The head on collision between two opposite propagating solitary waves is studied in the present paper both numerically and analytically.The interesting result is that no phase shift is observed which is different from...The head on collision between two opposite propagating solitary waves is studied in the present paper both numerically and analytically.The interesting result is that no phase shift is observed which is different from that found in other branches of physics.It is found that the maximum amplitude in the process of the head on collision is close to the linear sum of two colliding solitary waves.展开更多
构建一种基于杂交链式反应(hybridization chain reaction,HCR)扩增的适配体磁珠荧光传感器。巧妙设计序列HP和发卡序列H1、H2,其中HP是由适配体序列与触发序列结合而成的,并且序列互补形成稳定的二级结构。然后采用戊二醇反应和亲和素...构建一种基于杂交链式反应(hybridization chain reaction,HCR)扩增的适配体磁珠荧光传感器。巧妙设计序列HP和发卡序列H1、H2,其中HP是由适配体序列与触发序列结合而成的,并且序列互补形成稳定的二级结构。然后采用戊二醇反应和亲和素-生物素反应进行适配体功能化磁珠的制备。将阪崎肠杆菌与适配体磁珠一起孵育,HP中的适配体序列识别靶标,引起HP构象变化,露出触发序列,通过HCR触发H1和H2的链状组装,产生长双链DNA。荧光指示剂SYBR Green I以插层和小槽结合的方式与HCR产物的长双链结合。最后加入氧化石墨烯(graphene oxide,GO)后,游离的H1、H2和SYBR Green I将通过π-π堆积紧密吸附在GO表面,荧光信号被猝灭。HCR产物不能被吸附在GO表面,因此与HCR产物结合的SYBR Green I发出依赖于靶浓度的强荧光信号,从而实现阪崎肠杆菌的定量检测。本方法在纯培养条件下的检出限为2CFU/mL,对奶粉的检出限为8CFU/g,对奶粉样品的检测结果与传统微生物培养法具有良好的一致性。该方法具有无需DNA提取,快速、稳定性高、高特异性和高灵敏度等优点,因此为阪崎肠杆菌的现场快速检测提供了一种很有潜力的方法。展开更多
We investigated the dynamic properties of a two-section composite chain of beads under vertical vibration.By analyzing the chain's motion,including phase-shift,mean dilation,center-of-mass displacement,and energy,...We investigated the dynamic properties of a two-section composite chain of beads under vertical vibration.By analyzing the chain's motion,including phase-shift,mean dilation,center-of-mass displacement,and energy,we found that with different bead arrangements,the chain behaved in different ways.We believe that interaction existing at the interface between bead sections provides the underlying cause.This interaction causes different energy in different arrangements,which leads to different dynamic characteristics.展开更多
基于磁性颗粒微阵列与双色荧光杂交,建立了单核苷酸多态性(Single nucleoitide polymorphism,SNP)分型方法。将利用不对称扩增得到的含有待检测位点生物素标记的单链PCR产物固定在链亲和素修饰的金磁纳米颗粒(Gold magnetic nanoparticl...基于磁性颗粒微阵列与双色荧光杂交,建立了单核苷酸多态性(Single nucleoitide polymorphism,SNP)分型方法。将利用不对称扩增得到的含有待检测位点生物素标记的单链PCR产物固定在链亲和素修饰的金磁纳米颗粒(Gold magnetic nanoparticles,GMNPs)表面;将ssDNA-GMNPs混合物点样在底部固定有磁铁的载玻片上构建磁性颗粒微阵列,然后在基因框中与双色荧光探针杂交;杂交完全后,充分洗涤,通过扫描获得分型结果。通过优化不对称PCR的扩增条件,直接扩增出产量较高的单链DNA作为靶序列用于分型。利用本方法对24个样本MTHFR基因的C677T位点多态性进行了检测。实验证明,本方法步骤简单,易实现自动化操作、非常适用于分子诊断与法医鉴定。展开更多
基金Project supported by the National Magnetic Confinement Fusion Science Program of China(Grant No.2014GB104002)the National Natural Science Foundation of China(Grant No.11647313)+1 种基金the Youth Science and Technology Foundation of Gansu Province,China(Grant No.1606RJYA263)the Institutes of Higher Education Institutions of Gansu Province,China(Grant No.2015B-022)
文摘The head on collision between two opposite propagating solitary waves is studied in the present paper both numerically and analytically.The interesting result is that no phase shift is observed which is different from that found in other branches of physics.It is found that the maximum amplitude in the process of the head on collision is close to the linear sum of two colliding solitary waves.
文摘构建一种基于杂交链式反应(hybridization chain reaction,HCR)扩增的适配体磁珠荧光传感器。巧妙设计序列HP和发卡序列H1、H2,其中HP是由适配体序列与触发序列结合而成的,并且序列互补形成稳定的二级结构。然后采用戊二醇反应和亲和素-生物素反应进行适配体功能化磁珠的制备。将阪崎肠杆菌与适配体磁珠一起孵育,HP中的适配体序列识别靶标,引起HP构象变化,露出触发序列,通过HCR触发H1和H2的链状组装,产生长双链DNA。荧光指示剂SYBR Green I以插层和小槽结合的方式与HCR产物的长双链结合。最后加入氧化石墨烯(graphene oxide,GO)后,游离的H1、H2和SYBR Green I将通过π-π堆积紧密吸附在GO表面,荧光信号被猝灭。HCR产物不能被吸附在GO表面,因此与HCR产物结合的SYBR Green I发出依赖于靶浓度的强荧光信号,从而实现阪崎肠杆菌的定量检测。本方法在纯培养条件下的检出限为2CFU/mL,对奶粉的检出限为8CFU/g,对奶粉样品的检测结果与传统微生物培养法具有良好的一致性。该方法具有无需DNA提取,快速、稳定性高、高特异性和高灵敏度等优点,因此为阪崎肠杆菌的现场快速检测提供了一种很有潜力的方法。
基金supported by the National Natural Science Foundation of China (10674067 and 10474045)
文摘We investigated the dynamic properties of a two-section composite chain of beads under vertical vibration.By analyzing the chain's motion,including phase-shift,mean dilation,center-of-mass displacement,and energy,we found that with different bead arrangements,the chain behaved in different ways.We believe that interaction existing at the interface between bead sections provides the underlying cause.This interaction causes different energy in different arrangements,which leads to different dynamic characteristics.
文摘基于磁性颗粒微阵列与双色荧光杂交,建立了单核苷酸多态性(Single nucleoitide polymorphism,SNP)分型方法。将利用不对称扩增得到的含有待检测位点生物素标记的单链PCR产物固定在链亲和素修饰的金磁纳米颗粒(Gold magnetic nanoparticles,GMNPs)表面;将ssDNA-GMNPs混合物点样在底部固定有磁铁的载玻片上构建磁性颗粒微阵列,然后在基因框中与双色荧光探针杂交;杂交完全后,充分洗涤,通过扫描获得分型结果。通过优化不对称PCR的扩增条件,直接扩增出产量较高的单链DNA作为靶序列用于分型。利用本方法对24个样本MTHFR基因的C677T位点多态性进行了检测。实验证明,本方法步骤简单,易实现自动化操作、非常适用于分子诊断与法医鉴定。