Schmidt Cédric, Planchette Arielle L, Nguyen David, Giardina Gabriel, Neuenschwander Yoan, Franco Mathieu Di, Mylonas Alessio, Descloux Adrien C, Pomarico Enrico, Radenovic Aleksandra, Extermann Jérôme
HEPIA/HES-SO, University of Applied Sciences of Western Switzerland, Rue de la Prairie 4, 1202 Geneva, Switzerland.
Laboratoire de Biologie à l'Échelle Nanométrique, School of Engineering, École Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
Biomed Opt Express. 2021 May 26;12(6):3619-3629. doi: 10.1364/BOE.423284. eCollection 2021 Jun 1.
Optical projection tomography (OPT) is a powerful tool for three-dimensional imaging of mesoscopic biological samples with great use for biomedical phenotyping studies. We present a fluorescent OPT platform that enables direct visualization of biological specimens and processes at a centimeter scale with high spatial resolution, as well as fast data throughput and reconstruction. We demonstrate nearly isotropic sub-28 µm resolution over more than 60 mm after reconstruction of a single acquisition. Our setup is optimized for imaging the mouse gut at multiple wavelengths. Thanks to a new sample preparation protocol specifically developed for gut specimens, we can observe the spatial arrangement of the intestinal villi and the vasculature network of a 3-cm long healthy mouse gut. Besides the blood vessel network surrounding the gastrointestinal tract, we observe traces of vasculature at the villi ends close to the lumen. The combination of rapid acquisition and a large field of view with high spatial resolution in 3D mesoscopic imaging holds an invaluable potential for gastrointestinal pathology research.
光学投影断层扫描(OPT)是一种用于介观生物样本三维成像的强大工具,在生物医学表型研究中具有重要用途。我们展示了一个荧光OPT平台,该平台能够以高空间分辨率在厘米尺度上直接可视化生物标本和过程,同时具有快速的数据通量和重建能力。我们展示了在单次采集重建后,超过60毫米的范围内实现了近各向同性的亚28微米分辨率。我们的装置针对在多个波长下对小鼠肠道成像进行了优化。由于专门为肠道标本开发的新样本制备方案,我们能够观察到3厘米长的健康小鼠肠道的肠绒毛空间排列和血管网络。除了胃肠道周围的血管网络,我们还在靠近管腔的绒毛末端观察到了血管痕迹。在三维介观成像中,快速采集、大视野和高空间分辨率的结合为胃肠道病理学研究具有巨大的潜力。