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首页> 外文期刊>Journal of Biophotonics >Multimodal imaging for tumour characterization from micro- to macroscopic level using a newly developed dorsal chamber designed for long-term follow-up
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Multimodal imaging for tumour characterization from micro- to macroscopic level using a newly developed dorsal chamber designed for long-term follow-up

机译:用于肿瘤表征的多峰成像,使用新开发的背腔室用于长期随访的新开发的背腔腔

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摘要

Optical imaging of living animals is a unique method of studying the dynamics of physiological and pathological processes at a subcellular level. One-shot acquisitions at high resolution can be achieved on exteriorized organs before animal euthanasia. For longitudinal follow-up, intravital imaging can be used and involves imaging windows implanted in cranial, thoracic or dorsal regions. Several imaging window models exist, but none have proven to be applicable for long-term monitoring and most biological processes take place over several weeks. Moreover, none are compatible with multiple imaging modalities, meaning that different biological parameters cannot be assessed in an individual animal. We developed a new dorsal chamber that was well tolerated by mice (over several months) and allowed individual and collective cell tracking and behaviour analysis by optical imaging, ultrasound and magnetic resonance tomography. This new model broadens potential applications to areas requiring study of long-term biological processes, as in cancer research.
机译:活性动物的光学成像是在亚细胞水平下研究生理和病理过程动态的独特方法。在动物安乐死前的外部化器官可以实现高分辨率的一次性采集。对于纵向随访,可以使用腔内成像,并涉及植入颅骨,胸腔或背部区域的成像窗口。存在几种成像窗口模型,但没有已证明适用于长期监测,大多数生物过程发生在几周内。此外,没有兼容多种成像方式,这意味着不能在单个动物中评估不同的生物学参数。我们开发了一种新的背部室,由小鼠(几个月)耐受良好,并且通过光学成像,超声波和磁共振断层扫描允许个体和集体单元跟踪和行为分析。这种新模型将潜在的应用扩大到需要研究长期生物过程的领域,如癌症研究。

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