Ferguson S D, Paulus J A, Tucker R D, Loening S A, Park J B
Department of Biomedical Engineering, College of Engineering, The University of Iowa 52242.
J Appl Biomater. 1993 Spring;4(1):55-60. doi: 10.1002/jab.770040107.
Ferromagnetic Ni-Cu alloy wires were characterized in order to obtain well-defined thermoseeds for application in interstitial hyperthermia of prostate cancer. Thermoseeds have been produced which possess Curie points in the therapeutic hyperthermia range, approximately 40 to 50 degrees C. The effect of thermal treatment and composition on the heating characteristics of the thermoseeds were investigated. The preliminary study shows that the recrystallization is crucial for altering thermoseeds' heating characteristics. Obtaining thermoseeds which behave as desired depends on changes in annealing times and temperatures. One may increase the maximum heating temperature (similar to Curie temperature) by increasing the annealing time and cooling time. Decreasing the lower annealing plateau temperature also increases the maximum seed heating temperature. Higher nickel content compositions did not affect rise time but increased the maximum heating temperature.
对铁磁镍铜合金丝进行了表征,以获得用于前列腺癌间质热疗的明确热籽。已制备出居里点在治疗性热疗范围内(约40至50摄氏度)的热籽。研究了热处理和成分对热籽加热特性的影响。初步研究表明,再结晶对于改变热籽的加热特性至关重要。获得性能符合要求的热籽取决于退火时间和温度的变化。可以通过增加退火时间和冷却时间来提高最高加热温度(类似于居里温度)。降低较低的退火平稳温度也会提高热籽的最高加热温度。较高的镍含量成分不影响上升时间,但会提高最高加热温度。