56.OA12.1224N Allicdata Electronics
Allicdata Part #:

56.OA12.1224N-ND

Manufacturer Part#:

56.OA12.1224N

Price: $ 36.79
Product Category:

Uncategorized

Manufacturer: Altech Corporation
Short Description: OA561212V 2NO/4NC AGNI10+2UMAU I
More Detail: N/A
DataSheet: 56.OA12.1224N datasheet56.OA12.1224N Datasheet/PDF
Quantity: 1000
20 +: $ 33.44170
Stock 1000Can Ship Immediately
$ 36.79
Specifications
Series: *
Part Status: Active
Description

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Miscellaneous refers to any range of topics that cannot be classified into any other specific category. This could be anything from general knowledge to a specific topic about any kind of technology. In this article, we will discuss the 56.OA12.1224N application field and working principle.

56.OA12.1224N Application Field

The 56.OA12.1224N is a versatile tool designed for intensity-modulated radiotherapy (IMRT) applications. It is specially designed to accurately address the complexities of the IMRT workflow and has received FDA approval for this purpose. The device is a linear accelerator capable of delivering highly accurate, conformal and intensity-modulated radiation therapies.

IMRT is a high-precision radiotherapy that is used to treat tumors located deep within the body. With IMRT, radiation beams are shaped and focused to match the shape of the tumor or area being treated. This results in more accurate doses of radiation to treat the tumor without damaging healthy tissue. The 56.OA12.1224N provides users with the means to perform IMRT treatments accurately and precisely, making it a useful tool in the treatment of tumors.

In addition to its use in IMRT applications, the 56.OA12.1224N can also be used in other areas of radiation therapy such as stereotactic radiosurgery (SRS) and stereotactic body radiotherapy (SBRT). SRS and SBRT are used for treating tumors located deep within the body, either near the brain or elsewhere, without requiring invasive surgery. The 56.OA12.1224N offers precise, accurate and highly conformal doses of radiation that can be used to treat these tumors accurately and efficiently.

56.OA12.1224N Working Principles

The 56.OA12.1224N is powered by a linear accelerator. A linear accelerator is a type of particle accelerator that uses electricity and magnetic fields to accelerate particles in a straight line. The accelerator works by sending an electric charge to a particle, which then accelerates the particle along a linear path. The 56.OA12.1224N uses this technique to create highly accurate and precise doses of radiation for IMRT, SRS and SBRT treatments.

The 56.OA12.1224N’s linear accelerator is capable of producing beams of radiation that are highly accurate and precise. The beams can be focused and shaped to match the shape of the tumor or area being treated, resulting in higher doses of radiation to the targeted area while sparing healthy tissue. Additionally, the 56.OA12.1224N is able to deliver radiation dose that is highly conformal, meaning that the radiation dosage is focused on the target area in a very uniform way. This allows the radiation therapy to be delivered with greater precision and accuracy.

The 56.OA12.1224N also features on-board imaging capabilities that allow it to acquire images of the area being treated prior to administering radiation therapy. This helps to ensure that the radiation beams are accurately and precisely aimed at the target area. Additionally, 56.OA12.1224N has real-time control over the radiation dose, allowing for the dose to be adjusted for each patient\'s individual treatment needs.

Conclusion

The 56.OA12.1224N is a versatile device that can be used for precise and accurate intensity-modulated radiotherapy (IMRT). Additionally, it is also used in other areas such as stereotactic radiosurgery (SRS) and stereotactic body radiotherapy (SBRT). Its linear accelerator is capable of producing highly accurate and precise radiation beams that can be focused and shaped to match the shape of the area being treated. Additionally, the 56.OA12.1224N features on-board imaging capabilities and real-time control over the radiation dose. This makes it a useful tool in the treatment of tumors located deep within the body.

The specific data is subject to PDF, and the above content is for reference

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