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Technical Approach for Infrared Tracking for Soft Tissue Navigation with a Holographic Head-Mounted Display and Preclinical Validation
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[Development of Clinical Information Navigation System Based on 3D Human Model].

Siran Ma1,2, Yuanyuan Yang1, Jiecheng Gao1,2

  • 1Institute of Technical Physics, Chinese Academy of Sciences, Shanghai, 200083.

Zhongguo Yi Liao Qi Xie Za Zhi = Chinese Journal of Medical Instrumentation
|December 14, 2020
PubMed
Summary

This study introduces a 3D human body model system to visualize patient clinical information. The system enhances medical record analysis, improving diagnostic efficiency and reducing treatment times for healthcare professionals.

Keywords:
clinical informationmedical information systemmodel of human bodystructured informationvisualization

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Area of Science:

  • Medical Informatics
  • Computer-Aided Diagnosis
  • Health Information Systems

Background:

  • Efficient retrieval and visualization of patient data are critical for effective clinical decision-making.
  • Current methods for analyzing historical medical records can be time-consuming and fragmented.
  • Integrating diverse patient information into a cohesive format remains a challenge.

Purpose of the Study:

  • To design and develop a novel clinical information navigation system utilizing a 3D human body model.
  • To enhance the visualization and analysis of key patient diagnosis and treatment information.
  • To improve the efficiency of accessing and utilizing patient data for medical professionals.

Main Methods:

  • Extraction of key clinical information from historical medical records.
  • Development of a structured patient instance to store extracted focus information.
  • Establishment of rule mapping between patient instances and a 3D human body model for data visualization.
  • Implementation of trend curve generation and original report referencing functionalities.

Main Results:

  • Successful design and implementation of a 3D human body model-based clinical information navigation system.
  • Visualization of patient focus information directly on the 3D anatomical model.
  • Capability to generate trend curves illustrating changes in patient focus over time.
  • Demonstrated improvement in the efficiency of doctors' information retrieval and potential reduction in treatment duration.

Conclusions:

  • The developed system effectively supports the analysis, storage, and visualization of various medical report types.
  • The 3D visualization approach enhances the understanding of patient conditions and treatment progress.
  • The system offers a significant improvement in clinical workflow efficiency and patient care delivery.