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Related Concept Videos

Esophageal Varices-II: Clinical Features and Management01:28

Esophageal Varices-II: Clinical Features and Management

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Esophageal varices often manifest as gastrointestinal bleeding episodes, presenting symptoms like hematemesis (vomiting of blood), hematochezia (passing fresh blood via the rectum), and melena (black, tarry stools). Other signs can include weight loss, anorexia, abdominal discomfort, jaundice, pruritus, altered mental status, and muscle cramps.
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Esophageal varices are dilated, tortuous veins which are found mainly in the submucosa of the lower esophagus but which may also appear higher up or extend into the stomach. They develop due to increased pressure in the portal venous system, often as a result of liver cirrhosis. This condition scars and damages the liver, impeding normal blood flow through the portal vein. To compensate, blood seeks alternative pathways, forming fragile new vessels (varices) in the esophagus and stomach. These...
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Capsule endoscopy, or wireless or video capsule endoscopy, is a diagnostic procedure for examining the entire gastrointestinal tract. Patients swallow a capsule about the size of a vitamin tablet. The capsule is equipped with a transmitter, a battery, an LED light source, and a color video camera to capture images throughout the gastrointestinal tract. This procedure is particularly useful for diagnosing conditions such as Crohn's disease, ulcerative colitis, tumors, polyps, ulcers,...
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An Esophagogastroduodenoscopy (EGD) is a diagnostic procedure in which an endoscopist uses a flexible, lighted endoscope to visualize the upper gastrointestinal (GI) tract. The procedure includes visualizing the oropharynx, esophagus, stomach, and the first part of the small intestine, the duodenum.
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Related Experiment Video

Updated: Aug 24, 2025

Predicting Treatment Response to Image-Guided Therapies Using Machine Learning: An Example for Trans-Arterial Treatment of Hepatocellular Carcinoma
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Automated Multimodal Machine Learning for Esophageal Variceal Bleeding Prediction Based on Endoscopy and Structured

Yu Wang1, Yu Hong2,3, Yue Wang4

  • 1Department of General Surgery, Jintan Affiliated Hospital of Jiangsu University, Changzhou, China.

Journal of Digital Imaging
|October 24, 2022
PubMed
Summary

Automated machine learning accurately predicts esophageal variceal bleeding risk in cirrhosis patients using endoscopic images and clinical data, outperforming existing scores.

Keywords:
Automated machine learning (AutoML)Computer vision (CV)Deep learning (DL)Esophageal variceal (EV) bleedingMultimodal machine learning (MMML)

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Area of Science:

  • Medical Imaging
  • Machine Learning
  • Gastroenterology

Background:

  • Esophageal variceal (EV) bleeding is a life-threatening complication of cirrhosis.
  • Early identification of high-risk patients is crucial for improved outcomes and resource allocation.

Purpose of the Study:

  • To assess the feasibility of automated multimodal machine learning (MMML) for predicting 12-month EV bleeding risk.
  • To integrate endoscopic images and clinical data for enhanced predictive accuracy.

Main Methods:

  • Developed deep learning (DL) models using endoscopic images (ResNet, Xception, EfficientNet, ViT, ConvMixer).
  • Trained and validated MMML models on an automated platform, combining DL outputs with clinical data (MELD, Child-Pugh, APRI, FIB-4).
  • Externally tested MMML models and compared performance against existing clinical indices.

Main Results:

  • An EfficientNet DL model achieved 0.868 accuracy in predicting bleeding events.
  • A stacking MMML model demonstrated superior performance with 0.932 accuracy, 0.952 sensitivity, and 0.879 F1-score.
  • The MMML approach outperformed traditional clinical indices in predicting 12-month EV bleeding.

Conclusions:

  • Automated MMML is a feasible and effective tool for predicting 12-month EV bleeding risk.
  • Integrating endoscopic imaging with clinical data significantly improves prediction accuracy.
  • This novel approach offers a promising strategy for early risk stratification in cirrhotic patients.