Full-automatic nuclide split charging system and method
A subpackaging system and fully automatic technology, which is applied in packaging automatic control, packaging, nuclear engineering, etc., can solve the problems of low packaging accuracy, remote control, and unsatisfactory radionuclide imaging effects, etc.
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Embodiment 1
[0103] Such as figure 1 with figure 2 As shown, a block diagram of a fully automatic nuclide packing system includes a client (610) and a data terminal (620), from left to right: the second terminal (611), the first terminal (612) and the data terminal (620); The second terminal (611) and the data terminal (620) carry out information transmission through network communication. The first terminal (612) transfers the user’s basic information (type of nuclides to be injected, age, weight, gender, blood pressure, The heart rate and scheduled injection time) and the basic information of the stock solution (activity, volume, and activity measurement time) are transmitted to the information input module (621), and the information input module (621) transmits part of the user information (type of nuclides to be injected, age, The weight, gender, blood pressure and heart rate) are input to the user injection information calculation module (622), and the nuclide activity and concentratio...
Embodiment 2
[0108] The second embodiment: This embodiment is basically the same as the first embodiment, and the special features are as follows:
[0109] Such as Figure 5 Shown is the BP neural network model of the cloud service intelligent judgment platform (620). The input terminal is the patient's heart rate, blood pressure, height, weight, age, gender, and the type of nuclides to be injected. The output terminal of the BP neural network model is the user's needs The activity and concentration of the injected nuclide.
[0110] The original liquid dispensing injection module (200) includes: an STM32F407 single-chip microcomputer module (230), an electronically controlled three-way valve module (220), a pusher module (210) with a syringe and a bubble sensor.
[0111] The STM32F407 single-chip microcomputer module (230) is used to control all stepping motors and steering gears that perform the dispensing process to realize the dispensing function of the medicine; the serial ports 231a and 231b...
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