论文标题
用于验证单粒子成像的加密解码框架
An encryption-decryption framework for validating single-particle imaging
论文作者
论文摘要
我们提出了一个加密解码框架,用于验证使用单粒子成像(SPI)用X射线自由电子激光器(XFELS)重建的衍射强度体积,当时没有地面真相体积。该框架利用了每个重建体积的能力,可以破解看不见的前哨衍射模式的潜在变量(例如方向)。使用此框架,我们量化了两个独立重建体积的解密之间的方向脱节,不一致和分歧的新颖衡量标准。我们还研究了如何使用这些措施来定义数据充足及其与空间分辨率的关系,以及将XFEL脉冲聚焦到较小焦点的实际后果。该框架克服了使用傅立叶壳相关(FSC)作为SPI的验证度量的关键歧义。最后,我们展示了该加密解码框架如何自然地导致XFEL-SPI解决能力的信息理论重新重新制定,我们希望这将为实验和仪器设计提供原则上的框架。
We propose an encryption-decryption framework for validating diffraction intensity volumes reconstructed using single-particle imaging (SPI) with x-ray free-electron lasers (XFELs) when the ground truth volume is absent. This framework exploits each reconstructed volumes' ability to decipher latent variables (e.g. orientations) of unseen sentinel diffraction patterns. Using this framework, we quantify novel measures of orientation disconcurrence, inconsistency, and disagreement between the decryptions by two independently reconstructed volumes. We also study how these measures can be used to define data sufficiency and its relation to spatial resolution, and the practical consequences of focusing XFEL pulses to smaller foci. This framework overcomes critical ambiguities in using Fourier Shell Correlation (FSC) as a validation measure for SPI. Finally, we show how this encryption-decryption framework naturally leads to an information-theoretic reformulation of the resolving power of XFEL-SPI, which we hope will lead to principled frameworks for experiment and instrument design.