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间质微波天线阵列产生的功率和热量分布:II. 天线间距和插入深度的作用。

The distribution of power and heat produced by interstitial microwave antenna arrays: II. The role of antenna spacing and insertion depth.

作者信息

Denman D L, Foster A E, Lewis G C, Redmond K P, Elson H R, Breneman J C, Kereiakes J G, Aron B S

机构信息

Division of Radiation Oncology, University of Cincinnati School of Medicine, OH 45267-0757.

出版信息

Int J Radiat Oncol Biol Phys. 1988 Mar;14(3):537-45. doi: 10.1016/0360-3016(88)90271-4.

Abstract

The distribution of power and temperature generated by 915 MHz interstitial microwave antenna arrays was studied in static muscle-equivalent phantoms and both perfused and non-perfused canine thigh muscle. These arrays, which would form the geometric basis of larger volume implants, consisted of four parallel antennas oriented such that transverse to their long axes they formed the corners of a square. Arrays with 2 and 3 cm sides were compared at various depths of insertion where the nodes for all four antennas were coincident at the same depth. The position relative to the antenna nodes of the maximum power and highest temperature within the array volume varied with the depth of insertion of the antennas. Though power dropped rapidly distal to the nodes at all depths, a shift in the location of the maximum power proximal to the nodes resulted in an increase in the effective heating volume at certain insertion depths. For 2 cm array spacing the highest power and temperature were measured along the central axis of the array at all insertion depths. However, arrays using 3 cm spacing generated their maximum power adjacent to the antennas with only 50% of this level occurring along the central axis. When the temperature produced by 3 cm arrays was measured in phantoms midway through simulated 30-minute hyperthermia treatments, the effect of thermal conduction on the temperature distribution was evident. Though power was only 50% centrally, the highest temperatures occurred there. This same pattern of central heating occurred in perfused canine muscle demonstrating the importance of conductive and convective heat redistribution in reducing thermal gradients within the array volume.

摘要

研究了915兆赫兹间隙微波天线阵列在静态肌肉等效体模以及灌注和未灌注犬大腿肌肉中产生的功率和温度分布。这些阵列将构成更大体积植入物的几何基础,由四个平行天线组成,其排列方式是,横向于它们的长轴,它们形成一个正方形的四个角。比较了边长为2厘米和3厘米的阵列在不同插入深度的情况,此时所有四个天线的节点在同一深度重合。阵列体积内最大功率和最高温度相对于天线节点的位置随天线插入深度而变化。尽管在所有深度,功率在节点远端迅速下降,但节点近端最大功率位置的移动导致在某些插入深度有效加热体积增加。对于2厘米的阵列间距,在所有插入深度都沿着阵列的中心轴测量到最高功率和温度。然而,使用3厘米间距的阵列在天线附近产生最大功率,只有50%的该功率水平出现在中心轴上。当在模拟30分钟热疗治疗中途的体模中测量3厘米阵列产生的温度时,热传导对温度分布的影响很明显。尽管中心功率仅为50%,但最高温度出现在那里。在灌注的犬肌肉中也出现了这种中心加热模式,证明了传导和对流热再分布在降低阵列体积内热梯度方面的重要性。

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