In forensic genetics, the analysis of postmortem bones is one of the most challenging due to the low quantity of degraded endogenous DNA. The most widely used approach for sample preparation, in those cases, is pulverizing the bone. However, processing pulverized bone is extremely delicate, requiring strict laboratory conditions and operating procedures. In fact, several recent publications have focused on non-powder approaches. The objectives of this study were, thus, to validate a non-powder protocol for DNA extraction from forensic bones and an alternative pretreatment, large fragment demineralization (LFD). Thirty human femurs and tibiae received by the Legal Medicine Institute of Brescia, Italy, were included in the study. Bone powder ...
This study assessed the performance of five different DNA extraction methods for the recovery of DNA...
ABSTRACT: A new set of multiplexed PCR primers has been applied to the analysis of human skeletal re...
Since the beginning of our work in 2003 our laboratory has focused exclusively on STR DNA from bone,...
AbstractEfficient DNA extraction procedures, as well as accurate DNA amplification, are critical ste...
Extraction and successful PCR amplification of DNA from human remains in historical and forensic cas...
DNA genotyping techniques have been used successfully in forensic science for almost three decades a...
Bone and teeth can often be the only, or the best, biological materials available as DNA sources for...
International audienceBone is the most challenging tissue for DNA extraction and purification. Expen...
The generation of a DNA profile from skeletal remains is an important part of the identification pro...
Two of the most important problems facing the DNA-based identification in forensic cases are the DNA...
In order to resolve cases involving unidentified cadavers, the study of polymorphic DNA markers of ...
The recovery of DNA data from old skeletal remains is often difficult due to degraded and very low y...
Bones are often recovered in forensic investigations, including missing persons and mass disasters. ...
ABSTRACT: It has been a challenge to extract DNA from bones previously soaked in water, burned, or b...
extraction of DNA from human skeletal remains, 2. to improve STR profiling success of low-copy DNA s...
This study assessed the performance of five different DNA extraction methods for the recovery of DNA...
ABSTRACT: A new set of multiplexed PCR primers has been applied to the analysis of human skeletal re...
Since the beginning of our work in 2003 our laboratory has focused exclusively on STR DNA from bone,...
AbstractEfficient DNA extraction procedures, as well as accurate DNA amplification, are critical ste...
Extraction and successful PCR amplification of DNA from human remains in historical and forensic cas...
DNA genotyping techniques have been used successfully in forensic science for almost three decades a...
Bone and teeth can often be the only, or the best, biological materials available as DNA sources for...
International audienceBone is the most challenging tissue for DNA extraction and purification. Expen...
The generation of a DNA profile from skeletal remains is an important part of the identification pro...
Two of the most important problems facing the DNA-based identification in forensic cases are the DNA...
In order to resolve cases involving unidentified cadavers, the study of polymorphic DNA markers of ...
The recovery of DNA data from old skeletal remains is often difficult due to degraded and very low y...
Bones are often recovered in forensic investigations, including missing persons and mass disasters. ...
ABSTRACT: It has been a challenge to extract DNA from bones previously soaked in water, burned, or b...
extraction of DNA from human skeletal remains, 2. to improve STR profiling success of low-copy DNA s...
This study assessed the performance of five different DNA extraction methods for the recovery of DNA...
ABSTRACT: A new set of multiplexed PCR primers has been applied to the analysis of human skeletal re...
Since the beginning of our work in 2003 our laboratory has focused exclusively on STR DNA from bone,...