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植入变量对铁磁热疗过程中所达到温度的影响。

Effect of implant variables on temperatures achieved during ferromagnetic hyperthermia.

作者信息

Tompkins D T, Partington B P, Steeves R A, Bartholow S D, Paliwal B R

机构信息

Department of Mechanical Engineering, University of Wisconsin-Madison 53792.

出版信息

Int J Hyperthermia. 1992 Mar-Apr;8(2):241-51. doi: 10.3109/02656739209021779.

Abstract

Effects of ferromagnetic implant variables on steady-state temperature were studied in both in vitro (phantom) and in vivo (rabbit hind limb musculature) models. Thermoseed implant variables included: (1) the presence and number of thermoseed sleeves; (2) variations in thermoseed alignment within the oscillating electromagnetic field; (3) generator power levels of 300 W, 600 W, and 1200 W; and (4) separation of thermoseed tracks by 0.8 cm versus 1 cm. When the thermoseeds were aligned parallel to the electromagnetic field, temperature distributions in the in vivo model using bare thermoseeds and thermoseeds encased in a single sleeve (0.1 mm wall thickness) of polyethylene tubing were statistically higher than in tests performed with thermoseeds encased in a double sleeve (0.25 mm over 0.1 mm wall thickness) of tubing (p = 0.006). Nonetheless, average steady-state temperatures above a therapeutic minimum (greater than or equal to 42 degrees C) were achieved at all generator power levels using thermoseeds encased in a double sleeve of tubing and aligned parallel to the electromagnetic field. Gross misalignment of thermoseeds with the electromagnetic field was partly compensated for by utilizing higher generator power levels. Thermoseed tracks separated by 0.8 cm and aligned parallel to the electromagnetic field yielded average steady-state temperatures that were 0.4-2.2 degrees C higher than those obtained with a thermoseed track separation of 1 cm.

摘要

在体外(模拟体模)和体内(兔后肢肌肉组织)模型中研究了铁磁植入物变量对稳态温度的影响。热籽植入物变量包括:(1)热籽套管的有无及数量;(2)在振荡电磁场内热籽排列的变化;(3)300W、600W和1200W的发生器功率水平;(4)热籽轨迹间距为0.8cm与1cm的情况。当热籽与电磁场平行排列时,在体内模型中,使用裸露热籽和包裹在壁厚0.1mm的聚乙烯管单套管中的热籽时的温度分布,在统计学上高于使用包裹在壁厚0.25mm(套在0.1mm壁厚管上)的双套管中的热籽所进行的测试(p = 0.006)。尽管如此,使用包裹在双套管中的热籽并使其与电磁场平行排列时,在所有发生器功率水平下均达到了高于治疗最低温度(大于或等于42℃)的平均稳态温度。通过使用更高的发生器功率水平,热籽与电磁场的严重不对准得到了部分补偿。间距为0.8cm且与电磁场平行排列的热籽轨迹产生的平均稳态温度,比热籽轨迹间距为1cm时所获得的温度高0.4 - 2.2℃。

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