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Nonlinear, noniterative, single-distance phase retrieval and developmental biology

机译:非线性,非行义,单距离相位检索和发育生物学

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For coherent X-ray imaging, based on phase contrast through free-space Fresnel propagation, we discuss two noniterative, nonlinear approaches to the phase-retrieval problem from a single-distance intensity map of a pure-phase object. On one hand, a perturbative set-up is proposed where nonlinear corrections to the linearized transport-of-intensity situation are expanded in powers of the object-detector distance z and are evaluated in terms of the linear estimate. On the other hand, a nonperturbative projection algorithm, which is based on the (linear and local) contrast-transfer function (CTF), works with an effective phase in Fourier space. This effective phase obeys a modified CTF relation between intensity contrast at z > 0 and phase contrast at z = 0: Unphysical singularities of the local CTF model are cut off to yield 'quasiparticles' in analogy to the theory of the Fermi liquid. By identifying the positions of the zeros of the Fourier transformed intensity contrast as order parameters for the dynamical breaking of scaling symmetry we investigate the phase structure of the forward-propagation problem when interpreted as a statistical system. Results justify the quasiparticle approach for a wide range of intermediary phase variations. The latter algorithm is applied to data from biological samples recorded at the beamlines TopoTomo and ID19 at ANKA and ESRF, respectively.
机译:对于相干X射线成像的基础上,通过自由空间传播的菲涅耳相位对比,我们将讨论从纯相对象的单个距离强度图2非迭代,非线性方法的相位恢复的问题。一方面,一微扰的建立提出其中非线性更正线性运输的强度的情况中的对象检测器的距离z与功率被膨胀并在该线性估计方面进行评估。在另一方面,一个非微扰投影算法,该算法是基于(线性和本地)对比度传递函数(CTF),工程用在傅立叶空间中的有效相位。这有效相位服从在z = 0处Ž> 0和相位对比强度对比度之间的改性CTF关系:本地CTF模型的非物理奇点以类似于切断成品率“准粒子”至费米液体的理论。通过识别的经傅立叶变换的强度对比的零点的位置作为命令参数缩放对称的动态破坏我们研究前向传播问题的相结构时解释为统计系统。结果证明为广泛中介相位变化的准粒子的方法。后者算法应用到从记录在光束线TopoTomo和ID19分别ANKA和ESRF,生物样品的数据。

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