DNA analysis of degraded samples and low-copy number DNA derived from skeletal remains, one of the most challenging forensic tasks, is common in disaster victim identification and genetic analysis of historical materials. Massively parallel sequencing (MPS) is a useful technique for STR analysis that enables the sequencing of smaller amplicons compared with conventional capillary electrophoresis (CE), which is valuable for the analysis of degraded DNA. In this study, 92 samples of human skeletal remains (70+ years postmortem) were tested using an in-house MPS-STR system designed for the analysis of degraded DNA. Multiple intrinsic factors of DNA from skeletal remains that affect STR typing were assessed. The recovery of STR alleles was infl...
For the last three decades, Short Tandem Repeat (STR) markers and capillary electrophoresis-based DN...
PCR-MPS is an emerging tool for the analysis of low-quality DNA samples. In this study, we used PCR-...
Recent advances in massively parallel sequencing (MPS) has become a very promising technology for ma...
Since the beginning of our work in 2003 our laboratory has focused exclusively on STR DNA from bone,...
The generation of a DNA profile from skeletal remains is an important part of the identification pro...
Recent advances in massively parallel sequencing (MPS) has become a very promising technology for fo...
ABSTRACT: A new set of multiplexed PCR primers has been applied to the analysis of human skeletal re...
DNA as forensic evidence is valuable in criminal investigations. Implementation of new, sensitive an...
Forensic and ancient DNA samples often are damaged and in limited quantity as a result of exposure t...
Successful DNA-based identification of altered human remains relies on the condition of the corpses ...
extraction of DNA from human skeletal remains, 2. to improve STR profiling success of low-copy DNA s...
Currently, Forensic DNA research is conducted almost exclusively using capillary electrophoresis to...
Genetic profiling is a standard procedure for human identification i.e. in criminal cases and mass d...
Typing short tandem repeats (STRs) is the basis for human identification in current forensic testing...
The primary objectives of this project were: 1. to develop improved methods for extraction of DNA fr...
For the last three decades, Short Tandem Repeat (STR) markers and capillary electrophoresis-based DN...
PCR-MPS is an emerging tool for the analysis of low-quality DNA samples. In this study, we used PCR-...
Recent advances in massively parallel sequencing (MPS) has become a very promising technology for ma...
Since the beginning of our work in 2003 our laboratory has focused exclusively on STR DNA from bone,...
The generation of a DNA profile from skeletal remains is an important part of the identification pro...
Recent advances in massively parallel sequencing (MPS) has become a very promising technology for fo...
ABSTRACT: A new set of multiplexed PCR primers has been applied to the analysis of human skeletal re...
DNA as forensic evidence is valuable in criminal investigations. Implementation of new, sensitive an...
Forensic and ancient DNA samples often are damaged and in limited quantity as a result of exposure t...
Successful DNA-based identification of altered human remains relies on the condition of the corpses ...
extraction of DNA from human skeletal remains, 2. to improve STR profiling success of low-copy DNA s...
Currently, Forensic DNA research is conducted almost exclusively using capillary electrophoresis to...
Genetic profiling is a standard procedure for human identification i.e. in criminal cases and mass d...
Typing short tandem repeats (STRs) is the basis for human identification in current forensic testing...
The primary objectives of this project were: 1. to develop improved methods for extraction of DNA fr...
For the last three decades, Short Tandem Repeat (STR) markers and capillary electrophoresis-based DN...
PCR-MPS is an emerging tool for the analysis of low-quality DNA samples. In this study, we used PCR-...
Recent advances in massively parallel sequencing (MPS) has become a very promising technology for ma...