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Undergraduate Research Assistant

UCF Biomechanics Laboratory • 2023-2024

3D Visualization Data Analysis Biomechanics Research Methods

Sample Cardiac Analysis

This video demonstrates the cardiac cycle visualization and analysis techniques developed during my research at the UCF Biomechanics Laboratory.

Research Overview

As an Undergraduate Research Assistant at UCF's Biomechanics Laboratory, I focus on analyzing cardiac cycles and biomechanical systems through advanced visualization and computational methods. This role combines mechanical engineering principles with biomedical applications.

Total Segmentation Analysis

Comprehensive segmentation analysis of cardiac structures using advanced visualization techniques.

Key Contributions

3D Visualization

Utilized 3DSlicer software for detailed cardiac cycle visualization, enhancing understanding of mechanical aspects of heart function.

Computational Analysis

Conducted in-depth analysis of biomechanical systems, applying engineering principles to biological processes.

Data Processing

Preprocessed and analyzed MRI datasets for finite element modeling, ensuring accurate representation of biological structures.

Research Methods & Tools

Visualization Software

  • 3DSlicer for medical imaging
  • Volume rendering techniques
  • Dynamic motion analysis

Data Analysis

  • Python for numerical analysis
  • Statistical modeling
  • Data validation techniques

Finite Element Analysis

  • Model preparation
  • Mesh generation
  • Boundary condition definition

Research Impact

Key Findings

  • Enhanced understanding of cardiac mechanics through 3D visualization
  • Improved preprocessing methods for MRI data analysis
  • Contributed to ongoing research in biomechanical modeling

Skills Developed

  • Advanced data analysis and visualization techniques
  • Research methodology and documentation
  • Cross-disciplinary collaboration
  • Technical problem-solving in biomedical applications