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多光谱成像与病理学:看得更多,做得更多。

Multispectral imaging and pathology: seeing and doing more.

作者信息

Levenson Richard M, Fornari Alessandro, Loda Massimo

机构信息

CRI, 35B Cabot Road, Woburn, MA 01801, USA +1 781 935 9099, ext. 204 ; +1 781 935 3388 ;

出版信息

Expert Opin Med Diagn. 2008 Sep;2(9):1067-81. doi: 10.1517/17530059.2.9.1067.

Abstract

BACKGROUND

The current appreciation of the biological complexity of disease has led to increasing demands on pathologists to provide clinically relevant, quantitative morphological and molecular information while preserving cellular and tissue context. This can be technically challenging, especially when signals of interest are colocalized. With fluorescence-based methods, sensitivity and quantitative reliability may be compromised by spectral cross-talk between labels and by autofluorescence. In brightfield microscopy, overlapping chromogenic signals pose similar imaging difficulties.

APPROACH

These challenges can be addressed using commercially available multispectral imaging technologies attached to standard microscope platforms, or alternatively, integrated into whole-slide scanning instruments.

ASSESSMENT

Multispectral techniques, along with other developments in digital analysis, will allow pathologists to deliver appropriate quantitative and multiplexed analyses in a reproducible and timely manner. Caveats apply - as the complexity of the sample preparation and analysis components increases, commensurate attention must be paid to the use of appropriate controls for all stages of the process.

摘要

背景

当前对疾病生物学复杂性的认识使得对病理学家的要求不断提高,即在保留细胞和组织背景的同时,提供临床相关的定量形态学和分子信息。这在技术上可能具有挑战性,尤其是当感兴趣的信号共定位时。对于基于荧光的方法,灵敏度和定量可靠性可能会受到标记之间的光谱串扰和自发荧光的影响。在明场显微镜中,重叠的显色信号也带来类似的成像困难。

方法

可以使用连接到标准显微镜平台的市售多光谱成像技术来应对这些挑战,或者将其集成到全切片扫描仪器中。

评估

多光谱技术以及数字分析中的其他进展将使病理学家能够以可重复且及时的方式进行适当的定量和多重分析。需要注意的是——随着样品制备和分析组件的复杂性增加,必须对该过程的所有阶段使用适当的对照给予相应的关注。

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