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171 results for “Villa”
MYSTERY VILLA ROOM ¿? - POMPEII (RETOPOLOGY)
**This 3D Model it's a Optimized model (Triangles: 5.4k) from original (Triangles: 674.5K) RETOPOLOGY - REPAINTED - NEW BOX - ADJUST ROTATION** 3D Model Original : https://skfb.ly/6xVK8 - VRAASPROJECT Source: Objaverse 1.0 / Sketchfab
Mosaic Room 43. Villa Romana del Casale, Sicily.
Mosaic Room 43. Vestibule of Eros and Pan. Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500 m of the most important Roman mosaics in the world. This is an Imperial villa dating to 350 CE. It is a UNESCO World Heritage site. These models are the result of combined FARO scans and photogrammetry datasets returned to GDH in C4D format. The models were each exported out of C4D, cleaned in Meshlab, retopologized in ZBrush, UV unwrapped in Blender, and textured and normal-map baked in Blender or Substance Designer. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. Herbert Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI. Details: Salvatore Ciurca (1997) Source: Objaverse 1.0 / Sketchfab
Villa Romana di Realmonte - Drone Model
This model of the Roman Villa of Realmonte, located on the Mediterreanan Sea along the southern coast of Sicily. This site was occupied from the 2nd to the 7th centuries and was likely home to a large estate that was possibly the location of extensive pottery, brick and tile production. This model was completed from 165 photos with a Phantom 4 Pro drone processed in Reality Capture. The data for this project were originally collected as a collaboration between scholars at the University of Catania, CVAST at USF, and FBK in Trento. Dr. Mariarita Sgarlata and Dr. Herbert Maschner, Principal Investigators. The data were transferred to Global Digital Heritage (GDH) in 2018 for processing and analysis. Funding for this project in all phases has been provided by the Hitz Foundation, Herbert Maschner, Principal Investigator. Citation: https://en.wikipedia.org/wiki/Realmonte Source: Objaverse 1.0 / Sketchfab
Mosaic Room 49. Villa Romana del Casale, Sicily
Mosaic Room 49. Fruit Cubicle Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500 m of the most important Roman mosaics in the world. This is an Imperial villa dating to 350 CE. It is a UNESCO World Heritage site. This model was produced soley with FARO scans done by GDH team meambers when they were employed at USF. Scans were registered in SCENE and exported to Reality Capture to make high poly textured model. Model was retopoed in Zbrush, unwrapped in Blender and texture baked in Substance Designer. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. H. Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI Details: Salvatore Ciurca (1997) Source: Objaverse 1.0 / Sketchfab
Mosaic Room 48. Villa Romana del Casale, Sicily
Mosaic Room 48. Cubicle with the Erotic Scene Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500 m of the most important Roman mosaics in the world. This is an Imperial villa dating to 350 CE. It is a UNESCO World Heritage site. This model was produced using FARO scans done by GDH team meambers when they were employed at USF. Scans were registered in SCENE and exported to Reality Capture to make high poly textured model. Model was retopoed in Zbrush, unwrapped in Blender and texture baked in Substance Designer. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. H. Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI Details: Salvatore Ciurca (1997) Source: Objaverse 1.0 / Sketchfab
Mosaic Room 42. Villa Roman del Casale, Sicily
Mosaic Rm 42. Cubicle of the Musicians and Actors. Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500m of the most important Roman mosaics in the world. This is an Imperial villa dating to 350 CE. It is a UNESCO World Heritage site. These models are the result of combined FARO scans and photogrammetry datasets returned to GDH in C4D format. The models were each exported out of C4D, cleaned in Meshlab, retopologized in ZBrush, UV unwraped in Blender, and textured and normal-map baked in Blender or Substance Designer. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. H. Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI. Details: Salvatore Ciurca (1997) Source: Objaverse 1.0 / Sketchfab
Mosaic Room 40. Villa Romana del Casale, Sicily
Mosaic Room 40, Semicircular Atrium Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500 m of the most important Roman mosaics in the world. This is an Imperial villa dating to 350 CE. It is a UNESCO World Heritage site. These models are the result of combined FARO scans and photogrammetry datasets returned to GDH in C4D format. The models were each exported out of C4D, cleaned in Meshlab, retopologized in ZBrush, UV unwrapped in Blender, and textured and normal-map baked in Blender or Substance Designer. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. H. Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI. Details: Salvatore Ciurca (1997) Source: Objaverse 1.0 / Sketchfab
Mosaic Room 28. Villa Roman del Casale, Sicily
28. Ambulatory of the Great Hunt. Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500 m of the most important Roman mosaics in the world. This is an Imperial villa dating to 350 CE. It is a UNESCO World Heritage site. These models are the result of combined FARO scans and photogrammetry datasets returned to GDH in C4D format. The models were each exported out of C4D, cleaned in Meshlab, retopologized in ZBrush, UV unwrapped in Blender, and textured and normal-map baked in Blender or Substance Designer. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. H. Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI Details: Salvatore Ciurca (1997) Source: Objaverse 1.0 / Sketchfab
Mosaic Room 44. Villa Romana del Casale, Sicily
Mosaic Room 44. Cubicle of the Child Hunters Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500 m of the most important Roman mosaics in the world. This is an Imperial villa dating to 350 CE. It is a UNESCO World Heritage site. These models are the result of combined FARO scans and photogrammetry datasets returned to GDH in C4D format. The models were each exported out of C4D, cleaned in Meshlab, retopologized in ZBrush, UV unwrapped in Blender, and textured and normal-map baked in Blender or Substance Designer. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. H. Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI Details: Salvatore Ciurca (1997) Source: Objaverse 1.0 / Sketchfab
Villa Romana Casale Mosaic Floors (no texture)
Villa Romana del Casale in Piazza Armerina, Sicily is home of 3500m of the most important Roman mosaics in the world. 350 CE. A UNESCO World Heritage site. This composite 3D model is the result of combined FARO scans and photogrammetry datasets returned to GDH in C4D format. The model for each room was exported out of C4D, cleaned in Meshlab, retopologized in ZBrush, UV unwrapped in Blender, and textured and normal-map baked in Blender or Substance Designer. The individual models were then uploaded to Sketchfab together and baked maps were applied to each model. The original project was a joint effort between the U. of Catania and CVAST at USF. Dr. Mariarita Sgarlata and Dr. H. Maschner, Investigators. We gratefully acknowledge the participation of the administrators of the Villa Romana del Casale and the Museo Archeologico di Aidone. The data were transferred to GDH for processing and analysis. Funding for this project, both at USF and at GDH, has been provided by the Hitz Foundation, H. Maschner, PI Source: Objaverse 1.0 / Sketchfab
EDXRF DATA: An archaeological and archaeometric study of Late Punic-Roman Pottery from the Tas-Silġ Sanctuary and the Żejtun Villa, Malta
<p>These datasets comprise Energy Dispersive X-Ray Fluorescence (EDXRF) raw data collected from Late Punic - Early Roman vessel sherds excavated at the Żejtun Villa and the Tas-Silġ Sanctuary archaeological sites in Malta.</p> <p>These data are used in the following publication:<a href="https://www.cambridge.org/core/journals/libyan-studies/article/an-archaeological-and-archaeometric-study-of-late-punicroman-pottery-from-the-tassilg-sanctuary-and-the-zejtun-villa-malta/632682AEA3492892F2FAA5E2CB3DFD8E"> Richard-Trémeau, E. <em>et al.</em> (2024) ‘An archaeological and archaeometric study of Late Punic–Roman Pottery from the Tas-Silġ Sanctuary and the Żejtun Villa, Malta’, <em>Libyan Studies</em>, pp. 1–21. doi:10.1017/lis.2024.7.</a></p> <p>The data were analysed and processed by Emma Richard-Trémeau, Joseph Grech and Alexandra Humann as part of the 'Compiling Fabric Identity for Pottery from Maltese Sites' (CoFIPoMS) project under the supervision of Dr. Ing. John Charles Betts at the University of Malta.</p> <p>These datasets include readings for both pottery sherds and raw materials (local samples of clay). These datasets are compositional.</p> <p>This Zenodo entry contains:</p> <ul> <li><strong>RAW DATA (Zip file)</strong>: The raw data generated by the EDXRF for all samples analysed, expressed as oxides in %. Four spreadsheets are available: the data for the clays; the data for the pottery; and repeated readings for one sample of clay (QL.B1) and one sample of pottery (Sample 21). </li> <li><strong>ASSESSMENT</strong>: This spreadsheet presents the standard deviation and relative standard deviation for the repeated samples QL.B1 and Sample 21. This allows assessment of the repeatability of the reading for each oxide.</li> <li><strong>TRANSFORMED DATA</strong>: This spreadsheet presents the original dataset, the conversion of the trace elements from oxide (%) to trace (ppm), the normalisation of the data without sodium oxide and the scaling to 100%.</li> <li><strong>FINAL DATASET</strong>: This spreadsheet presents the chosen variables and selected samples normalised and then logged to base 10. </li> </ul> <p>This data was generated using a Bruker S2 Ranger with internal calibration.</p> <p>Additional information can be accessed at: <br>-https://www.um.edu.mt/library/oar/handle/123456789/109715<br>-https://www.um.edu.mt/projects/cofipoms/ <br>or by contacting the first author: https://www.researchgate.net/profile/Emma-Richard-Tremeau/research. </p> <p>These datasets are under Creative Commons Attribution 4.0 International: they can be used and shared as long as they are properly accredited to the authors of this entry.</p>
Roman villa of Waldling – trench 2/2021
<p><strong>Waldling/Upper Austria</strong></p> <p>Excavation activities were carried out in 2021 in collaboration with <a href="https://www.archaeo-perspectives.at/">Archaeo Perspectives</a> and <a href="http://roemerweg.at/">Römerweg OVILAVA</a> at the Roman rural site near the ancient Roman city of Ovilavis (today’s Wels).</p> <p>The 3d model of trench 2/2021 at the Roman rural site of Waldling in Upper Austria marks the final stage after all archaeological features were removed and their negatives, as well as geological sediments, only remained.</p> <p>The model was generated using photos taken by a DJI Mavic 2 Pro unmanned aerial system (UAS).</p> <p><a href="https://sketchfab.com/3d-models/excavation-roman-villa-of-waldling-2021-08-18-54e85b63401e4f12908802ba76265bb1">Compare this model to another one generated using an iPad Pro’s LiDAR scanner.</a></p> <ul> <li><a href="https://rrl.univie.ac.at/forschung/ooe"><strong>learn more</strong></a></li> </ul>
villa rustica at Waldling: 2016 – 2018's results
<p>Research activities carried out in collaboration with <a href="https://www.ardig.at/">ARDIG</a>, <a href="https://www.archaeo-perspectives.at/">Archaeo Perspectives</a>, and <a href="http://roemerweg.at/">Römerweg OVILAVA</a> are focusing since 2016 on the Roman rural site near the ancient Roman city of Ovilavis (today’s Wels).</p> <p>Archeological surveys, drone photogrammetry, geophysical prospections, excavations, and <a href="https://www.data.gv.at/auftritte/?organisation=land-oberoesterreich">OGD</a> – which enabled us to draw a preliminary 3D floor plan based on the remaining features.</p> <ul> <li><a href="https://rrl.univie.ac.at/forschung/ooe"><strong>learn more</strong></a></li> <li>Kindly supported by the <a href="https://bda.gv.at/ueber-uns/abteilungen-in-den-bundeslaendern/oberoesterreich/">Austrian Federal Monuments Authority/Bundesdenkmalamt</a></li> </ul>
Piante di fase della Villa di Desenzano (BS), loc. Borgo Regio
<p>Piante di fase della villa romana di Desenzano (BS), loc. Borgo Regio. Nel complesso il dataset comprende il rilievo generale dell'area archeologica, una tavola del settore A ascrivibile alla metà del IV secolo e una tavola del settore B anch'esso databile alla metà del IV secolo. Le piante di fase sono state ottenute mediante rialaborazioni di rilievi CAD eseguiti da E. Laidelli 2006, proprietà del Polo Museale della Lombardia e digitalizzazione delle ortofoto eseguite nel 2020 dal gruppo di ricerca dell'Università di Verona (dott.ssa Fiammetta Soriano). Per l'elaborazione e gestione dei dati è stata utilizzata una piattaforma GIS open souce, QGIS. Il prodotto finale è stato la generazione di tavole in formato pdf. Gruppo di lavoro: dott. Nicola Mancassola, dott.ssa Elisa Lerco.</p>
Piante di fase della villa di Sirmione, Grotte di Catullo
<p>Piante di fase della villa romana di Sirmione (BS), Grotte di Catullo. In dettaglio il dataset è composto da: due tavole relative a strutture esistenti e ipotesi ricostruttive del Livello Superiore della villa, una tavola dello stato di fatto del Livello Intermedio, una tavola dello stato di fatto del Livello Inferiore e infine due tavole relative una alle fasi tardo antiche e l'altra alle frequentazione alto medievali. Le piante di fase sono state ottenute mediante rielaborazione dei rilievi CAD eseguiti dalla ditta Tracciatori s.a.s. e digitalizzazione dell'ortofoto fornita dal Polo Museale della Lombardia. È stata utilizzata per l'elaborazione e gestione dei dati una piattaforma GIS open Source. Il prodotto finale è stato la generazione di tavole in formato pdf. Il gruppo di lavoro è composto da: dott.ssa Elisa Lerco e dott. Nicola Mancassola.</p>
Desenzano, Villa romana, Rilievo fotogrammetrico
<p>Nell’ambito del progetto e-Archeo, gestito dalla società ALES, si è svolta l’attività di rilievo fotogrammetrico di dettaglio della villa romana di Desenzano, con l’obiettivo di creare un’importante risorsa per la valorizzazione e al contempo di determinare un punto di partenza per l’elaborazione delle piante di fase e per la ricostruzione e modellazione 3D dell’edificio.<br> Per il rilievo della villa si è proceduto con l’acquisizione del dataset delle immagini tramite drone (Mavic 2 pro della DJI), ottenendo fotogrammi: nadirali, frontali e obliqui. Nel contempo è stata registrata la posizione dei punti di appoggio e di controllo, da usare nell’elaborazione fotogrammetrica per georiferire i rilievi.<br> Per la fase successiva di acquisizione ed elaborazione dei dati del progetto è stato utilizzato il software Agisoft Metashape (Structure-from-Motion). In seguito all’allineamento e all’ottimizzazione delle camere è stata generata la nuvola di punti densa, il meshing delle superfici e la texturizzazione del modello 3D. Dal set di dati ottenuto è stato possibile ricavare l’ortofoto dell’area della villa e di dettaglio dei settori A e B e il DTM dell’area della villa, quest’ultimo utile alla ricostruzione del paesaggio antico.<br> Gruppo di lavoro: F. Soriano e A. Zemignani.</p>
Subspecies and Distribution. G.m.moreno:L..Martinez&Villa,1938—SCMexicoinColima,Michoacan,Mexico,Morelos,Tlaxcala,Puebla,Guerrero,andWOaxaca. G. m. mexicana Webster & J. K. Jones, 1980 —S Mexico, from SC & E Oaxaca to Chiapas. in Phyllostomidae
Subspecies and Distribution. G.m.moreno:L..Martinez&Villa,1938—SCMexicoinColima,Michoacan,Mexico,Morelos,Tlaxcala,Puebla,Guerrero,andWOaxaca. G. m. mexicana Webster & J. K. Jones, 1980 —S Mexico, from SC & E Oaxaca to Chiapas.
Subspecies and Distribution. T.n.nudicaudusPeters,1866—SMexico(Chiapas),Guatemala,Belize,Honduras,ElSalvador,andNicaragua. T:n.gymnurusVilla,1941—EPuebla,Veracruz,andEOaxaca,Mexico. T.n.microdonGoodwin,1955—knownonlyfromtwolocalitiesinOaxaca,Mexico. T. n. villa: Schaldach, 1966 — E Guerrero and W Oaxaca, Mexico. in Cricetidae
Subspecies and Distribution. T.n.nudicaudusPeters,1866—SMexico(Chiapas),Guatemala,Belize,Honduras,ElSalvador,andNicaragua. T:n.gymnurusVilla,1941—EPuebla,Veracruz,andEOaxaca,Mexico. T.n.microdonGoodwin,1955—knownonlyfromtwolocalitiesinOaxaca,Mexico. T. n. villa: Schaldach, 1966 — E Guerrero and W Oaxaca, Mexico.
On following pages: 138. Southern Short-tailed Shrew (Blarina carolinensis); 139. Everglades Short-tailed Shrew (Blarina peninsulae); 140. Sherman's Short-tailed Shrew (Blarina sherman); 141. Sichuan Short-tailed Shrew (Blarinella quadraticauda); 142. Burmese Short-tailed Shrew (Blarinella ward); 143. Indochinese Short-tailed Shrew (Blarinella griselda); 144. Chinese Mole Shrew (Anourosorex squamipes); 145. Taiwanese Mole Shrew (Anourosorex yamashinai); 146. Assam Mole Shrew (Anourosorex assamensis); 147. Giant Mole Shrew (Anourosorex schmidi); 148. Desert Gray Shrew (Notiosorex crawford); 149. Cockrum''s Gray Shrew (Notiosorex cockrumi); 150. Large-eared Gray Shrew (Notiosorex evotis); 151. Villa's Gray Shrew (Notiosorex villa); 152. Mexican Shrew (Megasorex gigas); 153. Taiwanese Brown-toothed Shrew (Episoriculus fumidus); 154. Arboreal Brown-toothed Shrew (Episoriculus macrurus); 155. Bailey's Brown-toothed Shrew (Episoriculus baileyi); 156. Long-tailed Brown-toothed Shrew (Episoriculus leucops); 157. Hodgson's Brown-toothed Shrew (Episoriculus caudatus); 158. Sichuan Brown-toothed Shrew (Episoriculus sacratus); 159. Hidden Brown-toothed Shrew (Episoriculus umbrinus); 160. Nepalese Brown-toothed Shrew (Episoriculus soluensis); 161. Himalayan Shrew (Soriculus nigrescens); 162. De Winton's Brown-toothed Shrew (Chodsigoa hypsibia); 163. Pygmy Brown-toothed Shrew (Chodsigoa parva); 164. Smith's Brown-toothed Shrew (Chodsigoa smithii); 165. Salenski's Brown-toothed Shrew (Chodsigoa salenski)); 166. Dusky Brown-toothed Shrew (Chodsigoa furva); 167. Lesser Taiwanese Brown-toothed Shrew (Chodsigoa sodalis); 168. Van Sung''s Brown-toothed Shrew (Chodsigoa caovansunga); 169. Hoffmann's Brown-toothed Shrew (Chodsigoa hoffmanni); 170. Lowe's Brown-toothed Shrew (Chodsigoa parca); 171. Bornean Water Shrew (Chimarrogale phaeura); 172. Sumatran Water Shrew (Chimarrogale sumatrana); 173. Malayan Water Shrew (Chimarrogale hantu); 174. Chinese Water Shrew (Chimarrogale styani); 175. Himalayan Water Shrew (Chimarrogale himalayica); 176. Leander's Water Shrew (Chimarrogale leander); 177. Japanese Water Shrew (Chimarrogale platycephala); 178. Elegant Water Shrew (Nectogale elegans); 179. Mediterranean Water Shrew (Neomys anomalus); 180. Transcaucasian Water Shrew (Neomys teres); 181. Eurasian Water Shrew (Neomys fodiens). in Soricidae
On following pages: 138. Southern Short-tailed Shrew (Blarina carolinensis); 139. Everglades Short-tailed Shrew (Blarina peninsulae); 140. Sherman's Short-tailed Shrew (Blarina sherman); 141. Sichuan Short-tailed Shrew (Blarinella quadraticauda); 142. Burmese Short-tailed Shrew (Blarinella ward); 143. Indochinese Short-tailed Shrew (Blarinella griselda); 144. Chinese Mole Shrew (Anourosorex squamipes); 145. Taiwanese Mole Shrew (Anourosorex yamashinai); 146. Assam Mole Shrew (Anourosorex assamensis); 147. Giant Mole Shrew (Anourosorex schmidi); 148. Desert Gray Shrew (Notiosorex crawford); 149. Cockrum''s Gray Shrew (Notiosorex cockrumi); 150. Large-eared Gray Shrew (Notiosorex evotis); 151. Villa's Gray Shrew (Notiosorex villa); 152. Mexican Shrew (Megasorex gigas); 153. Taiwanese Brown-toothed Shrew (Episoriculus fumidus); 154. Arboreal Brown-toothed Shrew (Episoriculus macrurus); 155. Bailey's Brown-toothed Shrew (Episoriculus baileyi); 156. Long-tailed Brown-toothed Shrew (Episoriculus leucops); 157. Hodgson's Brown-toothed Shrew (Episoriculus caudatus); 158. Sichuan Brown-toothed Shrew (Episoriculus sacratus); 159. Hidden Brown-toothed Shrew (Episoriculus umbrinus); 160. Nepalese Brown-toothed Shrew (Episoriculus soluensis); 161. Himalayan Shrew (Soriculus nigrescens); 162. De Winton's Brown-toothed Shrew (Chodsigoa hypsibia); 163. Pygmy Brown-toothed Shrew (Chodsigoa parva); 164. Smith's Brown-toothed Shrew (Chodsigoa smithii); 165. Salenski's Brown-toothed Shrew (Chodsigoa salenski)); 166. Dusky Brown-toothed Shrew (Chodsigoa furva); 167. Lesser Taiwanese Brown-toothed Shrew (Chodsigoa sodalis); 168. Van Sung''s Brown-toothed Shrew (Chodsigoa caovansunga); 169. Hoffmann's Brown-toothed Shrew (Chodsigoa hoffmanni); 170. Lowe's Brown-toothed Shrew (Chodsigoa parca); 171. Bornean Water Shrew (Chimarrogale phaeura); 172. Sumatran Water Shrew (Chimarrogale sumatrana); 173. Malayan Water Shrew (Chimarrogale hantu); 174. Chinese Water Shrew (Chimarrogale styani); 175. Himalayan Water Shrew (Chimarrogale himalayica); 176. Leander's Water Shrew (Chimarrogale leander); 177. Japanese Water Shrew (Chimarrogale platycephala); 178. Elegant Water Shrew (Nectogale elegans); 179. Mediterranean Water Shrew (Neomys anomalus); 180. Transcaucasian Water Shrew (Neomys teres); 181. Eurasian Water Shrew (Neomys fodiens).
Horno romano de Villa Petraria (Petrer)
Cronología: siglos II y III después de Cristo Source: Objaverse 1.0 / Sketchfab
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