Статии

ПЪРВИ ЕТАП НА ПРОЕКТА


P1. Kristina Bliznakova, 2018, Three dimensional breast cancer models for x-ray imaging research, Proceedings of ACT 2018, 1st International Conference “Applied Computer Technologies” 2018, 21-23 June 2018, Ohrid, FYROM, ISBN 978-608-66225-0-3, p. 154-160, принос на проекта 50 %
http://act.uist.edu.mk/wp-content/uploads/2018/07/Proceedings_ACT2018-Ohrid_v2.pdf


P2. Galya Gospodinova, Kristina Bliznakova, 2018, An approach of modelling of breast lesions, Proceedings of ACT 2018, 1st International Conference “Applied Computer Technologies” 2018, 21-23 June 2018, Ohrid, FYROM, ISBN 978-608-66225-0-3, p. 149-153, принос на проекта 50 %
http://act.uist.edu.mk/wp-content/uploads/2018/07/Proceedings_ACT2018-Ohrid_v2.pdf


P3. D. Ivanov, K. Bliznakova, I. Buliev, P. Popov, et al, 2018, Suitability of low density materials for 3D printing of physical breast phantoms, Physics in Medicine & Biology, 63(17), art. num. 175020, Impact Factor 2.665, принос на проекта 50 %
https://doi.org/10.1088/1361-6560/aad315


P4. Kristina Bliznakova, Giovanni Mettivier, Ivan Buliev, Paolo Russo, Zhivko Bliznakov, 2018, Computer-based platform for phase contrast breast imaging, Physica Medica Vol 52, Supplement 1, p 93, Impact Factor 2.53, принос на проекта 50 %
https://doi.org/10.1016/j.ejmp.2018.06.320


P5. Kristina Bliznakova, Ivan Buliev, Hilde Bosmans, Paolo Russo, Giovanni Mettivier, Zhivko Bliznakov, 2018, Development of breast tumours models database, Physica Medica, Vol 52, Supplement 1, August 2018, p 82, Impact Factor 2.53, принос на проекта 50 %
https://doi.org/10.1016/j.ejmp.2018.06.288


P6. Galya Gospodinova, Kristina Bliznakova and Danail Ivanov, A virtual study to determine the potential of dual-energy imaging for detectability of microcalcifications in breast screening, Physica Medica, Vol 52, Supplement 1, August 2018, p. 92, Impact Factor 2.53, принос на проекта 50 %
https://doi.org/10.1016/j.ejmp.2018.06.318


P7. Галя Господинова, 2018, Метод за моделиране на тумори на млечна жлеза, V-та научна конференция “Компютърни науки и технологии” 2018, ТУ Варна, сп. Компютърни науки и технологии, (1), стр. 162-167, 2018, ISSN 1312-3335, , принос на проекта 100 %


P8. Гергана Спасова, Николай Дуков, Кристина Близнакова, 2018, Обработка на тримерни обекти сегментирани от медицински изображения, Компютърни науки и технологии” 2018, ТУ Варна, сп. Компютърни науки и технологии, (1), стр. 143-150, 2018, ISSN 1312-3335, принос на проекта 100
P9. Adelina Doycheva, Kristina Bliznakova, 2019, Modeling of tumor growth: Preliminary developments, Physica Medica, 58, p. 165, Impact Factor 2.53, принос на проекта 50%
https://doi.org/10.1016/j.ejmp.2018.12.016


P10. Nikolay Dukov, Ivan Buliev, Zhivko Bliznakov, Kristina Bliznakova, 2019, Realistic breast phantoms with segmented real tumour formations from tomographic images, Physica Medica, 58, p. 165, Impact Factor 2.53, принос на проекта 50 %
https://doi.org/10.1016/j.ejmp.2018.12.017


P11. Galya Gospodinova, Kristina Bliznakova, 2019, An approach of modelling of irregular masses, Physica Medica, 58, p. 166, Impact Factor 2.53, принос на проекта 50 %
https://doi.org/10.1016/j.ejmp.2018.12.020


P12. Esposito, G., Mettivier, G., Bliznakova, K. Bliznakov, Z., Bosmans, H., Bravin, A., Buliev, I., Di Lillo, F., Ivanov, D., Minutillo, M., Sarno, A., Vignero, J., Russo, P., 2019, Investigation of the refractive index decrement of 3D printing materials for manufacturing breast phantoms for phase contrast imaging, Physics in Medicine and Biology, 64 (7), art. no. 075008, Impact Factor 2.665, принос на проекта 50 %
DOI: 10.1088/1361-6560/ab0670


P13. Danail Ivanov, Ivan Buliev, Zhivko Bliznakov, Kristina Bliznakova, 2019, 3D printing of anthropomorphic breast phantoms dedicated to research of X-ray image modalities, Physica Medica, 58, p. 167, Impact Factor 2.53, принос на проекта 50 %
DOI: https://doi.org/10.1016/j.ejmp.2018.12.022


P14. Nikolay Dukov, Zhivko Bliznakov, Ivan Buliev, Kristina Bliznakova, 2019, Creation of computational breast phantoms with extracted abnormalities from real patient images, IFMBE Proceedings, 68 (1), p. 213-217, (цитиран в Scopus ) , принос на проекта 50 %
https://doi.org/10.1007/978-981-10-9035-6_38


P15. Dukov, N., Bliznakova, K., Feradov, F., Buliev, I., Bosmans, H., Mettivier, G., Russo, P., Cockmartin, L., Bliznakov, Z, 2019, Models of breast lesions based on three-dimensional X-ray breast images, Physica Medica, 57, p. 80-87, Impact Factor 2.53, принос на проекта 50 %
https://doi.org/10.1016/j.ejmp.2018.12.012


P16. Bliznakova, K., Dukov, N., Feradov, F., Gospodinova, G., Bliznakov, Z., Russo P., Mettivier, G., Bosman, H., Cockmartin, L., Sarno, A.,Lefterova, A., Encheva, E., Tsapaki, V., Buliashki, D.Buliev, I., 2019, Development of breast lesions models database, Physica Medica 2019, 64, p.293-303, Impact Factor 2.53, DOI: 10.1016/j.ejmp.2019.07.017


ВТОРИ ЕТАП НА ПРОЕКТА


P17. Peicho Popov; Nikolay Dukov; Kristina Bliznakova, 2019, Development of in-house optical system dedicated to validation of processes in x-ray imaging, 2019 IEEE XXVIII International Scientific Conference Electronics (ET), 2019, pp. 1-4, DOI: 10.1109/ET.2019.8878498, принос на проекта 100%, SJR 0.19, видима в: Scopus


P18. Nikolay Tinkov Dukov; Firgan Nihatov Feradov; Galya Dimitrova Gospodinova; Kristina Stanimirova Bliznakova. An Approach for Printing Tissue-mimicking Abnormalities Dedicated to Applications inBreast Imaging, 2019 IEEE XXVIII International Scientific Conference Electronics (ET), 2019, pp. 1-4, DOI: 10.1109/ET.2019.8878587, принос на проекта 100%, SJR 0.19, видима в: Scopus


P19. Nikola Veselinov Vasilev; Zheni Ivanova Mincheva; Ventsislav Georgiev Nikolov; Kristina Stanimirova Bliznakova, 2019, A Software Module for Generating a Synthetic Model of the Breast from an X-ray Image, 2019 IEEE XXVIII International Scientific Conference Electronics (ET), 2019, pp. 1-4, DOI: 10.1109/ET.2019.8878495, принос на проекта 100%, SJR 0.19, видима в: Scopus


P20. F. Feradov, S. Marinov and K. Bliznakova, 2020, Physical breast phantom dedicated for mammography studies, Springer Nature Switzerland AG 2020, J. Henriques et al. (Eds.): MEDICON 2019, IFMBE Proceedings 76, pp. 344–352, DOI:10.1007/978-3-030-31635-8_41 , принос на проекта 100%, SJR 0.165, видима в: Scopus, Web of Science


P21. Sivo Daskalov, Nikiforos Okkaidis, John Boone, Stoyko Marinov, Zhivko Bliznakov, Giovanni Mettivier, Hilde Bosmans, Paolo Russo, Kristina Bliznakova, 2020, Anthropomorphic physical breast phantom based on patient breast CT data: preliminary results, Springer Nature Switzerland AG 2020, J. Henriques et al. (Eds.): MEDICON 2019, IFMBE Proceedings 76, pp. 367–374, DOI:10.1007/978-3-030-31635-8_44, принос на проекта 100%, SJR 0.165, видима в: Scopus, Web of Science


P22. Adelina Doycheva, Nikolay Dukov and Kristina Bliznakova, 2020, Design and implementation of a web-based platform to support research in x-ray breast imaging, Springer Nature Switzerland AG 2020, J. Henriques et al. (Eds.): MEDICON 2019, IFMBE Proceedings 76, pp. 883–890, DOI: 10.1007/978-3-030-31635-8_10 , принос на проекта 100%, SJR 0.165, видима в: Scopus, Web of Science


P23. Dukov, N., Bliznakova, K., Teneva, T., Marinov, S., Bakic, P., Bosmans, H., Bliznakov, Z, 2020, Experimental Evaluation of Physical Breast Phantoms for 2D and 3D Breast X-Ray Imaging Techniques. In: Jarm, T., Cvetkoska, A., Mahnič-Kalamiza, S., Miklavcic, D. (eds) 8th European Medical and Biological Engineering Conference. EMBEC 2020. IFMBE Proceedings, vol 80. Springer, Cham. DOI: 10.1007/978-3-030-64610-3_62 , принос на проекта 100%, SJR 0.165, видима в: Scopus


P24. K. Bliznakova, G. Mettivier, P. Russo, Z. Bliznakov, 2020, Validation of a software platform for 2D and 3D phase contrast imaging: preliminary subjective evaluation. Proceedings of SPIE – The International Society for Optical Engineering, Volume 11513, 15th International Workshop on Breast Imaging (IWBI2020); 1151312 (2020), DOI: 10.1117/12.2564356, принос на проекта 100%, SJR 0.184 (за 2021), видима в: Scopus, Web of Science


P25. Kristina Bliznakova, 2020, The advent of anthropomorphic three-dimensional breast phantoms for X-ray imaging, Physica Medica 79 (2020) 145-161, DOI: 10.1016/j.ejmp.2020.11.025, принос на проекта 100%, Impact Factor 3.12 SJR 0.747, Q2, видима в: Scopus, Web of Science


P26. Stoyko Marinov, Ivan Buliev, Lesley Cockmartin, Hilde Bosmans, ZhivkoBliznakov, Giovanni Mettivier, Paolo Russo, Kristina Bliznakova, 2021, Radiomics software for breast imaging optimization and simulation studies, Physica Medica 89 (2021) 114-128, DOI: 10.1016/j.ejmp.2021.07.014, принос на проекта 100%, Impact Factor 3.12 SJR 0.747, Q2, видима в: Scopus, Web of Science


P27. Kristina Bliznakova, Nikiforos Okkalidi, Antonio Sarno, Nikolay Dukov, Giovanni Mettivier, Paolo Russo, Zhivko Bliznakov, 2020, Physical Anthropomorphic Breast Phantoms for X-ray Imaging Techniques in Manufacturing Approach, 2020 International Conference on e-Health and Bioengineering (EHB), (цитиран в Scopus), , p. 1-4, DOI: 10.1109/EHB50910.2020.9280109, принос на проекта 100 %, видима в: Scopus, Web of Science


P28. Kristina Bliznakova; Nikiforos Okkalidis; Nikolay Dukov; Stavros Zikopoulos; Zhivko Bliznakov, 2020, Application of 3D Printed Anthropomorphic Phantoms for Research and Educational Purposes in Digital Radiology 2020 International Conference on e-Health and Bioengineering (EHB), 2020, p. 1-4, (цитиран в Scopus), DOI: 10.1109/EHB50910.2020.9280163, принос на проекта 100 %, видима в: Scopus, Web of Science


P29. Antonio Sarno, Giovanni Mettivier, Francesca di Franco, Antonio Varallo, Kristina Bliznakova, Andrew M. Hernandez, John M. Boone, Paolo Russo, 2021, Dataset of patient-derived digital breast phantoms for in silico studies in breast computed tomography, digital breast tomosynthesis, and digital mammography, Med. Phys 2021 May, 48(5):2682-2693, DOI: 10.1002/mp.14826, принос на проекта 50%, Impact Factor 4.07, SJR 1.174, видима в: Scopus, Web of Science


P30. Tihomir P Georgiev, Iliyan Kolev, Nikolay Dukov, Stanislava Mavrodinova, Mariana Yordanova, Kristina Bliznakova, 2021, Development of an inkjet calibration phantom for x-ray imaging studies, Scripta Scientifica Medica Vol. 53, No.1, принос на проекта 100 %, DOI: 10.14748/ssm.v0i0.7410


P31. Y. Chernogorova , Zhivko Bliznakov , Kristina Bliznakova, 2021, Management Challenges in Implementing Scientific Projects During COVID-19 Pandemic, Polish Journal of Management Studies 2021, Volume 23, No.1, DOI: 10.17512/pjms.2021.23.1.09, принос на проекта 100 %, Impact Factor 2.279, SJR 0.338, видима в: Scopus, Web of Science


P32. Yanita Chernogorova, Turgay Kalinov, Nikolay Dukov, Kristina Bliznakova, Alexander Zlatarov, Nikola Kolev, Zhivko Bliznakov, 2022, Transforming Scientific Results into Educational Materials – Added Value of a Research Project, TEM Journal 2022 Volume 11, Issue 1, p 120-124, DOI: 10.18421/TEM111-14, принос на проекта 50%, Impact Factor 1.006, SJR 0.245, видима в: Scopus, Web of Science


P33. Georgiev, T., Bliznakova, K., Kolev, I., Dukov, N., Bliznakov, Z., 2022, An approach for development of a physical breast phantom for x-ray imaging using an inkjet printer: Preliminary results BioInfoMed 2020: Contemporary Methods in Bioinformatics and Biomedicine and Their Applications, p 384-389, Part of the Lecture Notes in Networks and Systems book series (LNNS,volume 374), DOI: 10.1007/978-3-030-96638-6_40, принос на проекта 100%, SJR 0.151, видима в: Scopus


P34. Baneva, Y., Bliznakova, K., 2022, Influence of Incident Mammography Spectra and Breast Phantom Characteristics on Mammography Features BioInfoMed 2020: Contemporary Methods in Bioinformatics and Biomedicine and Their Applications, p 390-399, Part of the Lecture Notes in Networks and Systems book series (LNNS,volume 374), DOI: 10.1007/978-3-030-96638-6_41 принос на проекта 100%, SJR 0.151, видима в: Scopus


P35. Kristina Bliznakova, Zhivko Bliznakov and Nikolay Dukov, 2022, Computational simulations and assessment of two approaches for x-ray phase contrast imaging, J. Phys.: Conf. Ser. 2162 012013, DOI: 10.1088/1742-6596/2162/1/012013 принос на проекта 100%, Impact Factor 0.547, SJR 0.210, Q3, видима в: Scopus, Web of Science


P36. Nikolay Dukov, Elica Encheva and Kristina Bliznakova, 2022, Suitability of 3D printing materials for printing anthropomorphic phantoms: A simulation study, J. Phys.: Conf. Ser. 2162 012012, DOI: 10.1088/1742-6596/2162/1/012012, принос на проекта 100%, Impact Factor 0.547, SJR 0.210, Q3, видима в: Scopus, Web of Science