Mancuso Adrian P, Groves Matthew R, Polozhentsev Oleg E, Williams Garth J, McNulty Ian, Antony Claude, Santarella-Mellwig Rachel, Soldatov Aleksander V, Lamzin Victor, Peele Andrew G, Nugent Keith A, Vartanyants Ivan A
Deutsches Elektronen-Synchrotron DESY, Hamburg, Germany.
Opt Express. 2012 Nov 19;20(24):26778-85. doi: 10.1364/OE.20.026778.
We have applied Fresnel Coherent Diffractive Imaging (FCDI) to image an intact pollen grain from Convallaria majalis. This approach allows us to resolve internal structures without the requirement to chemically treat or slice the sample into thin sections. Coherent X-ray diffraction data from this pollen grain-composed of a hologram and higher resolution scattering information-was collected at a photon energy of 1820 eV and reconstructed using an iterative algorithm. A comparison with images recorded using transmission electron microscopy demonstrates that, while the resolution of these images is limited by the available flux and mechanical stability, we observed structures internal to the pollen grain-the intine/exine separations and pore dimensions-finer than 60 nm. The potential of this technique for further biological imaging applications is discussed.
我们已应用菲涅耳相干衍射成像(FCDI)对铃兰的完整花粉粒进行成像。这种方法使我们能够解析内部结构,而无需对样品进行化学处理或将其切成薄片。在1820 eV的光子能量下收集了来自该花粉粒的相干X射线衍射数据,该数据由全息图和更高分辨率的散射信息组成,并使用迭代算法进行重建。与使用透射电子显微镜记录的图像进行比较表明,虽然这些图像的分辨率受到可用通量和机械稳定性的限制,但我们观察到了花粉粒内部比60 nm更精细的结构——内壁/外壁间距和孔隙尺寸。本文还讨论了该技术在进一步生物成像应用中的潜力。