Photodynamic therapy (PDT) is widely implemented in clinical practice. This contributes to the development of new devices for conducting fluorescence diagnostics (FD) and PDT. One of the key parameters for the new devices is the ability to perform PDT and evaluate the fluorescence signal during PDT. Most PDT devices do not have the ability to perform PD and register a fluorescent signal, which is important for monitoring the quality of treatment. The purpose of this work is to develop a new device that will be able to conduct PD and PDT during the operation. Using a video system with software for it and an LED irradiator with several types of LEDs. The results show the effective use of this system and the ability to observe FD, as well as conduct.
The paper presents the results of a study of the thermal state of the elements of the cathode assembly of the ELA–15 welding electron gun. It was revealed that in short–term operating modes of the gun (up to 60 minutes) at any energy parameters of heating the hexaboride cathode, it is possible not to use forced cooling of the cathode assembly. The case temperature in such modes did not exceed 30°C. The increase in the temperature of the gun body occurred 15 minutes after the start of heating the cathode. In long–term operating modes with forced cooling of the gun, the temperature of the gun body increased by 2 – 3°C and remained stable throughout the operation. When the cooling was turned off, the temperature of the gun body reached a critical value in 60 minutes. The section of natural cooling of the cathode obtained in the work, which appears when the heating of the cathode is stopped, is well approximated by a power function. It is convenient to use this dependence to verify the mathematical model of the thermal state of the electron gun.
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