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The Insects Colonisation of Buried Remains

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Current Concepts in Forensic Entomology

Abstract

In our society, burial of a deceased person is a common habit in a normal situation. In opposition, manmade burial by authors of homicide and/or their accomplices to hide the body of their victim is more seldom.

Exhumation of a buried corpse can be ordered by legal decision (second expert conclusion). It can also be accidental or required by authorities for investigation purposes (mass grave) or identification of victims (natural disaster or accident).

Location of an illegal grave is a hard task and the excavation needs to apply adapted techniques and to gather different specialists (forensic investigators, pathologists, dentists, botanists, entomologists, etc.).

Decomposition of corpses is affected by burial environment (conservation, mummification, adipocere formation, etc.) because of climatic, edaphic and biological parameters. It is well known that the decomposition process in soil is vastly different than on the surface, due to different parameters. Accessibility of the necrophagous entomological fauna to the body is either disturbed (arrival delayed) or inhibited. The composition of the insects’ population can be strongly modified in addition to the duration of the life cycle. When colonisation is possible, the number of insects and the diversity of population are different than in normal conditions. In this situation, the estimation of the post mortem interval (PMI) is harder because of the lack of information (temperature values), and the lack in the species of forensic interest.

In the last century, studies helped to improve knowledge of the fauna associated with buried carrion. In the last period, some workers focused on a few groups of insects (or arthropods) in order to highlight a predictable pattern of their arrival on a corpse, helping to estimate the PMI. Groups are still neglected, because of the little motivation for this topic and the lack of taxonomists. However, study of this specific fauna may provide interesting information for investigation purposes.

To better understand the dynamics of insect populations and interpret their processes, it is important to have a better knowledge of the decomposition of corpses when buried. Study of this necrophagous population can give useful information, even if the PMI estimation is less easy to determine. Nevertheless, advances in this particular field of forensic entomology will improve the efficiency of analyses.

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Notes

  1. 1.

     The list of the following associations is not exhaustive.

  2. 2.

    Calliphoridae

  3. 3.

    Muscidae

  4. 4.

    Piophilidae

References

  • Amendt J, Krettek R, Zehner R (2004) Forensic Entomology. Naturwissenschaften 91:51-65

    Article  CAS  PubMed  Google Scholar 

  • Amendt J, Campobasso CP, Gaudry E, Reiter C, LeBlanc HN, Hall MJR (2007) Best practice in forensic entomology - standards and guidelines. Int J Legal Med 121(4):90-104

    Article  PubMed  Google Scholar 

  • Beauthier JP, Boxho P, Crèvecoeur JM, Leclercq M, Lefevre P, Vogels L (2000) Mission du Team Belge au Kosovo: science et justice Ă  la rencontre du drame humain. Premiers rĂ©sultats. BiomĂ©trie humaine et anthropologie 18(1-2):43-48

    Google Scholar 

  • Beauthier JP (2008) TraitĂ© de mĂ©decine lĂ©gale. Ed. De Boeck, Bruxelles, 837p

    Google Scholar 

  • Blanchard R (1915) La destruction des cadavres en temps de guerre. Mode opĂ©ratoire des Japonais en Mandchourie, vol 23(6). Revue d’Hygiène et de Police Sanitaire, Masson et Cie, Paris, pp 563-577

    Google Scholar 

  • Bornemissza GF (1957) An analysis of arthropod succession in carrion and the effect of its decomposition on the soil fauna. Aus J Zool 5:1-12

    Article  Google Scholar 

  • Bourel B, Tournel G, Hedouin V, Gosset D (2004) Entomofauna of buried bodies in northern France. Int J Legal Med 118:215-220

    Article  PubMed  Google Scholar 

  • Byrd JH, Castner JL (eds) (2001) Forensic entomology: the utility of arthropods in legal investigations. CRC, Boca Raton, FL, p 418

    Google Scholar 

  • Campobasso CP, Di Vella G, Introna F (2001) Factors affecting decomposition and Diptera colonisation. Forensic Sci Int 120:18-27

    Article  CAS  PubMed  Google Scholar 

  • Carter DO, Tibett M (2008) Does repeated burial of skeletal muscle tissue (Ovis aries) in soil affect subsequent decomposition? Appl Soil Ecol 40:529-535

    Article  Google Scholar 

  • Catts EP, Haskell NH (1990) Entomology and death/a procedural guide. Joyce’s Print Shop, Inc., Clemson, South Carolina, p 182

    Google Scholar 

  • Colyer C (1954a). More about the “coffin” fly Conicera tibialis Schmitz (Diptera, Phoridae). The Entomologist 87: pp 129-132

    Google Scholar 

  • Colyer C (1954b). Further emergences of Conicera tibialis, the “coffin fly” (Diptera, Phoridae).The Entomologist 87: 234

    Google Scholar 

  • Dadour IR, Harvey ML (2008) The role of invertebrates in terrestrial decomposition: forensic application. In: Tibett M, Carter DO (eds) Soil analysis in forensic taphonomy. Chemical and biological effects of buried human remains CRC Press, Boca Raton

    Google Scholar 

  • Disney RHL (1994) Scuttle flies: the Phoridae. Chapman & Hall Ed, London, p 467

    Google Scholar 

  • Donovan SE, Hall MJR, Turner BD, Moncrieff CB (2006) Larval growth rates of the blowfly Calliphora vicina over a range of temperatures. Med Vet Entomol 20:106-114

    Article  CAS  PubMed  Google Scholar 

  • Forbes SL (2008) Potential determinants of postmortem and post burial interval of buried remains. In: Tibett M, Carter DO (eds) Soil analysis in forensic taphonomy. Chemical and biological effects of buried human remains. pp 225-246

    Google Scholar 

  • Gaudry E, Dourel L, Chauvet C, Vincent B, Pasquerault T, Lefebvre F (2006) Burial of lamb carcasses at 3 different depths: impact on the colonization by necrophagous insects. Proceedings of the fourth meeting of the European Association for Forensic Entomology. Bari, Italy

    Google Scholar 

  • Gennard DE (2007) Forensic entomology: an introduction, Wileyth edn. Chichester, England, p 224

    Google Scholar 

  • Goff ML (1989) Gamasid mites as potential indicators of post mortem interval. In: Channabasavanna GP, Viraktamath CA (eds) Progres in acarology. Oxford & IBH, New Delhi, India, pp 443-450

    Google Scholar 

  • Goff ML, Bani HW (1997) Estimation of postmortem interval based on colony development time for Anoplolepsis longipes (Hymenoptera: Formicidae). J Forensic Sci 42(6):1176-1179

    CAS  PubMed  Google Scholar 

  • Grassberger M, Frank C (2003) Temperature-related development of the parasitoid wasp Nasonia vitripennis as forensic indicator. Med Vet Entomol 17:257-262

    Article  CAS  PubMed  Google Scholar 

  • Greenberg B, Wells JD (1997) Forensic Use of Megaselia abdita and M. Scalaris (Phoridae: Diptera): case studies, development, rates, and egg structure. Entomol Soc Am 35(3):205-209

    Google Scholar 

  • Haglund DH, Sorg MH (2002) Advances in froensic taphonomy. In: Haglund, Sorg (ed) Method, theory, and archaeological perpectives. CRC, Boca Raton, Florida, p 507

    Google Scholar 

  • Hakbijl T (2000) Arthropod remains as indicators for taphonomic processes: an assemblage from 19th century burials, Broerenkerk, Zwolle, The Netherlans. In Huntley J.P. and Stallibrass S Eds, Taphonomy and Interpretation. Symposia for the Association for Environmental Archaeology, N°14. Oxbow Books, Oxford, 95-96

    Google Scholar 

  • Huchet J-B (1996) L’archĂ©oentomologie funĂ©raire: une approche originale dans l’interprĂ©tation des sĂ©pultures. Bulletin et MĂ©moire de la SociĂ©tĂ© d’Anthropologie de Paris 8(3-4):299-311

    Article  Google Scholar 

  • Kalacska M, Bell LS (2006) Remote sensing as a tool for the detection of clandestine mass graves. Can Soc Forensic Sci 39:1-13

    Google Scholar 

  • Kamal AS (1958) Comparative study of sarcosaprophagous Calliphoridae and Sarcophagidae (Diptera). Ann Entomol Soc 51:261-271

    Google Scholar 

  • Killam EW (1990) The detection of human remains. Thomas CC (ed) Springfield, Illinois, p 263

    Google Scholar 

  • Komar D (1999) The use of cadaver dogs in locating scattered, scavenged human remains: preliminary field test results. J Forensic Sci 44(2):405-408

    CAS  PubMed  Google Scholar 

  • Leclercq M (1978) Entomologie et MĂ©decine lĂ©gale - Datation de la mort, Collection de MĂ©decine LĂ©gale et de Toxicologie MĂ©dicale N°108, Ă©ditions. Masson, Paris, p 100

    Google Scholar 

  • Leclercq M (1997) A propos de Hermetia illucens (Linnaeus, 1758) (“soldier fly”) (Diptera Stratiomyidae: Hermetiinae). Bulletin des Annales de la SociĂ©tĂ© Royale Belge Entomologique 133:275-282

    Google Scholar 

  • Leclercq M (1999) Entomologie et mĂ©decine lĂ©gale: importance des Phorides sur les cadavres humains. Annales de la SociĂ©tĂ© Entomologique de France 35(Supp):566-568

    Google Scholar 

  • Lefebvre F, Pasquerault T (2003) Temperature-dependent development of Ophyra aenescens (Wiedemann, 1830) and Ophyra capensis (Wiedemann, 1818) (Diptera, Muscidae). Forensic Sci Int 139:75-79

    Article  Google Scholar 

  • Lord WD, Goff ML, Adkins TR, Haskell NH (1994) The Black Soldier Fly Hermetia illucens (Diptera: Stratiomyidae) as a potential measure of human postmortem interval: observations and case histories. J Forensic Sci 39(1):215-222

    CAS  PubMed  Google Scholar 

  • Lundt H (1964) Okologische Untersuchungen ĂĽber die tierische Besiedlung von Aas im Boden. Pedobiologia 4:158-180

    Google Scholar 

  • Manlove JD, Disney RHL (2007) The use of Megaselia abdita (Diptera: Phoridae) in forensic entomology. Forensic Sci Int 175(1):83-84

    Article  PubMed  Google Scholar 

  • Mann RW, Bass WM, Meadows L (1990) Time since death and decomposition of the human body: variables and observations in case and experimental field studies. J Forensic Sci 35:103-111

    CAS  PubMed  Google Scholar 

  • Marchenko MI (2001) Medicolegal relevance of cadaver entomofauna for the determination of the time of death. Forensic Sci Int 120:89-109

    Article  CAS  PubMed  Google Scholar 

  • MĂ©gnin P.(1894) La faune des cadavres: application de l’entomologie Ă  la mĂ©decine lĂ©gale. Masson, Paris, 214 p

    Google Scholar 

  • Menez LL (2005) The place of a forensic archaeologist at a crime scene involving a buried body. Forensic Sci Int 152:311-315

    Article  CAS  PubMed  Google Scholar 

  • Merritt RW, Snider R, De Jong JL, Benbow ME, Kimbirauskas RK, Kolar RE (2007) Collembola of the grave: a cold case history involving arthropods 28 years after death. J Forensic Sci 52(6):1359-1361

    Article  PubMed  Google Scholar 

  • Motter MG (1898) A contribution to the study of the fauna of the grave. A study of one hundred and fifty disinterments, with some additional experimental observations. N Y Entomol Soc VI(4):201-230

    Google Scholar 

  • Myskowiak JB, Doums C (2002) Effects of refrigeration on the biometry and development of Protophormia terraenovae (Robineau-Desvoidy) (Diptera: Calliphoridae) and its consequences in estimating post-mortem interval in forensic investigations. Forensic Sci Int 125:254-261

    Article  PubMed  Google Scholar 

  • Oesterhelweg L, Kröber S, Rottmann K, Willhöft J, Braun C, Thies N, PĂĽschel K, Silkenath J, Gehl A (2008) Cadaver dogs - a study on detection of contaminated carpet squares. Forensic Sci Int 174:35-39

    Article  CAS  PubMed  Google Scholar 

  • Payne JA (1965) A carrion study of the baby pig Sus scrofa Linnaeus. Ecology 46(5):591-602

    Article  Google Scholar 

  • Payne JA, King EW, Beinhart G (1968) Arthropod succession and decomposition of buried pigs. Nature 219:1180-1181

    Article  CAS  PubMed  Google Scholar 

  • Perrot P, Chartier L, Carlier J (2007) The role of ground penetrating radar in forensic sciences. Proceedings of the International Crime Science Conference, London

    Google Scholar 

  • Pujol-Luz JR, da Costa A, Francez P, Uruahy-Rodrigues A, Constantino R (2008) The Black Soldier-fly, Hermetia illucens (Diptera: Stratiomyidae) used to estimate the post mortem interval in a case in AmapĂ  State, Brazil. J Forensic Sci 53(2):476-478

    Article  PubMed  Google Scholar 

  • Rodriguez WC III (1997) Decomposition of buried and submerged bodies, pp 459-467. In: Haglund WD, Sorg MH (ed) Forensic taphonomy. The postmortem fate of human remains. CRC, Boca Raton, FL, p 636

    Google Scholar 

  • Rodriguez WCIII, Bass WM (1985) Decomposition of buried bodies and methods that may aid their location. J Forensic Sci 30(3):836-852

    PubMed  Google Scholar 

  • Shubeck PP (1968) Orientation of carrion beetles to carrion: random or not random. J N Y Entomol Soc 76:253-265

    Google Scholar 

  • Skinner M, Sterenberg J (2005) Turf wars: authority and responsibility for the investigation of mass graves. Forensic Sci Int 151:221-232

    Article  PubMed  Google Scholar 

  • Smith KGV (1986) A manual of forensic entomology. Trustees of the British Museum, Natural History and Cornell University Press, London, p 205

    Google Scholar 

  • Thieren M, Guitteau R (2000) Disasters preparedness and mitigation, issue no. 80. Pan American Health Organization (PAHO), p 8

    Google Scholar 

  • Tomberlin J, Sheppard C, Joyce JA (2005) Black Soldier fly (Diptera: Stratiomyidae) colonization of pig carrion in South Georgia. J Forensic Sci 50(1):152-153

    Article  PubMed  Google Scholar 

  • Turchetto M, Lafisca A, Borini M, Vanin S (2008) A study of the entomofauna on some 2nd world war skeletons from a “foiba” in NW-Italy. Proceedings of the sixth meeting of the European Association for Forensic Entomology, Kolymbari (Crete)

    Google Scholar 

  • Turner B, Wilshire P (1999) Experimental validation of forensic evidence: a study of the decomposition of buried pigs in a heavy clay soil. Forensic Sci Int 101:113-122

    Article  CAS  PubMed  Google Scholar 

  • Vanin S, Vernier E (2005) Segnalazione di Penicillida dufourii (Diptera, Nycteribiidae) ectoparassita di chirotteri vespertilionidi nella “grotta della guerra” (Ialia, Veneto). Lav Soc Ven Sc Nat 30: pp 9-11

    Google Scholar 

  • VanLaerhoven SL, Anderson G (1999) Insect succession on buried carrion in two biogeoclimatic zones of British Columbia. J Forensic Sci 44(1):32-43

    CAS  PubMed  Google Scholar 

  • Voillot J-F, Touron P, Servettaz J, Hebrard J (2006) The national serious crime scene unit of the national gendarmerie. Proceedings of the meeting of the European Association of Forensic Sciences. Helsinki

    Google Scholar 

  • Wilson AS, Janaway RD, Holland AD, Dodson HI, Baran E, Pollard AM, Desmond JD (2007) Modelling the buried body environment in upland climes using three contrasting field sites. Forensic Sci Int 169:6-18

    Article  PubMed  Google Scholar 

  • Wyss C, ChĂ©rix D (2006) TraitĂ© d’entomologie lĂ©gale. Les insectes sur la scène de crime. Presses polytechniques et universitaires romandes, Lausanne, p 317

    Google Scholar 

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Acknowledgements

Jens Amendt, Institute of legal Medicine, Frankfurt am Main - Germany. Jean-Pol Beauthier, Laboratoire de médecine légale et d’anthropologie médico-légale, Bruxelles -Belgique. Laurent Chartier, Département Signal image parole, IRCGN, gendarmerie nationale - France. Jérôme Carlier, Département Signal image parole, IRCGN, gendarmerie nationale - France. Laurent Dourel, Département Entomologie, IRCGN, gendarmerie nationale - France. Fabrice Galli, Centre national d’instruction cynophile de la gendarmerie nationale - France. Dorothy Gennard, Lincoln University, Lincoln - United Kingdom. Jean-Bernard Huchet, université de Bordeaux 1, Bordeaux - France. Hans Huijbregts, National Museum Natural History, Leiden - Nederland. Yvan Malgorn, IRCGN, gendarmerie nationale - France. Guy Marchesi, Service central de renseignements judiciaires et de documentation, gendarmerie nationale - France. Jean-Jacques Menier, National History Museum, Paris - France. Jean-Bernard Myskowiak, Département Thanotologie anthropologie odontologie, IRCGN, gendarmerie nationale - France. Thierry Pasquerault, Département Entomologie, IRCGN, gendarmerie nationale - France. Patrick Perrot, Département Signal image parole, IRCGN, gendarmerie nationale - France. Henri Plouchart, Direction Centrale de la Police Judiciaire - France. Géraldine Salerio, Institut de médecine légale de Montpellier - France. Jean Richebe, Département Thanotologie anthropologie odontologie, IRCGN, gendarmerie nationale - France. Stefano Vanin, Università di Padova, Padova- Italia. Benoît Vincent, Département Entomologie, IRCGN, gendarmerie nationale - France.

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Gaudry, E. (2009). The Insects Colonisation of Buried Remains. In: Amendt, J., Goff, M., Campobasso, C., Grassberger, M. (eds) Current Concepts in Forensic Entomology. Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-9684-6_13

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