan,et al. DISTRIBUTION OF 5‐AMINOLEVULINIC ACID‐INDUCED PORPHYRINS IN NODULOULCERATIVE BASAL CELL CARCINOMA , 1995, Photochemistry and photobiology.
[37] H Stepp,et al. Inhalation of 5-aminolevulinic acid: a new technique for fluorescence detection of early stage lung cancer. , 1996, Journal of photochemistry and photobiology. B, Biology.
[38] R. Weersink,et al. Accuracy of Noninvasive in vivo Measurements of Photosensitizer Uptake Based on a Diffusion Model of Reflectance Spectroscopy , 1997, Photochemistry and photobiology.
[39] U Althaus,et al. Effect of drug‐light interval on photodynamic therapy with meta‐tetrahydroxyphenylchlorin in malignant mesothelioma , 1993, International journal of cancer.
[40] F. Khuri,et al. Autofluorescence bronchoscopy in the detection of squamous metaplasia and dysplasia in current and former smokers. , 1998, Journal of the National Cancer Institute.
[41] P. Grosjean,et al. Photodynamic therapy for cancer of the upper aerodigestive tract using tetra(m-hydroxyphenyl)chlorin. , 1996, Journal of clinical laser medicine & surgery.
[42] S. Majumder,et al. Breast cancer diagnosis using N2 laser excited autofluorescence spectroscopy , 1997, Lasers in surgery and medicine.
[43] R. M. Huber,et al. Autofluorescence Detection of Bronchial Tumors with the D-Light ] , 2008 .
[44] B. Wilson,et al. In Vivo Fluorescence Spectroscopy and Imaging for Oncological Applications , 1998, Photochemistry and photobiology.
[45] J Moan,et al. Distribution and photosensitizing efficiency of porphyrins induced by application of exogenous 5‐aminolevulinic acid in mice bearing mammary carcinoma , 1992, International journal of cancer.
[46] R Baumgartner,et al. Intravesical instillation of 5-aminolevulinic acid: the fluorescent metabolite is limited to urothelial cells. , 1994, Urology.
[47] C. Depeursinge,et al. Clinical imaging fluorescence apparatus for the endoscopic photodetection of early cancers by use of Photofrin II. , 1997, Applied optics.
[48] J. Bridges,et al. RAPID ABSORPTION FROM THE URINARY BLADDER OF A SERIES OF n‐ALKYL CARBAMATES: A ROUTE FOR THE RECIRCULATION OF DRUGS , 1979, British journal of pharmacology.
[49] Calum MacAulay,et al. Laser-induced fluorescence spectroscopy at endoscopy: tissue optics, Monte Carlo modeling, and in vivo measurements , 1995 .
[50] Murphy Wm,et al. Classification of premalignant urothelial abnormalities. A Delphi study of the National Bladder Cancer Collaborative Group A. , 1982 .
[51] H. Fukuda,et al. Tumour-localizing properties of porphyrins. In vivo studies using free and liposome encapsulated aminolevulinic acid. , 1992, Comparative biochemistry and physiology. B, Comparative biochemistry.
[52] B. Kulapaditharom,et al. Laser-Induced Fluorescence Imaging in Localization of Head and Neck Cancers , 1998, The Annals of otology, rhinology, and laryngology.
[53] R Richards-Kortum,et al. Fluorescence spectroscopy: A technique with potential to improve the early detection of aerodigestive tract neoplasia , 1998, Head & neck.
[54] R Baumgartner,et al. Fluorescence photodetection of neoplastic urothelial lesions following intravesical instillation of 5-aminolevulinic acid. , 1994, Urology.
[55] L. Bezdetnaya,et al. Spectroscopic and Biological Testing of Photobleaching of Porphyrins in Solutions * , 1996, Photochemistry and photobiology.
[56] Z. Malik,et al. Topical application of 5-aminolevulinic acid, DMSO and EDTA: protoporphyrin IX accumulation in skin and tumours of mice. , 1995, Journal of photochemistry and photobiology. B, Biology.
[57] M. Zellweger,et al. An optical phantom with tissue-like properties in the visible for use in PDT and fluorescence spectroscopy. , 1997, Physics in medicine and biology.
[58] S. Lam,et al. Future diagnostic procedures. , 1996, Chest surgery clinics of North America.
[59] T. Foster,et al. Time‐dependent Intracellular Accumulation of 5‐Aminolevulinic Acid, Induction of Porphyrin Synthesis and Subsequent Phototoxicity , 1997, Photochemistry and photobiology.
[60] E. Bechara,et al. 5-Aminolevulinic acid mediates the in vivo and in vitro formation of 8-hydroxy-2'-deoxyguanosine in DNA. , 1994, Carcinogenesis.
[61] R. Alfano,et al. Spectroscopic differences between human cancer and normal lung and breast tissues , 1989, Lasers in surgery and medicine.
[62] S. Takehana,et al. Endoscopic Diagnostic System Using Autofluorescence , 1999, Diagnostic and therapeutic endoscopy.
[63] Y. Furuya,et al. Fluorescence photography as a diagnostic method for oral cancer. , 1996, Cancer letters.
[64] L. Guillou,et al. Clinical evaluation of a method for detecting superficial transitional cell carcinoma of the bladder by light‐induced fluorescence of protoporphyrin IX following topical application of 5‐aminolevulinic acid: Preliminary results , 1997, Lasers in surgery and medicine.
[65] Daniel Braichotte,et al. Clinical pharmacokinetic studies of tetra(meta‐hydroxyphenyl)chlorin in squamous cell carcinoma by fluorescence spectroscopy at 2 wavelengths , 1995, International journal of cancer.
[66] C. Hadjur,et al. Pharmacokinetics of Tetra (m‐hydroxyphenyl)chlorin in Human Plasma and Individualized Light Dosimetry in Photodynamic Therapy , 1998, Photochemistry and photobiology.
[67] A Coldman,et al. Localization of bronchial intraepithelial neoplastic lesions by fluorescence bronchoscopy. , 1998, Chest.
[68] H. Bergh,et al. In vivo autofluorescence spectroscopy of human bronchial tissue to optimize the detection and imaging of early cancers. , 2001, Journal of biomedical optics.
[69] H. Altermatt,et al. Intraoperative photodynamic therapy with m‐tetrahydroxyphenylchlorin for chest malignancies , 1996, Lasers in surgery and medicine.
[70] R. Talač,et al. Detection of Bronchial Neoplasia in Uranium Miners by Autofluorescence Endoscopy (SAFE-1000) , 1999, Diagnostic and therapeutic endoscopy.
[71] H. Altermatt,et al. Photodynamic therapy with m‐tetrahydroxyphenylchlorin in vivo: Optimization of the therapeutic index , 1993, International journal of cancer.
[72] H. Kato,et al. Fluorescence fiberoptic bronchoscopy in the diagnosis of early stage lung cancer. , 1982, Recent results in cancer research. Fortschritte der Krebsforschung. Progres dans les recherches sur le cancer.
[73] F. Guillemin,et al. Characterization of Photodegradation of Meta‐tetra (Hydroxyphenyl)chlorin (mTHPC) in Solution: Biological Consequences in Human Tumor Cells , 1998, Photochemistry and photobiology.
[74] C. Hadjur,et al. Photodynamic therapy of early squamous cell carcinoma with tetra(m-hydroxyphenyl)chlorin: optimal drug-light interval. , 1997, British Journal of Cancer.
[75] D. Hurzeler. Blue light endoscopy. , 1975 .
[76] T J Flotte,et al. Ultraviolet laser‐induced fluorescence of colonic tissue: Basic biology and diagnostic potential , 1992, Lasers in surgery and medicine.
[77] B. Palcic,et al. Autofluorescence of normal and malignant bronchial tissue , 1991, Lasers in surgery and medicine.
[78] K.-P. Steuhl. 3. Materials and Methods , 1989 .
[79] Yang Yuanlong,et al. Characteristic autofluorescence for cancer diagnosis and its origin , 1987, Lasers in surgery and medicine.
[80] M. Saito,et al. Early Detection of Bronchial Lesions Using Lung Imaging Fluorescence Endoscope , 1999, Diagnostic and therapeutic endoscopy.
[81] O. Cussenot,et al. Laser induced autofluorescence diagnosis of bladder tumors: dependence on the excitation wavelength. , 1996, The Journal of urology.
[82] K Svanberg,et al. Photodynamic therapy of non‐melanoma malignant tumours of the skin using topical δ‐amino levulinic acid sensitization and laser irradiation , 1994, The British journal of dermatology.
[83] S. Lam,et al. Detection and localization of early lung cancer by imaging techniques. , 1991, Chest.
[84] William R. Potter,et al. The Theory Of Photodynamic Therapy Dosimetry: Consequences Of Photodestruction Of Sensitizer , 1987, Other Conferences.
[85] M. Žargi,et al. Laser induced fluorescence in diagnostics of laryngeal cancer. , 1997, Acta oto-laryngologica. Supplementum.
[86] R. Marchesini,et al. Natural fluorescence of normal and neoplastic human colon: A comprehensive “ex vivo” study , 1995, Lasers in surgery and medicine.
[87] Patrice Jichlinski,et al. Fluorescence excitation and emission spectra of ALA-induced protoporphyrin IX in normal and tumoral tissue of the human bladder , 1995, Other Conferences.
[88] J Moan,et al. Build-up of esterified aminolevulinic-acid-derivative-induced porphyrin fluorescence in normal mouse skin. , 1996, Journal of Photochemistry and Photobiology. B: Biology.
[89] H Stepp,et al. Detection of early bladder cancer by 5-aminolevulinic acid induced porphyrin fluorescence. , 1996, The Journal of urology.
[90] Robert R. Alfano,et al. Time-resolved UV photoexcited fluorescence kinetics from malignant and non-malignant human breast tissues , 1992 .
[91] P. Monnier,et al. Optimizing light dosimetry in photodynamic therapy of early stage carcinomas of the esophagus using fluorescence spectroscopy , 1996, Lasers in surgery and medicine.
[92] R. Richards-Kortum,et al. Noninvasive diagnosis of oral neoplasia based on fluorescence spectroscopy and native tissue autofluorescence. , 1998, Archives of otolaryngology--head & neck surgery.
[93] R. Weller,et al. International Histological Classification of Tumours , 1981 .
[94] Joris Kloek,et al. Prodrugs of 5‐Aminolevullinic Acid for Photodynamic Therapy , 1996, Photochemistry and photobiology.