| Literature DB >> 35818481 |
Zhanyun Zhu1,2,3,4, Xiuya Yao1, Yaling Qin1, Zhiyong Lu3, Qinglin Ma4, Xi Zhao1, Liu Liu5.
Abstract
As non-renewable cultural heritage, wall paintings play an important role in society. To reveal the trends in the scientific analysis of mural paintings, 845 relevant research articles published from 2011 to 2021 were collected from the Web of Science database and analyzed. The VOSviewer software was adopted to map the network data of scientific publications, so that relationships among authors, countries, institutions can be displayed, and the co-occurrence of keywords and co-citation can be analyzed. The results revealed close and strong interconnections between the top authors, suggesting a considerable strong research link in this field. The cooperation between research institutions was relatively close. The most productive country of relevant publications was Italy. The leading journals for the scientific analysis of wall paintings were Journal of Raman Spectroscopy and Journal of Cultural Heritage. At present, the hotspots of scientific analysis and research on wall painting are revealing the composition, distribution, origin, and deterioration mechanism of pigments, alongside with evaluating the effects and mechanism of conservation materials and techniques. On the one hand, a possible development direction in this field is introducing more cutting-edge analysis and data processing methods. On the other hand, scientific analysis is increasingly adopted to guide the research and development of mural conservation materials.Entities:
Keywords: Bibliometric analysis; VOSviewer; Visual analysis; Wall painting
Year: 2022 PMID: 35818481 PMCID: PMC9261253 DOI: 10.1186/s40494-022-00735-0
Source DB: PubMed Journal: Herit Sci ISSN: 2050-7445 Impact factor: 2.843
Fig. 1Flow chart of the search strategy
Fig. 2The number of published papers on scientific analysis of murals (2011–2021)
Fig. 3Co-authorship network of scientific analysis of murals (2011–2021)
Top 10 authors of mural scientific analysis (ranking by citations)
| Ranking | Author | Country | Citations | Documents | Links | Total link strength |
|---|---|---|---|---|---|---|
| 1 | Maguregui, M | Spain | 285 | 15 | 20 | 94 |
| 2 | Madariaga, JM | Spain | 285 | 17 | 22 | 97 |
| 3 | Castro, K | Spain | 263 | 14 | 21 | 69 |
| 4 | Martinez-Arkarazo, I | Spain | 169 | 6 | 11 | 24 |
| 5 | de Vallejuelo, SFO | Spain | 155 | 9 | 18 | 66 |
| 6 | Veneranda, M | Spain | 144 | 10 | 16 | 68 |
| 7 | Bersani, D | Italy | 127 | 4 | 8 | 10 |
| 8 | Detalle, V | France | 122 | 7 | 3 | 5 |
| 9 | Giakoumaki, A | Spain | 122 | 4 | 10 | 20 |
| 10 | Osanna, M | Italy | 112 | 10 | 22 | 71 |
Link strength is the number of publications two researchers have co-authored
Fig. 4Co-authorship network map of countries publishing on scientific analysis of murals (2011–2021)
Top 10 countries contributed to the scientific analysis of murals (ranking by articles)
| Ranking | Country | Continent | Articles | Citations | Links | Total link strength |
|---|---|---|---|---|---|---|
| 1 | Italy | Europe | 236 | 3092 | 26 | 126 |
| 2 | Spain | Europe | 142 | 1736 | 22 | 101 |
| 3 | China | Asia | 82 | 586 | 10 | 27 |
| 4 | USA | America | 73 | 560 | 19 | 61 |
| 5 | France | Europe | 63 | 978 | 18 | 58 |
| 6 | England | Europe | 57 | 629 | 20 | 66 |
| 7 | Egypt | Africa | 45 | 230 | 11 | 17 |
| 8 | Portugal | Europe | 38 | 351 | 7 | 22 |
| 9 | Greece | Europe | 31 | 435 | 11 | 24 |
| 10 | Germany | Europe | 29 | 237 | 14 | 31 |
Link strength is the number of publications two countries have co-authored
Fig. 5Co-institution network on scientific analysis of murals (2011–2021)
Top 10 institutions on scientific analysis of murals (ranking by articles)
| Ranking | Institution | Articles | Citations | Links | Total link strength |
|---|---|---|---|---|---|
| 1 | CNR | 42 | 409 | 27 | 46 |
| 2 | University of the Basque Country | 28 | 148 | 6 | 15 |
| 3 | Cairo University | 26 | 331 | 6 | 18 |
| 4 | University of Pisa | 20 | 223 | 12 | 6 |
| 5 | University of Evora | 17 | 104 | 4 | 7 |
| 6 | University of Granada | 16 | 363 | 8 | 8 |
| 7 | Universidad Nacional Autonoma de Mexico | 15 | 60 | 7 | 12 |
| 8 | University of Seville | 15 | 182 | 6 | 15 |
| 9 | Dunhuang Academy | 14 | 131 | 6 | 15 |
| 10 | University of Florence | 14 | 401 | 5 | 12 |
Link strength is the number of publications two institutions have co-authored
Fig. 6Co-institution density diagram on scientific analysis of murals (2011–2021)
Fig. 7Network visualization map of citation analysis of journals publishing on scientific analysis of murals (2011–2021)
Nine journals in the core area of scientific analysis of murals (ranking by articles)
| Ranking | Journal | Articles | Citations | Links | Total link strength |
|---|---|---|---|---|---|
| 1 | Journal of Cultural Heritage | 40 | 385 | 29 | 110 |
| 2 | Journal of Raman Spectroscopy | 37 | 659 | 23 | 135 |
| 3 | Microchemical Journal | 35 | 498 | 31 | 154 |
| 4 | Journal of Archaeological Science: Reports | 31 | 200 | 19 | 83 |
| 5 | Studies in Conservation | 30 | 116 | 12 | 25 |
| 6 | Heritage Science | 27 | 167 | 27 | 84 |
| 7 | Archaeometry | 25 | 287 | 24 | 77 |
| 8 | Archaeological and Anthropological Sciences | 21 | 172 | 23 | 90 |
| 9 | Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 18 | 204 | 19 | 63 |
Link strength is the number of co-citations by two publications of a given journal
Fig. 8Co-occurrence network map of keywords from articles published on scientific analysis of murals (2011–2021)
Fig. 9Evolution of scientific analysis of murals (2011–2021) based on the keywords
The top 30 keywords of scientific analysis of murals (ranking by frequency)
| Rank | Keyword | Frequency | Links | Total link strength |
|---|---|---|---|---|
| 1 | Pigment | 254 | 122 | 1303 |
| 2 | Wall painting | 244 | 123 | 1128 |
| 3 | Raman spectroscopy | 213 | 120 | 1134 |
| 4 | Identification | 143 | 116 | 829 |
| 5 | Spectroscopy | 123 | 103 | 653 |
| 6 | Painting | 88 | 84 | 307 |
| 7 | Cultural heritage | 86 | 92 | 383 |
| 8 | Conservation | 85 | 104 | 414 |
| 9 | FT-IR | 76 | 88 | 390 |
| 10 | Mural paintings | 70 | 91 | 302 |
| 11 | SEM-EDS | 62 | 87 | 327 |
| 12 | XRD | 61 | 87 | 361 |
| 13 | Art | 55 | 80 | 279 |
| 14 | Rock art | 53 | 52 | 197 |
| 15 | XRF | 51 | 82 | 286 |
| 16 | Archaeology | 40 | 63 | 174 |
| 17 | Mortar | 37 | 67 | 168 |
| 18 | Minerals | 35 | 58 | 200 |
| 19 | Degradation | 33 | 50 | 152 |
| 20 | Spain | 33 | 63 | 178 |
| 21 | Biodeterioration | 31 | 45 | 138 |
| 22 | Microscopy | 31 | 63 | 183 |
| 23 | Deterioration | 30 | 54 | 143 |
| 24 | Egyptian blue | 28 | 48 | 140 |
| 25 | Hematite | 27 | 54 | 166 |
| 26 | Roman | 25 | 52 | 144 |
| 27 | in-situ | 24 | 63 | 149 |
| 28 | Roman wall paintings | 23 | 56 | 132 |
| 29 | Consolidation | 21 | 35 | 94 |
| 30 | Plaster | 20 | 41 | 81 |
Link strength is the number of publications in which two keywords occur together
The top 10 most frequently cited articles on scientific analysis of murals
| Ranking | Year | Articles | Citations | Ref. No. |
|---|---|---|---|---|
| 1 | 2013 | Hydroxide nanoparticles for cultural heritage: Consolidation and protection of wall paintings and carbonate materials | 132 | [ |
| 2 | 2012 | A multi-technique characterization and provenance study of the pigments used in San rock art, South Africa | 73 | [ |
| 3 | 2014 | Identification of pigments on Byzantine wall paintings from Crete (14th century AD) using non-invasive Fiber Optics Diffuse Reflectance Spectroscopy (FORS) | 71 | [ |
| 4 | 2012 | Studying pigments on painted plaster in Minoan, Roman and Early Byzantine Crete. A multi-analytical technique approach | 70 | [ |
| 5 | 2011 | Spectroscopic methods for the analysis of celadonite and glauconite in Roman green wall paintings | 59 | [ |
| 6 | 2012 | Field Raman analysis to diagnose the conservation state of excavated walls and wall paintings in the archaeological site of Pompeii (Italy) | 50 | [ |
| 7 | 2016 | The art of building in the Roman period (89 BC-79 AD): Mortars, plasters and mosaic floors from ancient Stabiae (Naples, Italy) | 48 | [ |
| 8 | 2015 | Invasive and non-invasive analyses for knowledge and conservation of Roman wall paintings of the Villa of the Papyri in Herculaneum | 47 | [ |
| 9 | 2012 | In situ Raman spectroscopy analysis combined with Raman and SEM-EDS imaging to assess the conservation state of 16th century wall paintings | 47 | [ |
| 10 | 2014 | In situ analysis with portable Raman and ED-XRF spectrometers for the diagnosis of the formation of efflorescence on walls and wall paintings of the Insula IX 3 (Pompeii, Italy) | 43 | [ |