أولا: المراجع العربية
- الهجرسي، عبير: دراسة لعلاج تأثير التلف الميكروبيولوجى على الصور الجدارية المنفذة بأسلوب التمبرا تطبيقاً على نماذج مختارة ، رسالة ماجستير ، قسم الترميم ، كلية الآثار ، جامعة القاهرة ، 2010م.
- دروش، رحاب : دراسة التلف الفطرى لمواد البناء فى المبانى الآثرية بمدينة القاهرة – أسباب وميكانيكية التلف وطرق العلاج ، رسالة ماجستير ، قسم الترميم ، كلية الآثار ، جامعة القاهرة ،2007.
- الكفافى ، عبد الحميد: دراسات علمية تجريبية وتطبيقية فى علاج وصيانة الأحجار الجيرية فى بعض المبانى الآثرية فى مصر من التلف الميكروبيولوجى ، رسالة ماجستير ، قسم الترميم ، كلية الآثار ، جامعة القاهرة ، 2005.
- Kefāfi, ʿbdel ḥamīd: Dirāsāt ʿlmyh taǧribīya wa tāṭbīqīya fe ʿilāǧ wa ṣiyānat al- aḥǧār al- ǧereh fe al mābānī al-aṯārīh fe maṣr min al-talaf al- microbiology, Master thesis, faculty of Archaeology, Cairo university, 2005
- المداح، ايمان : تطبيق نظام تحليل المخاطر وتحديد نقطة التحكم الحرجة على التلف الميكروبى لبعض المقتنيات المتحفية العضوية ، رسالة دكتوراة ،قسم الترميم ،كلية الآثار ،جامعة القاهرة ، 2005.
- على ، ياسر : دراسة تقوية الآثار الحجرية الرملية باستخدام تكنولوجيا النانو تطبيقاً على نموذج مختار ، رسالة ماجستير ، قسم الترميم ، كلية الاثار ، جامعة القاهرة ، 2013 .
المراجع الأجنبية :
- «Branysova, T., Demnerova, K., Durovic, M., Stiborova, H.: “Microbial biodeterioration of cultural heritage and identification of the active agents over the last two decades”, Journal of Cultural Heritage 55, 2022, 245-260»
- «Liu, X., Qian, Y., Wang, Y., Wu, F., Wang, W., Gu, J.: “Innovative approaches for the processes involved in microbial biodeterioration of cultural heritage materials, Current Opinion in Biotechnology, 75, 2022, 102716»
- Clair, L.St & Seaward, M. (EDS): “Biodeterioration of Rock Surfaces,” kluwer Academic Publishers, chapter 3. Limestone Stabilization Studies at a Maya Site in Belize, 2004, 24:25.
- «Pyzik, A, Ciuchcinski, K, Dziurzynski, M., Dziewit, L.; “The Bad and the Good -Microorganisms in Cultural Heritage Environments-An Update on Biodeterioration and Biotreatment Approaches”. Materials, 14, 2021; 177».
- «ElHagrassy, A.F. & Hakeem, A.: «Comparative Study of Biological Cleaning and Laser Techniques for Conservation of Weathered Stone in Failaka Island, Kuwait», Scientific Culture 4, 2018, 43-50»
- «Devalapally, H, Chakilam, A, Amiji, MM. “Role of Nanotechnology in Pharmaceutical Product Development” Journal of Pharmaceutical Sciences, 96, 2007, 2547-2565»
- «Song, G, Cheng, L, Chao, Y, Yang, K, Liu, Z; Emerging Nanotechnology and Advanced Materials for Cancer Radiation Therapy”, Advanced materials, 29, 2017, 1700996».
- «Bellissima, F., Bonini, M., Giorgi, R., Baglioni, P., Barresi, G., Mastromei, G., Perito,B.: “Antibacterial activity of silver nanoparticles grafted on stone surface Chemistry in a sustainable society”, Environ Sci Pollut Res, 2013, DOI 10.1007/s11356-013-2215-7»
- «Gutarowska, B. Skora,J. Zduniak,K. Rembisz,D.: "Analysis of the sensitivity of microorganisms contaminating museums and archives to silver nanoparticles, International Biodeterioration & Biodegradation 68, 2012, 7:17»
- «Sabouri, Z., Akbari, A., Hosseini, H., Khatami, M., Darroudi, M.” Green-based bio-synthesis of nickel oxide nanoparticles in Arabic gum and examination of their cytotoxicity, photocatalytic and antibacterial effects”. Green Chemistry Letters and Reviews 14, 2021, 404-414».
- Hamed, M., Bakr, B., Shahin, Y., Elwakil, B., Abu-Serie, M., Aljohani, F., Bekhit, A."Novel Synthesis of Titanium Oxide Nanoparticles: Biological Activity and Acute Toxicity Study", Bioinorganic Chemistry and Applications, 2021, doi.org/10.1155/2021/8171786.
- «Hossain, F., Perales-Perez, O., Hwang, S., Román, F.: “Antimicrobial nanomaterials as water disinfectant: Applications, limitations and future perspectives, Science of the Total Environment 466–467, 2014, 1047–1059».
- «El-Feky, O., Hassan, E., Fadel, S., Hassan, M.:”Use of ZnO nanoparticles for protecting oil paintings on paper support against dirt, fungal attack, and UV aging”, Journal of Cultural Heritage,15, 2014, 165-172».
- Faria, A, F. Moraes, A. Alves,O.: "Toxicity of Nanomaterials to Microorganisms: Mechanisms, Methods, and New Perspectives", Chapter 17,Nanomedicine and Nanotoxicology, 2014, 363-405.
- «Mahendra C, Murali M, Manasa G, Ponnamma P, Abhilash MR, Lakshmeesha TR, Satish A, Amruthesh KN, Sudarshana MS .: "Antibacterial and antimitotic potential of bio-fabricated zinc oxide nanoparticles of Cochlospermum religiosum (L.)" , Microb Pathog. 110, 2017, 620-629».
- «Supraja, N. Prasad, T. N. V. K. V., Giridhara ,T. David,,E.:”Synthesis, characterization, and evaluation of the antimicrobial efficacy of Boswellia ovalifoliolata stem bark extract-mediated zinc oxide nanoparticles”, Appl Nanosci, DOI 10.1007/s13204-015-0472-0,2015».
- Lee, J. Mahendra,S. and Alvarez,P.J.J.: “Potential Environmental and Human Health Impacts of Nanomaterials Used in the Construction Industry”, Department of Civil & Environmental Engineering, Rice University, Houston, TX, USA, 2009,p. 1:14
- Cioffi ,N. Rai,M.:" Nano-Antimicrobials, Progress and Prospects" Ch.16: Antimicrobial Nanomaterials for Water Disinfection, Springer Heidelberg Dordrecht London New York, Library of Congress Control, 2012, 465 - 495.
- «Hassan, M.L. & Ali, A.F. “Synthesis of nanostructured cadmium and zinc sulfides in aqueous solutions of hyper branched poly ethylene eimine”, J. Crystal Growth 310, 2008, 5252–5258».
- «Lakshmi V.J, Sharath. R, Chandraprabha. MN, Neelufar E, Hazra.A, Patra.M; “Synthesis, characterization and evaluation of antimicrobial activity of zinc oxide nanoparticles” J Biochem. Tech .3, 2012, 151 - 154».
- «Abbott, E.V.; "Taxonomic Studies on Soil Fungi Iowe State Collection", Journal of Science, 1, 1926, 15-30».
- «Gilman, J. C. & Abbott, E. V.; “A Summary of the Soil Fungi, Iowe State Collection”, Journal of Science 51, 1977, 225-244».
- Pitt, J.I.; The Genus Penicullium and its Teleomorphic States, Eupenicillium and Taraomyces, London & New York, Academic Press, 1977.
- Domsh K.H.,Gams,w.and Anderson T.H.,;”Compendium of Soil Fungi , Academec Press, London, vol.1-2. 1980.
- «ElHagrassy, A.F.; "Bio-restoration of mural paintings using viable cells of Pseudomonas stutzeri and characterization of these murals ", International Journal of Archaeology, 7, 2019, 8-16».
- «Garg, K., L., Jain, K. & Mishra, A. K.; "Role of Fungi in The Deterioration of Wall Painting", The Science of the Total Environments,167, 1996, 25– 271».
- «Sterflinger, K., Piñar, G.; “Microbial deterioration of cultural heritage and works of art — tilting at windmills?” Appl Microbiol Biotechnol 97, 2013, 9637–9646».
- «Romero, S.M. Giudicessi, S.L., Vitale, R.G.; “Is the fungus Aspergillus a threat to cultural heritage?”, Journal of Cultural Heritage, 51,2021, 107-124».
- «Tamimi, N., Nafchi, A.M., Moghaddam, H. H., Baghaie, H. “The effects of nano-zinc oxide morphology on functional and antibacterial properties of tapioca starch bionanocomposite
”, 2021, doi.org/10.1002/fsn3.2426»
- «Crawford, M., Aylott, C.V., Bourdeau, R.W. & Bokoch, G.M. “Bacillus anthracis Toxins Inhibit Human Neutrophil NADPH Oxidase Activity”, Journal of Immunology, 176, 2006, 7557: 7565».