Three-dimensional Convolution

Three-dimensional convolution is a computational technique that analyzes volumetric data by applying a small three-dimensional filter, or kernel, across spatial dimensions. At each position, the kernel multiplies local voxel values by learned weights and combines them to produce feature maps that represent patterns such as boundaries, textures, or anatomical structures. In medicine, three-dimensional convolution forms the foundation of convolutional neural networks for processing computed tomography, magnetic resonance imaging, and other volumetric scans. These models can support image segmentation, lesion detection, classification, and treatment planning by capturing relationships between neighboring slices while preserving information about the full three-dimensional structure.

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JoVE Core - Electrical Engineering

Convolution Properties II

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2024

The important convolution properties include width, area, differentiation, and integration properties. The width property indicates that if the durations of input signals are T1 and T2, then the width of the output response equals the sum of both durations, irrespective of the shapes of the two functions. For instance, convolving two rectangular pulses with durations of 2 seconds and 1 second results in a function with a width of 3 seconds. The area property asserts that the area under the...

Convolution Properties I

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2024

Convolution computations can be simplified by utilizing their inherent properties. The commutative property reveals that the input and the impulse response of an LTI (Linear Time-Invariant) system can be interchanged without affecting the output: The associative property suggests that the merged convolution of three functions remains unchanged regardless of the sequence of convolution. For instance, for three functions x(t), h(t), and g(t) is written as, When two LTI systems with impulse...

Convolution: Math, Graphics, and Discrete Signals

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2024

In any LTI (Linear Time-Invariant) system, the convolution of two signals is denoted using a convolution operator, assuming all initial conditions are zero. The convolution integral can be divided into two parts: the zero-input or natural response and the zero-state or forced response, with t0 indicating the initial time. To simplify the convolution integral, it is assumed that both the input signal and impulse response are zero for negative time values. The graphical convolution process...

Dimensional Analysis

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2020

Dimensional analysis, also known as the factor label method, is a versatile approach for mathematical operations. The main principle behind this approach is: the units of quantities must be subjected to the same mathematical operations as their associated numbers. This method can be applied to computations ranging from simple unit conversions to more complex and multi-step calculations involving several different quantities and their units. Conversion Factors and Dimensional Analysis The unit...

Two-Dimensional Gel Electrophoresis

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2023

Two-dimensional gel electrophoresis (2DGE) is a technique that can resolve thousands of biomolecules from a mixture. This technique involves two distinct separation methods that have been coupled together: isoelectric focusing (IEF) and sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE). This physically separates compounds across two axes of a gel by their isoelectric points (an electrochemical property) and their molecular weights. The procedure in this video covers the main...

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