Autors: E. Pecheva., Petrov, T. S., C. Lungu., P. Montgomery., L. Pramatarova. Title: Stimulated in vitro bone-like apatite formation by a novel laser processing technique Keywords: Laser Processing, Bone-like apatite Abstract: Hydroxyapatite is a mineral widely studied as an artificial replacement material in dentistry and medicine due to its chemical and crystallographic resemblance to bone and tooth minerals. New trend of stimulating the hydroxyapatite formation in vitro has evolved by applying various sources of external energy. Lasers have been widely used in biomaterials area as clean and powerful sources of energy and have diverse bioapplications. They are excellent tools for creating micrometer-scale structures by precise and flexible irradiation of small and complex shapes. Using a hierarchical approach that mimics the natural material formation processes, we developed a method to produce materials with controlled physical structure at both micro- and nanometer scale. Materials organized on multiple length scales bear a closer resemblance to biological matrices than those with single scale features, and thus materials with multi-scale organization should be more advantageous in biomedical applicatio References Issue
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Цитирания (Citation/s):
1. Simões, Ricardo Alexandre Gravata. "Desenvolvimento de um método analítico para doseamento de cálcio, fósforo e Ião hidroxilo na hidroxiapatite." Master's thesis, Universidade de Lisboa (Portugal), 2008. - 2008 - в издания, индексирани в Scopus и/или Web of Science
2. Wu, Chengtie, Yogambha Ramaswamy, David Gale, Wenrong Yang, Keqin Xiao, Liangchi Zhang, Yongbai Yin, and Hala Zreiqat. "Novel sphene coatings on Ti–6Al–4V for orthopedic implants using sol–gel method." Acta biomaterialia 4, no. 3 (2008): 569-576. - 2008 - в издания, индексирани в Scopus и/или Web of Science
3. Cremers, David A., and Rosemarie C. Chinni. "Laser-induced breakdown spectroscopy—capabilities and limitations." Applied Spectroscopy Reviews 44, no. 6 (2009): 457-506. - 2009 - в издания, индексирани в Scopus и/или Web of Science
4. Lee, Baek-Hee, Ayako Oyane, Hideo Tsurushima, Yoshiki Shimizu, Takeshi Sasaki, and Naoto Koshizaki. "A new approach for hydroxyapatite coating on polymeric materials using laser-induced precursor formation and subsequent aging." ACS Applied Materials & Interfaces 1, no. 7 (2009): 1520-1524. - 2009 - в издания, индексирани в Scopus и/или Web of Science
5. Koçkan, Ümit. "Prediction of hexagonal lattice parameters of stoichiometric and non-stoichiometric apatites by artificial neural networks." Master's thesis, Middle East Technical University (Turkey), 2009. - 2009 - в издания, индексирани в Scopus и/или Web of Science
6. Wu, Xiaohui, Jie Wei, Xun Lu, Yang Lv, Fangping Chen, Yanglan Zhang, and Changsheng Liu. "Chemical characteristics and hemostatic performances of ordered mesoporous calcium-doped silica xerogels." Biomedical Materials 5, no. 3 (2010): 035006. - 2010 - в издания, индексирани в Scopus и/или Web of Science
7. Kockan, Umit, and Zafer Evis. "Prediction of hexagonal lattice parameters of various apatites by artificial neural networks." Applied Crystallography 43, no. 4 (2010): 769-779. - 2010 - в издания, индексирани в Scopus и/или Web of Science
8. Singh, Vivek Kumar, and Awadhesh Kumar Rai. "Prospects for laser-induced breakdown spectroscopy for biomedical applications: a review." Lasers in medical science 26 (2011): 673-687. - 2011 - в издания, индексирани в Scopus и/или Web of Science
9. Peckham, Jordan. "Elasticity and bioactivity of porous silicon films." PhD diss., Memorial University of Newfoundland, 2011. - 2011 - в издания, индексирани в Scopus и/или Web of Science
10. Beketova, Anastasia. "The Impact of Laser Treatment on the Microstructure and Biocompatibility of the Surface of Modified Ceramic Materials." PhD diss., Aristotle University of Thessaloniki, 2011. - 2011 - в издания, индексирани в Scopus и/или Web of Science
11. Al-Ali, Thilal Mohammed, Ahmed Albakry, and M. A. N. Razvi. "Spectroscopic Analysis of Plastic samples Using Laser Induced Breakdown Spectroscopy." Source: https://www.kau.edu.sa/Files/306/Researches/62026_33075.pdf - 2012 - в издания, индексирани в Scopus и/или Web of Science
12. Beketova, Anastasia, Marianthi Manda, Demetrios Charoulis, Dimitris Christofilos, Lambrini Papadopoulou, Ourania-Menti Goudouri, Efstathios Polychroniadis, Konstantinos M. Paraskevopoulos, and Petros Koidis. "Laser-induced bioactivity in dental porcelain modified by bioactive glass." Ceramics-Silikaty 56, no. 4 (2012): 323-330. - 2012 - в издания, индексирани в Scopus и/или Web of Science
13. Oyane, Ayako, Ikuko Sakamaki, Yoshiki Shimizu, Kenji Kawaguchi, and Naoto Koshizaki. "Liquid‐phase laser process for simple and area‐specific calcium phosphate coating." Journal of Biomedical Materials Research Part A 100, no. 10 (2012): 2573-2580. - 2012 - в издания, индексирани в Scopus и/или Web of Science
14. Pathak, Ashok Kumar, Rohit Kumar, Vivek Kumar Singh, Rahul Agrawal, Shikha Rai, and Awadhesh Kumar Rai. "Assessment of LIBS for spectrochemical analysis: a review." Applied Spectroscopy Reviews 47, no. 1 (2012): 14-40. - 2012 - в издания, индексирани в Scopus и/или Web of Science
15. Ciobanu, Gabriela, and Octavian Ciobanu. "Investigation on the effect of collagen and vitamins on biomimetic hydroxyapatite coating formation on titanium surfaces." Materials Science and Engineering: C 33, no. 3 (2013): 1683-1688. - 2013 - в издания, индексирани в Scopus и/или Web of Science
16. Abdal-hay, Abdalla, Leonard D. Tijing, and Jae Kyoo Lim. "Characterization of the surface biocompatibility of an electrospun nylon 6/CaP nanofiber scaffold using osteoblasts." Chemical Engineering Journal 215 (2013): 57-64. - 2013 - в издания, индексирани в Scopus и/или Web of Science
17. Mohammadi, H., M. Hafezi, N. Nezafati, S. Heasarki, A. Nadernezhad, S. M. H. Ghazanfari, and M. Sepantafar. "Bioinorganics in bioactive calcium silicate ceramics for bone tissue repair: bioactivity and biological properties." J. Ceram. Sci. Technol 5, no. 1 (2014): 1-12. - 2014 - в издания, индексирани в Scopus и/или Web of Science
18. Oyane, Ayako, Ikuko Sakamaki, Alexander Pyatenko, Maki Nakamura, Yoshie Ishikawa, Yoshiki Shimizu, Kenji Kawaguchi, and Naoto Koshizaki. "Laser-assisted calcium phosphate deposition on polymer substrates in supersaturated solutions." RSC Advances 4, no. 96 (2014): 53645-53648. - 2014 - в издания, индексирани в Scopus и/или Web of Science
19. MRE, NAPOVEDOVANJE HEKSAGONALNIH, and NIH PARAMETROV. "Artificial-neural-network prediction of hexagonal lattice parameters for non-stoichiometric apatites." Materiali in tehnologije 48, no. 1 (2014): 73-79. - 2014 - в издания, индексирани в Scopus и/или Web of Science
20. Yang, Celina, Darren Yohan, and Devika B. Chithrani. "Colloids and Interface Science Communications." (2014). - 2014 - в издания, индексирани в Scopus и/или Web of Science
21. Dorozhkin, Sergey V. "Calcium orthophosphate deposits: Preparation, properties and biomedical applications." Materials Science and Engineering: C 55 (2015): 272-326. - 2015 - в издания, индексирани в Scopus и/или Web of Science
22. Oyane, Ayako, Nao Matsuoka, Kenji Koga, Yoshiki Shimizu, Maki Nakamura, Kenji Kawaguchi, Naoto Koshizaki, Yu Sogo, Atsuo Ito, and Hidero Unuma. "Laser-assisted biomimetic process for surface functionalization of titanium metal." Colloids and Interface Science Communications 4 (2015): 5-9. - 2015 - в издания, индексирани в Scopus и/или Web of Science
23. 20.13. Beketova, Anastasia. "Investigation of the Effect of Laser Irradiation on Surface Structure of Ceramic Materials." Diss. Αριστοτέλειο Πανεπιστήμιο Θεσσαλονίκης, 2016. Source: ikee.lib.auth.gr, https://ikee.lib.auth.gr/record/285885/files/GRI-2016-17857.pdf - 2016 - в издания, индексирани в Scopus и/или Web of Science
24. Beketova, A., Poulakis, N., Bakopoulou, A., Zorba, T., Papadopoulou, L., Christofilos, D., Kantiranis, N., Zachariadis, G.A., Kontonasaki, E., Kourouklis, G.A., Paraskevopoulos, K.M., Koidis, P. “Inducing bioactivity of dental ceramic/bioactive glass composites by Nd:YAG laser” Source: Dental Materials, v.32, (2016), pp e284-e296 - 2016 - в издания, индексирани в Scopus и/или Web of Science
25. Nakamura, M., Oyane, A. “Physicochemical fabrication of calcium phosphate-based thin layers and nanospheres using laser processing in solutions” Source: Journal of Materials Chemistry B, v 4(2016), pp 6289-6301 - 2016 - в издания, индексирани в Scopus и/или Web of Science
26. Kontonasaki E, Chatzistavrou X, Paraskevopoulos KM, Koidis P. Bioactive Ceramic Porcelain/Glass for Dental Application. Source: Journal: Handbook of Sol-Gel Science and Technology. 2016:1-5 - 2016 - в издания, индексирани в Scopus и/или Web of Science
27. Dorozhkin, Sergey V. Hydroxyapatite and other calcium orthophosphates: Bioceramics, coatings and dental applications. Nova Science Publishers, Inc., 2017. - 2017 - в издания, индексирани в Scopus и/или Web of Science
28. Oyane, Ayako, Maki Nakamura, Ikuko Sakamaki, Yoshiki Shimizu, Saori Miyata, and Hirofumi Miyaji. "Laser-assisted wet coating of calcium phosphate for surface-functionalization of PEEK." PLoS One 13, no. 10 (2018): e0206524. - 2018 - в издания, индексирани в Scopus и/или Web of Science
29. Ayako Oyanea, Noriyuki Saitob, Ikuko Sakamakia, Kenji Kogaa, Maki Nakamuraa, A. Joseph Nathanaela, NorikoYoshizawab, KanakoShitomic, KayokoMayumic, Hirofumi Miyajic “Laser-assisted biomineralization on human dentin for tooth surface functionalization” Source: Materials Science and Engineering: C, v. 105, (2019), pp. 110061 - 2019 - в издания, индексирани в Scopus и/или Web of Science
30. 大矢根 綾子 過飽和溶液を利用したリン酸カルシウム成膜とバイオメディカル応用 Source: doi https://doi.org/10.1380/vss.62.217 - 2019 - в издания, индексирани в Scopus и/или Web of Science
31. 大矢根 綾子 過飽和溶液場を利用したリン酸カルシウム成膜・ナノ粒子合成とバイオメディカル応用 Source: doi https://doi.org/10.5939/sjws.19002 - 2019 - в издания, индексирани в Scopus и/или Web of Science
32. Oyane, A.; Sakamaki, I.; Koga, K.; Nakamura, M. “Formation of a Calcium Phosphate Layer with Immobilized Cobalt Chromite Nanoparticles on Cobalt−Chromium Alloy by a Laser-Assisted Biomimetic Process.” Source: Appl. Sci. 2020, 10, 5584. https://doi.org/10.3390/app10225584 - 2020 - в издания, индексирани в Scopus и/или Web of Science
33. Tang, C.-M.; Fan, F.-Y.; Lin, W.-T.; Wang, L.; Lin, W.-C. “Effect of Bioactivity of Surface Topography and Coating Forming by Infrared Light-Induced on Titanium for Bone Repair”. Soirce: Appl. Sci. 2020, 10, 8158. https://doi.org/10.3390/app10228158 - 2020 - в издания, индексирани в Scopus и/или Web of Science
34. Wongpanya, Pornwasa, et al. "Improvement of corrosion resistance and biocompatibility of 316L stainless steel for joint replacement application by Ti-doped and Ti-interlayered DLC films." Source: Surface and Coatings Technology 425 (2021): 127734. https://doi.org/10.1016/j.surfcoat.2021.127734 - 2021 - в издания, индексирани в Scopus и/или Web of Science
35. Metzner, Daniel, Peter Lickschat, and Steffen Weißmantel. "Surface treatment on cobalt and titanium alloys using picosecond laser pulses in burst mode." Source: Applied Physics A 127.1 (2021): 1-9. https://doi.org/10.1007/s00339-020-04179-w - 2021 - в издания, индексирани в Scopus и/или Web of Science
36. Oyane, Ayako, et al. "Fluoridated apatite coating on human dentin via laser-assisted pseudo-biomineralization with the aid of a light-absorbing molecule.". Source: International Journal of Molecular Sciences 23.24 (2022); https://doi.org/10.3390/ijms232415981 - 2022 - в издания, индексирани в Scopus и/или Web of Science
37. Sergey V. Dorozhkin, "There Are over 60 Ways to Produce Biocompatible Calcium Orthophosphate (CaPO4) Deposits on Various Substrates" Source: J. Compos. Sci. 2023, 7(7), 273; doi.org/10.3390/jcs7070273 - 2023 - в издания, индексирани в Scopus и/или Web of Science
Вид: статия в списание, публикация в издание с импакт фактор, публикация в реферирано издание, индексирана в Scopus и Web of Science