Abu Zeid, N., Bignardi, S., Russo, P., Peresani, M., Deep in a Paleolithic archive: Integrated geophysical investigations and laser-scanner reconstruction at Fumane Cave, Italy. J. Archaeol. Sci. Rep., 27, 2019, 10.1016/j.jasrep.2019.101976.
Akerman, K., Fullagar, R., van Gijn, A., Weapens and wunan: production function and exchange of kimberley points. Aust. Aborig. Stud. 1 (2002), 13–42.
Albert, R.M., Lavi, O., Estroff, L., Weiner, S., Tsatskin, A., Ronen, A., Lev-Yadun, S., Mode of occupation of tabun cave, Mt carmel, Israel during the mousterian period: a study of the sediments and phytoliths. J. Archaeol. Sci. 26 (1999), 1249–1260, 10.1006/jasc.1999.0355.
Aleo, A., Duches, R., Falcucci, A., Rots, V., Peresani, M., Scraping hide in the early upper paleolithic: insights into the life and function of the protoaurignacian endscrapers at fumane cave. Archaeol. Anthropol. Sci., 13, 2021, 137, 10.1007/s12520-021-01367-4.
Ambrose, S.H., Chronology of the later stone age and food production in east africa. J. Archaeol. Sci. 25 (1998), 377–392, 10.1006/jasc.1997.0277.
Aranguren, B., Revedin, A., Amico, N., Cavulli, F., Giachi, G., Grimaldi, S., Macchioni, N., Santaniello, F., Wooden tools and fire technology in the early Neanderthal site of Poggetti Vecchi (Italy). Proc. Nat. Acad. Sci. 201716068, 2018, 10.1073/pnas.1716068115.
Barham, L., From Hand to Handle: the First Industrial Revolution. 2013, Oxford University Press, Oxford.
Barton, H., Starch residues on museum artefacts: implications for determining tool use. J. Archaeol. Sci. 34 (2007), 1752–1762, 10.1016/j.jas.2007.01.007.
Barton, H., Torrence, R., Fullagar, R., Clues to stone tool function re-examined: comparing starch grain frequencies on used and unused obsidian artefacts. J. Archaeol. Sci. 25 (1998), 1231–1238.
Basile, D., Castelletti, L., Peresani, M., Results from anthracological investigation of the Mousterian layer A9 of Grotta di Fumane. Italy. Quartär 64 (2014), 103–111, 10.7485/QU61_05.
Bello, S.M., Delbarre, G., de Groote, I., Parfitt, S.A., A newly discovered antler flint-knapping hammer and the question of their rarity in the Palaeolithic archaeological record: reality or bias?. Quat. Int. 403 (2016), 107–117, 10.1016/j.quaint.2015.11.094.
Berna, F., Matthews, A., Weiner, S., Solubilities of bone mineral from archaeological sites: the recrystallization window. J. Archaeol. Sci. 31 (2004), 867–882, 10.1016/j.jas.2003.12.003.
Bertola, S., Broglio, A., Gurioli, F., de Vecchi, G., Facciolo, A., Fiore, I., Tagliacozzo, A., Pallecchi, P., Le territoire des chasseurs aurignaciens dans les Préalpes de la Vénétie: l'exemple de la Grotte de Fumane. Le concept de territoires dans le Paléolithique supérieur européen, Actes du XVe Congrès Mondial de l'UISPP 1938:British Archaeological Reports, International Series (2009), 167–181.
Boot, P.G., Analysis of resins and other plant residues on stone artefacts from Graman, New South Wales. Fankhauser, B., Bird, J.R., (eds.) Archaeometry: Current Australasian Research. Occasional Papers in Prehistory, 1993, 3–12 Canberra.
Bordes, L., Fullagar, R., Prinsloo, L.C., Hayes, E., Kozlikin, M.B., Shunkov, M.v., Derevianko, A.P., Roberts, R.G., Raman spectroscopy of lipid micro-residues on Middle Palaeolithic stone tools from Denisova Cave, Siberia. J. Archaeol. Sci. 95 (2018), 52–63, 10.1016/J.JAS.2018.05.001.
Bordes, L., Hayes, E., Fullagar, R., Deméré, T., Raman and optical microscopy of bone micro-residues on cobbles from the Cerutti mastodon site. J. Archaeol. Sci. Rep., 34, 2020, 10.1016/j.jasrep.2020.102656.
Bordes, L., Prinsloo, L.C., Fullagar, R., Sutikna, T., Hayes, E., Jatmiko Wahyu Saptomo, E., Tocheri, M.W., Roberts, R.G., Viability of Raman microscopy to identify micro-residues related to tool-use and modern contaminants on prehistoric stone artefacts. J. Raman Spectrosc. 48 (2017), 1212–1221, 10.1002/jrs.5202.
Braadbaart, F., Poole, I., Morphological, chemical and physical changes during charcoalification of wood and its relevance to archaeological contexts. J. Archaeol. Sci. 35 (2008), 2434–2445, 10.1016/j.jas.2008.03.016.
Briuer, F., New clues to stone tool function: plant and animal residues. Am. Antiq. 41 (1976), 478–484.
Brochier, J.-É., Thinon, M., Calcite crystals, starch grains aggregates or POCC? Comment on “calcite crystals inside archaeologial plant tissues. J. Archaeol. Sci. 30 (2003), 1211–1214, 10.1016/S0305-4403(02)00031-6.
Broglio, A., Bertola, S., de Stefani, M., Marini, D., Lemorini, C., Rossetti, P., La production lamellaire et les armatures lamellaires de l'Aurignacien ancien de la Grotte de Fumane (Monts Lessini, Vénétie). Productions lamellaires attribuées à l'Aurignacien: chaînes opératoires et perspectives technoculturelles. 2005, XIVe Congrès de l'UISPP Liège 2-8 septembre 2001 415–436.
Broglio, A., de Stefani, M., Gurioli, F., Pallecchi, P., Giachi, G., Higham, T., Brock, F., L'art aurignacien dans la décoration de la Grotte de Fumane. Anthropologie 113 (2009), 753–761, 10.1016/j.anthro.2009.09.016.
Broglio, A., de Stefani, M., Gurioli, F., Peresani, M., Les peintures aurignaciennes de la Grotte de Fumane (Monts Lessini, Préalpes de la Vénétie). 2006, INORA - International Newsletter of Rock Art.
Broglio, A., Giachi, G., Gurioli, F., Pallecchi, P., Les peintures aurignaciennes de la Grotte de Fumane (Italie). Les Chemins de l'art Aurignacien En Europe, 2007, Aurignac, 157–170 16-18 Septembre 2005.
Byrne, L., Ollé, A., Vergès, J.M., Under the hammer: residues resulting from production and microwear on experimental stone tools. Archaeometry 48 (2006), 549–564, 10.1111/j.1475-4754.2006.00272.x.
Canti, M.G., Aspects of the chemical and microscopic characteristics of plant ashes found in archaeological soils. Catena (Amst) 54 (2003), 339–361, 10.1016/S0341-8162(03)00127-9.
Cavallo, G., Fontana, F., Gonzato, F., Peresani, M., Riccardi, M.P., Zorzin, R., Textural, microstructural, and compositional characteristics of Fe-based geomaterials and Upper Paleolithic ocher in the Lessini Mountains, Northeast Italy: implications for provenance studies. Geoarchaeology 32 (2017), 437–455, 10.1002/GEA.21617.
Chadefaux, C., Vignaud, C., Menu, M., Reiche, I., Multianalytical study of palaeolithic reindeer antler. Discovery of antler traces in Lascaux pigments by TEM. Archaeometry 50 (2008), 516–534, 10.1111/j.1475-4754.2008.00373.x.
Charrié-Duhaut, A., Porraz, G., Cartwright, C.R., Igreja, M., Connan, J., Poggenpoel, C., Texier, P.-J., First molecular identification of a hafting adhesive in the late howiesons poort at diepkloof rock shelter (western cape, South Africa). J. Archaeol. Sci. 40 (2013), 3506–3518, 10.1016/j.jas.2012.12.026.
Clarkson, C., Smith, M., Marwick, B., Fullagar, R., Wallis, L.A., Faulkner, P., Manne, T., Hayes, E., Roberts, R.G., Jacobs, Z., Carah, X., Lowe, K.M., Matthews, J., Florin, S.A., The archaeology, chronology and stratigraphy of Madjedbebe (Malakunanja II): a site in northern Australia with early occupation. J. Hum. Evol., 83, 2015, 10.1016/j.jhevol.2015.03.014.
Cnuts, D., Appreciating the little things. Possibilities and challenges of stone tool residue analysis in reconstructing Late Pleistocene technologies. Unpublished PhD thesis. Université of Liège, 2021, 1–326.
Cnuts, D., Rots, V., Extracting residues from stone tools for optical analysis: towards an experiment-based protocol. Archaeol. Anthropol. Sci. 10 (2018), 1717–1736, 10.1007/s12520-017-0484-7.
Cnuts, D., Rots, V., Taphonomie et analyse des résidus sur les pièces lithiques. Brugal, J.-P., (eds.) TaphonomieS. Éditions des archives contemporaines, 2017, 187–194 Paris.
Cnuts, D., Tomasso, S., Rots, V., The role of fire in the life of an adhesive. J. Archaeol. Method Theor 25 (2018), 839–862, 10.1007/s10816-017-9361-z.
Croft, S., Chatzipanagis, K., Kröger, R., Milner, N., Misleading residues on lithics from star carr: identification with Raman microspectroscopy. J. Archaeol. Sci. Rep. 19 (2018), 430–438, 10.1016/j.jasrep.2018.03.018.
Croft, S., Monnier, G., Radini, A., Little, A., Milner, N., Lithic Residue Survival and Characterisation at Star Carr: A Burial Experiment. 2016, 10.11141/ia.42.5 Internet Archaeology.
de Jong, W.F., La substance minérale dans les Os. Recl. Trav. Chim. Pays-Bas 45 (1926), 445–448, 10.1002/RECL.19260450613.
Delpiano, D., Gennai, J., Peresani, M., Techno-Functional Implication on the Production of Discoid and Levallois Backed Implements. 2021, Lithic Technology, 10.1080/01977261.2021.1886487.
Delpiano, D., Peresani, M., Exploring Neanderthal skills and lithic economy. The implication of a refitted Discoid reduction sequence reconstructed using 3D virtual analysis. Comptes Rendus Palevol 16 (2017), 865–877, 10.1016/j.crpv.2017.06.008.
Denham, T., Fullagar, R., Head, L., Plant exploitation on Sahul: from colonisation to the emergence of regional specialisation during the Holocene. Quat. Int. 202 (2009), 29–40, 10.1016/j.quaint.2008.06.018.
d'Errico, F., Backwell, L., Villa, P., Degano, I., Lucejko, J.J., Bamford, M.K., Higham, T.F.G., Colombini, M.P., Beaumont, P.B., Early evidence of San material culture represented by organic artifacts from Border Cave, South Africa. Proc. Natl. Acad. Sci. USA 109 (2012), 13214–13219, 10.1073/pnas.1204213109.
Dinnis, R., Pawlik, A., Gaillard, C., Bladelet cores as weapon tips? Hafting residue identification and micro-wear analysis of three carinated burins from the late Aurignacian of Les Vachons, France. J. Archaeol. Sci. 36 (2009), 1922–1934, 10.1016/j.jas.2009.04.020.
Douka, K., Higham, T., Wood, R., Boscato, P., Gambassini, P., Karkanas, P., Peresani, M., Ronchitelli, A.M., On the chronology of the Uluzzian. J. Hum. Evol. 68 (2014), 1–13, 10.1016/j.jhevol.2013.12.007.
Driscoll, K., García-Rojas, M., Their lips are sealed: identifying hard stone, soft stone, and antler hammer direct percussion in Palaeolithic prismatic blade production. J. Archaeol. Sci. 47 (2014), 134–141, 10.1016/J.JAS.2014.04.008.
El Zaatari, S., Grine, F.E., Ungar, P.S., Hublin, J.J., Neandertal versus modern human dietary responses to climatic fluctuations. PLoS One, 11, 2016, e0153277, 10.1371/journal.pone.0153277.
Ellingham, S.T.D., Thompson, T.J.U., Islam, M., Scanning electron microscopy–energy-dispersive X-ray (SEM/EDX): a rapid diagnostic tool to aid the identification of burnt bone and contested cremains. J. Forensic Sci. 63 (2018), 504–510, 10.1111/1556-4029.13541.
Falcucci, A., Conard, N., Peresani, M., Breaking through the Aurignacian frame: a re-evaluation on the significance of regional variants during the Early Upper Paleolithic as seen from a key record in southern Europe. J. Anthropol. Sci. 98 (2020), 99–140, 10.4436/jass.98021.
Falcucci, A., Conard, N.J., Peresani, M., A critical assessment of the Protoaurignacian lithic technology at Fumane Cave and its implications for the definition of the earliest Aurignacian. PLoS One 12 (2017), 1–43, 10.1371/journal.pone.0189241.
Falcucci, A., Peresani, M., A pre-Heinrich Event 3 assemblage at Fumane Cave and its contribution for understanding the beginning of the Gravettian in Italy: ein vor das Heinrich 3. Qartär 66 (2019), 135–154, 10.7485/QU66_6.
Falcucci, A., Peresani, M., Protoaurignacian core reduction procedures: blade and bladelet technologies at fumane cave. Lithic Technol. 43 (2018), 125–140, 10.1080/01977261.2018.1439681.
Fiore, I., Gala, M., Romandini, M., Cocca, E., Tagliacozzo, A., Peresani, M., From feathers to food: reconstructing the complete exploitation of avifaunal resources by Neanderthals at Fumane cave, unit A9. Quat. Int. 421 (2016), 134–153, 10.1016/j.quaint.2015.11.142.
Fiorenza, L., Benazzi, S., Henry, A.G., Salazar-García, D.C., Blasco, R., Picin, A., Wroe, S., Kullmer, O., To meat or not to meat? New perspectives on Neanderthal ecology. Am. J. Phys. Anthropol. 156 (2015), 43–71, 10.1002/AJPA.22659.
Forbes, S.L., Stuart, B.H., Dent, B.B., The identification of adipocere in grave soils. Forensic Sci. Int., 2002, 10.1016/S0379-0738(02)00127-5.
Frahm, E., Adler, D.S., Gasparyan, B., Luo, B., Mallol, C., Pajović, G., Tostevin, G.B., Yeritsyan, B., Monnier, G., Every contact leaves a trace: documenting contamination in lithic residue studies at the Middle Palaeolithic sites of Lusakert Cave 1 (Armenia) and Crvena Stijena (Montenegro). PLoS One, 17, 2022, e0266362, 10.1371/journal.pone.0266362.
Fullagar, R., Use-wear and Residues on Stone Tools. Functional Analysis and its Application to Two Southeastern Australian Archaeological Assemblages (Unpublished PhD Thesis). Australian Archaeology., 1986, La Trobe University, Melbourne, 10.1080/03122417.1987.12093105.
Gallardo-Escárate, C., Álvarez-Borrego, J., von Brand, E., Dupré, E., del Río-Portilla, M.Á., Relationship between DAPI-fluorescence fading and nuclear DNA content: an alternative method to DNA quantification?. Biol. Res. 40 (2007), 29–40, 10.4067/S0716-97602007000100004.
Gibson, N.E., Wadley, L., Williamson, B.S., Microscopic residues as evidence of hafting on backed tools from the 60 000 to 68 000 Howeisons Poort layers of Rose Cottage Cave, South Africa. South. Afr. Humanit. 16 (2004), 1–11.
Glimcher, M.J., Molecular biology of mineralized tissues with particular reference to bone. Rev. Mod. Phys., 31, 1959, 359, 10.1103/RevModPhys.31.359.
Goldberg, P., Mandel, R.D., Caves and rockshelters. Encyclopedia of Archaeology, 2010, 966–974, 10.1016/B978-012373962-9.00082-0.
Goldberg, P., Sherwood, S.C., Deciphering human prehistory through the geoarcheological study of cave sediments. Evol. Anthropol. 15 (2006), 20–36, 10.1002/evan.20094.
Hardy, B., Bolus, M., Conard, N.J., Hammer or crescent wrench? Stone-tool form and function in the Aurignacian of southwest Germany. J. Hum. Evol. 54 (2008), 648–662, 10.1016/j.jhevol.2007.10.003.
Hardy, B., Moncel, M.-H., Neanderthal use of fish, mammals, birds, starchy plants and wood 125-250,000 years ago. PLoS One, 6, 2011, e23768, 10.1371/journal.pone.0023768.
Hardy, B., Moncel, M.-H., Daujeard, C., Fernandes, P., Béarez, P., Desclaux, E., Chacon Navarro, M.G., Puaud, S., Gallotti, R., Impossible Neanderthals? Making string, throwing projectiles and catching small game during marine isotope stage 4 (abri du Maras, France). Quat. Sci. Rev. 82 (2013), 23–40, 10.1016/j.quascirev.2013.09.028.
Hardy, B., Moncel, M.H., Kerfant, C., Lebon, M., Bellot-Gurlet, L., Mélard, N., Direct evidence of Neanderthal fibre technology and its cognitive and behavioral implications. Sci. Rep., 10, 2020, 4889, 10.1038/s41598-020-61839-w.
Haslam, M., Mountains and molehills: sample size in archaeological microscopic stone-tool residue analysis. Terra Australis, 2011, 47–79, 10.1021/jf202975x.
Haslam, M., Potential misidentification of in situ archaeological tool-residues: starch and conidia. J. Archaeol. Sci. 33 (2006), 114–121, 10.1016/j.jas.2005.07.004.
Hauck, T.C., Connan, J., Charrié-Duhaut, A., le Tensorer, J.-M., Sakhel, H. al, Molecular evidence of bitumen in the Mousterian lithic assemblage of Hummal (Central Syria). J. Archaeol. Sci. 40 (2013), 3252–3262, 10.1016/j.jas.2013.03.022.
Hayes, E., Cnuts, D., Rots, V., Integrating SEM-EDS in a sequential residue analysis protocol: benefits and challenges. J. Archaeol. Sci. Rep. 23 (2019), 116–126, 10.1016/j.jasrep.2018.10.029.
Hayes, E., Rots, V., Documenting scarce and fragmented residues on stone tools: an experimental approach using optical microscopy and SEM-EDS. Archaeol. Anthropol. Sci. 11 (2019), 3065–3099, 10.1007/s12520-018-0736-1.
Hedges, R.E.M., Millard, A.R., Bones and groundwater: towards the modelling of diagenetic processes. J. Archaeol. Sci. 22 (1995), 155–164, 10.1006/jasc.1995.0017.
Henry, A.G., Handbook for the Analysis of Micro-particles in Archaeological Samples., Interdisciplinary Contributions to Archaeology. 2020, Springer International Publishing, Cham, 10.1007/978-3-030-42622-4.
Henry, A.G., Brooks, A.S., Piperno, D.R., Plant foods and the dietary ecology of Neanderthals and early modern humans. J. Hum. Evol. 69 (2014), 44–54, 10.1016/j.jhevol.2013.12.014.
Henry, A.G., Brooks, A.S., Piperno, D.R., Microfossils in calculus demonstrate consumption of plants and cooked foods in Neanderthal diets (Shanidar III, Iraq; Spy I and II, Belgium). Proc. Natl. Acad. Sci. U. S. A. 108 (2011), 486–491, 10.1073/pnas.1016868108.
Higham, T., Brock, F., Peresani, M., Broglio, A., Wood, R., Douka, K., Problems with radiocarbon dating the middle to upper palaeolithic transition in Italy. Quat. Sci. Rev. 28 (2009), 1257–1267, 10.1016/j.quascirev.2008.12.018.
Higham, T., Douka, K., Wood, R., Ramsey, C.B., Brock, F., Basell, L., Camps, M., Arrizabalaga, A., Baena, J., Barroso-Ruíz, C., Bergman, C., Boitard, C., Boscato, P., Caparrós, M., Conard, N.J., Draily, C., Froment, A., Galván, B., Gambassini, P., Garcia-Moreno, A., Grimaldi, S., Haesaerts, P., Holt, B., Iriarte-Chiapusso, M.-J., Jelinek, A., Jordá Pardo, J.F., Maíllo-Fernández, J.-M., Marom, A., Maroto, J., Menéndez, M., Metz, L., Morin, E., Moroni, A., Negrino, F., Panagopoulou, E., Peresani, M., Pirson, S., de la Rasilla, M., Riel-Salvatore, J., Ronchitelli, A., Santamaria, D., Semal, P., Slimak, L., Soler, J., Soler, N., Villaluenga, A., Pinhasi, R., Jacobi, R., The timing and spatiotemporal patterning of Neanderthal disappearance. Nature 512 (2014), 306–309, 10.1038/nature13621.
Hovers, E., Belfer-Cohen, A., Are lithics and fauna a match made in (prehistoric) heaven?. J. Paleolithic Archaeol. 3 (2020), 108–125, 10.1007/s41982-018-0007-9.
Jéquier, C., Peresani, M., Livraghi, A., Romandini, M., Same but different: 20,000 years of bone retouchers from Northern Italy. A diachronologic approach from Neanderthals to anatomically modern humans. Hutson, J.M., García-Moreno, A., Noack, E., Turner, E., Villaluenga, A., Gaudzinski-Windheuser, S., (eds.) The Origins of Bone Tool Technologies, 2018, Verlag des Römisch-Germanischen Zentralmuseums, Heidelberg, 269–285, 10.11588/propylaeum.408.590.
Jéquier, C.A., Romandini, M., Peresani, M., Les retouchoirs en matières dures animales: une comparaison entre Moustérien final et Uluzzien. C R Palevol. 11 (2012), 283–292, 10.1016/j.crpv.2011.12.001.
Karkanas, P., Bar-Yosef, O., Goldberg, P., Weiner, S., Diagenesis in prehistoric caves: the use of minerals that form in situ to assess the completeness of the archaeological record. J. Archaeol. Sci. 27 (2000), 915–929, 10.1006/jasc.1999.0506.
Kealhofer, L., Torrence, R., Fullagar, R., Integrating phytoliths within use-wear/residue studies of stone tools. J. Archaeol. Sci. 26 (1999), 527–546, 10.1006/jasc.1998.0332.
Koller, J., Baumer, U., Mania, D., High-tech in the middle palaeolithic: neandertal-manufactured pitch identified. Eur. J. Archaeol. 4 (2001), 385–397.
Kuhn, S.L., The Evolution of Paleolithic Technologies, the Evolution of Paleolithic Technologies. 2020, Taylor and Francis, 10.4324/9781315642024.
Langejans, G., Discerning use-related micro-residues on tools: testing the multi-stranded approach for archaeological studies. J. Archaeol. Sci. 38 (2011), 985–1000, 10.1016/j.jas.2010.11.013.
Langejans, G., Remains of the day-preservation of organic micro-residues on stone tools. J. Archaeol. Sci. 37 (2010), 971–985, 10.1016/j.jas.2009.11.030.
Langejans, G., Testing Residues: an Experimental Approach (Unpublished PhD Thesis)., 2009, University of Witwatersrand.
Lemorini, C., Cesaro, S.N., Nucara, A., Maselli, P., Skakun, N., Gopher, A., Shahal, A., The function of prehistoric lithic tools: a combined study of use-wear analysis and FTIR microspectroscopy. Results and open problems. An Integration of the Use-Wear and Residue Analysis for the Identification of the Function of Archaeological Stone Tools, Proceedings of the International Workshop, 2014, BAR, Rome, 63–76 March 5th–7th, 2012 Oxford.
Lemorini, C., Cristiani, E., Cesaro, S., Venditti, F., Zupancich, A., Gopher, A., The use of ash at Late Lower Paleolithic Qesem Cave, Israel—an integrated study of use-wear and residue analysis. PLoS One 15 (2020), 1–30, 10.1371/journal.pone.0237502.
Lombard, M., Finding resolution for the Howiesons Poort through the microscope: micro-residue analysis of segments from Sibudu Cave, South Africa. J. Archaeol. Sci. 35 (2008), 26–41, 10.1016/j.jas.2007.02.021.
Lombard, M., The gripping nature of ochre: the association of ochre with Howiesons Poort adhesives and Later Stone Age mastics from South Africa. J. Hum. Evol. 53 (2007), 406–419, 10.1016/j.jhevol.2007.05.004.
Lombard, M., Direct evidence for the use of ochre in the hafting technology of Middle Stone Age tools from Sibudu Cave. South. Afr. Humanit. 18 (2006), 57–67.
Lombard, M., Evidence of hunting and hafting during the middle stone age at sibidu cave, KwaZulu-natal, South Africa: a multianalytical approach. J. Hum. Evol. 48 (2005), 279–300, 10.1016/j.jhevol.2004.11.006.
Lombard, M., A method for identifying Stone Age hunting tools. S. Afr. Archaeol. Bull. 60 (2005), 115–120, 10.2307/3889126.
Lemorini, C., Peresani, M., Rossetti, P., Malerba, G., Giacobini, G., Techno-morphological and use-wear functional analysis: an integrated approach to the study of a discoid industry. BAR Int. Ser. 1120 (2003), 257–275.
Lombard, M., Distribution patterns of organic residues on Middle stone age points from Sibudu Cave, Kwazulu-Natal, South Africa. S. Afr. Archaeol. Bull. 59 (2004), 37–44.
Lombard, M., Wadley, L., The morphological identification of micro-residues on stone tools using light microscopy: progress and difficulties based on blind tests. J. Archaeol. Sci. 34 (2007), 155–165, 10.1016/j.jas.2006.04.008.
López-García, J.M., dalla Valle, C., Cremaschi, M., Peresani, M., Reconstruction of the Neanderthal and Modern Human landscape and climate from the Fumane cave sequence (Verona, Italy) using small-mammal assemblages. Quat. Sci. Rev. 128 (2015), 1–13, 10.1016/j.quascirev.2015.09.013.
Luong, S., Hayes, E., Flannery, E., Sutikna, T., Tocheri, M.W., Saptomo, E.W., Jatmiko, J., Roberts, R.G., Development and application of a comprehensive analytical workflow for the quantification of non-volatile low molecular weight lipids on archaeological stone tools. Anal. Methods, 2017, 10.1039/C7AY01304C.
Luong, S., Tocheri, M.W., Hayes, E., Sutikna, T., Fullagar, R., Saptomo, E.W., Jatmiko Roberts, R.G., Combined organic biomarker and use-wear analyses of stone artefacts from Liang Bua, Flores, Indonesia. Sci. Rep. 9 (2019), 1–17, 10.1038/s41598-019-53782-2.
Madella, M., Jones, M.K., Goldberg, P., Goren, Y., Hovers, E., The exploitation of plant resources by Neanderthals in amud cave (Israel): the evidence from phytolith studies. J. Archaeol. Sci. 29 (2002), 703–719, 10.1006/jasc.2001.0743.
Marcazzan, D., Ligouis, B., Duches, R., Conard, N.J., Middle and Upper Paleolithic occupations of Fumane Cave (Italy): a geoarchaeological investigation of the anthropogenic features. J. Anthropol. Sci. 100 (2022), 1–26, 10.4436/JASS.10002.
Martellotta, E.F., Delpiano, D., Govoni, M., Nannini, N., Duches, R., Peresani, M., The use of bone retouchers in a Mousterian context of Discoid lithic technology. Archaeol. Anthropol. Sci., 12, 2020, 228, 10.1007/s12520-020-01155-6.
Martín-Viveros, J.I., Ollé, A., Use-wear and residue mapping on experimental chert tools. A multi-scalar approach combining digital 3D, optical, and scanning electron microscopy. J. Archaeol. Sci. Rep., 30, 2020, 10.1016/j.jasrep.2020.102236.
Massilani, D., Morley, M.W., Mentzer, S.M., Aldeias, V., Vernot, B., Miller, C., Stahlschmidt, M., Kozlikin, M.B., Shunkov, M.V., Derevianko, A.P., Conard, N.J., Wurz, S., Henshilwood, C.S., Vasquez, J., Essel, E., Nagel, S., Richter, J., Nickel, B., Roberts, R.G., Pääbo, S., Slon, V., Goldberg, P., Meyer, M., Microstratigraphic preservation of ancient faunal and hominin DNA in Pleistocene cave sediments. Proc. Natl. Acad. Sci. USA, 119, 2022, e2113666118, 10.1073/pnas.2113666118.
Mentzer, S.M., Microarchaeological approaches to the identification and interpretation of combustion features in prehistoric archaeological sites. J. Archaeol. Method Theor. 21 (2014), 616–668, 10.1007/s10816-012-9163-2.
Michel, M., Cnuts, D., Rots, V., Freezing in-sight: the effect of frost cycles on use-wear and residues on flint tools. Archaeol. Anthropol. Sci. 11 (2019), 5423–5443, 10.1007/s12520-019-00881-w.
Michel, M., Rots, V., Into the light: the effect of UV light on flint tool surfaces, residues and adhesives. J. Archaeol. Sci. Rep., 43, 2022, 103479, 10.1016/J.JASREP.2022.103479.
Monnier, G., Frahm, E., Luo, B., Missal, K., Developing FTIR microspectroscopy for analysis of plant residues on stone tools. J. Archaeol. Sci. 78 (2017), 158–178, 10.1016/j.jas.2016.12.004.
Monnier, G., Frahm, E., Luo, B., Missal, K., Developing FTIR microspectroscopy for the analysis of Animal-Tissue Residues on stone tools. J. Archaeol. Method Theor 78 (2017), 158–178, 10.1016/j.jas.2016.12.004.
Monnier, G., Hauck, T.C., Feinberg, J.M., Luo, B., le Tensorer, J.-M., Sakhel, H. al, A multi-analytical methodology of lithic residue analysis applied to Paleolithic tools from Hummal, Syria. J. Archaeol. Sci. 40 (2013), 3722–3739, 10.1016/j.jas.2013.03.018.
Monnier, G., Ladwig, J., Porter, S., Swept under the rug: the problem of unacknowledged ambiguity in lithic residue identification. J. Archaeol. Sci. 39 (2012), 3284–3300, 10.1016/j.jas.2012.05.010.
Niekus, M.J.L.T.L.T. Kozowyk, P.R.B.B., Langejans, G., Ngan-Tillard, D., Van Keulen, H., Van Der Plicht, J., Cohen, K.M., Van Wingerden, W., Van Os, B., Smit, B.I., Amkreutz, L.W.S.W., Johansen, L., Verbaas, A., Dusseldorp, G.L., Ngan, D., Middle Paleolithic Complex Technology and a Neandertal Tar-Backed Tool from the Dutch North Sea. 2019, Proc Natl Acad Sci U S A, 10.1073/pnas.1907828116.
Nunziante Cesaro, S., Lemorini, C., The function of prehistoric lithic tools: a combined study of use-wear analysis and FTIR microspectroscopy. Spectrochim. Acta Mol. Biomol. Spectrosc. 86 (2012), 299–304, 10.1016/j.saa.2011.10.040.
Pedergnana, A., All that glitters is not gold”: evaluating the nature of the relationship between archeological residues and stone tool function. J. Paleolithic Archaeol. 3 (2020), 225–254, 10.1007/s41982-019-00039-z.
Pedergnana, A., Asryan, L., Fernández-Marchena, J.L., Ollé, A., Modern contaminants affecting microscopic residue analysis on stone tools: a word of caution. Micron 86 (2016), 1–21, 10.1016/j.micron.2016.04.003.
Pedergnana, A., Ollé, A., Building an experimental comparative reference collection for lithic micro-residue analysis based on a multi-analytical approach. J. Archaeol. Method Theor 25 (2018), 117–154, 10.1007/s10816-017-9337-z.
Pelegrin, J., Les techniques de débitage laminaire au Tardiglaciaire: critères de diagnose et quelques réflexions. Mem. Musee PreHist. Ile-de-France, 2000, 73–86.
Pelegrin, J., Inizan, M.L., Soft hammerstone percussion use in bidirectional blade-tool production at Acila 36 and in bifacial knapping at Shagra (Qatar). Arabian Archaeol. Epigr. 24 (2013), 79–86, 10.1111/aae.12016.
Peresani, M., Fifty thousand years of flint knapping and tool shaping across the Mousterian and Uluzzian sequence of Fumane cave. Quat. Int. 247 (2012), 125–150, 10.1016/j.quaint.2011.02.006.
Peresani, M., Bertola, S., Caricola, I., Nunziante Cesaro, S., Duches, R., Ferretti, P., Margaritora, D., Marrocchino, E., Eftekhari, N., Vaccaro, C., Zupancich, A., Cristiani, E., A taste for the unusual. Green, flat pebbles used by late Neanderthals. J. Anthropol. Archaeol., 64, 2021, 101368, 10.1016/J.JAA.2021.101368.
Peresani, M., Chrzavzez, J., Danti, A., de March, M., Duches, R., Gurioli, F., Muratori, S., Romandini, M., Trombino, L., Tagliacozzo, A., Fire-places, frequentations and the environmental setting of the final Mousterian at Grotta di Fumane: a report from the 2006-2008 research. Quartar 58 (2011), 131–151.
Peresani, M., Cremaschi, M., Ferraro, F., Falguères, C., Bahain, J.J., Gruppioni, G., Sibilia, E., Quarta, G., Calcagnile, L., Dolo, J.M., Age of the final middle palaeolithic and uluzzian levels at fumane cave, northern Italy, using 14C, ESR, 234U/230Th and thermoluminescence methods. J. Archaeol. Sci. 35 (2008), 2986–2996, 10.1016/j.jas.2008.06.013.
Peresani, M., Cristiani, E., Romandini, M., The Uluzzian technology of Grotta di Fumane and its implication for reconstructing cultural dynamics in the Middle e Upper Palaeolithic transition of Western Eurasia. J. Hum. Evol. 91 (2016), 36–56, 10.1016/j.jhevol.2015.10.012.
Peresani, M., Fiore, I., Gala, M., Romandini, M., Tagliacozzo, A., Late Neandertals and the intentional removal of feathers as evidenced from bird bone taphonomy at Fumane Cave 44 ky B.P., Italy. Proc. Natl. Acad. Sci. USA 108 (2011), 3888–3893, 10.1073/pnas.1016212108.
Peresani, M., Forte, M., Colonese, A.C., Romandini, M., Cilli, C., Giacobini, G., Marine and freshwater shell exploitation in the early upper paleolithic: Re-examination of the assemblages from fumane cave (NE Italy). PaleoAnthropology 4 (2019), 64–81, 10.4207/PA.2019.ART124.
Peresani, M., Vanhaeren, M., Quaggiotto, E., Queffelec, A., D'Errico, F., An ochered fossil marine shell from the mousterian of fumane cave, Italy. PLoS One, 8, 2013, e68572, 10.1371/journal.pone.0068572.
Perrault, K., Dubois, L., Cnuts, D., Rots, V., Focant, J.-F., Stefanuto, P.-H., Characterization of hafting adhesives using comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry. Sep Sci Plus 1 (2018), 726–737, 10.1002/sscp.201800111.
Pobequin, T., Les Oxalates de Calcium Chez Quelques Angiospermes. Annales des Sciences Naturelles Botanique et Biologie Vegetale, 1943, Univ. de Paris.
Rey, C., Combes, C., Drouet, C., Glimcher, M.J., Bone mineral: update on chemical composition and structure. Osteoporosis International, 2009, Springer, London, 1013–1021, 10.1007/s00198-009-0860-y.
Rifkin, R.F., Assessing the efficacy of red ochre as a prehistoric hide tanning ingredient. J. Afr. Archaeol. 9 (2011), 131–158, 10.3213/2191-5784-10199.
Robertson, G., Attenbrow, V., Hiscock, P., Multiple uses for Australian backed artefacts. Antiquity 83 (2009), 296–308.
Romandini, M., Cristiani, E., Peresani, M., A retouched bone shaft from the Late Mousterian at Fumane cave (Italy). Technological, experimental and micro-wear analysis. C R Palevol. 14 (2015), 63–72, 10.1016/j.crpv.2014.08.001.
Romandini, M., Fiore, I., Gala, M., Cestari, M., Guida, G., Tagliacozzo, A., Peresani, M., Neanderthal scraping and manual handling of raptors wing bones: evidence from Fumane Cave. Experimental activities and comparison. Quat. Int. 421 (2016), 154–172, 10.1016/j.quaint.2015.12.078.
Rots, V., TRAIL: an experimental trace and residue reference library for the functional analysis of stone tools in liège. OSF Preprints April 26 https://doi.org/10.31219/osf.io/jsak6, 2021.
Rots, V., Hardy, B., Serangeli, J., Conard, N., Residue and microwear analyses of the stone artifacts from Schöningen. J. Hum. Evol. 89 (2015), 298–308, 10.1016/j.jhevol.2015.07.005.
Rots, V., Hayes, E., Cnuts, D., Lepers, C., Fullagar, R., Making sense of residues on flaked stone artefacts: learning from blind tests. PLoS One, 11, 2016, e0150437, 10.1371/journal.pone.0150437.
Rots, V., Lentfer, C., Schmid, V.C., Porraz, G., Conard, N.J., Pressure flaking to serrate bifacial points for the hunt during the MIS5 at Sibudu Cave (South Africa). PLoS One, 12, 2017, e0175151, 10.1371/journal.pone.0175151.
Rots, V., van Peer, P., Vermeersch, P.M., Aspects of tool production, use, and hafting in Palaeolithic assemblages from Northeast Africa. J. Hum. Evol. 60 (2011), 637–664, 10.1016/j.jhevol.2011.01.001.
Rots, V., Williamson, B.S., Microwear and residue analyses in perspective: the contribution of ethnoarchaeological evidence. J. Archaeol. Sci. 31 (2004), 1287–1299, 10.1016/j.jas.2004.02.009.
Schiegl, S., Goldberg, P., Bar-Yosef, O., Weiner, S., Ash deposits in Hayonim and Kebara caves, Israel: macroscopic, microscopic and mineralogical observations, and their archaeological implications. J. Archaeol. Sci. 23 (1996), 763–781, 10.1006/jasc.1996.0071.
Schiegl, S., Lev-Yadun, S., Bar-Yosef, O., El Goresy, A., Weiner, S., Siliceous aggregates from prehistoric wood ash: a major component of sediments in Kebara and Hayonim caves (Israel). Isr. J. Earth Sci. 43 (1994), 267–278.
Schiffer, M., Archaeological context and systemic context. Am. Antiq. 37 (1972), 156–165.
Schiffer, M., Formation processes of the archaeological record, 1987, University of New Mexico Press, Albuquerque.
Schmidt, P., Blessing, M., Rageot, M., Iovita, R., Pfleging, J., Nickel, K.G., Righetti, L., Tennie, C., Birch tar production does not prove Neanderthal behavioral complexity. Proc. Natl. Acad. Sci. U. S. A. 116 (2019), 17707–17711, 10.1073/pnas.1911137116.
Shafer, H., Holloway, R., Organic residue analysis in determining stone tool function. Hayden, B., (eds.) Lithic Use-Wear Analysis, 1979, 385–399.
Shanks, O.C., Bonnichsen, R., Vella, A.T., Ream, W., Recovrey of protein and DNA trapped in stone tool microcracks. J. Archaeol. Sci. 28 (2001), 965–972, 10.1006/jasc.2000.0628.
Sinet-Mathiot, V., Smith, G.M., Romandini, M., Wilcke, A., Peresani, M., Hublin, J.J., Welker, F., Combining ZooMS and zooarchaeology to study late Pleistocene hominin behaviour at fumane (Italy). Sci. Rep. 9:1 9 (2019), 1–13, 10.1038/s41598-019-48706-z 2019.
Sistiaga, A., Mallol, C., Galván, B., Summons, R.E., The neanderthal meal: a new perspective using faecal biomarkers. PLoS One, 9, 2014, e101045, 10.1371/JOURNAL.PONE.0101045.
Slon, V., Hopfe, C., Weiß, C.L., Mafessoni, F., De La Rasilla, M., Lalueza-Fox, C., Rosas, A., Soressi, M., Knul, M.V., Miller, R., Stewart, J.R., Derevianko, A.P., Jacobs, Z., Li, B., Roberts, R.G., Shunkov, M.V., De Lumley, H., Perrenoud, C., Gušić, I., Kućan, Ž., Rudan, P., Aximu-Petri, A., Essel, E., Nagel, S., Nickel, B., Schmidt, A., Prüfer, K., Kelso, J., Burbano, H.A., Pääbo, S., Meyer, M., Neandertal and denisovan DNA from Pleistocene sediments. 1979 Science 356 (2017), 605–608, 10.1126/science.aam9695.
Solodenko, N., Zupancich, A., Cesaro, S.N., Marder, O., Lemorini, C., Barkai, R., Fat residue and use-wear found on acheulian biface and scraper associated with butchered elephant remains at the site of revadim, Israel. PLoS One, 10, 2015, e0118572, 10.1371/journal.pone.0118572.
Tagliacozzo, A., Romandini, M., Fiore, I., Gala, M., Peresani, M., Zooarchaeology and modern human origins. Clark, J.L., Speth, J.D., (eds.) Zooarchaeology and Modern Human Origins: Human Hunting Behavior during the Later Pleistocene, Vertebrate Paleobiology and Paleoanthropology, 2013, Springer Netherlands, Dordrecht, 10.1007/978-94-007-6766-9.
Taipale, N., Hafting as a Flexible Strategy: Variability in Stone Tool Use and Hafting at Three European Upper Palaeolithic Sites. 2020, University of Liège.
Tomasso, S., Cnuts, D., Mikdad, A., Rots, V., Changes in hafting practices during the middle stone age at ifri n’ ammar. Quat. Int. 555 (2020), 21–32, 10.1016/j.quaint.2020.03.026.
Tuross, N., Dillehay, T.D., The mechanism of organic preservation at Monte Verde, Chile, and one use of biomolecules in archaeological interpretation. J. Field Archaeol. 22 (1995), 97–110, 10.2307/529852.
Tydgadt, L., Rots, V., Lola Tydgadt, C., Stick to it! Mechanical Performance Tests to Explore the Resilience of Prehistoric Glues in Hafting. 2022, Archaeometry, 10.1111/ARCM.12779.
Ubelaker, D.H., Ward, D.C., Braz, V.S., Stewart, J., The use of SEM/EDS analysis to distinguish dental and osseus tissue from other materials. J. Forensic Sci., 47, 2002, 15518J, 10.1520/JFS15518J.
Venditti, F., Agam, A., Barkai, R., Techno-functional analysis of small recycled flakes from Late Acheulian Revadim (Israel) demonstrates a link between morphology and function. J. Archaeol. Sci. Rep., 28, 2019, 102039, 10.1016/j.jasrep.2019.102039.
Venditti, F., Agam, A., Tirillò, J., Nunziante-Cesaro, S., Barkai, R., An integrated study discloses chopping tools use from Late Acheulean Revadim (Israel), PLoS ONE. https://doi.org/10.1371/journal.pone.0245595, 2021.
Wadley, L., Recognizing complex cognition through innovative technology in stone age and palaeolithic sites. Camb. Archaeol. J. 23 (2013), 163–183, 10.1017/S0959774313000309.
Wadley, L., Putting ochre to the test: replication studies of adhesives that may have been used for hafting tools in the Middle Stone Age. J. Hum. Evol. 49 (2005), 587–601, 10.1016/j.jhevol.2005.06.007.
Wadley, L., Hodgskiss, T., Grant, M., Implications for complex cognition from the hafting of tools with compound adhesives in the Middle Stone Age, South Africa. Proc. Natl. Acad. Sci. U. S. A. 106 (2009), 9590–9594, 10.1073/pnas.0900957106.
Wadley, L., Lombard, M., Small things in perspective: the contribution of our blind tests to micro-residue studies on archaeological stone tools. J. Archaeol. Sci. 34 (2007), 1001–1010, 10.1016/j.jas.2006.09.016.
Wadley, L., Lombard, M., Williamson, B., The first residue analysis blind tests: results and lessons learnt. J. Archaeol. Sci. 31 (2004), 1491–1501, 10.1016/j.jas.2004.03.010.
Wadley, L., Williamson, B., Lombard, M., Ochre in hafting in middle stone age southern africa: a practical role. Antiquity 78 (2004), 661–675.
Weiner, S., Microarchaeology: beyond the Visible Archaeological Record, Microarchaeology: beyond the Visible Archaeological Record. 2010, 10.1017/CBO9780511811210.
Weiner, S., Albert, R., Study of phytoliths in prehistoric ash layers from kebara and tabun caves using a quantitative approach. Phytoliths - Applications in Earth Science and Human History, 2001, 251–266, 10.1201/noe9058093455.ch19.
Weiner, S., Goldberg, P., Bar-Yosef, O., Bone preservation in Kebara Cave, Israel using on-site Fourier transform infrared spectrometry. J. Archaeol. Sci. 20 (1993), 613–627, 10.1006/jasc.1993.1037.
Welker, F., Soressi, M., Rendu, W., Hublin, J.J., Collins, M., Using ZooMS to identify fragmentary bone from the late middle/early upper palaeolithic sequence of les cottés, France. J. Archaeol. Sci. 54 (2015), 279–286, 10.1016/j.jas.2014.12.010.
Wojcieszak, M., Wadley, L., Raman spectroscopy and scanning electron microscopy confirm ochre residues on 71 000-year-old bifacial tools from Sibudu, South Africa. Archaeometry 60 (2018), 1062–1076, 10.1111/arcm.12369.
Xhauflair, H., Pawlik, A., Forestier, H., Saos, T., Dizon, E., Gaillard, C., Use-related or contamination? Residue and use-wear mapping on stone tools used for experimental processing of plants from Southeast Asia. Quat. Int. 427 (2017), 80–93, 10.1016/j.quaint.2016.02.023.
Zipkin, A.M., Wagner, M., McGrath, K., Brooks, A.S., Lucas, P.W., An experimental study of hafting adhesives and the implications for compound tool technology. PLoS One, 9, 2014, e112560, 10.1371/journal.pone.0112560.