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1.
Chinese Medical Equipment Journal ; (6): 26-30, 2017.
Article in Chinese | WPRIM | ID: wpr-662461

ABSTRACT

Objective To develop a field X-ray vehicle frame motion control simulation circuit based on Proteus.Methods Corresponding component models of Proteus were selected to construct the circuit according to the circuit block diagram.SCM control program was developed and debugged.The frame motion control simulation was executed through dynamic simulation of motor running,simulation results analysis with different parameters and verification of the circuit efficacy.Resnlts DC motor positive and negative rotation controlled by the button was realized,which solved the problems of X-ray vehicle frame motion.Conclusion Proteus can be used to implement system simulation of analog circuit,digital circuit,SCM and peripheral circuit as well as to construct virtual circuit lab.The equipment maintainer enhances medical equipment maintenance based on circuit simulation,circuit model analysis,failure simulation and failure position determination.

2.
Chinese Medical Equipment Journal ; (6): 26-30, 2017.
Article in Chinese | WPRIM | ID: wpr-660087

ABSTRACT

Objective To develop a field X-ray vehicle frame motion control simulation circuit based on Proteus.Methods Corresponding component models of Proteus were selected to construct the circuit according to the circuit block diagram.SCM control program was developed and debugged.The frame motion control simulation was executed through dynamic simulation of motor running,simulation results analysis with different parameters and verification of the circuit efficacy.Resnlts DC motor positive and negative rotation controlled by the button was realized,which solved the problems of X-ray vehicle frame motion.Conclusion Proteus can be used to implement system simulation of analog circuit,digital circuit,SCM and peripheral circuit as well as to construct virtual circuit lab.The equipment maintainer enhances medical equipment maintenance based on circuit simulation,circuit model analysis,failure simulation and failure position determination.

3.
Chinese Medical Equipment Journal ; (6): 31-34, 2017.
Article in Chinese | WPRIM | ID: wpr-668492

ABSTRACT

Objective To develop a simulation phantom for clinical detection of radiation intensity at the organs or tissue vulnerable to X-ray. Methods The organs or tissue vulnerable to X-ray radiation were explored to determine the region of interest of the radiation to the phantom. A mathematical model was established, and the technical characteristics of the equivalent materials of different tissues were studied. The existing ion chamber probes were compared on the technical performances, and the probe was selected with considerations on comprehensive factors. The phantom was gifted with two sizes of adult and child and designed based on the positions of sensitive organs. Practical trials were carried out to test the performances of the phantom. Results The phantom could be used to measure the radiation dose which was equivalent to the value of multiple human organs, and the desired requirements were fulfilled. Conclusion The phantom gains advantages in simulation fidelity, withdrawal of the probe and etc, and thus is worthy promoting practically.

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