AbstractRecently, a new way to amplify DNA, called solid phase amplification (SPA), has been introduced. SPA differs from the traditional polymerase chain reaction (PCR) in the use of surface-bound instead of freely-diffusing primers to amplify DNA. This limits the amplification to two-dimensional surfaces and therefore allows the easy parallelization of DNA amplification in a single system. Furthermore, SPA could provide an alternate route to DNA target implantation on DNA chips for genomic studies. Standard PCR processes are usually characterized (at least initially) by an exponential growth and a broad population distribution, and they are well described by the theory of branching processes, wherein a generating function can be used to o...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
AbstractRecently, a new way to amplify DNA, called solid phase amplification (SPA), has been introdu...
AbstractSolid phase amplification (SPA), a new method to amplify DNA, is characterized by the use of...
Solid-phase (SP) polymerase chain reaction (PCR) is an increasingly popular tool used to produce imm...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
Introduction The polymerase chain reaction (PCR) is a method that uses test tubes in biological lab...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
AbstractRecently, a new way to amplify DNA, called solid phase amplification (SPA), has been introdu...
AbstractSolid phase amplification (SPA), a new method to amplify DNA, is characterized by the use of...
Solid-phase (SP) polymerase chain reaction (PCR) is an increasingly popular tool used to produce imm...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
Introduction The polymerase chain reaction (PCR) is a method that uses test tubes in biological lab...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...
We propose a stochastic modelling of the PCR amplification process by a size-dependent branching pro...