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E-beam treatment

E-beam treatment

E-beam treatment for medical products, electron beam treatment for medical products

Electron beam treatment is an effective method to treat various diseases. The irradiation energy of the electron beam is about 300 keV, but different treatments have different D-values. The lower the kinetic energy, the greater the penetration depth, and the higher the dose penetration. Therefore, the ideal irradiation condition is a flat surface with homogeneous soft tissues and a uniform penumbra. The falloff of the dose along major axes and depths is as sharp as possible. In contrast, in practice, the quality of the dose distribution decreases with an irregular surface or internal heterogeneous tissues.

To achieve a good immobilization and localization of the patient, the dose of the electron beam is delivered to the posterior neck node. This is achieved by performing an evaluation of the geometric field setup. The electron field should be offset by approximately half the amount of the x-rays and be positioned in the posterior half of the electron cone. The treatment field should be accurate due to the use of phantom measurements.

To determine the dose, ICRU has developed an algorithm that allows for the quantitative assessment of radiation levels. The method identifies acceptable radiation fields based on 3D CT data. This algorithm enables the establishment of a field of treatment using basic clinical data, diagnostic information, and clinical examination. While there are numerous commercial methods, a qualitative understanding of the effects of different heterogeneities is advantageous in situations where TPS cannot handle the patient. The effect of the different densities on the stopping power is larger than the difference between normal and cancer-infected tissue.

An electron beam treatment can be performed on cancer cells that are resistant to X-ray radiation. The treatment focuses on destroying the cancerous cells by discharging the electrons in the target. As a result, electron beam treatment would be a competitive solution to X-ray treatments. These technologies are already available, but the clinical need for more studies and research is needed to validate them. The technology is becoming available every day, so the future of cancer care is here.

In the field of electron beam treatment, the optimal placement of the electron fields depends on the patient's body structure and the type of cancer. The correct placement of the beams is vital for the safety of the patient. Its location determines the dose in the target. This can be done by using a special device. There are many advantages of this procedure. This technique is available at a low cost. It is convenient and offers high-quality results.

Electron beam treatment is a safe and effective method for treating cancer cells. The procedure involves a high-energy electron beam source and a scanning horn. The device also requires an air exhaust system for removing ozone, a product handling system and a biological shield. The electrostatic energy from the electron beam source increases the penetration of the cancer cell in water-like tissue. The target tumor will be destroyed in a matter of minutes.

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