Signal Reconstruction

Signal reconstruction is the process of estimating an original continuous or discrete signal from incomplete, sampled, compressed, or noise-corrupted measurements, making it fundamental to engineering systems that sense, transmit, and interpret data. It works by combining measurement models with prior assumptions about the signal, then applying methods such as interpolation, filtering, Fourier analysis, or optimization to recover missing or distorted information; sampling theory determines when accurate recovery is possible. In communications, imaging, audio, radar, and biomedical instrumentation, reconstruction improves data quality while reducing storage or transmission demands. Its performance is evaluated by measures such as reconstruction error, resolution, and robustness to noise.

Signal Reconstruction - Related Videos

Education

JoVE Core - Electrical Engineering

Reconstruction of Signal using Interpolation

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2024

Signal processing techniques are essential for accurately converting continuous signals to digital formats and vice versa. When a continuous signal is sampled with a period T, the resulting sampled signal exhibits replicas of the original spectrum in the frequency domain, spaced at intervals equal to the sampling frequency. To handle this sampled signal, a zero-order hold method can be applied, which creates a piecewise constant signal by retaining each sample's value until the next sampling...

Research

JoVE Journal - Biology
Free Sample

Imaging and 3D Reconstruction of Cerebrovascular Structures in Embryonic Zebrafish

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Cited by 1 •

2014

Imaging of cerebrovascular development in larval zebrafish is described. Techniques to facilitate 3D imaging and modify cerebrovascular development using chemical treatments are also provided.

Designing CAD/CAM Surgical Guides for Maxillary Reconstruction Using an In-house Approach

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Cited by 7 •

2018

Methods for designing a computer-aided design/computer-aided manufacturing (CAD/CAM) surgical guide are shown. Cutting planes are separated, united, and thickened to easily visualize the necessary bone transfer. These designs can be three-dimensional printed and checked for accuracy.

Studying Protein Function and the Role of Altered Protein Expression by Antibody Interference and Three-dimensional Reconstructions

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Cited by 2 •

2016

Controlling protein expression is not only essential to every organism alive, but also an important strategy to investigate protein functions in cellular models. The protocol presented shows the application of antibody interference in mammalian cells including primary hippocampal neurons and demonstrates the use of three-dimensional reconstructions in studying protein function.

Coronoid-Temporalis Pedicled Flap for Orbital Floor Defect Reconstruction

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2025

This protocol presents a novel coronoid-temporalis pedicled flap (CTPF) technique for reconstructing small-to-medium orbital floor defects. CTPF avoids microvascular risks while maintaining biomechanical stability. Clinical cases demonstrate effective structural restoration, reduced complications, and preserved facial symmetry, offering a viable alternative to traditional grafts or alloplastic materials.

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