Clinical review for general practice

ISSN (Print) 2713-2552
ISSN (Online) 2782-5671
  • Home
  • about
  • archives
  • contacts
left
FULLSCREEN > Archive > 2023 > Vol 4, №3 (2023) > Magneto-IR-light-laser and ozone in prevention complications after a medical abortion

Magneto-IR-light-laser and ozone in prevention complications after a medical abortion

Asiyat E. Esedova , Albina Yu. Islamova , Teyli S. Magomedova , Ferzi S. Mamеdov

For citation:


  • Abstract
  • About the Author
  • References

Abstract

Artificial abortion is one of the leading causes of gynecological morbidity, infertility, negatively affects the course of subsequent pregnancy and childbirth. 124 patients were examined and treated after abortion (average age 34.8±1.7 years). The examined were divided into 3 groups. 52 (42.0%) women were assigned to the main group I, for whom antibiotics with magneto-IR light laser and ozone were used for prophylaxis. The main group II included 24 (19.3%) patients who received magneto-IR light-laser and ozone therapy, without antibiotics. The control subgroup consisted of 48 (38.7%) patients without prevention of complications. During bacterioscopy, the number of leukocytes above 30 in the field of vision was detected in 28 (53.9%) of the main group I, 13 (54.1%) of II and 25 (52.0%) of the control group. Gram-positive and gram-negative rods were detected in 9 (17.3%), 4 (16.7%) and 8 (16.7%); coccal flora in 12 (23.0%), 6 (25.0%) and 11 (23.0%), respectively. Mycelium and spores of Candida albicans fungus were isolated in 10 (19.2%) patients of the main group I, 5 (20.9%) II and 9 (18.8%) of the control group; "key" cells – in 6 (11.5%), 3 (12.5%) and 5 (10.4%), respectively. Gonococci and trichomonas were not detected. With the method "Femoflor 16" Lactobacillus spp. It was found in about half of the examined patients, after treatment it increased in all groups (96.1%, 91.7% and 85.4%, respectively). Facultative anaerobic organisms were identified in the main group I: Enterobacteriaceae spp. in 17.3% of observations; Streptococcus spp. in 7,7%; Staphylococcus spp. in 7.7%; main group II Enterobacteriaceae spp. in 16.7%; Streptococcus spp. in 8.3%; Staphylococcus spp. in 4.1%. The frequency of microorganisms in the control group was 16.7%, 8.3% and 8.3%, respectively. After treatment, the number of microorganisms was reduced by 2–3 times. Among obligate-anaerobic microorganisms, associations were found: Gardnerella vaginalis + Prevotella bivia + Porphyromonas spp. in 13.4%, 12.5% and 14.5%. After treatment, the frequency of their detection decreased by 2–3 times – to 3.9%, 4.1% and 6.2%, respectively. 
Key words: artificial abortion, magneto-IR-light-laser, ozone, Inbioflor, Femoflor 16.

About the Author

Asiyat E. Esedova 1 , Albina Yu. Islamova 1 , Teyli S. Magomedova 1 , Ferzi S. Mamеdov 1

1 Dagestan State Medical University, Makhachkala, Russia

References

1. Абрамченко В.В., Гусева Е.Н. Медикаментозный аборт. Руководство для врачей. М.: ЭЛБИ-СПб, 2020. [Abramchenko V.V., Guseva E.N. Medical abortion. Guide for doctors. Moscow: ELBI-SPb, 2020 (in Russian).] 
2. Гасратова А.И., Леут Е.В., Актуальность проблемы аборта. Медицинская и социальная значимость. Междун. студ. науч. вест. 2016; c. 1–10. [Gasratova A.I., Reut E.V., The relevance of the problem of abortion. Medical and social significance. International Student Scientific Bulletin 2016; p. 1–10 (in Russian).] 
3. Дикке Г.Б. Медикаментозный аборт в амбулаторной практике. М.: ГЭОТАР-Медиа, 2018. [Dikke G.B. Medical abortion in outpatient practice. Moscow: GEOTAR-Media, 2018 (in Russian).] 
4. Ласачко С.А., Шудрикова Н.В. Профилактика возможных осложнений и реабилитация женщин после медицинского аборта. Мед.-соц. пробл. семьи. 2013; 8 (3): 100–4. [Lasachko S.A., Shadrikov N.V. Prevention of possible complications and rehabilitation of women after medical abortion. Med.-soc. probl. families. 2013; 8 (3): 100–4 (in Russian).]
5. Хаскин С.Г. Аборт и его осложнения. М.: Гостехиздат, 2020. [Haskin S.G. Abortion and its complications. Moscow: Gostekhizdat, 2020 (in Russian).] 
6. Бурова Н.А., Жаркин Н.А. Динамика иммунологического профиля у пациенток с острыми воспалительными заболеваниями органов малого таза при различных вариантах лечения. Соврем. пробл. науки и обр. 2018; 5: 81. [Burova N.A., Zharkin N.A. Dynamics of the immunological profile in patients with acute inflammatory diseases of the pelvic organs with various treatment options. Sovrem. probl. nauki i obr. 2018; 5: 81 (in Russian).] 
7. Ross JDC. Pelvic inflammatory disease. Medicine. 2014; 42 (6): 333–7. 
8. Баранов И.И., Кукарская И.И., Карахалис Л.Ю. и др. Комплексный подход к лечению больных с воспалительными заболеваниями органов малого таза. Акушерство и гинекология. 2018; 6 (4): 65–70. [Baranov I.I., Kukarskaya I.I., Karakhalis L.Yu. et al. An integrated approach to the treatment of patients with inflammatory diseases of the pelvic organs. Akusherstvo i ginekologiia. 2018; 6 (4): 65–70.] 
9. Краснопольский В.И. Безопасный аборт. Руководство: современные технологии медицинского аборта, реабилитация после аборта, послеабортная контрацепция. М.: ГЭОТАР-Медиа, 2021. [Krasnopolsky V.I. Safe abortion. Manual: modern technologies of medical abortion, rehabilitation after abortion, post-abortion contraception. Moscow: GEOTAR-Media, 2021 (in Russian).] 
10. Аполихина И.А., Горбунова Е.А., Одинокова В.А. Малоинвазивные инновационные лазерные технологии в гинекологической практике. Акушерство и гинекология. 2014; 11: 17–22. [Apolikhina I.A., Gorbunova E.A., Odinikova V.A. Minimally invasive innovative laser technologies in gynecological practice. Akusherstvo i ginekologiia. 2014; 11: 17–22 (in Russian).] 
11. Федорова Т.А., Москвин С.В., Аполихина И.А. Лазерная терапия в акушерстве и гинекологии. М.: Триада, 2009. [Fedorova T.A., Moskvin S.V., Apolikhina I.A. Laser therapy in obstetrics and gynecology. Moscow: Triada, 2009 (in Russian).] 
12. Smith NL, Wilson AL, Gandhi J et al. Ozone therapy: an overview of pharmacodynamics, current research, and clinical utility. Med Gas Res 2017; 7 (3): 212–9. 
13. Серов В.Н., Федорова Т.А., Чернуха Е.А. Медицинская технология «Применение медицинского озона в акушерстве, гинекологии и неонатологии». Физиотерапия, бальнеология и реабилитация. 2010; 3: 47–55. [Serov V.N., Fedorova T.A., Chernukha E.A. Medical technology "Application of medical ozone in obstetrics, gynecology and neonatology". Fizioterapiia, bal'neologiia i reabilitatsiia. 2010; 3: 47–55 (in Russian).] 
14. Биссет Р. Ультразвуковая дифференциальная диагностика в акушерстве и гинекологии. М.: МЕДпресс-информ, 2018. [Bisset R. Ultrasound differential diagnostics in obstetrics and gynecology. M.: MEDpress-inform, 2018 (in Russian).] 
15. Манухин И.Б., Кулезнева Ю.В., Казаковцева С.Б. Дифференцированный подход к лечению больных с тубоовариальными образованиями придатков матки. Хирург. 2014; 3: 62–8. [Manukhin I.B., Kulezneva Yu.V., Kazakovtseva S.B. Differentiated approach to the treatment of patients with tuboovarial formations of uterine appendages. Surgeon. 2014; 3: 62–8 (in Russian).]

For citation:Esedova A.E., Islamova A.Yu., Magomedova T.S., Mamеdov F.S. Magneto-IR-light-laser and ozone in prevention complications after a medical abortion. Clinical review for general practice. 2023; 4 (3): 51–55. DOI: 10.47407/kr2023.4.3.00223


All accepted articles publish licensed under a Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) which allows users to read, copy, distribute and make derivative works for non-commercial purposes from the material, as long as the author of the original work is cited properly.

  • About
  • Editorial board
  • Ethics
  • For authors
  • Author fees
  • Peer review
  • Contacts

oa
crossref
анри


  Indexing

doaj
elibrary

Address of the Editorial Office:

127055, Moscow, s/m 37

Correspondence address:

115054, Moscow, Zhukov passage, 19, fl. 2, room XI


Managing Editor:

+7 (495) 926-29-83

id@con-med.ru