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In this work, the possibility to exploit overlapping genes to develop a simple PCR based method of identification, was explored.
In the field of blood stream infections real-time PCR based methods as SeptiFast® were engineered to supplement culture based methods of pathogen identification and to reduce the time interval of calculated anti-infective therapies.
In [25, 26], analytical based methods for identification of critical fault points for solving the relay coordination problem were discussed.
Thus, depending on the research question, an ICD-9 based method of case identification may more appropriately capture cases of SSTIs for study.
Establishing a rapid culture based method for identification of rifampicin resistance is essential for control and prevention of MDR-TB.
Our work clearly illustrates that sequencing and assembly based method for identification of SNPs is highly effective and that the HRM screen is likely a limiting step.
For the past 20 years, the development of computer based methods for the identification of optimal designs have been based on a single model, introduced by Walters and Sheble (1993) [1].
Since we are ultimately interested in exploring the characters associated with particular evolutionary novelties, we use a character-based alternative to distance based methods for the identification of orthologous gene regions.
The advent of molecular-based methods of identification and characterization of complex microbial populations has led to a new era of microbial discovery.
Fast diagnosis is important in CUP and new methods include immunohistochemical and gene expression based methods for tissue-of-origin identification [ 23, 26, 27].
This paper attempts to reduce this burden in a twofold manner: firstly, by developing an OPF index based method for quick identification of infeasible post-contingencies and secondly, by reducing these indices for identified infeasible contingencies in a preventive rescheduling manner.
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