Search PubMed⌕ Search

PubMed · 10096229

[A decrease in harm: a new concept for Russian public health].

Abstract

The main principles of the concept of the "decrease of harm", realized in many countries of the world, are presented and the expediency of using this concept in Russia is substantiated. The beginning of the realization of the Project "Decrease of Harm: the Russian Federation", aimed at training specialists capable of carrying out prophylactic work among users of intravenous drugs (UID), is demonstrated. The principles of the selection of the groups of trainees are shown: the groups are made up of physicians working at AIDS centres, specialists in narcology and representatives of non-governmental organizations. The course of training provides the basic information on the strategy of the prophylaxis of HIV infection among UID, including evaluation and study, outreach, change of syringes and needles, replacement therapy, the program of the treatment of drug addiction. At the present moment 46 specialists from 18 regions of Russia are taking the course of training.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D Burrows, Iu Sarankov. [A decrease in harm: a new concept for Russian public health].. https://pubmed.ncbi.nlm.nih.gov/10096229/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

HIV-phyloTSI: subtype-independent estimation of time since HIV-1 infection for cross-sectional measures of population incidence using deep sequence data.

BACKGROUND: Estimating the time since HIV infection (TSI) at population level is essential for tracking changes in the global HIV epidemic. Most methods for determining TSI give a binary classification of infections as recent or non-recent within a window of several months, and cannot assess the cumulative impact of an intervention. RESULTS: We developed a Random Forest Regression model, HIV-phyloTSI, which combines measures of within-host diversity and divergence to generate continuous TSI estimates directly from viral deep-sequencing data, with no need for additional variables. HIV-phyloTSI provides a continuous measure of TSI up to 9 years, with a mean absolute error of less than 12 months overall and less than 5 months for infections with a TSI of up to a year. It performs equally well for all major HIV subtypes based on data from African and European cohorts. CONCLUSIONS: We demonstrate how HIV-phyloTSI can be used for incidence estimates on a population level.

HIV Infections↗