Hall R.D. Medicocriminal entomology. In: Catts E.Q., and Haskell N.H. (Eds). Entomology and Death, a Procedural Guide (1990), Forensic Entomology Associates 1-8
In: Castner J.H., and Byrd J.L. (Eds). Hall, Introduction: Perceptions and Status of Forensic, Forensic entomology: The Utility of Arthropods in Legal Investigations (2001), CRC Press, Boston 1-16
Amendt J., Krettek R., and Zehner R. Forensic entomology. Naturwissenschaften 91 (2004) 51-65
Wallman J. The application of entomology to criminal investigations. In: Horswell J. (Ed). The Practice of Crime Scene Investigation (2004), CRC Press, Boca Raton 347-356
Gennard D.E. Forensic Entomology: An Introduction (2007), Wiley p. 224
Anderson G.S., and VanLaerhoven S.L. Initial studies on insect succession on carrion in Southwestern British Columbia. J. Forensic Sci. 41 (1996) 617-625
Grassberger M., and Frank C. Initial study of arthropod succession on pig carrion in a central European urban habitat. J. Med. Entomol. 41 (2004) 511-523
Carter D.O., Yellowlees D., and Tibbett M. Cadaver decomposition in terrestrial ecosystems. Naturwissenschaften 94 (2007) 12-24
Megnin J.P., and des Cadavres L.F. Application de l'Entomologie à la Médicine Légale (1894), Encyclopédie Sci. Aide-mémoire, Paris p. 210
Putman R.J. Carrion and dung: the decomposition of animal wastes. The Institute of Biology's Studies in Biology (1983), Edward Arnold Ltd., London p. 61
Schoenly K., and Reid W. Dynamic or heterotrophic succession in carrion arthropod assemblages: discrete seres or a continuum of change. Oecology 73 (1987) 192-202
Marchenko M.I. Medico-legal relevance of cadaver entomaufauna for the determination of the time since death. Acta Med. Leg. Soc. 38 (1988) 257-302
Marchenko M.I. Medicolegal relevance of cadaver entomofaune for the determination of time of death. Forensic Sci. Int. 120 (2001) 89-109
Benecke M. Forensic entomology: arthropods and corpses. In: Tsokos M. (Ed). Forensic Path. Rev. vol. II (2004), Humana Press, Totowa, NJ 207-240
Greenberg B. Flies as forensic indicators. J. Med. Entomol. 28 1991 (1991) 565-577
Wall R., and Warnes M.L. Responses of the sheep blowflies Lucilia sericata to carrion odour and carbon dioxide. Entomol. Exp. Appl. 73 (1994) 239-246
Anderson G.S. Insect succession on carrion and its relationship to determining time of death. In: Castner J.H., and Byrd J.L. (Eds). Forensic Entomology: The Utility of Arthropods in Legal Investigations (2001), CRC Press, Boston 143-175
Statheropoulos M., Agapiou A., Spiliopoulou C., Pallis G.C., and Sianos E. Environmental aspects of VOCs evolved in the early stages of human decomposition. Sci. Total Environ. 385 (2007) 221-227
Gill-King H. Chemical and ultrastructural aspects of decomposition. In: Haglund W.D., and Sorg M.H. (Eds). Forensic Taphonomy: The Postmortem Fate of Human Remains (1997), CRC Press, Boca Raton 93-108
Vass A.A., Smith R.R., Thompson C.V., Burnett M.N., Wolf D.A., Synstelien J.A., Dulgerian N., and Eckenrode B.A. Decompositional odor analysis database. J. Forensic Sci. 49 (2004) 760-769
Statheropoulos M., Spiliopoulou C., and Agapiou A. A study of volatile organic compounds evolved from decaying human body. Forensic Sci. Int. 153 (2005) 147-155
Oesterhelweg L., Krober S., Rottmann K., Willhoft J., Braun C., Thies N., Puschel K., Silkenath J., and Gehl A. Cadaver dogs-a study on detection of contaminated carpet squares. Forensic Sci. Int. 174 (2008) 35-39
Vass A.A., Smith R.R., Thompson C.V., Burnett M.N., Dulgerian N., and Eckenrode B.A. Odor analysis of decomposing buried human remains. J. Forensic Sci. 53 (2008) 384-391
Killam E.W. The Detection of Human Remains (1990), Charles C. Thomas, Springfield, IL p. 263
Komar D. The use of cadaver dogs in locating scattered, scavenged human remains: preliminary fields test results. J. Forensic Sci. 44 (1999) 405-408
Statheropoulos M., Mikedi K., Agapiou A., Georgiadou A., and Karma S. Discriminant analysis of volatile organic compounds data related to a new location method of entrapped people in collapsed buildings of an earthquake. Anal. Chim. Acta 566 (2006) 207-216
Vass A.A. Beyond the grave-understanding human decomposition. Microbiol. Today 28 (2001) 190-192
Rodriguez W.C., and Bass W.M. Insect activity and its relationship to decay rates of human cadavers in East Tennessee. J. Forensic Sci. 28 (1983) 423-432
Catts E.P., and Goff M.L. Forensic entomology in criminal investigations. Annu. Rev. Entomol. 37 (1992) 253-272
Vass A.A., Bass W.B., Wolt J.D., Foss J.E., and Ammons J.T. Time since death determinations of human cadavers using soil solution. J. Forensic Sci. 37 (1992) 1236-1253
Campobasso C.P., Di Vella G., and Introna F. Factors affecting decomposition and Diptera colonization. Forensic Sci. Int. 120 (2001) 18-27
Vass A.A., Barshick S.-A., Sega G., Caton J., Skeen J.T., Love J.C., and Synstelien J.A. Decomposition chemistry of human remains: a new methodology for determining the postmortem interval. J. Forensic Sci. 47 (2002) 542-553
Cocheo V., Boaretto C., and Sacco P. High uptake rate radial diffusive sampler suitable for both solvent and thermal desorption. Am. Ind. Hyg. Assoc. J. 57 (1996) 897-904
Crescenzi C., Di Corcia A., Passariello G., Samperi R., and Turnes Carou M.I. Evaluation of two new examples of graphitized carbon blacks for use in solid-phase extraction cartridges. J. Chromatogr. A 733 (1996) 41-55
Bruno P., Caputi M., Caselli M., de Gennaro G., and de Rienzo M. Reliability of a BTEX radial diffusive sampler for thermal desorption: field measurements. Atmos. Environ. 39 (2005) 1347-1355
Pennequin-Cardinal A., Plaisance H., Locoge N., Ramalho O., Kirchner S., and Galloo J.C. Performances of the Radiello® diffusive sampler for BTEX measurements: influence of environmental conditions and determination of modelled sampling rates. Atmos. Environ. 39 (2005) 2535-2544
Bornemissza G.F. An analysis of Arthropods succession in Carrion and the effect of its decomposition on the soil fauna. Aust. J. Zool. 5 (1957) 1-12
Reed H.B. A study of dog carcass communities in Tennessee, with special reference to the insects. Am. Midland Naturalist. 59 (1958) 213-245
Clark M.A., Worrel M.B., and Pless J.E. Postmortem changes in soft tissues. In: Haglund W.D., and Sorg M.H. (Eds). Forensic Taphonomy: The Postmortem Fate of Human Remains (1997), CRC Press, Boca Raton 151-160
Galloway A. The process of decomposition: a model from the Arizona-Sonoran Desert. In: Haglund W.D., and Sorg M.H. (Eds). Forensic Taphonomy: The Postmortem Fate of Human Remains (1997), CRC Press, Boca Raton 139-149
Adlam R.E., and Simmons T. The effect of repeated physical disturbance on soft tissue decomposition-are taphonomic studies an accurate reflection of decomposition?. J. Forensic Sci. 52 (2007) 1007-1013
Evans W. The Chemistry of Death (1963), Thomas, Springfield, Ill p. 101
Dent B.B., Forbes S.L., and Stuart B.H. Review of human decomposition processes in soil. Environ. Geol. 45 (2004) 576-585
Cabirol N., Pommier M.T., Gueux M., and Payen G. Comparison of lipid in two types of human putrefactive liquid. Forensic Sci. Int. 94 (1998) 47-54
Kondjoyan N., Viallon C., Berdagué J.L., Daridan D., Simon M.N., and Legault C. Analyse comparative de la fraction volatile de jambons secs de porcs Gascon et Large-White × Landrace Français. Journées Rech. Porcine en France 29 1997 (1997) 405-410
Callery P.S., and Geelhaar L.A. Biosynthesis of 5-aminopentanoic acid and 2-piperidone from cadaverine and 1-piperideine in mouse. J. Neurochem. 46 (1984) 1631-1634
Torsvik V., and Ovreas L. Microbial diversity and function in soil: from genes to ecosystems. Ecol. Indust. Microbiol. 5 (2002) 240-245
Hopkins D.W., Wiltshire P.E.J., and Turner B.D. Microbial characteristics of soils from graves: an investigation at the interface of soil microbiology and forensic science. Appl. Soil Ecol. 14 (2000) 283-288
O'Neal C.L., and Poklis A. Postmortem production of ethanol and factors that influence interpretation: a critical review. Am. J. Forensic Med. Pathol. 17 (1996) 8-20