为比较激素电极、靶头电极和螺旋电极的慢性阈值,并探讨其优缺点,对激素电极(26条)、靶头电极(14条)和螺旋电极(20条)的慢性阈值进行了观察。60条电极与单腔或双腔起搏器均系同一公司生产。为提高可比性,仅有5.0 V 电压输出的起搏器不...为比较激素电极、靶头电极和螺旋电极的慢性阈值,并探讨其优缺点,对激素电极(26条)、靶头电极(14条)和螺旋电极(20条)的慢性阈值进行了观察。60条电极与单腔或双腔起搏器均系同一公司生产。为提高可比性,仅有5.0 V 电压输出的起搏器不作观察对象。激素电极、非激素电极分别随访18(3~60)和64(3~122)月。结果显示2.5 V 时激素电极的慢性脉宽阈值(0.07±0.03 ms)低于靶头电极(0.11±0.05 ms),后者又低于螺旋电极(0.25±0.13 ms),P 均<0.01。全部病例心房和心室感知均良好。电压输出均采用2.5 V,激素电极、靶头电极和螺旋电极起搏分别置脉宽输出于0.2,0.4和0.8 ms,则80%以上(分别为85%、86%及80%)的病例可达到能量阈值的3倍以上的安全范围。激素电极中有19条可置于1.6 V 和0.3 ms 起搏,其耗能仅为5.0V和0.5 ms(25μJ)的6.1%。即每个脉冲可节能93.9%,从而可延长起搏器的工作寿命。展开更多
The low-lying states of 200-205Hg nuclei have been studied by using the nucleon pair approximation (NPA) of the shell model. We calculate low-excited energy levels, electric quadrupole moments, and magnetic dipole mom...The low-lying states of 200-205Hg nuclei have been studied by using the nucleon pair approximation (NPA) of the shell model. We calculate low-excited energy levels, electric quadrupole moments, and magnetic dipole moments, and investigate dominant configurations of low-lying states in the nucleon pair basis. Our calculations reasonably reproduce the available experimental data. We also tabulate our predicted results of low-lying states, including excitation energies, electric quadrupole moments and magnetic moments.展开更多
文摘为比较激素电极、靶头电极和螺旋电极的慢性阈值,并探讨其优缺点,对激素电极(26条)、靶头电极(14条)和螺旋电极(20条)的慢性阈值进行了观察。60条电极与单腔或双腔起搏器均系同一公司生产。为提高可比性,仅有5.0 V 电压输出的起搏器不作观察对象。激素电极、非激素电极分别随访18(3~60)和64(3~122)月。结果显示2.5 V 时激素电极的慢性脉宽阈值(0.07±0.03 ms)低于靶头电极(0.11±0.05 ms),后者又低于螺旋电极(0.25±0.13 ms),P 均<0.01。全部病例心房和心室感知均良好。电压输出均采用2.5 V,激素电极、靶头电极和螺旋电极起搏分别置脉宽输出于0.2,0.4和0.8 ms,则80%以上(分别为85%、86%及80%)的病例可达到能量阈值的3倍以上的安全范围。激素电极中有19条可置于1.6 V 和0.3 ms 起搏,其耗能仅为5.0V和0.5 ms(25μJ)的6.1%。即每个脉冲可节能93.9%,从而可延长起搏器的工作寿命。
基金supported by the Science & Technology Program of Shanghai Maritime University (Grant No. 20100086)
文摘The low-lying states of 200-205Hg nuclei have been studied by using the nucleon pair approximation (NPA) of the shell model. We calculate low-excited energy levels, electric quadrupole moments, and magnetic dipole moments, and investigate dominant configurations of low-lying states in the nucleon pair basis. Our calculations reasonably reproduce the available experimental data. We also tabulate our predicted results of low-lying states, including excitation energies, electric quadrupole moments and magnetic moments.