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Fluorescence Spectroscopy of Gastrointestinal Tumors - In Vitro Studies and In Vivo Clinical Applications

机译:胃肠道肿瘤的荧光光谱法-体外研究和体内临床应用

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The limitations of standard endoscopy for detection and evaluation of cancerous changes in the gastrointestinal tract (GIT) are significant challenges and initiate development of new diagnostic modalities. Therefore many spectral and optical techniques are applied recently into the clinical practice for obtaining qualitatively and quantitatively new data from gastrointestinal neoplasia with different levels of clinical applicability and diagnostic success. Fluorescence imaging has been one of the most promising technologies in this area. The technique is very topical with its practical application in intra-operative, image-guided resection of tumors, because it permits minimal surgery intervention and friendly therapeutic conditions. The investigations presented here are based on in vitro measurements of excitation-emission matrices (EEM) for GIT neoplasia and in vivo measurements in the frames of initial clinical trial for tumor fluorescence spectra detection, applied for introduction of spectroscopic diagnostic system for optical biopsy of GIT tumors in the daily clinical practice of the University Hospital "Queen Jiovanna - ISUL"- Sofia. Autofluorescence and exogenous fluorescence signals are detected from normal mucosa, inflammation, dysphasia and carcinoma and main spectral features are evaluated. The systems and methods developed for diagnosis and monitoring could open new dimensions in diagnostic and real-time tumor resection. This will make the entire procedure more personal, patient friendly and effective and will help for further understanding of the tumor nature.
机译:用于检测和评估胃肠道癌变(GIT)的标准内窥镜检查的局限性是重大挑战,并开始开发新的诊断方法。因此,近来许多光谱和光学技术被应用到临床实践中,以从胃肠道肿瘤中获得定性和定量的具有不同水平的临床适用性和诊断成功的新数据。荧光成像一直是该领域最有前途的技术之一。该技术在术中,图像引导的肿瘤切除中的实际应用非常热门,因为它允许最少的手术干预和友好的治疗条件。此处提出的研究基于对GIT瘤形成的激发-发射矩阵(EEM)的体外测量以及在初步临床试验中用于肿瘤荧光光谱检测的体内测量,这些方法应用于引入用于GIT光学活检的光谱诊断系统肿瘤在大学医院“皇后号-伊苏尔”-索非亚的日常临床实践中。从正常粘膜,炎症,吞咽困难和癌中检测出自体荧光和外源性荧光信号,并评估主要光谱特征。开发用于诊断和监测的系统和方法可以为诊断和实时肿瘤切除术开辟新的领域。这将使整个过程更加个性化,患者友好和有效,并将有助于进一步了解肿瘤的性质。

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