Edited Book

Historical architecture and settlements along Kama river in the Perm region

  • Edited by:
  • Sandro Parrinello,
  • Francesca Picchio,

The volume presents the outcomes of the research and experimental activities carried out in the Upper Kama region within the EU-funded project PROMETHEUS – PROtocols for information Models librariEs Tested on HEritage of Upper Kama Sites (H2020 MSCA-RISE-2018 GA 821870). The work addressed the religious heritage that shapes the area's historical landscape, developing a territorial-regional cultural route that connects religious architecture, historic settlements, cultural landscapes, and networks distributed along the Kama River.
The project involved lecturers, researchers and students from different disciplinary fields and proposed an integrated approach to historical and architectural heritage, combining critical interpretation, digital survey, 3D modelling and information systems. Within this framework, PROMETHEUS investigated the application of BIM to heritage contexts, testing digital and cognitive protocols for the representation, management and enhancement of European cultural heritage.

  • Keywords:
  • H2020,
  • Europe,
  • Cultural Heritage Routes,
  • Digital Documentation,
  • H-BIM,
  • Upper Kama,
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Sandro Parrinello

Univeristy of Florence, Italy - ORCID: 0000-0002-3698-7885

Francesca Picchio

University of Pavia, Italy - ORCID: 0000-0002-8072-584X

Sandro Parrinello is Full Professor of Drawing at the University of Florence and Director of the DARWIN Laboratory at the Department of Architecture, where he coordinates national and international research projects dedicated to the digital documentation of heritage. He is editor-in-chief and scientific coordinator of journals and book series devoted to architectural representation and cultural heritage studies.

Francesca Picchio is Associate Professor at the University of Pavia. Since 2023, she has directed the DAda Lab, coordinating national and international research projects. Her teaching and research focus on the analysis and study of modes of representation of cultural, architectural and landscape heritage. On these topics, she is the author of monographs and numerous essays and scientific articles published in indexed journals.
  1. A. Giuffrè, C. Tocci, C.F. Carocci, Leggendo il libro delle antiche architetture. Aspetti statici del restauro, Saggi 1985-1997, Cangemi Editore, 2011.
  2. Abeti M. 2018, Architettura della libertà. Avanguardie e rivoluzione bolscevica, Delta 3 Edizioni, Avellino.
  3. Agapiou A., Lysandrou V., Alexakis D. D., Themistocleous K., Cuca B., Argyriou A., Sarris A., Hadjimitsis D. G. 2015, Cultural heritage management and monitoring using remote sensing data and GIS: the case study of Paphos area, Cyprus, in Computers, Environment and Urban Systems, 54, pp. 230–239.
  4. Agrasar F. 2008, Introducción al conocimiento de la arquitectura, COAG, Galicia.
  5. AIA 2008, AIA Document E202–2008. Building Information Modeling Protocol Exhibit, pp. 4–6, available at: http://www.durhamnc.gov/agendas_new/2015/cm20150302/10290_CONTRACT_E202_CONTRACT_ATTACHMENT__365760_627078.PDF
  6. Aicardi I., Chiabrando F., Grasso N., Lingua A. M., Noardo F., Spanò A. 2016, UAV photogrammetry with oblique images: first analysis on data acquisition and processing, in The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 41, pp. 835–842.
  7. Al-Kheder S., Haddad N., Fakhoury L., Baqaen S. 2009, A GIS analysis of the impact of modern practices and policies on the urban heritage of Irbid, Jordan, in Cities, 26, pp. 81–92.
  8. Almagro Gorbea A. 1995–1996, Reflexiones en torno a la restauración monumental en España, in Boletín de la Real Academia de Bellas Artes de Granada, 5.
  9. Architects and architectural monuments of Perm Kama region: Krat. ENCYCLOPAEDIA. dictionary. - Perm, 2003.
  10. Audisio L. 2011, La catalogazione del disegno di architettura nell’era digitale, in DisegnareCon, 4(8), pp. 116–123.
  11. Bails B. 1796, Tratado de arquitectura civil, vol. 2, Colegio de Aparejadores y Arquitectos Técnicos de Murcia, Murcia.
  12. Balzani M. 2017, Integrated 3D morphometric survey for the management and planning of architectural heritage, in Conserving Architecture, AADI Centre, pp. 288–305.
  13. Balzani M., Maietti F. 2018, Urban space and places of memory: the survey as a tool for investigating the process of transformation, in C. L. Marcos (ed.), Graphic Imprints. The Influence of Representation and Ideation Tools in Architecture, Springer, Cham, pp. 541–556.
  14. Bandarin F., Van Oers R. 2012, The historic urban landscape: managing heritage in an urban century, John Wiley & Sons, Hoboken.
  15. Bankovsky L. V. Solikamsk: crystal city: the Beginning Solikamsk studies. - 2nd ed. - Solikamsk: publishing house of Saratov state pedagogical University, 2006. - 306 p. - 15. 5-89469-042-0.
  16. Bateson G. 1984, Mente e natura. Un’unità necessaria, Adelphi, Milano.
  17. Belavin, A. M., Bordinskih G. A., Melnichuk A. F. Archaeological monuments of Solikamsk district: Directory. - Solikamsk, 1989.
  18. Benedetti B., Gaiani M., Remondino F. 2010, Modelli digitali 3D in archeologia: il caso di Pompei, Edizioni della Normale, Pisa.
  19. Berkh V. P. 1821, Puteshestviye v goroda Cherdyn' i Solikamsk: dlya izyskaniya istoricheskikh drevnostey, Pechatano v voyennoy tipografii Glavnogo Shtaba, St Petersburg.
  20. Bertocci S., Minutoli G., Pancani G. 2015, 3D survey and instability analysis of Romena parish, in DisegnareCon, 8(14), pp. 1-20.
  21. Bevilacqua M. G., Russo M., Giordano A., Spallone R. 2022, 3D reconstruction, digital twinning, and virtual reality: architectural heritage applications, in Proceedings of the IEEE Conference on Virtual Reality and 3D User Interfaces Workshops (VRW), IEEE, pp. 92–96.
  22. Biagi Maino D., Maino G. 2017, Principi e applicazioni del restauro virtuale, Edifir, Firenze.
  23. Bocconcino M. M., Manzone F. 2019, Sistemi informativi e strumenti grafici per la manutenzione di manufatti complessi, in Colloqui.AT.e 2019. Ingegno e costruzione nell’epoca della complessità, Torino, pp. 679–688.
  24. Bogoslovsky P. 1915, Underground passage and archaeological excavations in Pyskor, Solikamsk district, in Perm Diocesan Vedomosti (PEW), 31, pp. 974–982; 34, pp. 1034–1041; 35, pp. 1064–1067; 36, pp. 1080–1091.
  25. Bogoslovsky P. S. 1915, Underground passage and archaeological excavations in the village of Pyskor, in Izvestia of the Perm Diocesan Church-Archaeological Society, 1, Perm, pp. 92–140 (translit.: Podzemnyy khod i arkheologicheskie raskopki v sele Pyskor).
  26. Bordinskih G. A. Church-historical description of the towns of Cherdyn and Solikamsk. - Solikamsk, 1996.
  27. Bordinskikh G. A., Fedoseev N. F., Chirkov Yu. S. at the crossroads of time and roads. Solikamsk district: history and modernity. - Perm, 2004.
  28. Bordinskikh G. A., Zhebelev O. V., Zhebeleva N. A. and others. Geography of Solikamsk and Solikamsk district: Textbook. - Solikamsk, 2005.
  29. Borrmann A., König M., Koch C., Beetz J. 2018, Building information modeling: why? what? how? State of BIM adoption, in Building Information Modeling. Technology Foundations and Industry Practice, Springer, Cham, pp. 1–25.
  30. Bouchenaki M. 2003, The interdependency of the tangible and intangible cultural heritage, in 14th ICOMOS General Assembly and International Symposium: Place, Memory, Meaning, ICOMOS, Victoria Falls.
  31. Braitseva O. I. 1977, Stroganov buildings of the late 17th–18th century, Stroyizdat, Moscow (translit.: Stroganovskie postrojki rubezha XVII–XVIII vv.).
  32. Brumfield W. 2011, Usolye: Stroganov outpost in the Urals, available at: https://www.rbth.com/articles/2011/08/11/usolye_stroganov_outpost_in_the_urals_12850 (accessed 23 May 2015).
  33. Brumfield W. C. 1993, A History of Russian Architecture, Cambridge University Press, Cambridge.
  34. Brumfield W. C. 1995, Lost Russia, Duke University Press, Durham.
  35. Brumfield W. C. 1997, Landmarks of Russian architecture, Gordon and Breach, Amsterdam.
  36. Brumfield W. C. 2007, Cherdyn: Architectural Heritage in Photographs, Wilson Center, Washington, DC.
  37. Brumfield W. C. 2007, Solikamsk: Architectural Heritage in Photographs, Wilson Center, Washington, DC.
  38. Brumfield W. C. 2008, The architectural heritage of Solikamsk and the northern districts of Perm Province, in Cahiers slaves, 10, pp. 317–355.
  39. Brumfield W. C. 2011, Usolye: Stroganov outpost in the Urals, in Russia and India Report, available at: http://in.rbth.com/articles/2011/08/11/usolye_stroganov_outpost_in_the_urals_12850.html
  40. Brumfield W. C. 2012, Usolye: Architectural Heritage in Photographs, Wilson Center, Washington, DC.
  41. Brumfield W. C. n.d., Usolye: Stroganov outpost in the Urals, in Russia and India Report, available at: https://www.rbth.com/articles/2011/08/11/usolye_stroganov_outpost_in_the_urals_12850 (accessed 1 July 2019).
  42. Bushmakina Y. 2018, Ocherk arkhitekturno-planirovochnoy istorii Usol’ye v XVII – nachale XX vv., in I. A. Podukov (ed.), Usol’skie drevnosti. Sbornik trudov i materialov po traditsionnoy kul’ture russkikh Usol’skogo rayona kontsa XIX – XX vv., 2nd edn., Usol’ye, pp. 27–56.
  43. Byrne D. R. 2008, Heritage as social action, in G. J. Fairclough, R. Harrison, J. H. Jameson, J. Schofield (eds.), The Heritage Reader, Routledge, London, pp. 149–173.
  44. C. Formenti, La pratica del Fabbricare, Milano, Ulrico Hoepli, 1909.
  45. Caballero et al. 1987, Curso de mecánica y tecnología de los edificios antiguos, Colegio Oficial de Arquitectos de Madrid, Madrid.
  46. Cadena C., Carlone L., Carrillo H., et al. 2016, Past, present, and future of simultaneous localization and mapping: toward the robust-perception age, in IEEE Transactions on Robotics, 32(6), pp. 1309–1332.
  47. Cano M., Garzón E., Sánchez-Soto P. J. 2013, Historic preservation, GIS, and rural development: the case of Almería province, Spain, in Applied Geography, 42, pp. 34–47.
  48. Caprioli M., Mancini F., Mazzone F., Scarano M., Trizzino R. 2015, UAV surveys for representing and documenting cultural heritage, in Le Vie dei Mercanti. XIII International Forum, 56, pp. 475–482.
  49. Carbonara G. 1976, La reintegrazione dell’immagine: problemi di restauro dei monumenti, Bulzoni, Roma.
  50. Casinello Pérez F. 1969, Bóvedas y cúpulas de ladrillo, 3rd ed., Instituto Eduardo Torroja, Madrid.
  51. Casinello Pérez F. 1971, El ladrillo y sus fábricas, Instituto Eduardo Torroja, Madrid.
  52. Chiabrando F., Donadio E., Rinaudo F. 2015, SfM for orthophoto generation: a winning approach for cultural heritage knowledge, in ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences, II-5/W3, pp. 91–98.
  53. Chiabrando F., Donadio E., Sammartano G., Spanò A. 2015, La tecnologia laser scanning per la valutazione statica delle strutture storiche, in Proceedings of the 19° Conferenza Nazionale ASITA, Lecco, pp. 253–261.
  54. Chiabrando F., Lingua A., Maschio P., Teppati Losè L. 2017, The influence of flight planning and camera orientation in UAV photogrammetry: a test in the area of Rocca San Silvestro (LI), Tuscany, in The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-2/W3, pp. 163–170.
  55. Church of Saints Peter and Paul n.d., available at: http://rpcb.ru/xram-petra-i-pavla/
  56. Church of Taman n.d., available at: http://taman.cerkov.ru/628/
  57. Cianci M. G. 2008, La rappresentazione del paesaggio. Metodi, strumenti e procedure per l’analisi e la rappresentazione, Alinea, Firenze.
  58. Colomina I., Molina P. 2014, Unmanned aerial systems for photogrammetry and remote sensing: a review, in ISPRS Journal of Photogrammetry and Remote Sensing, 92, pp. 79–97.
  59. Corboz A. 1985, Il territorio come palinsesto, in Casabella, 516, pp. 22–27.
  60. Cos-Gayón F., Cordón A., Anquela A., Bonet J. 2016, Aplicaciones de la realidad virtual inmersiva en el Teatro Romano de Sagunto (Valencia, España), in EUBIM 2016. BIM International Conference, pp. 138–149.
  61. Cullen G. 1976, Il paesaggio urbano, Calderini, Bologna (orig. ed. The Concise Townscape, The Architectural Press, New York, 1961).
  62. Cullen G. 2012, Concise townscape, Routledge, London.
  63. D’Angelo P. (ed.) 2020, Estetica e paesaggio, Il Mulino, Bologna.
  64. De Koster R. (ed.) 2012, Guidelines on cultural heritage. Technical tools for heritage conservation and management, JP–EU, available at: https://rm.coe.int/16806ae4a9  (accessed 26 March 2021).
  65. De Luca L. 2011, La fotomodellazione architettonica. Rilievo, modellazione, rappresentazione di edifici a partire da fotografie, Dario Flaccovio Editore, Palermo.
  66. De Luca L., Pierrot-Deseilligny M., Remondino F. 2011, Automated image-based procedures for accurate artifacts 3D modeling and orthoimage generation, in Geoinformatics FCE CTU, 6, pp. 291–299.
  67. De Marco R. 2017, El levantamiento del Generalife. Campaña de 2017 – La construcción del archivo 3D, in S. Parrinello, A. Gómez-Blanco, F. Picchio (eds.), El palacio del Generalife. Del levantamiento digital al proyecto de gestión, Pavia University Press, Pavia, pp. 80–83.
  68. De Marco R. 2018, Shapes and models: the survey for the study of structures in historical buildings, in K. Williams, M. G. Bevilacqua (eds.), Nexus 2018. Architecture and Mathematics, Kim Williams Books, Pisa, pp. 289–292.
  69. De Marco R. 2019, Morphometric documentation for the structuring of city shape, in S. Parrinello (ed.), 3D Bethlehem. Management and control of urban growth for the development of heritage and improvement of life in the city of Bethlehem, vol. 1, Edifir, Firenze, pp. 57–84.
  70. De Marco R., Dell’Amico A. 2020, Connettere il territorio tra patrimonio, informazione e pianificazione: banche dati e modelli per le Cultural Heritage Routes dall’esperienza dell’Upper Kama, in Connettere / Connecting. Un disegno per annodare e tessere, FrancoAngeli, pp. 258–277.
  71. De Marco R., Miceli A., Parrinello S. 2020, An assessment on morphological survey calibration and the automation of digital drawing for the reliable documentation and conservation analysis of out-of-scale buildings, in IMEKO TC-4 International Conference on Metrology for Archaeology and Cultural Heritage.
  72. De Vecchi C. 2000, La rappresentazione del paesaggio: funzione documentaria e riproducibilità tecnica, CUEM, Milano.
  73. Dell’Amico A. 2020, H-BIM: information flows and data digitization process, in Dn, 7, pp. 54–67.
  74. Dell’Amico A. 2020, The application of fast survey technologies for urban surveying: the documentation of the historic center of Santa Cruz de Mompox, in S. Barba, S. Parrinello, M. Limongello, A. Dell’Amico (eds.), D-SITE. Drones – Systems of Information on Cultural Heritage. For a spatial and social investigation, vol. 1, Pavia University Press, Pavia, pp. 132–141.
  75. Dell’Amico A. 2021, Mobile laser scanner mapping systems for the efficiency of survey and representation processes, in The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, 46, pp. 199–205.
  76. Dell’Amico A. 2022, Memoria e modello digitale. La costruzione di un sistema informativo per la salvaguardia del patrimonio architettonico diffuso dell’Upper Kama, in Restauro Archeologico, 30(1), pp. 32–53.
  77. Document portal n.d., available at: http://docs.cntd.ru/document/444789815
  78. Dominici D., Alicandro M., Massimi V. 2017, UAV photogrammetry in the post-earthquake scenario: case studies in L’Aquila, in Geomatics, Natural Hazards and Risk, 8(1), pp. 87–103.
  79. Europeana Data Model – Mapping Guidelines v2.4 http://pro.
  80. europeana.eu/edm-documentation
  81. Evans K., Fielding L. 1998, Giza (Egypt): the use of GIS in managing a World Heritage Site, in M. Shackley (ed.), Visitor Management: Case Studies from World Heritage Sites, Butterworth-Heinemann, Oxford, pp. 82–99.
  82. F. Doglioni, A. Moretti, V. Petrini, Le chiese e il terremoto, dalla vulnerabilità constatata nel terremoto del Friuli al miglioramento antisismico nel restauro, verso una politica di prevenzione, Lint Editoriale Associati, 1994.
  83. Feilden B. M., Jokilehto J. 1998, Management guidelines for world cultural heritage sites, ICCROM, Rome.
  84. Figes O. 2011, La danza di Nataša. Storia della cultura russa (XVIII–XX secolo), Einaudi, Torino.
  85. Gaiani M. 2015, I portici di Bologna, Bononia University Press, Bologna.
  86. Galassi P. 1989, Prima della fotografia. La pittura e l’invenzione della fotografia, Bollati Boringhieri, Torino.
  87. Gapo F. n.d., Solikamskoye gorodskoye dukhovnoye pravleniye, Arkhiv SKM, f. 82, op. 1, d. 15, l. 84; d. 361, 362, 377, 390–396, 398, 405.
  88. Garau C. 2017, Emerging technologies and cultural tourism: opportunities for a cultural urban tourism research agenda, in Tourism in the City: Towards an Integrative Agenda on Urban Tourism, Springer, Cham, pp. 67–80.
  89. García Esparza J. A. 2017, Are world heritage concepts of integrity and authenticity lacking in dynamism?, in Landscape Research, 43(6), pp. 817-830.
  90. Gibson J. J. 1950, The Perception of the Visual World, Houghton Mifflin, Boston.
  91. Gigliarelli E., Calcerano F., Calvano M., Cursi S., Lorenzi L., Martinelli L., Sibilla M. 2020, La rappresentazione della conoscenza utilizzando le mappe cognitive per favorire la ricerca collaborativa, in Dn, 7, pp. 68–82.
  92. Giuffrè A., Carocci C. F. 1994, Statics and dynamics of historical masonry buildings, in Proceedings of the International Workshop on Structural Restoration of Historical Buildings in Old City Centers, Heraklion, Crete, pp. 71–152.
  93. Goldstein A. F. 1979, The architecture, ed. by Yaralova, Prosveshchenie, Moscow, 413 p. (translit.: Zodchestvo).
  94. Golovchanskiy G. P., Melnichuk A. F. 2005, Stroganov towns, forts, and villages, Knizhnyy mir, Perm (translit.: Stroganovskie gorodki, ostrozhki, sela).
  95. Gonçalves J. A., Henriques R. 2015, UAV photogrammetry for topographic monitoring of coastal areas, in ISPRS Journal of Photogrammetry and Remote Sensing, 104, pp. 101–111.
  96. Gontsov E. N. (ed.) 2011, Historical and architectural heritage of the Perm region: catalog-reference, Reykjavik Design Bureau, Perm, p. 210.
  97. González-Varas I. 1999, Conservación de bienes culturales: teoría, historia, principios y normas, Cátedra, Madrid.
  98. Graciani García A. 2000, Hacia el nacimiento de la historia de la construcción, in Actas del Tercer Congreso Nacional de Historia de la Construcción, Instituto Juan de Herrera, Madrid, pp. 469–477.
  99. Grussenmeyer P., Landes T., Voegtle T., Ringle K. 2008, Comparison methods of terrestrial laser scanning, photogrammetry and tacheometry data for recording of cultural heritage buildings, in The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XXXVII-B5, pp. 213–218.
  100. Guarnieri A., Milan N., Vettore A. 2013, Monitoring of complex structures for structural control using terrestrial laser scanning and photogrammetry, in International Journal of Architectural Heritage, 7(1), pp. 54–67.
  101. Gura T. A., Katrich A. E. 2016, Data processing of terrestrial laser scanning for taking measuring drawings of cultural heritage objects, in International Scientific Journal “Young Scientists”, technical sciences, 26(130), pp. 25–28.
  102. Historical-architectural heritage of Perm Krai 2011, catalogue-guide.
  103. Jakob M. 2009, Il paesaggio, Il Mulino, Bologna.
  104. James M. R., Robson S. 2012, Straightforward reconstruction of 3D surfaces and topography with a camera: accuracy and geoscience application, in Journal of Geophysical Research, 117, F03017.
  105. Jokilehto J. 1998, International trends in historic preservation: from ancient monuments to living cultures, in APT Bulletin, 29(3–4), pp. 17–19.
  106. Jordan-Palomar I., Tzortzopoulos P., García-Valldecabres J., Pellicer E. 2018, Protocol to manage heritage-building interventions using heritage building information modelling (HBIM), in Sustainability, 10, 908.
  107. Journals of the Perm diocesan regular congress of the clergy 1907, Journal no. 2, June 1 (evening session), in Perm Diocesan Vedomosti (PEW), 21, p. 423.
  108. Kantorovich G. D. 1975, Arkhitekturnyye ansambli Solikamska, in Solikamsk: istoriko-kul'turnyye pamyatniki, Perm’, pp. 69–133.
  109. Kantorovich G. D. Stone civil buildings of the Kama region XVII-XVIII centuries / / Design, construction and operation of buildings and structures. - Perm, 1973.
  110. Kantorovich G. D., Terekhin A. S. 1971, Ancient Russian builders of the Urals, in Proceedings of the Perm Polytechnic Institute, Perm, pp. 7-9 (translit.: Drevnerusskie stroiteli Urala).
  111. Kaptikov A. Yu. 1997, Ocherki istorii Urala. Vyp. 5: Arkhitektura Urala (XVII – pervaya polovina XIX v.), Bank kul'turnoy informatsii, Yekaterinburg.
  112. Kaptikov A. Yu. Architecture of the Urals (XVII-the first half of the XIX century). - Ekaterinburg, 1997.
  113. Katsko G. A. 1980, Pamyatniki arkhitektury g. Solikamska i ikh restavratsiya, in Materialy nauchno-prakticheskoy konferentsii “Solikamsk v proshlom, nastoyashchem, budushchem”, Solikamsk, pp. 33–39.
  114. Kioussi A., Karoglou M., Labropoulos K., Bakolas A., Moropoulou A. 2013, Integrated documentation protocols enabling decision making in cultural heritage protection, in Journal of Cultural Heritage, 14(3), pp. 141–146.
  115. Kioussi A., Labropoulos K., Karoglou M., Moropoulou A., Zarnic R. 2011, Recommendations and strategies for the establishment of a guideline for monument documentation harmonized with existing European standards and codes, in Journal Geoinformatics FCE CTU, 6, pp. 178–184.
  116. Kiselev A. B. 2018, Proyekt restavratsii i prisposobleniya 116/18-NPD-2018-KNI.IZ. Kniga 1. Istoriko-arkhivnyye i bibliograficheskiye issledovaniya, Perm’.
  117. Kiselev A. B., Yakina V. A. 2011, Istoriko-arkhitekturnoe nasledie Permskogo kraya: katalog-spravochnik, Perm.
  118. Klosterman S., Melaas E., Wang J. A., Martinez A., Frederick S., O’Keefe J., Richardson A. D. 2018, Fine-scale perspectives on landscape phenology from unmanned aerial vehicle (UAV) photography, in Agricultural and Forest Meteorology, 248, pp. 397–407.
  119. Knowles A. K. 2008, GIS and history, in A. K. Knowles (ed.), Placing History: How Maps, Spatial Data, and GIS Are Changing Historical Scholarship, ESRI Press, Redlands, pp. 1–26.
  120. Korchagin P. A. 2008, Vozmozhnosti planigraficheskikh istochnikov v istoricheskikh issledovaniyakh: po materialam planov Egoshikhinskogo zavoda – Permi XVIII–XIX vv., in I. A. Bondarenko (ed.), Gorod v zerkale genplana: panorama gradostroitel’nykh proektov v rossiyskoy provintsii XVIII – nachala XXI vekov, ChGPU, Chelyabinsk, pp. 7–27.
  121. Korchagin P. A., Shaburova E. V. 2009, Epiphany and Christianization of the Great Perm (15th–early 18th century): archaeological and art aspects, in Proceedings of the Kama Archaeological and Ethnographic Expedition, 6, p. 194 (translit.: Vekhi kreshcheniya i khristianizatsii Permi Velikoy).
  122. Kornienko S. I., Kruglova A. S., Pyankov S. V. 2015, Historical and cultural heritage of Perm region: conservation, visualization and study of GIS technologies, in InterKarto/InterGIS-21. Ustoychivoe razvitie territoriy: kartografo-geoinformatsionnoe obespechenie, Krasnodar, pp. 124–132.
  123. Kostochkin V. V. 1988, Cherdyn, Solikamsk, Usolye, Stroyizdat, Moscow. (translit.: Cherdyn’, Solikamsk, Usol’e).
  124. Krasnoshchekova N. S. 2010, Formirovanie prirodnogo karkasa v general’nykh planakh gorodov [Forming a natural framework in the general plans of cities], Arkhitektura-S, Moscow.
  125. Kršák B., Blištan P., Pauliková A., Puškárová P., Kovanic. M., Palková J., Zeliznaková V. 2016, Use of low-cost UAV photogrammetry to analyze the accuracy of a digital elevation model in a case study, in Measurement, 91, pp. 276–287.
  126. Kuptikov A. Y. 2011, Solvychegodsk Churches and architecture of the Russian North in the 18th century, in Academic Bulletin of the UralNIIproekt RAABS, 2 (translit.: Sol’vychegodskie tserkvi i arkhitektura Russkogo Severa XVIII veka).
  127. L. V. Bankovskaya, Garden of XVIII century. - 3rd ed. - Solikamsk, 2010. - 15-978-5-89469-065-0.
  128. Langfield M., Logan W. S., Nic Craith M. 2010, Cultural diversity, heritage and human rights: intersections in theory and practice, Routledge, London.
  129. Limongiello M., Barba S. 2020, I droni per il rilievo di siti archeologici e la documentazione del paesaggio, CUA.
  130. Limongiello M., Lorusso A., Sanseverino A., Messina B. 2022, Predictive preservation of historic buildings through IoT-based systems, in C. Battini, E. Bistagnino (eds.), Dialogues. Visions and visuality, FrancoAngeli, Milano, pp. 2607–2620.
  131. Lo Turco M., Mattone M., Rinaudo F. 2017, Dal rilievo metrico all’H-BIM per l’analisi dello stato di conservazione della fabbrica, in G. Tucci, E. I. Parisi (eds.), Ananke Speciale GeoRes 2017, Altralinea, Firenze.
  132. Logan W. 2012, Cultural diversity, cultural heritage and human rights: towards heritage management as human rights-based cultural practice, in International Journal of Heritage Studies, 18(3), pp. 231–244.
  133. Logan W. S. 2001, Globalizing heritage: world heritage as a manifestation of modernism and the challenge from the periphery, in ICOMOS National Conference, Adelaide, pp. 51–57.
  134. López Collado G. 1985, Ruinas en construcciones antiguas. Causas, consolidaciones y traslados, Ministerio de la Vivienda, Madrid.
  135. Lukanin A. 1882, Tserkovno-istoricheskoye i arkheologicheskoye opisaniye g. Solikamska, in Permskiye eparkhial'nyye vedomosti, 13–14, pp. 131–146; 155–159.
  136. Lynch K. 1960, The Image of the City, MIT Press, Cambridge, MA.
  137. Mamin-Sibiryak D. N. 1951, Old Perm: travel sketches, in Collected works in 12 volumes, vol. XII, Sverdlovsk, p. 295 (translit.: Staraya Perm’).
  138. Martellucci S. 2007, L’idea paesaggio, Alinea Editrice, Firenze.
  139. Matrone F., Lingua A., Pierdicca R., Malinverni E. S., Paolanti M., Grilli E., Remondino F., Murtiyoso A., Landes T. 2020, A benchmark for large-scale heritage point cloud semantic segmentation, in The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLIII-B2-2020, pp. 1419–1426.
  140. Mel’nikov-Pecherskiy P. I. 1840, Dorozhnyye zapiski na puti iz Tambovskoy gubernii v Sibir’, in Otechestvennyye zapiski, 12, pp. 50–55.
  141. Merchán P., Salamanca S., Merchán M. J., Pérez E., Moreno D. 2018, Pasado, presente y futuro de los HBIM (Heritage/Historic Building Information Models), in XXXIX Jornadas de Automática.
  142. Metodología de diagnóstico y evaluación de tratamientos para la conservación de los edificios históricos 2003, Instituto Andaluz del Patrimonio Histórico, Comares, Granada.
  143. Mezenina K. 2018, Study of the phenomenon of Upper Kama architecture: rehabilitation of Usolye historic site, in G. Amoruso (ed.), Putting Tradition into Practice: Heritage, Place and Design, Springer, Cham.
  144. Mezenina K. O. 2014, Vizual’nyy analiz i ego znachenie v sokhranenii istoricheskikh arkhitekturnykh ob”ektov na primere zdaniya Rizhskoy assotsiatsii “Provodnik” [Visual analysis and its significance in the preservation of historic architectural sites], in Vestnik Perm National Research Polytechnic University, Construction and Architecture, 1, pp. 124–133.
  145. Mezenina K. O., Shamarina A. A. 2016, Technique of terrestrial laser scanning and data processing during the survey of historical-cultural heritage objects, in Bulletin of Perm National Research Polytechnic University. Applied Ecology. Urban Science, 2(22), pp. 45–62.
  146. Monuments of architecture, history and art of Cherdyn and Cherdyn Region 1997, vol. 2, Cherdyn.
  147. Monuments of history and culture of the Perm region. - Perm, 1976.
  148. Moret Colomer S. 2020, Guía práctica de Revit, vol. 1.
  149. Mumford L. 1963, The city in history, Edizioni di Comunità, Roma.
  150. Mumford L. 2002, La città nella storia. Dal santuario alla polis, vol. I, Bompiani, Milano (1st ed. 1961).
  151. Murphy M., McGovern E., Pavia S. 2009, Historic building information modelling (HBIM), in Structural Survey, 27(4), pp. 311–327.
  152. Musso e Copperi costruttori, Particolari di costruzioni murali e finimenti di fabbricati, Torino, sez. didattica, Esposizione Generale Italiana, 1884.
  153. Nekhuzhenko N. A. 2011, Osnovy landshaftnogo proektirovaniya i landshaftnoy arkhitektury [Basics of landscape design and landscape architecture], Piter, Saint Petersburg.
  154. Nemirovich-Danchenko V. 1890, Kama and Ural: essays and impressions, printing office of A. S. Suvorina, St Petersburg, 750 p. (translit.: Kama i Ural).
  155. News of the Imperial Archaeological Commission 1911, issue 39, St. Petersburg, p. 24 (translit.: Izvestiya Imperatorskoy Arkheologicheskoy Komissii).
  156. Nex F., Remondino F. 2014, UAV for 3D mapping applications: a review, in Applied Geomatics, 6(1), pp. 1–15.
  157. Norberg-Schulz C. 1992, Genius loci. Paesaggio, ambiente, architettura, Electa, Milano.
  158. Norberg-Schulz C. N. 1979, Genius Loci, Mondadori Electa, Milano.
  159. Norberg-Schulz C. N. 1992, Genius Loci. Paesaggio, ambiente, architettura, Electa, Milano.
  160. Official website “Skete of St. Trifon Vyatsky, Pyskor (Compound of the Holy Trinity Monastery, Solikamsk)” 2021 (Скит прп. Трифона Вятского, с. Пыскор Подворье Свято-Троицкого мужского монастыря г. Соликамска)  available at: http://pyskor.cerkov.ru/ is  (accessed 6 January 2021).
  161. Osello A., Ugliotti F. M. 2017, BIM: verso il catasto del futuro. Conoscere, digitalizzare, condividere. Il caso studio della città di Torino, Gangemi, Roma.
  162. Pamyatniki gradostroitel'nogo iskusstva n.d., g. Solikamsk. Sobornaya kolokol'nya, pp. 94–95.
  163. Pandakovic D., Dal Sasso A. 2013, Saper vedere il paesaggio, 2nd ed., Città Studi, Novara.
  164. Pareta K., Pareta U. 2011, Quantitative morphometric analysis of watershed of Yamuna Basin, India using ASTER (DEM) data and GIS, in International Journal of Geomatics & Geosciences, 2(1), pp. 248–269.
  165. Parrinello S. (ed.) 2022, 3D Bethlehem. Management and control of urban growth for the development of heritage and improvement of life in the city of Bethlehem, vol. 3, Edifir, Firenze.
  166. Parrinello S. 2012, I database e i sistemi di gestione dati georeferenziati GIS: applicazioni per il rilievo e il progetto, in S. Bertocci, M. Bini (eds.), Manuale di rilievo architettonico e urbano, Città Studi / De Agostini Scuola, Torino, pp. 418–424.
  167. Parrinello S. 2013, Disegnare il paesaggio. Esperienze di analisi e letture grafiche dei luoghi, Edifir, Firenze.
  168. Parrinello S. 2013, Integrated survey and laser scanner survey, in Masada Notebooks. Report of the Research Project 2013, Edifir, Firenze, pp. 76–115.
  169. Parrinello S. 2019, Preserving memory through image: landscapes and digital databases for documentation, in Digital & Documentation. Databases and Models for the Enhancement of Heritage, Pavia University Press, Pavia, pp. 18–33.
  170. Parrinello S., Bercigli M., De Marco R. 2017, Gerusalemme Est: sistemi cartografici 3D per il censimento urbano e di siti monumentali islamici, in Reuso, vol. 1, Editorial Universidad de Granada, Granada, pp. 235–241.
  171. Parrinello S., Cioli F. 2018, Un progetto di recupero per il complesso monumentale di Usolye nella regione della Kama Superiore, in Restauro Archeologico, 26, pp. 92–111.
  172. Parrinello S., De Marco R. 2018, Dalla città alla pietra: il rilievo digitale per la definizione dei comportamenti strutturali dell’architettura storica, in Rappresentazione Materiale/Immateriale, Gangemi, Milano, pp. 747–754.
  173. Parrinello S., De Marco R. 2018, From survey to the model: the graphic transposition of an earthquake, in Disegnare Idee Immagini, 57, pp. 70–81.
  174. Parrinello S., De Marco R. 2019, Integration and modelling of 3D data as strategy for structural diagnosis in endangered sites, in IMEKO TC-4 International Conference on Metrology for Archaeology and Cultural Heritage, pp. 223–228.
  175. Parrinello S., Dell’Amico A. 2019, Experience of documentation for the accessibility of widespread cultural heritage, in Heritage, 2, pp. 1032–1044.
  176. Parrinello S., Maksimova S. V. 2016, Contemporary methods of urban environment architectural survey, Perm National Research Polytechnic University, Perm.
  177. Parrinello S., Maksimova S. V., Mezenina K. O. 2015, Multi-method architectural survey as a tool for historic architectural heritage conservation, in PNRPU Vestnik. Applied Ecology and Urban Studies, 3(19), pp. 5–19.
  178. Parrinello S., Maksimova S. V., Sosnovskikh L. V. et al. 2015, Contemporary methods of urban environment architectural survey, Perm National Research Polytechnic University, Perm (translit.: Sovremennye metody arkhitekturnogo obsledovaniya gorodskoy sredy).
  179. Parrinello S., Pettineo A. 2025, Databases and information models for semantic and evolutionary analysis in fortified cultural heritage, in Heritage, 8(1), 29.
  180. Parrinello S., Picchio F. 2013, Dalla fotografia digitale al modello 3D dell’architettura storica, in DisegnareCon, 6(12), pp. 1–14.
  181. Parrinello S., Picchio F. 2014, Recomposing the landscape using structure from motion survey in the village of Korza, Karelia (Russia), in SCIRES-IT – Scientific Research and Information Technology, 4(2), pp. 29–42.
  182. Parrinello S., Picchio F. 2019, Integration and comparison of close-range SfM methodologies for the analysis and development of the historical city center of Bethlehem, in The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-2/W9, pp. 589–595.
  183. Parrinello S., Picchio F. 2023, Digital strategies to enhance cultural heritage routes, in Drones, 7, 576.
  184. Parrinello S., Picchio F., De Marco R., Dell’Amico A. 2019, Documenting the Cultural Heritage Routes. The creation of informative models of historical Russian churches in the Upper Kama Region, in The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLII-2/W15, pp. 887–894.
  185. Parrinello S., Picchio F., La Placa S. 2024, The construction of an informative 3D model for the monitoring of city heritage risk, in Reviving Aleppo, Springer, Cham, pp. 243–274.
  186. Parrinello, S.; Picchio, F. Digital Strategies to Enhance Cultural Heritage Routes: From Integrated Survey to Digital Twins of Different European Architectural Scenarios. Drones, 2023, 7, 576.
  187. Pavan A., Mirarchi C., Giani M. 2017, BIM. Metodi e strumenti. Progettare, costruire e gestire nell’era digitale, Tecniche Nuove, Milano.
  188. Pavía S. 2008, An investigation of Roman mortar technology through the petrographic analysis of archaeological material, in Construction and Building Materials, 22.
  189. Perm region: Guidebook. - M., 2004.
  190. Picchio F. 2019, La fotogrammetria close range per modelli SfM affidabili, in S. Parrinello (ed.), 3D Bethlehem. Management and control of urban growth for the development of heritage and improvement of life in the city of Bethlehem, vol. 1, Edifir, Firenze, pp. 119–138.
  191. Picchio F. 2019, The close-range photogrammetry for the creation of reliable SfM models of urban system, in S. Parrinello (ed.), 3D Bethlehem. Management and control of urban growth for the development of heritage and improvement of life in the city of Bethlehem, vol. 1, Edifir, Firenze.
  192. Picchio F. 2020, Acquisition protocols for UAV photogrammetric data. Comparison in methodological SfM procedures from architectural to urban scale, in S. Barba, S. Parrinello, M. Limongello, A. Dell’Amico (eds.), D-SITE. Drones – Systems of Information on Cultural Heritage. For a spatial and social investigation, vol. 1, Pavia University Press, Pavia, pp. 70–79.
  193. Picchio F., Cortés Meseguer L., Porcheddu G. 2023, Disegnare un sistema informativo 3D per la promozione della rotta culturale di Jaime I a Valencia, in Transizioni / Transitions, FrancoAngeli.
  194. Picchio F., De Marco R., Dell’Amico A., Doria E., Galasso F., La Placa S., Miceli A., Parrinello S. 2020, Procedure di analisi e modellazione urbana per la gestione dei centri storici. Betlemme, Solikamsk, Cattaro e Santo Domingo, in Paesaggio Urbano, 2, pp. 103–115.
  195. Picchio F., Pettineo A. 2023, Digitalizzare, ricostruire e fruire il Castello di Montorio: un tassello nella definizione della rotta culturale dei castelli scaligeri, in Defensive Architecture of the Mediterranean, 15, pp. 1123–1130.
  196. Pilyavskiy V. I., Tietz A. A., Ushakov Y. S. 1986, Regional diversity of Russian Baroque architecture, MARHI, Moscow. (translit.: Regional’noe mnogoobrazie arkhitektury russkogo barokko).
  197. Pilyavskiy V. I., Tietz A. A., Ushakov Y. S. 2003, History of Russian architecture, Architecture-S, Moscow. (translit.: Istoriya russkoy arkhitektury).
  198. Pluzhnikov V. I. 1995, Terms of the Russian architectural heritage. Dictionary-glossary, Moscow (translit.: Terminy russkogo arkhitekturnogo naslediya).
  199. Ponomarenko E. V. 2009, Architectural and urban planning heritage of the South Urals, PhD thesis, Russian Academy of Architecture and Construction Sciences, Moscow.
  200. R. De Marco, Shapes and models: the survey for the study ofstructures in historical buildings, in: K. Williams, M. G. Bevilacqua. Nexus 2018 Architecture and Mathematics -Conference Book. Kim Williams Books, Pisa, Italy, 2018, ISBN 978-88-88479-47-7, pp. 289-292.
  201. Raco F. 2022, Integrated digital platforms for the documentation and management of cultural heritage at risk, in The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLVIII-3/W1, pp. 45–52.
  202. Regional features of urban development of the Urals: Part 1, 2. - Yekaterinburg, 1995.
  203. Remondino F., Del Pizzo S., Kersten T. P., Troisi S. 2011, Heritage recording and 3D modeling with photogrammetry and 3D scanning, in Remote Sensing, 3(6), pp. 1104–1138.
  204. Riasanovsky N. V. 2005, Storia della Russia. Dalle origini ai giorni nostri, RCS Libri, Milano.
  205. Ritchin F. 2012, Dopo la fotografia, Einaudi, Torino.
  206. Ruzicka M., Miklós L. 1982, Landscape-ecological planning (LANDEP) in the process of territorial planning, in Ekológia (ČSSR), 1(3), pp. 297–312.
  207. Saarinen T. F. 1969, Perception of the environment, Association of American Geographers, Washington.
  208. Semina A. E., Maksimova S. V. 2019, Digital census of Upper Kama towns architectural and urban environment, in IOP Conference Series: Materials Science and Engineering, 687, 055051.
  209. Seredovich V. A., Komissarov A. V. 2009, Terrestrial laser scanning, Siberian State Academy of Geodesy, Novosibirsk.
  210. Shatrov L. A. 1976, Pamyatniki istorii i kul’tury Permskoy oblasti, 2nd edn., Permskoe knizhnoe izdatel’stvo, Perm.
  211. Shatrov L. A. 1997, Monuments of architecture, history and art of Cherdyn and Cherdyn Region, vol. 2, Cherdyn.
  212. Shevchenko G. G., Gura D. A., Glaskov R. E., Pilyushenko A. V. 2016, Process flow scheme of façade survey by means of terrestrial laser scanning, in World Science: Problems and Innovations. Collected papers of the III International Research and Practice Conference, Penza, pp. 107–112.
  213. Shilov V. V. 2005, Berezniki–Usolye historical-architectural complex: formation, development, preservation, PhD thesis, Perm. (translit.: Bereznikovo–Usol’skiy istoriko-arkhitekturnyy kompleks).
  214. Shiokotov A. 1808, Geographic dictionary of the Russian state, part 6, vol. 10, Moscow. (translit.: Slovar’ geograficheskij Rossijskogo gosudarstva).
  215. Shishonko V. 1882, Permskaya letopis’. II period (1613–1645), Perm’.
  216. Shishonko V. N. 1887, Perm Chronicle, issue III, Perm (translit.: Permskaya letopis’).
  217. Shumilov E. N. 2003, Orthodox churches and temples of common faith in Perm Krai: short historical guide, PKUB, Perm.
  218. Shumilov E. N. n.d., Taman. Usolye region, village, in Encyclopedia “Perm Krai”, available at: https://ru.wikipedia.org/wiki/Таман_(Пермский_край)
  219. Simmel G. 1913, Philosophie der Landschaft, in Die Güldenkammer (It. ed. Filosofia del paesaggio, in Il volto e il ritratto, Il Mulino, Bologna, 1985).
  220. Slovtsov I. 1867, Pyskorsky Preobrazhensky Stavropegic Monastery (2nd class), in Perm Diocesan Vedomosti (PEW), 12, pp. 203–207.
  221. Slovtsov I. 1875, Experience of the description of some churches of Solikamsk district, in Perm Diocesan Vedomosti (PEW), 45, pp. 505–509.
  222. Slupskiy A. I. 1906, Arkhitekturnyye pamyatniki Solikamska, in Drevnosti. Trudy Imperatorskogo Moskovskogo arkheologicheskogo obshchestva, 21(1), pp. 49–52.
  223. Slupskiy A. I. 1913, Podzemnyye khody goroda Solikamska, in Trudy Permskoy gubernskoy uchenoy arkheologicheskoy komissii, 10, pp. 176–187.
  224. Sokolkov A. K. Solikamsk. - Perm, 1961.
  225. Solà-Morales I. 2001, Teorías de la intervención arquitectónica, in PH: Boletín del Instituto Andaluz del Patrimonio Histórico, 37.
  226. Solikamsk in print: 1980-2000: a pointer to the literature. - Solikamsk, 2002.
  227. Solikamsk is the salt capital of Russia. - Solikamsk: sgpi, 2010. - 148 p. - 15: 978-5-89469-063-6.
  228. Solikamsk. Historical and cultural monuments. - Perm, 1980.
  229. Solikamsk: Guide. - Perm, 1975.
  230. Solikamsk: Short guide / author-compiler A. K. Sokolkov. - Perm, 1969.
  231. Sontag S. 1977, Sulla fotografia, Einaudi, Torino.
  232. Stodola P., Drozd J., Šilinger K., Hodický J., Procházka D. 2020, Collective perception using UAVs: autonomous aerial reconnaissance in a complex urban environment, in Sensors, 20(10), 2926.
  233. Temples of Perm Krai 2010, Perm.
  234. Temples of Russia n.d., available at: http://temples.ru/tree.php?ID=4299
  235. Temples.ru 2021, available at: http://www.temples.ru/card.php?ID=17211 (accessed 6 January 2021).
  236. Temples.ru n.d., available at: http://temples.ru/card.php?ID=11333
  237. Terekhin A. S., Kantorovich G. D. 1974, Architectural ensemble of Verkhnekamskoye Usolye (17th–early 19th century), in Ural Archaeological Yearbook (1972), Perm, pp. 24–39. (translit.: Arkhitekturnyy ansambl’ Verkhnekamskogo Usol’ya (XVII – nachalo XIX v.)).
  238. Terekhin A. S., Kantorovich G. D. Monuments of stone architecture HOOP-beginning of the XVIII century in Solikamsk / / Ural archaeographic Yearbook for 1970-Perm, 1971.
  239. Teryohin A. S. et al. 1970, Monuments of Stone Architecture of the 16th–18th Centuries in Solikamsk, Perm (translit.: Pamyatniki kamennogo zodchestva XVI–XVIII vv. v Solikamske).
  240. The list of objects of cultural heritage of federal importance located in the Perm region 2018, [online], available at: http://kcop.ru/monum31.htm (accessed 13 April 2018) (translit.: Perechen’ ob”ektov kul’turnogo naslediya federal’nogo znacheniya, raspolozhennykh na territorii Permskogo kraya. Pamyatniki arkhitektury).
  241. Tobiasz-Lis P. 2016, The image of the countryside. Theoretical and methodological approach, in Cracow Landscape Monographs, vol. 1, pp. 61–70.
  242. Tobiasz-Lis P., Wójcik M. 2013, Evaluating and interpreting the city using a photo projective method. The example of Lodz, in Geographia Polonica, 86(2), pp. 137–152.
  243. Toniolo L., Boriani M., Guidi G. (eds.) 2015, Built heritage: monitoring conservation management, Springer, Cham.
  244. Torroja E. 2007, Razón y ser de los tipos estructurales, Colegio de Ingenieros de Caminos, Canales y Puertos, Madrid.
  245. Tsakiri M., Lichti D., Pfeifer N. 2006, Terrestrial laser scanning for deformation monitoring, in Proceedings of the 3rd IAG / 12th FIG Symposium, Baden, Germany, pp. 1-10.
  246. Turri E. 1998, Paesaggio come teatro, Marsilio, Venezia.
  247. Udintsev V. 1869, Transfer of the stavropegic Savior-Transfiguration Monastery to Perm, in Perm Diocesan Vedomosti (PEW), 3, pp. 31–41.
  248. UNESCO 2017, Operational guidelines for the implementation of the World Heritage Convention, WHC.17/01, UNESCO World Heritage Centre, Paris.
  249. Usolskiy istoriko-arkhitekturnyy muzey “Palaty Stroganovykh”, [online], available at: http://pstroganov.com/
  250. Varlamova L. D., Dmitriev D. D. 2017, Application of laser scanner for conservation of architectural-historical heritage, in Interactive Science, 12(22), pp. 10–13.
  251. Venturi Ferriolo M. 2009, Percepire paesaggi. La potenza dello sguardo, Bollati Boringhieri, Torino.
  252. Venturi R., Scott Brown D., Izenour S. 1972, Learning from Las Vegas. The Forgotten Symbolism of Architectural Form, MIT Press, Cambridge, MA.
  253. Venturi R., Scott Brown D., Izenour S. 2010, Imparare da Las Vegas. Il simbolismo dimenticato della forma architettonica, Quodlibet Abitare, Macerata.
  254. Vicens y Hualde I. 2012, Dicho y hecho. Texts of architecture and design, Nobuko, Buenos Aires.
  255. Villanueva Bartrina L. 2000, Orígenes y formación del sistema constructivo español, in Tratado de rehabilitación, Munilla-Lería, Madrid, pp. 133–174.
  256. Von Eding B. 1913, Rostov Velikii. Uglich, I. Knebel', Moscow.
  257. Wang C., Wen C., Dai Y., Yu S., Liu M. 2020, Urban 3D modeling using mobile laser scanning: a review, in Virtual Reality & Intelligent Hardware, 2(3), pp. 175–212.
  258. Wang Y., Chen Q., Zhu Q., Liu L., Li C., Zheng D. 2019, A survey of mobile laser scanning applications and key techniques over urban areas, in Remote Sensing, 11(13), 1540.
  259. Westoby M. J., Brasington J., Glasser N. F., Hambrey M. J., Reynolds J. M. 2012, Structure-from-motion photogrammetry: a low-cost, effective tool for geoscience applications, in Geomorphology, 179, pp. 300–314.
  260. Xue M., Wei M. 2020, Small UAV flight planning in urban environments, in AIAA Aviation Forum, p. 2890.
  261. Yarushin P. 1886, Materials for the history of the Pyskorsky monastery and their assessment, in Perm Diocesan Vedomosti (PEW), 10.
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Book Title

Historical architecture and settlements along Kama river in the Perm region

Editors

Sandro Parrinello, Francesca Picchio

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384

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2026

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© 2026 Author(s)

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CC BY-NC-SA 4.0

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Firenze University Press

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Ricerche. Architettura, Pianificazione, Paesaggio, Design

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