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In Vivo Imaging With Confirmation by Histopathology for Increased Rigor and Reproducibility in Translational Research: A Review of Examples, Options, and Resources

机译:在Vivo成像中,通过组织病理学进行确认,增加了转化研究中的严格和再现性:对实例,选择和资源的审查

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摘要

Preclinical noninvasive imaging can be an indispensable tool for studying animal models of disease. In vivo imaging to assess anatomical, functional, and molecular features requires verification by a comparison to the macroscopic and microscopic morphological features, since all noninvasive in vivo imaging methods have much lower resolution than standard histopathology. Comprehensive pathological evaluation of the animal model is underutilized; yet, many institutions have veterinary or human pathologists with necessary comparative pathology expertise. By performing a rigorous comparison to gross or histopathology for image interpretation, these trained individuals can assist scientists with the development of the animal model, experimental design, and evaluation of the in vivo imaging data. These imaging and pathology corroboration studies undoubtedly increase scientific rigor and reproducibility in descriptive and hypothesis-driven research. A review of case examples including ultrasound, nuclear, optical, and MRI is provided to illustrate how a wide range of imaging modalities data can be confirmed by gross or microscopic pathology. This image confirmation and authentication will improve characterization of the model and may contribute to decreasing costs and number of animals used and to more rapid translation from preclinical animal model to the clinic.
机译:临床前的非侵入性成像可以是研究动物模型的不可或缺的工具。在体内成像以评估解剖学,功能和分子特征需要通过与宏观和微观形态特征的比较进行验证,因为除了体内成像方法中的所有非侵入性比标准组织病理学得多。对动物模型的综合病理评估未充分利用;然而,许多机构具有兽医或人类病理学家,具有必要的比较病理学专业知识。通过对图像解释的粗略或组织病理学进行严谨的比较,这些训练有素的人可以帮助科学家随着动物模型的发展,实验设计和对体内成像数据的评估。这些成像和病理化奖状性核化研究无疑会增加描述性和假设驱动的研究中的科学严格和再现性。提供了包括超声,核,光学和MRI的情况示例的审查,以说明如何通过粗略或微观病理学确认各种成像模式数据。该图像确认和认证将改善模型的表征,并且可能有助于降低所用的成本和动物的数量,并从临床前动物模型到临床临床。

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