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1.
Forensic Sci Int ; 316: 110484, 2020 Nov.
Article in English | MEDLINE | ID: mdl-32942184

ABSTRACT

The study of human remains from the first and the second World War is important for enhancing our understanding of that historical period. Despite the fact that the period has been well-documented previously, gaps remain, particularly as a result of the destruction of archives. In fact, for just WWI, more than 700,000 soldiers from both sides remain missing. Scientific and political collaborations established in hopes of recovering and identifying soldiers will allow many families understand "what happened" to their loved ones and facilitate the return of the soldiers their homes. In this paper, the recovery of the human remains of French soldiers WWI and WWII will be described through the lens of the legislation in place governing the retrieval and identification of the remains, protocols established for recovery, excavation and analysis, and the dissemination data. These features will be illustrated using three case studies that involve French soldiers who died during WWI. Research of this type is the result of true interdisciplinary and sometimes international, depending on the context, collaboration. The public and academic the dissemination of these archaeological discoveries, both to academics and the public, is crucial and a type of remembrance.


Subject(s)
Body Remains , Military Personnel , Archaeology , Bone and Bones , DNA Fingerprinting , Forensic Sciences , France , History, 20th Century , Humans , Male , World War I , World War II
2.
Forensic Sci Int ; 296: 145-152, 2019 Mar.
Article in English | MEDLINE | ID: mdl-30712776

ABSTRACT

This case study reports the anthropological analysis of bones remains discovered on Riou Island (Marseille, France) and the story of two World War II fighter pilots. The discovery of bones on "The Fountain of the Greeks" square on Riou Island occurred in the 1960's and a first anthropological study described a 35-year-old man, about 1.77 m tall, buried since an estimated period between the 13th and 16th centuries. The case was "closed" and the bones were considered as isolated archaeological remains. Few years later, near the coasts of Riou Island, parts of two planes were discovered. One was from of a German Messerschmitt Bf 109 F-4 of the Luftwaffe piloted by Prince Alexis fürst zu Bentheim und Steinfurt, and the other from a French P-38 Lightning F-5 B piloted by Antoine de Saint-Exupery. Therefore, the identification of the skeletal remains mentioned above was then thought to be perhaps one of the two World War II pilots. In this particular context we performed forensic and molecular biology analyses to resolve this identification.


Subject(s)
Bone and Bones/chemistry , Bone and Bones/pathology , DNA Fingerprinting , Forensic Anthropology , Pilots , Age Determination by Skeleton/methods , Age Determination by Teeth/methods , DNA/isolation & purification , DNA, Mitochondrial/genetics , France , History, 20th Century , Humans , Male , Microsatellite Repeats , Military Personnel , Polymerase Chain Reaction , Radiometric Dating , Sex Determination by Skeleton/methods , World War II
3.
Mitochondrial DNA A DNA Mapp Seq Anal ; 29(1): 147-157, 2018 01.
Article in English | MEDLINE | ID: mdl-28034339

ABSTRACT

The Western North African population was characterized by the presence of Iberomaurusian civilization at the Epiplaeolithic period (around 20,000 years before present (YBP) to 10,000 YBP). The origin of this population is still not clear: they may come from Europe, Near East, sub-Saharan Africa or they could have evolved in situ in North Africa. With the aim to contribute to a better knowledge of the settlement of North Africa we analysed the mitochondrial DNA extracted from Iberomaurusian skeletons exhumed from the archaeological site of Afalou (AFA) (15,000-11,000 YBP) in Algeria and from the archaeological site of Taforalt (TAF) (23,000-10,800 YBP) in Morocco. Then, we carried out a phylogenetic analysis relating these Iberomaurusians to 61 current Mediterranean populations. The genetic structure of TAF and AFA specimens contains only North African and Eurasian maternal lineages. These finding demonstrate the presence of these haplotypes in North Africa from at least 20,000 YBP. The very low contribution of a Sub-Saharan African haplotype in the Iberomaurusian samples is confirmed. We also highlighted the existence of genetic flows between Southern and Northern coast of the Mediterranean.


Subject(s)
DNA, Ancient , DNA, Mitochondrial , Phylogeny , White People/genetics , Africa, Northern , Gene Flow , Genetic Variation , Genetics, Population , Genome, Mitochondrial , History, Ancient , Humans , Mediterranean Region , Sequence Analysis, DNA
4.
Croat Med J ; 58(3): 203-213, 2017 Jun 14.
Article in English | MEDLINE | ID: mdl-28613037

ABSTRACT

AIM: A collaborative exercise with several institutes was organized by the Forensic DNA Service (FDNAS) and the Institute of the Legal Medicine, 2nd Faculty of Medicine, Charles University in Prague, Czech Republic, with the aim to test performance of different laboratories carrying out DNA analysis of relatively old bone samples. METHODS: Eighteen laboratories participating in the collaborative exercise were asked to perform DNA typing of two samples of bone powder. Two bone samples provided by the National Museum and the Institute of Archaelogy in Prague, Czech Republic, came from archeological excavations and were estimated to be approximately 150 and 400 years old. The methods of genetic characterization including autosomal, gonosomal, and mitochondrial markers was selected solely at the discretion of the participating laboratory. RESULTS: Although the participating laboratories used different extraction and amplification strategies, concordant results were obtained from the relatively intact 150 years old bone sample. Typing was more problematic with the analysis of the 400 years old bone sample due to poorer quality. CONCLUSION: The laboratories performing identification DNA analysis of bone and teeth samples should regularly test their ability to correctly perform DNA-based identification on bone samples containing degraded DNA and potential inhibitors and demonstrate that risk of contamination is minimized.


Subject(s)
Bone and Bones/chemistry , DNA/analysis , Czech Republic , DNA Fingerprinting/standards , Forensic Genetics , Humans
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