3D scattering microphantom sample to assess quantitative accuracy in tomographic phase microscopy techniques

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Descrição

3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
A super-resolution microscopy method for rapid differentiation of
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
Quantitative Phase Imaging Aims at Penetrating Thick Tissues
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
PDF] Common-path diffraction optical tomography for investigation
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
Near-infrared, wavelength, and illumination scanning holographic
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
Four-Dimensional Scanning Transmission Electron Microscopy (4D
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
Molecular Imaging of Conscious, Unrestrained Mice with AwakeSPECT
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
Nanoscale x-ray and electron tomography
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
3D scattering microphantom sample to assess quantitative accuracy
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
Multi-material multi-photon 3D laser micro- and nanoprinting
3D scattering microphantom sample to assess quantitative accuracy in  tomographic phase microscopy techniques
Quantitative Phase Imaging Aims at Penetrating Thick Tissues
de por adulto (o preço varia de acordo com o tamanho do grupo)