Payyonlu bir anten ve göğme tasarlayın hipertermi uygulaması için prototip
2022
0 views
0 downloads
Advisor: Prof. Dr. Galip Cansever
Abstract (EN)
In this work we construct an antenna that is suitable for use in applications involving hyperthermia. The antenna we are going to build should be able to radiate in a material that absorbs energy (breast), have a working frequency of 900MHz. This very high temperature is effective in eliminating the cells that are malignant. There are several ways to optimize the performance of a hyperthermia. The main goal is to target heat energy into the tumor area, creating a highly localized heating region. The more energy/power deposited into the tumor, the higher the temperature elevation. At the same time, the temperature of healthy tissues should be kept below critical levels. The main design parameters of a hyperthermia applicator need to be determined and optimized in order to meet all these requirements. An advantage of this antenna is a small size, which measures just (30 × 30 mm) makes it simpler to construct and include into an applicator that has the capacity to hold many antennas.
Author
Dr. Abdullah İsam Mosa Al-araji
Institution

Altınbaş University
Elektrik ve Bilgisayar Mühendisliği Bilim Dalı
How to Cite
Abdullah İsam Mosa Al-araji (Master Thesis). Payyonlu bir anten ve göğme tasarlayın hipertermi uygulaması için prototip, 2022, Altınbaş University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Altınbaş University
- Mahmutbey, İstanbul'da sosyal dayanıklılık ve toplumsal uyumun güçlendirilmesi(2025)
- Evaluation of the factors affecting the choice of child oral care products and the attitudes of parents to these products(2023)
- Poliüre kaplamanın alüminyum köpük ve katkılı üretilen numunelerin mekanik özelliklerine etkisi(2021)
- Internationalism and a socialist workers' organization in Ottoman Empire: The socialist workers' federation of thessaloniki (1908 - 1914)(2019)
- Symmetry-based multi-objective AI/ML driven optimization framework for sustainable building performance(2026)
- The effect of music and aromatherapy on dental anxiety and fear in children(2024)