Abstract. The conceptual model of
regional mobile system infrastructure for the people’s health care (RMSPHC) in
small and remote settlements is introduced. The system allows to improve
quality of the medical services for citizens of remote locations and to
implement the principles of 4P-medicine: Personalization, Predicativity , Preventiveness, Participation. The
following innovations are involved in infrastructure of RMSPHC: Principles of
territorial medical zoning; Technologies of expeditious physiological condition
monitoring for the patients in their place of living; Mechanisms of
prenosological diagnostics based on the virtual physiological patient models;
The "doctor-patient" methods of bilateral distant interaction;
Uniform information space providing an interoperable exchange of its components
and subsystems in existing zonal and regional heterogeneous telecommunication
systems.
Keywords: regional mobile healthcare
system, medical zoning, mobile health monitoring, prenosological diagnostics,
remote connectivity «doctor-patient» information space health information
services, the interoperability of information interaction in medicine.
References
1. The state program of the Pskov region "Development of health for 2014-2020" (as amended on: 15.12.2015),
approved by the Decree of Administration of the Pskov region from 28.10.2013 ¹
488. [Electronic resource]. URL:
http://docs.cntd.ru/document/462703933. [Date
of access: 16.06.2016].
(In Russian)
2. The state program of the
Sakhalin oblast "Development of health of the Sakhalin region in 2014 -
2020" (with amendments on: 24.03.2016), approved by Decree of the
Government of the Sakhalin area of 31.05.2013 ¹ 281. [Electronic resource].
http://docs.cntd.ru/document/460151544. [Date of access: 17.06.2016]. (In Russian)
3. The state program of the Republic of Tyva "health Development for 2013 - 2020" (with amendments on:
12.02.2015), approved by the Decree of the government of Republic Tyva from
30.04.2013 ¹ 250. [Electronic resource]. URL:
http://docs.cntd.ru/document/460180091. [Date of access: 18.06.2016]. (In Russian)
4. Ivaninskaya O.I.
Program-territorial approach to the optimization of the system of emergency,
ambulance and emergency medical care to the rural population (by example of Novosibirsk region) // Medicine and education in Siberia. 2015, ¹ 5. [Electronic resource].
URL:
http://ngmu.ru/cozo/mos/article/text_full.php?id=1558. [Date of access:
18.06.2016]. (In
Russian)
5. Winters J., Wang Y.
Wearable Sensors and Telerehabilitation // IEEE Engineering in Medicine and
Biology Magazine. 2003. ¹. 3. Pp. 56-65.
6. Blankenstein G., Larsen
U.D. Modular concept of a laboratory on a chip for chemical and biochemical
analysis // Biosensors & Bioelectronics. 1998. – Vol. 13. ¹. 3-4. – pp.
427-438.
7. Dmitriev N.V., Glazachev
O.S. Individual health and polyparametrical diagnostics of functional
conditions of an organism (system and information approach). – M: Medicine,
2000. – 214 p.
8. Gerasimenko N.F. P4
Medicine is a new direction in health development // Federal reference. Health
Care Of Russia. 2012. – Vol. 13. – pp. 93-96. (In Russian)
9. Belov V/S., Samarkin,
A.I., Kovalenok L.V. Infrastructure the mobile system of health protection of
inhabitants of small and remote communities // Proceedings of X all-Russian
scientific-practical conference with international participation "Health —
the basis of human potential: problems and ways of their solution". 2015.
– Vol. 10, part 1. – pp. 375-377. (In Russian)
10.
Buldakova
T. I., Satinov S.I., Mikov, D.A., Analysis of information risks of virtual infrastructures-health
// Information society. 2013. – Vol. 4. – pp. 41-51. (In Russian)
11.
Anishchenko, V.S., Buldakova T.I., Dovgalevsky P.YA. etc. Conceptual model of a virtual centre
of health protection of the population // Science and education. 2012. – ¹ 8. –
pp. 527-542. (In
Russian)
12.
Kobrinskiy
B.A. Continuum of transition States of the body and monitoring the health of
children. – M.: Getstatistic, 2000. – 155 p. (In Russian)
13.
Baevsky
R.M., Kaznacheev V.P. The Diagnosis prenosological // M.: BME, 1978. – T. 7.
pp. 253-255. (In
Russian)
14.
Bryukhov D.O., Zadorozhny V.I., Kalinichenko L. A., Kuroshev M.YU., Shumilov S.S. Interoperable information systems: architecture and technology / Systems/ database management. 1995. – ¹ 4. [Electronic resource]. URL:
http://www.osp.ru/data/www2/dbms/1995/04/41.htm. [Date of access: 18.06.2016]. (In Russian)
15.
Evdonin
E. S. Implementation of invariant principles of CALS-technologies for information
integration life cycle history // Journal of radio electronics: electronic
journal. 2010. – No. 12. [Electronic resource]. URL:
http://jre.cplire.ru/jre/dec10/5/text.pdf. [Date of access: 18.06.2016]. (In Russian)
16.
Odinochkina
S.V. Fundamentals of XML technologies. – SPb: ITMO, 2013. – 56ñ. (In Russian)
17.
Kamenshikov
A.A. Interoperability in e-health // Information technologies and computing
systems. 2009. – ¹ 5. – Pp. 61-71. (In Russian)