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1.
Chinese Medical Equipment Journal ; (6): 14-16, 2009.
Artículo en Chino | WPRIM | ID: wpr-406001

RESUMEN

Obiective To develop a new medical image processing platform based on ITK and OpenGL. Methods This platform was designed by VC ++ 6.0 and MFC class library. ITK class library was wsed to fulfill reading, writing,segmentation of images and iso-surface extraction. OpenGL was wsed to realize 3D surface rendering. Results The new 3D-medical imaging reconstruction system was designed. Conclusion This system not only can provide graphic interface which can not be realized by using ITK class library, but also enhance the ability of three-dimension visualization by using OpenGL.

2.
Space Medicine & Medical Engineering ; (6)2006.
Artículo en Chino | WPRIM | ID: wpr-576103

RESUMEN

Objective To find a method for building a human head parameter model. Method Raw data of human head were acquired and filtered, a linear regression equation was formulated, and a parameter model was established. Result A human head parameter model was built. Conclusion A human head parameter model can be built by using the linear regression equation of human head to adjust the initial CT data, and a three-dimensional and human head parameter model can be built by OpenGL.

3.
Space Medicine & Medical Engineering ; (6)2006.
Artículo en Chino | WPRIM | ID: wpr-575046

RESUMEN

Objective: To develop a way of high-quality real-time three dimension surface reconstruction for high-resolution volume data.Method 3D surface point sets of single organ were using a method of binding the threshold and morphological operations.The normal vector of every surface point was calculated.According to the gray gradients of volume data,the triangle face was replaced by surface points to describe the organ surface,and the surface was displayed with OpenGL interface of display card after defining the color and transparent of the organ surface.Result Based on hardware platform of personal computer,the reconstruction of skeleton and skin for the digitized virtual Chinese man No.1(VCH-M1) from CT database was constructed,the rendering speed was faster than 25 F/s.Conclusion The algorithm is capable of realizing a real-time rendering for 512?512?1720 high resolution volume data.

4.
Journal of Korean Society of Medical Informatics ; : 63-67, 2002.
Artículo en Coreano | WPRIM | ID: wpr-175551

RESUMEN

The ability to map and ablate the sometimes fleeting automatic atrial tachycardia is greatly enhanced by computerized mapping systems. In this study, we have developed 128 channel computerized data analysis system using microcomputer for basic research of electrophysiology and electrical propagation. The bipolar electrogram information is acquired from 128 cardiac sites simultaneously at a sampling rate of 1 ksampls/sec with continuous and total data storage of up to 30 seconds. When the reference electrogram is selected and reference point is picked up, delay time from the reference point is displayed on three dimensional diagram of the heart. System design permits easy expansion to almost 256 simul- taneous sites. This system is expected to enable us to study pathophysiology of cardiac arrhythmia and to improve the result of diagnosis and surgical treatment for cardiac arrhythmia.


Asunto(s)
Arritmias Cardíacas , Diagnóstico , Electrocardiografía , Electrofisiología , Corazón , Almacenamiento y Recuperación de la Información , Microcomputadores , Estadística como Asunto , Taquicardia
5.
Chinese Medical Equipment Journal ; (6)1989.
Artículo en Chino | WPRIM | ID: wpr-583664

RESUMEN

It is necessary to build a three-dimensional human body model to display the position and track the route of a micro device inside the human body exactly. The key is to construct a three-dimensional human body model according to the patient characteristic. This paper gives a simple way to build the personal geometric model based on the OpenGL programming in the Visual Basic environment. It is proved that the method contributes to the realtime interactive operation to change the model character according to the individual parameter.

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