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Updated: Jan 8, 2026

12:49
A Method for 3D Reconstruction and Virtual Reality Analysis of Glial and Neuronal Cells
Published on: September 28, 2019
13.3K
[Multi-points pulse information acquisition and 3-D reconstruction based on grid-net images]
Ai-Hua Zhang1, Wei-Gang Guo, Yong-Ping Li
1College of Electrical and Information Engineering, Lanzhou University of Technology, Lanzhou.
Summary
This study introduces a novel method for capturing radial pulse data using lens imaging principles and image analysis. The technique reconstructs 3D pulse information from multi-point out-of-plane displacements, enhancing diagnostic capabilities.
Area of Science:
- Biomedical Imaging
- Physiological Measurement
- Optical Sensing
Context:
- Radial pulse diagnosis is a traditional method in medicine.
- Current methods for pulse acquisition may lack detailed spatial information.
- Advanced imaging techniques are needed for precise physiological monitoring.
Purpose:
- To develop a non-invasive method for acquiring detailed radial pulse information.
- To utilize lens imaging principles for pulse data acquisition.
- To enable the 3D reconstruction of pulse membrane surfaces.
Summary:
- A novel method captures radial pulse information from grid-net areas in pulse image frames.
- Radial pulse image data is collected using a pulse image sensor.
- The method acquires multi-point out-of-plane displacements, reconstructing membrane surfaces for observable 3D pulse information.
Impact:
- Enables detailed 3D visualization of radial pulse dynamics.
- Provides a new tool for non-invasive cardiovascular assessment.
- Potential for improved diagnostic accuracy in pulse-based medicine.

