AI Solutions


AI Solutions Overview


XCube provides diagnostic and treatment planning support solutions 

by integrating medical AI with 3D modeling technology.

HEXA AI


Detection of calcification and localized lesions in six major organs (heart, lungs, thyroid, breasts, liver, spine) using Chest CT data.

CAC-CUBE AI


Coronary artery calcification detection and quantitative analysis for cardiovascular imaging.

HEXA


AI-Powered Multi-Organ Analysis Solution

You can quickly screen for critical disease-related information, including myocardial infarction, 

lung cancer, thyroid cancer, and breast cancer.

Features 

  • Automated analysis and result upload (Requires integration with hospital PACS system).
  • Intuitive interface for efficient use by medical professionals.
  • Supports objective, data-driven quantitative diagnosis.
  • Automatically analyzes CT data to reduce diagnosis time.
  • Segmentation of six organ regions and detection of abnormalities.

Supported Organs for Analysis

Assesses cardiovascular disease risk through coronary artery calcification scoring.

Detects lung nodules and calcification for early diagnosis of lung cancer and chronic diseases.

Detects spinal stenosis and analyzes calcification related to bone density loss (degenerative disease diagnosis).

Detects calcification in breast tissue to support early breast cancer diagnosis.

Analyzes localized abnormalities such as fatty liver and cirrhosis to assess liver health.

Analyzes thyroid nodules and calcification to evaluate tumors and thyroid function.

CAC-CUBE


AI-Powered Cardiovascular Imaging Analysis Solution

Features

  • Automatic extraction of cardiovascular regions from Chest CT (U-Net Segmentation).
  • Cardiovascular imaging analysis and calcification quantification.
  • HU (Hounsfield Unit)-based enhanced visualization.
  • Medical decision support software (Class II Medical Device Certification).

XCube AI Solution Differentiation

  • Integrated diagnostic and 3D modeling solution.
  • AI-based CT imaging analysis to assist medical professionals.
  • Fast and accurate disease detection using high-performance AI technology.
  • Optimized treatment planning through 3D virtual modeling.