Arantza Aranburu

2.3k total citations
62 papers, 1.2k citations indexed

About

Arantza Aranburu is a scholar working on Atmospheric Science, Paleontology and Anthropology. According to data from OpenAlex, Arantza Aranburu has authored 62 papers receiving a total of 1.2k indexed citations (citations by other indexed papers that have themselves been cited), including 27 papers in Atmospheric Science, 24 papers in Paleontology and 23 papers in Anthropology. Recurrent topics in Arantza Aranburu's work include Geology and Paleoclimatology Research (26 papers), Pleistocene-Era Hominins and Archaeology (23 papers) and Geological and Geophysical Studies Worldwide (16 papers). Arantza Aranburu is often cited by papers focused on Geology and Paleoclimatology Research (26 papers), Pleistocene-Era Hominins and Archaeology (23 papers) and Geological and Geophysical Studies Worldwide (16 papers). Arantza Aranburu collaborates with scholars based in Spain, United States and France. Arantza Aranburu's co-authors include Juan Luís Arsuaga, Eneko Iriarte, Martina Demuro, Lee J. Arnold, J. García‐Mondéjar, P.A. Fernández‐Mendiola, Nohemi Sala, M.A. López-Horgue, Montserrat Jiménez‐Sánchez and José Marı́a Bermúdez de Castro and has published in prestigious journals such as Proceedings of the National Academy of Sciences, SHILAP Revista de lepidopterología and PLoS ONE.

In The Last Decade

Arantza Aranburu

56 papers receiving 1.2k citations

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Arantza Aranburu Spain 20 607 554 467 422 231 62 1.2k
Ana Isabel Ortega Martínez Spain 22 991 1.6× 840 1.5× 661 1.4× 669 1.6× 149 0.6× 79 1.7k
Luís Gibert Spain 22 753 1.2× 829 1.5× 626 1.3× 291 0.7× 411 1.8× 84 1.7k
Laurent Bruxelles France 19 744 1.2× 606 1.1× 327 0.7× 264 0.6× 114 0.5× 84 1.2k
Martin Bates United Kingdom 19 562 0.9× 550 1.0× 846 1.8× 291 0.7× 178 0.8× 66 1.4k
Giancarlo Scardia Italy 23 643 1.1× 583 1.1× 694 1.5× 256 0.6× 473 2.0× 53 1.5k
Silvia González United Kingdom 19 392 0.6× 373 0.7× 609 1.3× 215 0.5× 180 0.8× 57 1.2k
Mark White United Kingdom 29 1.3k 2.2× 1.1k 1.9× 885 1.9× 447 1.1× 118 0.5× 65 1.9k
Yan Rizal Indonesia 12 382 0.6× 301 0.5× 289 0.6× 186 0.4× 391 1.7× 41 959
Eneko Iriarte Spain 24 628 1.0× 869 1.6× 547 1.2× 754 1.8× 279 1.2× 160 1.9k
Jean‐Jacques Delannoy France 20 515 0.8× 442 0.8× 600 1.3× 270 0.6× 127 0.5× 118 1.4k

Countries citing papers authored by Arantza Aranburu

Since Specialization
Citations

This map shows the geographic impact of Arantza Aranburu's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Arantza Aranburu with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Arantza Aranburu more than expected).

Fields of papers citing papers by Arantza Aranburu

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Arantza Aranburu. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Arantza Aranburu. The network helps show where Arantza Aranburu may publish in the future.

Co-authorship network of co-authors of Arantza Aranburu

This figure shows the co-authorship network connecting the top 25 collaborators of Arantza Aranburu. A scholar is included among the top collaborators of Arantza Aranburu based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Arantza Aranburu. Arantza Aranburu is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Demuro, Martina, José E. Ortíz, Mathieu Duval, et al.. (2024). Constraining the age of the Pleistocene sedimentary infill of Cueva Mayor (Atapuerca, N Spain) through a multi-technique dating approach. Quaternary Geochronology. 83. 101576–101576. 1 indexed citations
2.
4.
Aranburu, Arantza, Juan José Villalaín, Jesús A. Uriarte, et al.. (2023). Why Did Red Ereño Limestone Go Red? Linking Scientific Knowledge and Geoheritage Story-Telling (Basque Country, Spain). Geoheritage. 15(3). 1 indexed citations
5.
Sala, Nohemi, Ignacio Martı́nez, Carlos Lorenzo, et al.. (2023). Taphonomic skeletal disturbances in the Sima de los Huesos postcranial remains. The Anatomical Record. 307(7). 2437–2450. 7 indexed citations
6.
Aranburu, Arantza, et al.. (2022). Cantera Gorria and Red Ereño: Natural and Cultural Geoheritage (Basque Country, Spain). Geoheritage. 14(2). 6 indexed citations
7.
Garcı́a, Nuria, Santiago Prieto, César Laplana, et al.. (2022). Juan Labranz cave: a Quaternary deposit in the central Iberian Peninsula. Historical Biology. 34(8). 1632–1641. 2 indexed citations
8.
Zabaleta, Ane, et al.. (2022). Methodology for assessing the vulnerability of built cultural heritage. The Science of The Total Environment. 845. 157314–157314. 15 indexed citations
9.
Arriolabengoa, Martín, Ma Ángeles Medina‐Alcaide, Olivia Rivero, et al.. (2020). From cave geomorphology to Palaeolithic human behaviour: speleogenesis, palaeoenvironmental changes and archaeological insight in the Atxurra‐Armiña cave (northern Iberian Peninsula). Journal of Quaternary Science. 35(6). 841–853. 17 indexed citations
10.
Zabaleta, Ane, Arantza Aranburu, Eñaut Izagirre, et al.. (2020). Landforms of the lower Hushe Valley (Central Karakoram, Pakistan). Journal of Maps. 16(2). 724–735.
11.
Ríos-Garaizar, Joseba, Oriol López‐Bultó, Eneko Iriarte, et al.. (2018). A Middle Palaeolithic wooden digging stick from Aranbaltza III, Spain. PLoS ONE. 13(3). e0195044–e0195044. 48 indexed citations
13.
Aranburu, Arantza, et al.. (2015). Geoarchaeological core prospection investigation to improve the archaeological interpretation of geophysical data: case study of a Roman settlement at Auritz (Navarre). SHILAP Revista de lepidopterología. 1 indexed citations
14.
Apraiz, A., et al.. (2015). Euskokantauriar arroko eboluzio geologikoa II: konpresioaren eraginpean. EKAIA Euskal Herriko Unibertsitateko Zientzi eta Teknologi Aldizkaria. 23–35. 1 indexed citations
15.
Arnold, Lee J., Martina Demuro, Josep M. Parés, et al.. (2014). Luminescence dating and palaeomagnetic age constraint on hominins from Sima de los Huesos, Atapuerca, Spain. Journal of Human Evolution. 67. 85–107. 123 indexed citations
16.
Aranburu, Arantza, et al.. (2014). La Cuenca Vasco-Cantábrica: génesis y evolución tectonosedimentaria.. 22(2). 99. 2 indexed citations
17.
Aranburu, Arantza, Juan Luís Arsuaga, Maria Blanca Ruíz Zapata, et al.. (2013). Upper Pleistocene and Holocene palaeoenvironmental records in Cueva Mayor karst (Atapuerca, Spain) from different proxies: speleothem crystal fabrics, palynology, and archaeology. International Journal of Speleology. 43(1). 1–14. 34 indexed citations
18.
Arsuaga, Juan Luís, et al.. (2011). Un paisaje de la Meseta durante el Pleistoceno Superior. Aspectospaleontológicos de la Cueva de la Zarzamora (Segovia, España). Boletín de la Real Sociedad Española de Historia Natural. Sección geológica. 105(1). 67–85. 17 indexed citations
19.
Zapata, Maria Blanca Ruíz, et al.. (2011). Análisis paleontológico del yacimiento del Pleistoceno superior deCova Foradada (Xàbia, Alicante, España). Boletín de la Real Sociedad Española de Historia Natural. Sección geológica. 105(1). 53–66. 7 indexed citations
20.
García‐Mondéjar, J., et al.. (2005). Pulsating subsidence during a rift episode: stratigraphic and tectonic consequences (Aptian–Albian, northern Spain). Terra Nova. 17(6). 517–525. 30 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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