通过对 He L a细胞及艾氏腹水癌细胞进行电磁脉冲处理 ,可以看到照射后 He L a细胞较对照组有明显变化 ,且变化随照射时间的增加逐步显现、加强。艾氏腹水癌细胞经脉冲电磁场照射后摄取 3 H- Td R的量明显高于对照组 ,而且照射时间不...通过对 He L a细胞及艾氏腹水癌细胞进行电磁脉冲处理 ,可以看到照射后 He L a细胞较对照组有明显变化 ,且变化随照射时间的增加逐步显现、加强。艾氏腹水癌细胞经脉冲电磁场照射后摄取 3 H- Td R的量明显高于对照组 ,而且照射时间不同 ,对 3 H- Td R摄取量也不等。从而为电化学治疗癌病的理论研究提供科学的依据。展开更多
The electromagnetic field relations are demonstrated on impulse radiating surface and point type sources, which are characterized by first and second order singularities at rest in a Schwartz-Sobolev space setting. Th...The electromagnetic field relations are demonstrated on impulse radiating surface and point type sources, which are characterized by first and second order singularities at rest in a Schwartz-Sobolev space setting. The investigation starts with a general introduction to Schwartz-Sobolev distributions, the electromagnetic field equations and various modes of impulsive radiation. This is followed by an outline of temporal distributional relations in arbitrary media and distributional derivative operations on an arbitrary regular surface, all of which are employed in an investigation of impulse radiation mechanism on single and double layer sources. Similar steps are followed in a description of point distributions and investigation of impulse radiation mechanism on electric and magnetic point dipoles.展开更多
文摘通过对 He L a细胞及艾氏腹水癌细胞进行电磁脉冲处理 ,可以看到照射后 He L a细胞较对照组有明显变化 ,且变化随照射时间的增加逐步显现、加强。艾氏腹水癌细胞经脉冲电磁场照射后摄取 3 H- Td R的量明显高于对照组 ,而且照射时间不同 ,对 3 H- Td R摄取量也不等。从而为电化学治疗癌病的理论研究提供科学的依据。
文摘The electromagnetic field relations are demonstrated on impulse radiating surface and point type sources, which are characterized by first and second order singularities at rest in a Schwartz-Sobolev space setting. The investigation starts with a general introduction to Schwartz-Sobolev distributions, the electromagnetic field equations and various modes of impulsive radiation. This is followed by an outline of temporal distributional relations in arbitrary media and distributional derivative operations on an arbitrary regular surface, all of which are employed in an investigation of impulse radiation mechanism on single and double layer sources. Similar steps are followed in a description of point distributions and investigation of impulse radiation mechanism on electric and magnetic point dipoles.