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Abstract

This chapter provides a broad overview of tracks and trackways relevant to both vertebrate and forensic footprints and footwear, along with a review of the rationale and contents of this book. Key definitions are introduced and explained and some principles of scientific method are also explored which are important to questions of data interpretation especially in forensic practice which is discussed in later chapters.

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References

  • Alexander RMCN (1984) Stride length and speed for adults, children, and fossil hominids. Am J Phys Anthropol 63:23–27

    Article  Google Scholar 

  • Altamura F, Bennett MR, D’Août K, Gaudzinski-Windheuser S, Melis RT, Reynolds SC, Mussi M (2018) Archaeology and ichnology at Gombore II-2, Melka Kunture, Ethiopia: everyday life of a mixed-age hominin group 700,000 years ago. Sci Rep 8:2815. https://doi.org/10.1038/s41598-018-21158-7

    Article  Google Scholar 

  • Ashley G, Liutkus CM (2003) Tracks, trails and trampling by large vertebrates in a rift valley paleo-wetland, lowermost Bed II, Olduvai Gorge, Tanzania. Ichnos 9:23–32

    Article  Google Scholar 

  • Balashova A, Mattsson HB, Hirt AM, Almqvist BS (2016) The Lake Natron Footprint Tuff (northern Tanzania): volcanic source, depositional processes and age constraints from field relations. J Quat Sci 31:526–537

    Article  Google Scholar 

  • Bates KT, Savage R, Pataky TC, Morse SA, Webster E, Falkingham PL, Ren L, Qian Z, Collins D, Bennett MR, McClymont J (2013) Does footprint depth correlate with foot motion and pressure? J R Soc Interface 10:20130009. https://doi.org/10.1098/rsif.2013.0009

    Article  Google Scholar 

  • Behrensmeyer AK, Laporte LF (1981) Footprints of a Pleistocene hominid in northern Kenya. Nature 289:167–169

    Article  Google Scholar 

  • Belvedere M, Bennett MR, Marty D, Budka M, Reynolds SC, Bakirov R (2018) Stat-tracks and mediotypes: powerful tools for modern ichnology based on 3D models. PeerJ 6:e4247. https://doi.org/10.7717/peerj.4247

    Article  Google Scholar 

  • Bennett MR, Morse SA (2014) Human footprints: fossilised locomotion?. Springer, Dordrecht

    Google Scholar 

  • Bennett MR, Morse SA, Falkingham PL (2014) Tracks made by swimming Hippopotami: an example from Koobi Fora (Turkana Basin, Kenya). Palaeogeogr Palaeoclimatol Palaeoecol 409:9–23

    Article  Google Scholar 

  • Bennett MR, Reynolds SC, Morse SA, Budka M (2016a) Laetoli’s lost tracks: 3D generated mean shape and missing footprints. Sci Rep 6. https://doi.org/10.1038/srep21916

  • Bennett MR, Reynolds SC, Morse SA, Budka M (2016b) Footprints and human evolution: Homeostasis in foot function? Palaeogeogr Palaeoclimatol Palaeoecol 461:214–223

    Article  Google Scholar 

  • Bennett MR, Falkingham P, Morse SA, Bates K, Crompton RH (2013) Preserving the impossible: conservation of soft-sediment hominin footprint sites and strategies for three-dimensional digital data capture. PLoS ONE 8:e60755. https://doi.org/10.1371/journal.pone.0060755

    Article  Google Scholar 

  • Bennett MR, Harris JWK, Richmond BG, Braun DR, Mbua E, Kiura P, Olago D, Kibunjia M, Omuombo C, Behrensmeyer AK, Huddart D, Gonzalez S (2009) Early hominin foot morphology based on 1.5 million year old footprints from Ileret, Kenya. Science 323:1197–1201

    Article  Google Scholar 

  • Bibi F, Kraatz B, Craig N, Beech M, Schuster M, Hill A (2012) Early evidence for complex social structure in Proboscidea from a late Miocene trackway site in the United Arab Emirates. Biol Lett 8:670–673

    Article  Google Scholar 

  • Bodziak WJ (2012) Traditional conclusions in footwear examinations versus the use of the Bayesian approach and likelihood ratio: a review of a recent UK appellate court decision. Law Probab Risk 11:279–287

    Article  Google Scholar 

  • Bodziak WJ (2017) Forensic footwear evidence (Practical aspects of criminal and forensic investigations). CRC Press, Taylor and Francis Group

    Google Scholar 

  • Bustos D, Jakeway J, Urban TM, Holliday VT, Fenerty B, Raichlen DA, Budka M, Reynolds SC, Allen BD, Love DW. Santucci VL, Odess D, Willey P, McDonald, G, Bennett MR (2018) Footprints preserve terminal Pleistocene hunt? Human-sloth interactions in North America. Sci Adv 4:p.eaar7621. https://doi.org/10.1126/sciadv.aar7621

  • Cohen A, Lockley M, Halfpenny J, Michel AE (1991) Modern vertebrate track taphonomy at Lake Manyara, Tanzania. Palaios 6:371–389

    Article  Google Scholar 

  • Cohen AS, Halfpenny J, Lockley M, Michel E (1993) Modern vertebrate tracks from Lake Manyara, Tanzania and their paleobiological implications. Paleobiology 19:433–458

    Article  Google Scholar 

  • Crispino F (2008) Nature and place of crime scene management within forensic sciences. Sci Justice 48:24–28

    Google Scholar 

  • Crompton RH, Pataky TC, Savage R, D’Août K, Bennett MR, Day MH, Bates K, Morse SA, Sellers WI (2011) Human-like external function of the foot, and fully upright gait, confirmed in the 3.66 million year old Laetoli hominin footprints by topographic statistics, experimental footprint-formation and computer simulation. J R Soc Interface 9:707–719. https://doi.org/10.1098/rsif.2011.0258

    Article  Google Scholar 

  • Day MH, Wickens EH (1980) Laetoli Pliocene hominid footprints and bipedalism. Nature 286:385

    Article  Google Scholar 

  • Donovan SK (1994) The palaeobiology of trace fossils. Johns Hopkins University Press, Baltimore

    Google Scholar 

  • Doran GT (1981) There’s a S.M.A.R.T. way to write management’s goals and objectives. Man Rev 70:35–36

    Google Scholar 

  • Falkingham PL, Horner AM (2016) Trackways produced by lungfish during terrestrial locomotion. Sci Reports 6:33734

    Google Scholar 

  • Falkingham PL, Marty D, Richter A (eds) (2016) Dinosaur tracks: the next steps. Indian University Press, Bloomington

    Google Scholar 

  • Falkingham PL, Bates KT, Margetts L, Manning PL (2011) The ‘Goldilocks’ effect: preservation bias in vertebrate track assemblages. J R Soc Interface 8:1142–1154

    Article  Google Scholar 

  • Falkingham PL, Bates KT, Avanzini M, Bennett M, Bordy E, Breithaupt BH, Castaner D, Citton P, Díaz-Martínez I, Farlow JO, Fiorillo AR, Gatesy SM, Getty P, Hatala KG, Hornung JJ, Hyatt JA, Klein H, Lallensack JN, Martin AJ, Marty D, Matthews NA, Meyer, Milàn J, Minter NJ, Razzolini NL, Romilio A, Salisbury SW, Sciscio L, Tanaka I, Wiseman ALA, Xing LD, Belvedere M (2018) A standard protocol for documenting modern and fossil ichnological data. Palaeotology, in press

    Google Scholar 

  • Funston PJ, Frank L, Stephens T, Davidson Z, Loveridge A, Macdonald DM, Durant S, Packer C, Mosser A, Ferreira SM (2010) Substrate and species constraints on the use of track incidences to estimate African large carnivore abundance. J Zoo 281:56–65

    Article  Google Scholar 

  • Gompper ME, Kays RW, Ray JC, Lapoint SD, Bogan DA, Cryan JR (2006) A comparison of noninvasive techniques to survey carnivore communities in northeastern North America. Wildlife Soc Bull 34:1142–1151

    Article  Google Scholar 

  • Hatala KG, Demes B, Richmond BG (2016a) Laetoli footprints reveal bipedal gait biomechanics different from those of modern humans and chimpanzees. Proc R Soc B 283:20160235. https://doi.org/10.1098/rspb.2016.0235

    Article  Google Scholar 

  • Hatala KG, Roach NT, Ostrofsky KR, Wunderlich RE, Dingwall HL, Villmoare BA, Green DJ, Braun DR, Richmond BG (2016b) Footprint reveal direct evidence of group behavior and locomotion of Homo erectus. Sci Rep 6:28766. https://doi.org/10.1038/srep28766

    Article  Google Scholar 

  • Helm CW, McCrea RT, Cawthra HC, Lockley MG, Cowling RM, Marean CW, Thesen GH, Pigeon TS, Hattingh S (2018) A New Pleistocene hominin tracksite from the Cape South Coast, South Africa. Sci Rep 8:3772. https://doi.org/10.1038/s41598-018-22059-5

    Article  Google Scholar 

  • Hunt AP, Lucas SG (2007) Tetrapod ichnofacies: a new paradigm. Ichnos 14:59–68

    Article  Google Scholar 

  • Kim JY, Kim KS, Lockley M, Matthews N (2008) Hominid ichnotaxonomy: an exploration of a neglected discipline. Ichnos 15:126–139

    Article  Google Scholar 

  • Kinahan J (2013) The use of skeletal and complementary evidence to estimate human stature and identify the presence of women in the recent archaeological record of the Namib desert. S Afr Archaeol Bull 68:72–78

    Google Scholar 

  • Leakey MD (1987) Animal prints and tracks. In: Leakey MD, Harris JM (eds) Laetoli: a Pleistocene site in Northern Tanzania. Clarendon Press, Oxford, pp 451–489

    Google Scholar 

  • Leakey MD, Hay RL (1979) Pliocene footprints in the Laetoli beds at Laetoli, Northern Tanzania. Nature 278:317

    Article  Google Scholar 

  • Liutkus-Pierce CM, Zimmer BW, Carmichael SK, McIntosh W, Deino A, Hewitt SM, McGinnis KJ, Hartney T, Brett J, Mana S, Deocampo D (2016) Radioisotopic age, formation, and preservation of late Pleistocene human footprints at Engare Sero, Tanzania. Palaeogeogr Palaeoclimatol Palaeoecol 463:68–82

    Article  Google Scholar 

  • Lockley MG (1986) The paleobiological and paleoenvironmental importance of dinosaur footprints. Palaios 1:37–47

    Article  Google Scholar 

  • Lockley MG (1998) The vertebrate track record. Nature 396:429–432

    Article  Google Scholar 

  • Lucas SG (2015) Thinopus and a critical review of Devonian tetrapod footprints. Ichnos 22:136–154

    Google Scholar 

  • Martin AJ, Pyenson ND (2005) Behavioral significance of vertebrate trace fossils from the Union Chapel site. Pennsylvanian Footprints in the Black Warrior Basin of Alabama. Alabama Paleontol Soc Monogr 1:59–73

    Google Scholar 

  • Marty D, Strasser A, Meyer CA (2009) Formation and taphonomy of human footprints in microbial mats of present-day tidal-flat environments: Implications for the study of fossil footprints. Ichnos 16:127–142

    Article  Google Scholar 

  • Masao FT, Ichumbaki EB, Cherin M, Barili A, Boschian G, Iurino, DA, Menconero S, Moggi-Cecchi J, Manzi G (2016) New footprints from Laetoli (Tanzania) provide evidence for marked body size variation in early hominins. eLife 5. https://doi.org/10.7554/elife.19568

  • McLaren D, Fedje D, Dyck A, Mackie Q, Gauvreau A, Cohen J (2018) Terminal Pleistocene epoch human footprints from the Pacific coast of Canada. PLOS ONE 0193522. https://doi.org/10.1371/journal.pone.0193522

  • Meldrum DJ, Lockley MG, Lucas SG, Musiba C (2011) Ichnotaxonomy of the Laetoli trackways: the earliest hominin footprints. J Afr Earth Sci 60:1–12

    Article  Google Scholar 

  • Moreira DO, Alibhai SK, Jewell ZC, da Cunha CJ, Seibert JB, Gatti, A (2018) Determining the numbers of a landscape architect species (Tapirus terrestris), using footprints. PeerJ 6:e4591

    Google Scholar 

  • Ostrom JH (1972) Were some dinosaurs gregarious? Palaeogeogr Palaeoclimatol Palaeoecol 11:287–301

    Article  Google Scholar 

  • Pastoors A, Lenssen-Erz T, Breuckmann B, Ciqae T, Kxunta U, Rieke-Zapp D, Thao T (2016) Experience based reading of Pleistocene human footprints in Pech-Merle. Intern, Quat. https://doi.org/10.1016/j.quaint.2016.02.056

    Book  Google Scholar 

  • Pastoors A, Lenssen-Erz T, Ciqae T, Kxunta U, Thao T, Bégouën R, Biesele M, Clottes J (2015) Tracking in caves: experience based reading of Pleistocene human footprints in French caves. Cambridge Archaeol J 25:551–564

    Article  Google Scholar 

  • Popper K (1963) Conjectures and refutations: the growth of scientific knowledge. Routledge, Abingdon

    Google Scholar 

  • Prins HHT, Reitsma JM (1989) Mammalian biomass in an African equatorial rain forest. J Animal Ecol 58:851–861

    Article  Google Scholar 

  • Roach NT, Hatala KG, Ostrofsky KR, Villmoare B, Reeves JS, Du A, Braun BR, Harris JWK, Behrensmeyer AK, Richmond BG (2016) Pleistocene footprints show intensive use of lake margin habitats by Homo erectus groups. Sci Rep 6:26374. https://doi.org/10.1038/srep26374

    Article  Google Scholar 

  • Ribaux O, Baylon A, Lock E, Delémont O, Roux C, Zingg C, Margot P (2010a) Intelligence-led crime scene processing. Part I: Forensic intelligence. Foren Sci Int 195:10–16

    Google Scholar 

  • Ribaux O, Baylon A, Lock E, Delémont O, Roux C, Zingg C, Margot P (2010b) Intelligence-led crime scene processing. Part II: Intelligence and crime scene examination. Foren Sci Int 199:63–71

    Google Scholar 

  • Ribaux O, Wright BT (2014) Expanding forensic science through forensic intelligence Sci Justice 54:494–501

    Google Scholar 

  • Scott JJ, Renaut RW, Owen RB (2008) Preservation and paleoenvironmental significance of a footprinted surface on the Sandai Plain, Lake Bogoria, Kenya Rift Valley. Ichnos 15:208–231

    Article  Google Scholar 

  • Scott JJ, Renaut RW, Owen RB (2010) Taphonomic controls on animal tracks at saline, Alkaline Lake Bogoria, Kenya Rift Valley: impact of salt efflorescence and clay mineralogy. J Sed Res 80:639–665

    Article  Google Scholar 

  • Silveira L, Jacomo AT, Diniz-Filho JAF (2003) Camera trap, line transect census and track surveys: a comparative evaluation. Biol Conserv 114:351–355

    Article  Google Scholar 

  • Stuart C, Stuart T (2000) A field guide to the tracks and signs of southern and East African wildlife. Struik

    Google Scholar 

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Correspondence to Matthew R. Bennett .

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Bennett, M.R., Budka, M. (2019). Tracks and Trackways. In: Digital Technology for Forensic Footwear Analysis and Vertebrate Ichnology. Springer, Cham. https://doi.org/10.1007/978-3-319-93689-5_1

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