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Pietro Ferraro

Researcher at National Research Council

Publications -  720
Citations -  14634

Pietro Ferraro is an academic researcher from National Research Council. The author has contributed to research in topics: Digital holography & Holography. The author has an hindex of 61, co-authored 653 publications receiving 12666 citations. Previous affiliations of Pietro Ferraro include Aeritalia & Centre national de la recherche scientifique.

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Fringe projection based on Moiré method for measuring aberration of axially symmetric optics

TL;DR: In this paper, a very simple optical interferometric configuration that can be used for measuring wave front aberrations in optical components having axial symmetry is presented. But the optical configuration requires only two mutually coherent plane wave fronts transmitted through or reflected by the optical component under test.
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Differential diagnosis of hereditary anemias from a fraction of blood drop by digital holography and hierarchical machine learning.

TL;DR: In this paper , the authors used a hierarchical machine learning decider to distinguish between different anemia classes with minimal morphological dissimilarities, using a label-free holographic imaging and artificial intelligence.
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Pyroelectric Effect Enables Simple and Rapid Evaluation of Biofilm Formation.

TL;DR: This work presents what it calls biofilm electrostatic test (BET) as a simple, rapid, and highly reproducible tool for evaluating in vitro the ability of bacteria to form biofilms through electrostatic interaction with a pyroelectrified carrier.
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Permeable hollow 3D tissue-like constructs engineered by on-chip hydrodynamic-driven assembly of multicellular hierarchical micromodules

TL;DR: Inspired by a hydrodynamic-based classic game which stacks rings in water through the flow, a facile strategy is proposed for effective assembly of heterogeneous hierarchical micromodules into tissue-specific 3D constructs with embedded microvessel lumens in a versatile microfluidic chip.
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Flexible coherent diffraction lithography by tunable phase arrays in lithium niobate crystals

TL;DR: In this paper, an optical phase mask consisting of a two-dimensional hexagonal lattice of reversed ferroelectric domains engineered in a z-cut lithium niobate substrate and was electro-optically tunable.