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. 2012;7(8):e42442.
doi: 10.1371/journal.pone.0042442. Epub 2012 Aug 8.

Form and function of early neolithic bifacial stone tools reflects changes in land use practices during the neolithization process in the levant

Affiliations

Form and function of early neolithic bifacial stone tools reflects changes in land use practices during the neolithization process in the levant

Richard W Yerkes et al. PLoS One. 2012.

Abstract

For many, climate change is no longer recognized as the primary cause of cultural changes in the Near East. Instead, human landscape degradation, population growth, socioeconomic adjustments, and conflict have been proposed as the mechanisms that shaped the Neolithic Revolution. However, as Bar-Yosef noted, even if there is chronological correlation between climate changes and cultural developments, what is important is to understand how Neolithic societies dealt with these improving or deteriorating environments. Changes in bifacial stone tools provide a framework for examining some of these interactions by focusing on changing land use practices during the Neolithization process. The results of microwear analysis of 40 bifacial artifacts from early Pre-Pottery Neolithic (EPPNB) levels at Motza in the Judean hills document changes during the PPNA-PPNB transition at the onset of the Levantine Moist Period (ca. 8000 cal B.C.) when conditions for agriculture improved. EPPNB villagers added heavy-duty axes to a toolkit they had used for carpentry and began to clear forests for fields and grazing lands. Sustainable forest management continued for the duration of the PPN until the cumulative effects of tree-felling and overgrazing seem to have led to landscape degradation at end of the Pre-Pottery Neolithic C (PPNC), when a cold, dry climatic anomaly (6600-6000 cal B.C.) may have accelerated the reduction of woodlands. Early PPNB components at sites like Motza, with data from nearly five millennia of Neolithic occupations, show how complex hunter-gatherers and early food producers were able to establish sustainable resource management systems even as climate changed, population increased, and social relations were redefined.

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Conflict of interest statement

Competing Interests: The authors have declared that no competing interests exist.

Figures

Figure 1
Figure 1. A: Neolithic sites mentioned in the text, B: Locations of Northern and Southern blocks at the Motza site excavated by HK on behalf of the Israel Antiquities Authority in 2002 and 2003, C: Main stratigraphic section for the 2002–2003 excavations at Motza.
VI is the ca. 2 m thick EPPNB layer exposed directly above bedrock .
Figure 2
Figure 2. Some utilized Bifaces and a tranchet spall from EPPNB layer VI at Motza.
Ventral face to the left, dorsal face to the right, black lines show the extent of the wood-working microwear traces, arrows show the orientation of the polish and striations, lines with dots show location of hafting traces. (A) Polished greenstone axe from SN 2, Locus 2136, Basket 40013, made of green stone, with weakly-developed wood working traces and slight edge damage along distal edge. (B) flint tranchet axe, SN 32, Locus 4050, Basket 41007. Circle shows the location of Fig. 3 Right. (C) flint tranchet chisel N19c, SN 14, Locus 4014, Basket 40211. Circle shows the location of Fig. 4 Right. (D) tranchet spall, SN 26, Basket 40309. Circle shows the location of Fig. 5. (E) flint tranchet axe resharpened by polishing, SN 15, Locus 5016, Basket 50135. Circle shows the location of Fig. 6. (F) flint tranchet axe, SN 34, Locus 5040, Basket 50437. Circle shows the location of Fig. 7. (G) flint tranchet axe K17c from Motza, SN 11, Locus 5040, Basket 50479. Circle shows the location of Fig. 8. (H) base of a recycled flint axe, SN 33, Locus 5067, Basket 50730 with worn lateral edges and worn dorsal and ventral faces. Some of these surfaces have large patches of stone-on-stone polish. It seems to have been re-used as a stone polishing tool.
Figure 3
Figure 3. Left: Bright, domed wood working microwear on experimental biface used to plane and smooth wood.
Right: Bright, domed wood-working microwear traces on the bit of a small EPPNB tranchet axe from the Motza site (SN 32, Locus 4050, Basket 41007). See Figure 2B for location. Bit edge is at the bottom of the photomicrograph. Magnification is 187.5x, and scale is 50 microns for both images.
Figure 4
Figure 4. Left: Bright domed wood-working traces on experimental flake tool used as a chisel and scraper.
Right: Bright, domed wood-working microwear traces on the distal end of EPPNB tranchet chisel N19c from the Motza site (SN 14, Locus 4014, Basket 40210). See Figure 2C for location. Magnification is 187.5x, and scale is 50 microns for both images.
Figure 5
Figure 5. Bright, domed wood-working microwear traces on the distal end of a tranchet spall from the Motza site (SN 26, Basket 40309).
See Figure 2D for location.
Figure 6
Figure 6. Bright, domed wood-working microwear traces on the distal end of a tranchet flint axe with a polished bit from Motza (SN 15, Locus 5016, Basket 50135).
See Figure 2E for location. Magnification is 187.5x, and scale is 50 microns for both images.
Figure 7
Figure 7. Bright, domed wood-working microwear traces on the distal bit of a flint tranchet axe from Motza (SN 34, Locus 5040, Basket 50437).
See Figure 2F for location. Axe bit is at the bottom of the photomicrograph.
Figure 8
Figure 8. Small patches of bright, domed wood working microwear traces on the distal bit of a flint axeK17c from Motza (SN 11, Locus 5040, Basket 50479).
See Figure 2G for location. Magnification is 187.5x, and scale is 50 microns for both images.

References

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