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Magnetic field in radiation therapy: Improving dose coverage in tumors of the head and neck by reducing lateral electronic disequilibrium.

机译:放射治疗中的磁场:通过减少侧向电子不平衡,提高头颈部肿瘤的剂量覆盖率。

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This research investigates the use of a low-strength (≤1.0 T) longitudinal magnetic field with external photon beams in improving the dose coverage of the regions around air cavities. This is a problem relevant for tumors of the head and neck, where the presence of sinus cavities leads to loss of dose at the air/tissue boundaries. The loss of dose is attributed to loss of lateral electronic equilibrium in the air gap, which depends on the size of the cavity and the size and energy of the irradiating beam. The loss of dose was found to range from minimal to more than 60%, depending on the beam-cavity combination. The magnetic field prevents the lateral spread of the electronic fluence, and hence maintains electronic equilibrium in air and thus improves the dose at the interface. Improvement in dose was found to range from minimal to about 2.3 times its original value, depending on the strength of the magnetic field and the beam-cavity combination. The effect of air-gap perturbation on depth dose, beam profile, isodose line distributions, and two dose points, one beyond the interface and the other one at a side-wall, is investigated under different irradiating beams and different air gaps. The dose improvement with the magnetic field on all of the above parameters under the different beam-cavity combinations is studied.
机译:这项研究调查了使用低强度(≤1.0T)的纵向磁场和外部光子束来改善气腔周围区域的剂量覆盖率。这是与头部和颈部肿瘤有关的问题,其中窦腔的存在导致在空气/组织边界处剂量的损失。剂量的损失归因于气隙中横向电子平衡的损失,这取决于空腔的大小以及辐射束的大小和能量。发现剂量损失范围从最小到超过60%,具体取决于光束腔组合。磁场可防止电子注量的横向扩散,从而保持空气中的电子平衡,从而提高界面处的剂量。发现剂量的提高范围是其原始值的最小至约2.3倍,具体取决于磁场强度和束腔组合。研究了在不同的照射光束和不同的气隙下,气隙扰动对深度剂量,光束轮廓,等剂量线分布和两个剂量点(一个超出界面,另一个在侧壁处)的影响。研究了在不同的束腔组合下,上述所有参数在磁场作用下的剂量提高。

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