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1.
Chinese Medical Equipment Journal ; (6): 1-4,11, 2017.
Article in Chinese | WPRIM | ID: wpr-662531

ABSTRACT

Objective To design and implement a synchronous imaging control system for two modes of cone beam X-ray luminescence CT (CB-XLCT) and CT to provide a software control platform for small animal in vivo imaging.Methods The software control platform was developed with the existing CB-XLCT/CT system,Microsoft Visual Studio 2010 platform,multi thread programming technology and dynamic link library so as to realize synchronous acquisition of two-mode data.The performances of the system imaging were evaluated by designing phantom experiments combined with sparse-view CT reconstruction algorithm.Results The phantom experiments results showed that synchronous imaging control had the acquisition time decreased by 79% when compared with non-synchronous imaging,and the requirements were met for imaging quality.Conchusion Synchronous imaging control of CB-XLCT/CT facilitates in vivo researches for small animals.

2.
Chinese Medical Equipment Journal ; (6): 1-4,11, 2017.
Article in Chinese | WPRIM | ID: wpr-660228

ABSTRACT

Objective To design and implement a synchronous imaging control system for two modes of cone beam X-ray luminescence CT (CB-XLCT) and CT to provide a software control platform for small animal in vivo imaging.Methods The software control platform was developed with the existing CB-XLCT/CT system,Microsoft Visual Studio 2010 platform,multi thread programming technology and dynamic link library so as to realize synchronous acquisition of two-mode data.The performances of the system imaging were evaluated by designing phantom experiments combined with sparse-view CT reconstruction algorithm.Results The phantom experiments results showed that synchronous imaging control had the acquisition time decreased by 79% when compared with non-synchronous imaging,and the requirements were met for imaging quality.Conchusion Synchronous imaging control of CB-XLCT/CT facilitates in vivo researches for small animals.

3.
Chinese Journal of Medical Physics ; (6): 1516-1520, 2009.
Article in Chinese | WPRIM | ID: wpr-500242

ABSTRACT

Objective: To design a upper computer software which can achieve data acquisition, display, motion control for sickbed-control test system. Methods: In Visual C++6.0 environment, take advantage of Advantech's development kit, and integrate multi-thread and dual-buffer technology to achieve. PC translate user's intentions into control commands, then sent commands to PCI1240, PCI1716 through the PCI interface, PCI1240 drive stepper motor to control the movement of the bed, while PCI1716 collect movement state information. Results: Movement can be stopped immediately by clicking the stop button even during the reciprocating motion, and solve screen flicker when drawing the real-time curves. The software has been test in bed-control system many times and achieved good results. Conclusions: This paper's method realized the sickbed's motion control, data acquisition, data storage and display, compared with the method that using single chip machine and general electromotor, our method makes bed movement more precise and smooth, more function are achieved, and the software has been successfully used in the sickbed-control system.

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