In order to reasonably explain the phenomenon of cell bioelectricity,we proposed the conservation law of cell membrane area,established the ion inequality equation,and therefore paid attention to the mystery of“θ-τ...In order to reasonably explain the phenomenon of cell bioelectricity,we proposed the conservation law of cell membrane area,established the ion inequality equation,and therefore paid attention to the mystery of“θ-τ”.We researched and analyzed the“θ-τ”mystery,discussed the parity non-conservation in weak interactions,suggested possible experiments to test the parity non-conservation in weak interactions,and gave our research and analysis conclusions:The parity non-conservation in weak interactions,is still a“conjecture”;The experimental scheme suggested in the papers by C.N.Yang et al.cannot determine whether the weak interaction can separate left and right,and it is impossible to directly answer whetherθandτin the“θ-τ”mystery are the same particle;The Co60βdecay experiment such as C.S.Wu is a pseudo-mirror experiment,whether the experimental result violates parity conservation is only based on the assumption of C.N.Yang et al.In fact,experiments such as polarized Co60 did not overturn the so-called“law of parity conservation”.The mirror image principle does not have any physical meaning,does not correspond to any physical conservation quantity,and cannot be destroyed by any physical experiment.In the process of turning“mirror symmetry”and“mirror asymmetry”into so-called physical“common sense”and scientific“facts”respectively,the methods of transformation are“stealing concepts”and“circular argumentation”.The“θ-τ”mystery is a“man-made”mystery.θandτare two different particles,which may be the result of the same precursor particle being divided into two.The work of C.N.Yang,T.D.Lee,C.S.Wu et al.has brought quantum physicists from the“small black room”to the“bigger black room”or“smaller black room”.The right and wise choice is to go back through the door that came in.With the development of science today,it is time for some contents to reform from the bottom.展开更多
We report on the current-voltage (I-V) and capacitance-voltage (C-V) characteristics of the Pd/Ti/n-InP Schottky barrier diodes (SBDs) in the temperature range 160-400 K in steps of 40 K. The barrier heights and ideal...We report on the current-voltage (I-V) and capacitance-voltage (C-V) characteristics of the Pd/Ti/n-InP Schottky barrier diodes (SBDs) in the temperature range 160-400 K in steps of 40 K. The barrier heights and ideality factors of Schottky contact are found in the range 0.35 eV (I-V), 0.73 eV (C-V) at 160 K and 0.63 eV (I-V), 0.61 eV (C-V) at 400 K, respectively. It is observed that the zero-bias barrier height decreases and ideality factor n increase with a decrease in temperature, this behaviour is attributed to barrier inhomogeneities by assuming Gaussian distribution at the interface. The calculated value of series resistance (Rs) from the forward I-V characteristics is decreased with an increase in temperature. The homogeneous barrier height value of approximately 0.71 eV for the Pd/Ti Schottky diode has been obtained from the linear relationship between the temperature-dependent experimentally effective barrier heights and ideality factors. The zero-bias barrier height ( ) versus 1/2kT plot has been drawn to obtain evidence of a Gaussian distribution of the barrier heights and values of = 0.80 eV and = 114 mV for the mean barrier height and standard deviation have been obtained from the plot, respectively. The modified Richardson ln(I0/T2)- ( ) versus 1000/T plot has a good linearity over the investigated temperature range and gives the mean barrier height ( ) and Richardson constant (A*) values as 0.796 eV and 6.16 Acm-2K-2 respectively. The discrepancy between Schottky barrier heights obtained from I-V and C-V measurements is also interpreted.展开更多
The circular chromatic number of a graph is a natural generalization of the chromatic number. Circular chromatic number contains more information about the structure of a graph than chromatic number does. In this pape...The circular chromatic number of a graph is a natural generalization of the chromatic number. Circular chromatic number contains more information about the structure of a graph than chromatic number does. In this paper we obtain the circular chromatic numbers of special graphs such as C t k and C t k-v, and give a simple proof of the circular chromatic number of H m,n .展开更多
Vδ1^+γδ T lymphocytes are known to play important roles in anti-tumor immunity.We recently reported an anti-tumor activity of wilfoside C3 N,an active component extracted from Chinese medicinal herbs.In the current...Vδ1^+γδ T lymphocytes are known to play important roles in anti-tumor immunity.We recently reported an anti-tumor activity of wilfoside C3 N,an active component extracted from Chinese medicinal herbs.In the current study,we evaluated the role of Vδ1^+γδ T cells in C3 N anti-tumor activity using an in vitro cell co-culture model.We found that C3 N induced the ECA109 tumor cells to undergo apoptosis in the presence of Vδ1^+γδ T cells.The level of ECA109 apoptosis maximized when both C3 N and Vδ1 + γδ T cells were present,which correlated with the increased expression of Fas on ECA109 and Fas ligand on Vδ1^+γδ T cells induced by C3 N.In addition,C3 N also enhanced secretion of cytokines,perforin and granzymes by Vδ1^+γδ T cells.These observations suggest that activation of Vδ1^+ γδ T cells may play a critical role in C3N-mediated anti-tumor activity.展开更多
针对测地线活动轮廓(geodesic active contour,GAC)模型轮廓演化速度慢的问题,构造一个区域灰度相似性信息项,对GAC模型的能量泛函进行改进,加快轮廓演化速度,将其用于肺部薄扫CT(computed tomography)图像序列中肺实质的自动分割。采...针对测地线活动轮廓(geodesic active contour,GAC)模型轮廓演化速度慢的问题,构造一个区域灰度相似性信息项,对GAC模型的能量泛函进行改进,加快轮廓演化速度,将其用于肺部薄扫CT(computed tomography)图像序列中肺实质的自动分割。采用基于Nystrom逼近的谱聚类算法分割CT图像序列中间位置CT中的肺实质,计算其灰度均值与标准差,构造区域灰度相似性信息项,以分割好的肺实质轮廓作为初始轮廓,分别从上下两个方向采用改进了能量泛函的GAC模型实现其它切片中肺实质的分割。实验结果表明,该方法能够较好实现肺实质的自动分割,与医师分割结果的重合率可达94.83%,时间消耗较少。展开更多
文摘In order to reasonably explain the phenomenon of cell bioelectricity,we proposed the conservation law of cell membrane area,established the ion inequality equation,and therefore paid attention to the mystery of“θ-τ”.We researched and analyzed the“θ-τ”mystery,discussed the parity non-conservation in weak interactions,suggested possible experiments to test the parity non-conservation in weak interactions,and gave our research and analysis conclusions:The parity non-conservation in weak interactions,is still a“conjecture”;The experimental scheme suggested in the papers by C.N.Yang et al.cannot determine whether the weak interaction can separate left and right,and it is impossible to directly answer whetherθandτin the“θ-τ”mystery are the same particle;The Co60βdecay experiment such as C.S.Wu is a pseudo-mirror experiment,whether the experimental result violates parity conservation is only based on the assumption of C.N.Yang et al.In fact,experiments such as polarized Co60 did not overturn the so-called“law of parity conservation”.The mirror image principle does not have any physical meaning,does not correspond to any physical conservation quantity,and cannot be destroyed by any physical experiment.In the process of turning“mirror symmetry”and“mirror asymmetry”into so-called physical“common sense”and scientific“facts”respectively,the methods of transformation are“stealing concepts”and“circular argumentation”.The“θ-τ”mystery is a“man-made”mystery.θandτare two different particles,which may be the result of the same precursor particle being divided into two.The work of C.N.Yang,T.D.Lee,C.S.Wu et al.has brought quantum physicists from the“small black room”to the“bigger black room”or“smaller black room”.The right and wise choice is to go back through the door that came in.With the development of science today,it is time for some contents to reform from the bottom.
文摘We report on the current-voltage (I-V) and capacitance-voltage (C-V) characteristics of the Pd/Ti/n-InP Schottky barrier diodes (SBDs) in the temperature range 160-400 K in steps of 40 K. The barrier heights and ideality factors of Schottky contact are found in the range 0.35 eV (I-V), 0.73 eV (C-V) at 160 K and 0.63 eV (I-V), 0.61 eV (C-V) at 400 K, respectively. It is observed that the zero-bias barrier height decreases and ideality factor n increase with a decrease in temperature, this behaviour is attributed to barrier inhomogeneities by assuming Gaussian distribution at the interface. The calculated value of series resistance (Rs) from the forward I-V characteristics is decreased with an increase in temperature. The homogeneous barrier height value of approximately 0.71 eV for the Pd/Ti Schottky diode has been obtained from the linear relationship between the temperature-dependent experimentally effective barrier heights and ideality factors. The zero-bias barrier height ( ) versus 1/2kT plot has been drawn to obtain evidence of a Gaussian distribution of the barrier heights and values of = 0.80 eV and = 114 mV for the mean barrier height and standard deviation have been obtained from the plot, respectively. The modified Richardson ln(I0/T2)- ( ) versus 1000/T plot has a good linearity over the investigated temperature range and gives the mean barrier height ( ) and Richardson constant (A*) values as 0.796 eV and 6.16 Acm-2K-2 respectively. The discrepancy between Schottky barrier heights obtained from I-V and C-V measurements is also interpreted.
文摘The circular chromatic number of a graph is a natural generalization of the chromatic number. Circular chromatic number contains more information about the structure of a graph than chromatic number does. In this paper we obtain the circular chromatic numbers of special graphs such as C t k and C t k-v, and give a simple proof of the circular chromatic number of H m,n .
文摘Vδ1^+γδ T lymphocytes are known to play important roles in anti-tumor immunity.We recently reported an anti-tumor activity of wilfoside C3 N,an active component extracted from Chinese medicinal herbs.In the current study,we evaluated the role of Vδ1^+γδ T cells in C3 N anti-tumor activity using an in vitro cell co-culture model.We found that C3 N induced the ECA109 tumor cells to undergo apoptosis in the presence of Vδ1^+γδ T cells.The level of ECA109 apoptosis maximized when both C3 N and Vδ1 + γδ T cells were present,which correlated with the increased expression of Fas on ECA109 and Fas ligand on Vδ1^+γδ T cells induced by C3 N.In addition,C3 N also enhanced secretion of cytokines,perforin and granzymes by Vδ1^+γδ T cells.These observations suggest that activation of Vδ1^+ γδ T cells may play a critical role in C3N-mediated anti-tumor activity.
文摘针对测地线活动轮廓(geodesic active contour,GAC)模型轮廓演化速度慢的问题,构造一个区域灰度相似性信息项,对GAC模型的能量泛函进行改进,加快轮廓演化速度,将其用于肺部薄扫CT(computed tomography)图像序列中肺实质的自动分割。采用基于Nystrom逼近的谱聚类算法分割CT图像序列中间位置CT中的肺实质,计算其灰度均值与标准差,构造区域灰度相似性信息项,以分割好的肺实质轮廓作为初始轮廓,分别从上下两个方向采用改进了能量泛函的GAC模型实现其它切片中肺实质的分割。实验结果表明,该方法能够较好实现肺实质的自动分割,与医师分割结果的重合率可达94.83%,时间消耗较少。