Study on the Dynamic Protection Strategy of Ancient Buildings in Historical and Cultural Neighbourhoods from the Perspective of Traditional Culture Based on Three-dimensional Modelling Technology
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Clini, P., & Quattrini, R. (2021). Digital Cultural Heritage, arts reproduction and Museums systems. Languages and techniques in a Covid and post-Covid scenario for new forms of heritage against the silence of a fragile culture. SCIRES-IT-SCIentific RESearch and Information Technology, 11(1), 1-10.CliniP.QuattriniR. (2021). Digital Cultural Heritage, arts reproduction and Museums systems. Languages and techniques in a Covid and post-Covid scenario for new forms of heritage against the silence of a fragile culture. SCIRES-IT-SCIentific RESearch and Information Technology, 11(1), 1-10.Search in Google Scholar
Cowin, J. B. (2020). Digital Worlds and Transformative Learning: Google Expeditions, Google Arts and Culture, and the Merge Cube. International Research and Review, 10(1), 42-53.CowinJ. B. (2020). Digital Worlds and Transformative Learning: Google Expeditions, Google Arts and Culture, and the Merge Cube. International Research and Review, 10(1), 42-53.Search in Google Scholar
Liu, Y., & Zhuang, Y. (2021). The Exploration of Applying of Spatial Information Technology in General Plan for Regional Cultural Heritage Conservation. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 46, 415-422.LiuY.ZhuangY. (2021). The Exploration of Applying of Spatial Information Technology in General Plan for Regional Cultural Heritage Conservation. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 46, 415-422.Search in Google Scholar
Marra, A., Trizio, I., & Fabbrocino, G. (2021, March). Digital Tools for the knowledge and safeguard of historical heritage. In International Workshop on Civil Structural Health Monitoring (pp. 645-662). Cham: Springer International Publishing.MarraA.TrizioI.FabbrocinoG. (2021, March). Digital Tools for the knowledge and safeguard of historical heritage. In International Workshop on Civil Structural Health Monitoring (pp. 645-662). Cham: Springer International Publishing.Search in Google Scholar
Li, M., Wang, Y., & Xu, Y. Q. (2022). Computing for Chinese cultural heritage. Visual Informatics, 6(1), 1-13.LiM.WangY.XuY. Q. (2022). Computing for Chinese cultural heritage. Visual Informatics, 6(1), 1-13.Search in Google Scholar
Fadli, F., & AlSaeed, M. (2019). Digitizing vanishing architectural heritage; The design and development of Qatar historic buildings information modeling [Q-HBIM] platform. Sustainability, 11(9), 2501.FadliF.AlSaeedM. (2019). Digitizing vanishing architectural heritage; The design and development of Qatar historic buildings information modeling [Q-HBIM] platform. Sustainability, 11(9), 2501.Search in Google Scholar
Li, Y., & Xu, Y. (2022). A Study on Landscape VR Design of Special Neighborhood Based on Traditional Culture. Wireless Communications and Mobile Computing, 2022(1), 7596883.LiY.XuY. (2022). A Study on Landscape VR Design of Special Neighborhood Based on Traditional Culture. Wireless Communications and Mobile Computing, 2022(1), 7596883.Search in Google Scholar
Cabeça, S. M. (2018). Cultural mapping: A sustainable methodology for intangible cultural heritage. Memoriamedia Review, 3(5), 1-9.CabeçaS. M. (2018). Cultural mapping: A sustainable methodology for intangible cultural heritage. Memoriamedia Review, 3(5), 1-9.Search in Google Scholar
Gigliarelli, E., Calcerano, F., & Cessari, L. (2017). Heritage Bim, numerical simulation and decision support systems: An integrated approach for historical buildings retrofit. Energy Procedia, 133, 135-144.GigliarelliE.CalceranoF.CessariL. (2017). Heritage Bim, numerical simulation and decision support systems: An integrated approach for historical buildings retrofit. Energy Procedia, 133, 135-144.Search in Google Scholar
Kantaros, A., Ganetsos, T., & Petrescu, F. I. T. (2023). Three-dimensional printing and 3D scanning: Emerging technologies exhibiting high potential in the field of cultural heritage. Applied Sciences, 13(8), 4777.KantarosA.GanetsosT.PetrescuF. I. T. (2023). Three-dimensional printing and 3D scanning: Emerging technologies exhibiting high potential in the field of cultural heritage. Applied Sciences, 13(8), 4777.Search in Google Scholar
Marques, L., & Roca, J. (2021). Three-Dimensional Modelling for Cultural Heritage. In Methods and Applications of Geospatial Technology in Sustainable Urbanism (pp. 418-443). IGI Global.MarquesL.RocaJ. (2021). Three-Dimensional Modelling for Cultural Heritage. In Methods and Applications of Geospatial Technology in Sustainable Urbanism (pp. 418-443). IGI Global.Search in Google Scholar
Doğan, Y., & Yakar, M. (2018). GIS and three-dimensional modeling for cultural heritages. International Journal of Engineering and Geosciences, 3(2), 50-55.DoğanY.YakarM. (2018). GIS and three-dimensional modeling for cultural heritages. International Journal of Engineering and Geosciences, 3(2), 50-55.Search in Google Scholar
Thekkum Kara, G. K. (2021). Developing a sustainable cultural heritage information system. Library Hi Tech News, 38(6), 17-20.Thekkum KaraG. K. (2021). Developing a sustainable cultural heritage information system. Library Hi Tech News, 38(6), 17-20.Search in Google Scholar
Zhang, Y., Chen, S., & Hoistad, M. A. (2024). Sustainable development strategy for historic neighborhood shrinkage: taking Puhuiquan neighborhood in Yulin, China, as an example. Heritage Science, 12(1), 67.ZhangY.ChenS.HoistadM. A. (2024). Sustainable development strategy for historic neighborhood shrinkage: taking Puhuiquan neighborhood in Yulin, China, as an example. Heritage Science, 12(1), 67.Search in Google Scholar
Napolitano, R. K., Scherer, G., & Glisic, B. (2018). Virtual tours and informational modeling for conservation of cultural heritage sites. Journal of Cultural Heritage, 29, 123-129.NapolitanoR. K.SchererG.GlisicB. (2018). Virtual tours and informational modeling for conservation of cultural heritage sites. Journal of Cultural Heritage, 29, 123-129.Search in Google Scholar
Quagliarini, E., Clini, P., & Ripanti, M. (2017). Fast, low cost and safe methodology for the assessment of the state of conservation of historical buildings from 3D laser scanning: The case study of Santa Maria in Portonovo (Italy). Journal of Cultural Heritage, 24, 175-183.QuagliariniE.CliniP.RipantiM. (2017). Fast, low cost and safe methodology for the assessment of the state of conservation of historical buildings from 3D laser scanning: The case study of Santa Maria in Portonovo (Italy). Journal of Cultural Heritage, 24, 175-183.Search in Google Scholar
Balsa-Barreiro, J., & Fritsch, D. (2018). Generation of visually aesthetic and detailed 3D models of historical cities by using laser scanning and digital photogrammetry. Digital applications in archaeology and cultural heritage, 8, 57-64.Balsa-BarreiroJ.FritschD. (2018). Generation of visually aesthetic and detailed 3D models of historical cities by using laser scanning and digital photogrammetry. Digital applications in archaeology and cultural heritage, 8, 57-64.Search in Google Scholar
Marques, L. F., Tenedório, J. A., Burns, M., Romão, T., Birra, F., Marques, J., & Pires, A. (2017). Cultural Heritage 3D Modelling and visualisation within an Augmented Reality Environment, based on Geographic Information Technologies and mobile platforms. ACE: Arquitectura, Ciudad y Entorno.MarquesL. F.TenedórioJ. A.BurnsM.RomãoT.BirraF.MarquesJ.PiresA. (2017). Cultural Heritage 3D Modelling and visualisation within an Augmented Reality Environment, based on Geographic Information Technologies and mobile platforms. ACE: Arquitectura, Ciudad y Entorno.Search in Google Scholar
Antón, D., Medjdoub, B., Shrahily, R., & Moyano, J. (2018). Accuracy evaluation of the semi-automatic 3D modeling for historical building information models. International Journal of Architectural Heritage, 12(5), 790-805.AntónD.MedjdoubB.ShrahilyR.MoyanoJ. (2018). Accuracy evaluation of the semi-automatic 3D modeling for historical building information models. International Journal of Architectural Heritage, 12(5), 790-805.Search in Google Scholar
Grama, V., Ilies, G., Safarov, B., Ilies, A., Caciora, T., Hodor, N., … & Josan, I. (2022). Digital Technologies Role in the Preservation of Jewish Cultural Heritage: Case Study Heyman House, Oradea, Romania. Buildings, 12(10), 1617.GramaV.IliesG.SafarovB.IliesA.CacioraT.HodorN.JosanI. (2022). Digital Technologies Role in the Preservation of Jewish Cultural Heritage: Case Study Heyman House, Oradea, Romania. Buildings, 12(10), 1617.Search in Google Scholar
Dhonju, H. K., Xiao, W., Mills, J. P., & Sarhosis, V. (2018). Share our cultural heritage (SOCH): Worldwide 3D heritage reconstruction and visualization via web and mobile GIS. ISPRS International Journal of Geo-Information, 7(9), 360.DhonjuH. K.XiaoW.MillsJ. P.SarhosisV. (2018). Share our cultural heritage (SOCH): Worldwide 3D heritage reconstruction and visualization via web and mobile GIS. ISPRS International Journal of Geo-Information, 7(9), 360.Search in Google Scholar
Pepe, M., Costantino, D., Alfio, V. S., Angelini, M. G., & Restuccia Garofalo, A. (2020). A CityGML multiscale approach for the conservation and management of cultural heritage: The case study of the old town of Taranto (Italy). ISPRS International Journal of Geo-Information, 9(7), 449.PepeM.CostantinoD.AlfioV. S.AngeliniM. G.Restuccia GarofaloA. (2020). A CityGML multiscale approach for the conservation and management of cultural heritage: The case study of the old town of Taranto (Italy). ISPRS International Journal of Geo-Information, 9(7), 449.Search in Google Scholar
Xia, S., Liu, B., & Wang, H. (2022). Construction of a sustainability-based building attribute conservation assessment model in historic areas. Buildings, 12(9), 1346.XiaS.LiuB.WangH. (2022). Construction of a sustainability-based building attribute conservation assessment model in historic areas. Buildings, 12(9), 1346.Search in Google Scholar
Min Tang,Xi Mei,Yanna Li,Chen Chen,Xiuju Liu & Heng Lu. (2024). Application of oblique photogrammetry technique in geological hazard identification and decision management. Earthquake Research Advances(3),100269-100269.MinTangXiMeiYannaLiChenChenXiujuLiuHengLu. (2024). Application of oblique photogrammetry technique in geological hazard identification and decision management. Earthquake Research Advances(3),100269-100269.Search in Google Scholar
Lizhi Pan,Chengtian Song,Xiaozheng Gan,Keyu Xu & Yue Xie. (2024). Military Image Captioning for Low-Altitude UAV or UGV Perspectives. Drones(9),421-421.LizhiPanChengtianSongXiaozhengGanKeyuXuYueXie. (2024). Military Image Captioning for Low-Altitude UAV or UGV Perspectives. Drones(9),421-421.Search in Google Scholar
Tian jian Luo,Sanjeevkumar Angadi & Mohamed A. Elashiri. (2025). Ensemble strategies exploration for the calibration data optimized spatial filters based SSVEP recognition algorithms. Biomedical Signal Processing and Control106932-106932.TianjianLuoSanjeevkumarAngadiMohamed A.Elashiri. (2025). Ensemble strategies exploration for the calibration data optimized spatial filters based SSVEP recognition algorithms. Biomedical Signal Processing and Control106932-106932.Search in Google Scholar