Related Experiment Video
Updated: Feb 16, 2026

07:17
Leveraging Virtual Reality for Immersive Segmentation and Analysis of Cryo-Electron Tomography Data
Published on: January 24, 2025
1.4K
Balancing the data term of graph-cuts algorithm to improve segmentation of hepatic vascular structures
Neda Sangsefidi1, Amir Hossein Foruzan1, Ardeshir Dolati2
1Department of Biomedical Engineering, Engineering Faculty, Shahed University, Tehran, Iran.
Computers in Biology and Medicine
|January 6, 2018
Summary
This study enhances hepatic vessel segmentation using an adaptive graph-cuts algorithm, improving the extraction of small vessels even with noisy CT images. The method accurately delineates liver vasculature for better diagnosis and treatment planning.
Area of Science:
- Medical Imaging
- Computational Anatomy
- Image Segmentation
Background:
- Accurate hepatic vessel segmentation is crucial for liver disease diagnosis and treatment planning.
- Extracting small hepatic vessels remains a challenge in medical image analysis.
Purpose of the Study:
- To improve the segmentation accuracy of hepatic vessels, particularly small structures.
- To adaptively calculate the data term in the conventional graph-cuts algorithm for enhanced vessel delineation.
Main Methods:
- An adaptive approach was developed to calculate the data term in graph-cuts for hepatic vessel segmentation.
- Statistical parameters of vessels were adaptively estimated using Gaussian distributions and Expectation-Maximization on CT images.
- A medial-axes enhancement algorithm identified vessel axes, which informed the cost function for graph-cuts.
Main Results:
- The proposed method achieved a mean Dice score of 95.51% on synthetic and clinical data.
- It successfully segmented small hepatic vessels missed by traditional methods, including conventional graph-cuts.
- Performance was robust in the presence of image noise.
Conclusions:
- The adaptive graph-cuts method significantly improves the segmentation of small hepatic vessels.
- This technique enhances the delineation of liver vasculature in noisy CT images.
- The findings support its utility in clinical diagnosis and treatment planning.
Related Concept Videos
Balancing Redox Equations
62.7K
Electrochemistry is the science involved in the interconversion of electrical and chemical reactions. Such reactions are called reduction-oxidation, or redox reactions. These important reactions are defined by changes in oxidation states for one or more reactant elements and include a subset of reactions involving the transfer of electrons between reactant species. Electrochemistry as a field has evolved to yield sufficient insights on the fundamental principles of redox chemistry and multiple...
62.7K
Seedless Vascular Plants
68.0K
Seedless Vascular Plants Were the First Tall Plants on Earth
68.0K
Ogive Graph
6.9K
An ogive graph is sometimes called a cumulative frequency polygon. It is one type of frequency polygon that shows cumulative frequency. In other words, the cumulative percentages are added to the graph from left to right. An ogive graph plots cumulative frequency on the vertical y-axis and class boundaries along the horizontal x-axis. It’s very similar to a histogram; only instead of rectangles, an ogive displays a single point where the top right of the rectangle would be. Creating this...
6.9K
Graphing Antiderivatives
79
The concept of an antiderivative is fundamental in calculus, describing how a function's values accumulate over time. This process is closely related to physical motion, such as the movement of a rolling ball. As the ball progresses, its position changes in response to variations in velocity, just as an antiderivative graph reflects the cumulative effect of the original function's values.Graphing an antiderivative requires interpreting how a function's values influence the shape of its...
79
Graphs of Functions
365
Graphs of functions provide a visual representation of how output values change in response to varying inputs. Each point on the graph corresponds to an ordered pair, where the x-coordinate (independent variable) determines the horizontal position and the y-coordinate (dependent variable) determines the vertical position. Linear functions like y = x give a straight line, indicating a constant rate of change.Nonlinear functions display more complex behaviors. Even power functions generate...
365
Bar Graph
23.3K
A bar graph is also called a bar chart and consists of bars that are separated from each other. It either uses horizontal or vertical bars to show comparisons among categories. The bars can be rectangles, or they can be rectangular boxes (used in three-dimensional plots). One axis of the graph represents the specific categories being compared, and the other axis shows a discrete value. In this graph, the length of the bar for each category is proportional to the number or percent of individuals...
23.3K

