Main Article Content

Андрей Георгиевич Петров
Ольга Владимировна Хорошилова
Сергей Николаевич Филимонов
Николай Иванович Панев
Виктор Андреевич Семенихин
Елена Борисовна Григорьева

Abstract

Human health is an indicator of working conditions, the state of the environment, the current state of technology and technology, as well as the effectiveness of health care. The high rates of occupational morbidity in the coal industry and the insufficient effectiveness of measures taken to prevent it in recent years have not satisfied either owners, employees, or the state. One of the priority and relevant directions of modern pharmaceutical science is the organization of the prevention of occupational diseases in the system of specialized pharmaceutical care for employees of the coal industry. However, these issues have not been reflected in previous studies. The above indicates that the development of pharmacoprophylactic programs in the system of pharmaceutical sanology within the framework of medicine and occupational safety using modern digital technologies is currently extremely relevant in solving the problem of occupational diseases, preserving the health of the working population in the industrialized regions of Russia, in particular Kuzbass. Modern information technologies in medicine and pharmacy are assistive technologies that support research in the field of healthcare, medical and pharmaceutical practice, including treatment, recovery, disease prevention and public health promotion. The digital tools of modern medicine make it possible to make a breakthrough in the approach to the treatment and prevention of diseases. It should be emphasized that the paradigm of modern healthcare is an active role of a person in maintaining their health and life, taking into account the development of the movement towards forecasting, prevention and a healthy lifestyle, and requires new processes of using digital assisting tools based on accumulated experience and the formation of scientifically sound proposals to restart the process of implementing 4P approaches in Russian healthcare: disease prevention; disease prevention; personalized approach to the patient; participation and full understanding of the processes by the patient.

Keywords

digital transformation, pharmaceutical sinology, occupational diseases, pharmaceutical prevention

Author Biographies

Андрей Георгиевич Петров,
doctor of pharmaceutical sciences, docent, professor of the department of pharmacy
Ольга Владимировна Хорошилова,
candidate of pharmaceutical sciences, assistant, department of pharmacy
Сергей Николаевич Филимонов,

Filimonov Sergey Nikolaevich

Head of the Department of Human Ecology, Public Health and Healthcare.
Doctor of Medical Sciences, Professor, Excellence in Public Health of the Russian Federation. Education: higher medical, medical business. Medical experience since 1983 Born November 22, 1959 in the village. Izhmorka, Kemerovo region.
S.N. Filimonov is a highly qualified specialist in the field of therapy, cardiology, pulmonology, nephrology, occupational pathology, emergency medical care.
Actively engaged in scientific research. Range of professional and scientific interests: prevention, diagnostics, treatment and rehabilitation of patients with therapeutic pathology, the study of genetic and phenotypic markers, new aspects of the treatment of diseases of internal organs.
He has more than 450 published scientific papers, including 66 textbooks, 9 monographs, reference books, manuals, 16 invention patents and 1 computer program registration certificate, on various issues of therapy, cardiology, pulmonology, nephrology, occupational pathology, on clinical problems, course, rehabilitation and prediction of the results of the course of pathological processes (IHD, AH, COPD, etc.).
Internship: Ambulance station in Novokuznetsk (1983-1984).
Residency: Department of Cardiology Novokuznetsk GIDUV (1987-1989).
From 2004 to 2016 - Vice-Rector for Academic Affairs of NGIUV, since 2007 - Professor of the Department of Therapy of NGIUV, since 2017 - Director of the Research Institute of Complex Problems of Hygiene and Occupational Diseases.

Николай Иванович Панев,
doctor of medical sciences, head of the scientific and clinical department of occupational medicine
Виктор Андреевич Семенихин,
doctor of medical sciences, professor, department of faculty therapy, occupational diseases and endocrinology
Елена Борисовна Григорьева,
senior lecturer of the department of pharmacy

Article Details

Information about financing and conflict of interests

The study had no sponsorship.
The authors declare that they have no apparent or potential conflicts of interest related to the publication of this article.

How to Cite

Петров, А. Г., Хорошилова, О. В., Филимонов, С. Н., Панев, Н. И., Семенихин, В. А., & Григорьева, Е. Б. (2024). THE RELEVANCE OF THE DEVELOPMENT OF DIGITAL TRANSFORMATION IN THE SYSTEM OF PHARMACEUTICAL SANOLOGY IN OCCUPATIONAL DISEASES. Medicine in Kuzbass, 23(2), 11-20. https://doi.org/10.24412/2687-0053-2024-2-11-20

References

Petrov AG, Semenikhin VA, Glembotskaya GT, Knysh OI, Khoroshilova OV, Martsiyash AA. Pharmaceutical sanology as a strategic resource for the prevention of occupational diseases: monograph. 2020. 271 p. Russian (Петров А.Г., Семенихин В.А., Глембоцкая Г.Т., Кныш О.И., Хорошилова О.В., Марцияш А.А. Фармацевтическая санология как стратегический ресурс профилактики профессиональных заболеваний: монография. Кемерово, 2020. 271 с.)

Lisitsin YuP, Ulumbekova GE. Public health and healthcare: textbook. M.: GEOTAR-Media, 2013. 554 p. Russian (Лисицин Ю.П., Улумбекова Г.Э. Общественное здоровье и здравоохранение: учебник. М.: ГЭОТАР-Медиа, 2013. 554 с.)

Glembotskaya GT, Maskayeva AR. The concept of pharmaceutical care: realities and prospects. New pharmacy. 2011; 5: 11-14. Russian (Глембоцкая Г.Т., Маскаева А.Р. Концепция фармацевтической помощи: реалии и перспективы //Новая аптека. 2011. № 5. С. 11-14)

Dremova NB, Ovod AI, Korzhavykh EA. Fundamentals of pharmaceutical care in healthcare: monograph. Kursk: KSMU, 2009. 412 p. Russian (Дремова Н.Б., Овод А.И., Коржавых Э.А. Основы фармацевтической помощи в здравоохранении: монография. Курск: КГМУ, 2009. 412 с.)

Karpov OE, Khramov AE. Predictive medicine. Information technologies for the Physician. 2021; 3: 20-37. Russian (Карпов О.Э., Храмов А.Е. Прогностическая медицина //Врач и информационные технологии. 2021. № 3. С. 20-37)

Petrov AG, Semenikhin VA, Soloninina AV, Khoroshilova OV. Pharmaceutical prevention of occupational diseases: textbook /ed. Petrov AG. M.: KnoRus, 2022. 209 c. Russian (Петров А.Г., Семенихин В.А., Солонинина А.В., Хорошилова О.В. Фармацевтическая профилактика профессиональных заболеваний: учебник / под ред. Петрова А.Г. М.: КноРус, 2022. 209 с.)

Coravos A, Goldsack JC, Karlin DR, Nebeker C, Perakslis E, Zimmerman N, Erb MK. Digital medicine: a primer on measurement. Digit Biomark. 2019; 3(2): 31-71. doi: 10.1159/000500413

Cesario A, Auffray C, Russo P, Hood L. P4 medicine needs P4 education. Curr Pharm Des. 2014; 20(38): 6071-6072. doi: 10.2174/1381612820666140314145445

Davenport HT, Hongsermeier TM, McCord KA. Using AI to improve electronic health records. Harvard Bus Rev. 2018; 12: 1-6

Del Sol A, Balling R, Hood L, Galas D. Diseases as network perturbations. Curr Opin Biotechnol. 2010; 21(4): 566-571

Elenko E, Underwood L, Zohar D. Defining digital medicine. Nat biotechnol. 2015; 33(5): 456-461. doi: 10.1038/nbt.3222

Flores M, Glusman G, Brogaard K, Price ND, Hood L. P4 medicine: how systems medicine will transform the healthcare sector and society. Per med. 2013; 10(6): 565-576. doi: 10.2217/pme.13.57

Hood L, Balling R, Auffray C. Revolutionizing medicine in the 21st century through systems approaches. Biotechnol J. 2012; 7(8): 992-1001. doi: 10.1002/biot.201100306

Hodson R. Precision medicine. Nature. 2016; 537(7619): S49. doi: 10.1038/537S49a

Marzorati C, Pravettoni G. Value as the key concept in the health care system: How it has influenced medical practice and clinical decision-making processes. J Multidiscip Healthc. 2017; 10: 101-106. doi: 10.2147/JMDH.S122383

Nicolini C, Bragazzi N, Pechkova E. Nanoproteomics enabling personalized nanomedicine. Adv drug deliv rev. 2012; 64(13): 1522-1531. doi: 10.1016/j.addr.2012.06.015

Pravettoni G, Triberti S. P5 eHealth: An agenda for the health technologies of the future. Springer Nature, 2020. 189 p. doi: 10.1007/978-3-030-27994-3

Topol EJ. Deep Medicine: How Artificial Intelligence Can Make Healthcare Human Again. Basic Books, 2019. 400 p.

Kuznetsov PP, Sobolev KE, Kakorina EP, Khizgiyaev VI, Deminov MM, Maksimov IB, et al. Digital transformation of occupational medicine. National health care (Russia). 2021; 2(3): 41-46. Russian (Кузнецов П.П., Соболев К.Э., Какорина Е.П., Хизгияев В.И., Деминов М.М., Максимов И.Б., и др. Цифровая трансформация медицины труда //Национальное здравоохранение. 2021. Т. 2, № 3. С. 41-46.) doi: 10.47093/2713-069X.2021.2.3.41-46

Downloads

Download data is not yet available.

Most read articles by the same author(s)

<< < 1 2 3 4 5 6 7 8 9 10 > >>