Lithic Technology is a professional journal devoted to the study of Stone Age technology, covering a wide range of topics from the manufacturing process of stone tools to their use, morphological characteristics, and sources of raw materials. The journal provides a platform for archaeologists, geologists, anthropologists, and other scholars interested in Stone Age technologies to exchange and share research results.Peer-reviewed research articles published in the journal not only include detailed analysis of specific stone tools, but also cover macro issues such as the development, spread and evolution of stone technology. These studies help us better understand how ancient humans used natural resources and how these technologies influenced social structures and cultural development. There is also a special focus on experimental archaeological research on stone technology, where by replicating ancient stone-making techniques, researchers can more deeply explore the technical knowledge and skills of ancient humans. This practical approach provides a new perspective for understanding ancient stone making.
石化科技(Lithic Technology)是一本由Taylor & Francis出版的一本Multiple学术刊物,主要报道Multiple相关领域研究成果与实践。本刊已入选、社会科学引文索引(SCIE)来源期刊,该刊创刊于1972年,出版周期4 issues/year。2021-2022年最新版WOS分区等级:Q2,2023年发布的影响因子为1.5,CiteScore指数2.9,SJR指数0.821。本刊非开放获取期刊。 《Lithic Technology》是一本专注于石器时代技术研究的专业期刊,它涵盖了从石器的制造工艺到其使用、形态学特征、以及原材料来源等各个方面的广泛主题。这本期刊为考古学家、地质学家、人类学家以及其他对石器时代技术感兴趣的学者提供了一个交流和分享研究成果的平台。期刊发表的同行评议研究文章,不仅包括对特定石器工具的详细分析,还涵盖了石器技术的发展、传播和演变等宏观问题。这些研究有助于我们更好地理解古代人类如何利用自然资源,以及这些技术如何影响社会结构和文化发展。还特别关注石器技术的实验考古学研究,通过复制古代石器制作技术,研究者可以更深入地探索古代人类的技术知识和技能。这种实践性的研究方法为理解古代石器制作提供了新的视角。
Built-in Misdirection: On the Difficulties of Learning to Knap
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2018.1539322
Towards Quantifying Teaching and Learning in Prehistory Using Stone Artifact Reduction Sequences
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2018.1564855
Further Evidence of Organic Soft Hammer Percussion and Pressure Retouch from Lingjing (Xuchang, Henan, China)
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1589926
Chert Nucleus and Cortex Characterization for Archaeological Provenance Study Tested in the Prebaetic System Region (Valencian Community, Spain)
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1618043
Gestures During Knapping: A Two-perspective Approach to Pleistocene Technologies
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1587255
Robert J. Patten (1944–2017): Life, Legacy, and Contributions to Archaeology, Lithic Technology, and Flintknapping
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1598624
Hyperspectral Imaging for Characterization of Lithic Raw Materials: The Case of a Mesolithic Dwelling in Northern Sweden
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2018.1543105
Pre-Maya Lithic Technology in the Wetlands of Belize: The Chipped Stone from Crawford Bank
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1629173
Toward Recognizing the Prehistoric Butchery of Frozen Meat: An Archaeological Experiment and Stone Tool Microwear Analysis
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2018.1529371
Strategies for Quartzitic Raw Materials Procurement in the Eastern Pampa-Patagonia Transition of Argentina during the Initial Late Holocene
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1583912
Inter-site Relationships at the End of the Early Neolithic in North-western Europe, Bartonian Flint Circulation and Macro-features Matching Method
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1613009
Geomeasure: GIS and Scripting for Measuring Morphometric Variability
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1615805
Blade Technology Characterizing the MIS 5 D-A Layers of Sibudu Cave, South Africa
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1637627
Pebbles in Archaeological Contexts: A Case Study from a West Texas Cave
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1587256
Obsidian Provenance Data Reveals New Insights into Archaic Lifeways in Chihuahua, Mexico
来源期刊:Lithic TechnologyDOI:10.1080/01977261.2019.1654291