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  1. 1
    Academic Journal

    Contributors: the study was supported by grant from the Moscow Department of Health No. 2112–9/22., исследование поддержано грантом Департамента здравоохранения города Москвы № 2112–9/22.

    Source: Diagnostic radiology and radiotherapy; Том 16, № 1 (2025); 66-73 ; Лучевая диагностика и терапия; Том 16, № 1 (2025); 66-73 ; 2079-5343

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    Relation: https://radiag.bmoc-spb.ru/jour/article/view/1067/677; Kim C., Vassilyadi M., Forbes J.K., Moroz N.W., Camacho A., Moroz P.J. Traumatic spinal injuries in children at a single level 1 pediatric trauma centre: report of a 23-year experience // Can. J. Surg. 2016. Vol. 59, No. 3. P. 205–212. doi:10.1503/cjs.014515.; Залетина А.В., Виссарионов С.В., Баиндурашвили А.Г., Кокушин Д.Н., Соловьёва К.С. Повреждения позвоночника и спинного мозга у детского населения // Международный журнал прикладных и фундаментальных исследований. 2017. T. 12, № 1. С. 69–73. doi:10.17513/mjpfi.11965.; Понина И.В., Новосёлова И.Н., Валиуллина С.А., Ахадов Т.А., Божко О.В., Лукьянов В.И., Попова О.В. Особенности нутритивного статуса детей с позвоночно-спинномозговой травмой на ранних этапах восстановления // Российский педиатрический журнал. 2022. Т. 25, № 5. C. 333–336. doi:10.46563/1560-9561-2022-25-5-333-336.; Beirowski B., Adalbert R., Wagner D., Grumme D.S., Addicks K., Ribchester R.R. et al. The progressive nature of Wallerian degeneration in wild-type and slow Wallerian degeneration (WldS) nerves // BMC Neurosci. 2005. Vol. 6. P. 6. doi:10.1186/1471-2202-6-6.; Buss A., Brook G.A., Kakulas B., Martin D., Franzen R., Schoenen J. et al. Gradual loss of myelin and formation of an astrocytic scar during Wallerian degeneration in the human spinal cord // Brain. 2004. Vol. 127, No. 1. P. 34–44. doi:10.1093/brain/awh001.; Божко О.В., Ублинский М.В., Ахадов T.A., Воронкова Е.В., Кобзева А.А., Мельников И.А. Диффузионно-тензорная визуализация спинного мозга у здоровых детей // Российский педиатрический журнал. 2024. Т. 27, № 5. С. 350–355. doi:10.46563/1560-9561-2024-27-5-350-355.; Dong Q., Welsh R.C., Chenevert T.L., Carlos R.C., Maly-Sundgren P., Gomez-Hassan D.M. et al. Clinical applications of diffusion tensor imaging // J. Magn Reson Imaging. 2004. Vol. 19, No. 1. P. 6–18. doi:10.1002/jmri.10424.; Ахадов Т.А., Ублинский М.В., Каньшина Д.С., Божко О.В., Мельников И.А., Гачок И.В. и др. Диффузионная магнитно-резонансная визуализация для оценки состояния спинного мозга: физические и технические основы, клинический опыт: учебное пособие. М.: ИП Горшенева А.В., 2024. 86 с. ISBN 978-5-6044538-5-8.; Fiani B., Noblett C., Nanney J., Doan T., Pennington E., Jarrah R. et al. Diffusion tensor imaging of the spinal cord status post trauma // Surg. Neurol. Int. 2020. Vol. 11. P. 276. doi:10.25259/SNI_495_2020.; Mulcahey M.J., Samdani A., Gaughan J., Barakat N., Faro S., Betz R.R. et al. Diffusion tensor imaging in pediatric spinal cord injury: Preliminary examination of reliability and clinical correlation // Spine (Phila Pa 1976). 2012. Vol. 37, No. 13. P. 797. doi:10.1097/BRS.0b013e3182470a08.; Mulcahey M.J., Samdani A.F., Gaughan J.P., Barakat N., Faro S., Shah P. et al. Diagnostic accuracy of diffusion tensor imaging for pediatric cervical spinal cord injury // Spinal Cord. 2013. Vol. 51, No. 7. P. 532–537. doi:10.1038/sc.2013.36.; Krisa L., Middleton D.M., Saksena S, Faro S.H., Leiby B.E., Mohamed F.B. et al. Clinical Utility of Diffusion Tensor Imaging as a Biomarker to Identify Microstructural Changes in Pediatric Spinal Cord Injury // Top Spinal. Cord Inj. Rehabil. 2022. Vol. 28, No. 2. P. 1–12. doi:10.46292/sci21–00048.; Roberts T.T., Leonard G.R., Cepela D.J. Classifications In Brief: American Spinal Injury Association (ASIA) Impairment Scale // Clin. Orthop. Relat. Res. 2017. Vol. 475, No. 5. P. 1499–1504. doi:10.1007/s11999-016-5133-4.; Wilm B.J., Gamper U., Henning A., Pruessmann K.P., Kollias S.S., Boesiger P. Diffusion-weighted imaging of the entire spinal cord // NMR Biomed. 2009. Vol. 22, No. 2. P. 174–181. doi:10.1002/nbm.1298.; De Leener B., Lévy S., Dupont S.M., Fonov V.S., Stikov N., Louis Collins D. et al. SCT: Spinal Cord Toolbox, an open-source software for processing spinal cord MRI data // Neuroimage. 2017. Vol. 145. Pt A. P. 24–43. doi:10.1016/j.neuroimage.2016.10.009.; David G., Pfyffer D., Vallotton K., Pfender N., Thompson A., Weiskopf N. et al. Longitudinal changes of spinal cord grey and white matter following spinal cord injury // J. Neurol Neurosurg Psychiatry. 2021. Vol. 92, No. 11. P. 1222–1230. doi:10.1136/jnnp-2021-326337.; Freund P., Seif M., Weiskopf N., Friston K., Fehlings M.G., Thompson A.J. et al. MRI in traumatic spinal cord injury: from clinical assessment to neuroimaging biomarkers // Lancet Neurol. 2019. Vol. 18. № 12. P. 1123–1135. doi:10.1016/S1474-4422(19)30138-3.; Seif M., Ziegler G., Freund P. Progressive Ventricles Enlargement and Cerebrospinal Fluid Volume Increases as a Marker of Neurodegeneration in Patients with Spinal Cord Injury: A Longitudinal Magnetic Resonance Imaging Study. // J. Neurotrauma. 2018. Vol. 35, No. 24. P. 2941–2946. doi:10.1089/neu.2017.5522.; Fissel J.A., Farah M.H. The influence of BACE1 on macrophage recruitment and activity in the injured peripheral nerve // J. Neuroinflammation. 2021. Vol. 18, No. 1. P. 71. doi:10.1186/s12974-021-02121-2.; Tian R., Zhou Y., Ren Y., Zhang Y., Tang W. Wallerian degeneration: From mechanism to disease to imaging. // Heliyon. 2024. Vol. 11, No. 1. e40729. doi:10.1016/j.heliyon.2024.e40729.; Fischer T., Stern C., Freund P., Schubert M., Sutter R. Wallerian degeneration in cervical spinal cord tracts is commonly seen in routine T2-weighted MRI after traumatic spinal cord injury and is associated with impairment in a retrospective study // Eur. Radiol. 2021. Vol. 31, No. 5. P. 2923–2932. doi:10.1007/s00330-020-07388-2.; Poulen G., Perrin F.E. Advances in spinal cord injury: insights from non-human primates // Neural Regen Res. 2024. Vol. 19, No. 11. P. 2354–2364. doi:10.4103/NRR.NRR-D-23-01505.; Grumbles R.M., Thomas C.K. Motoneuron Death after Human Spinal Cord Injury // J. Neurotrauma. 2017. Vol. 34, No. 3. P. 581–590. doi:10.1089/neu.2015.4374.; Hill CE. A view from the ending: Axonal dieback and regeneration following SCI // Neurosci. Lett. 2017. Vol. 652. P. 11–24. doi:10.1016/j.neulet.2016.11.002.; Beirowski B., Nógrádi A., Babetto E., Garcia-Alias G., Coleman M.P. Mechanisms of axonal spheroid formation in central nervous system Wallerian degeneration // J. Neuropathol. Exp. Neurol. 2010. Vol. 69, No. 5. P. 455–472. doi:10.1097/NEN.0b013e3181da84db.; DeFrancesco-Lisowitz A., Lindborg J.A., Niemi J.P., Zigmond R.E. The neuroimmunology of degeneration and regeneration in the peripheral nervous system // Neuroscience. 2015. Vol. 302. P. 174–203. doi:10.1016/j.neuroscience.2014.09.027.; Schading S., Emmenegger T.M., Freund P. Improving Diagnostic Workup Following Traumatic Spinal Cord Injury: Advances in Biomarkers // Curr. Neurol. Neurosci. Rep. 2021. Vol. 21, No. 9. P. 49. doi:10.1007/s11910-021-01134-x.; Guleria S., Gupta R.K., Saksena S., Chandra A., Srivastava R.N., Husain M. et al. Retrograde Wallerian degeneration of cranial corticospinal tracts in cervical spinal cord injury patients using diffusion tensor imaging // J. Neurosci Res. 2008. Vol. 86, No. 10. P. 2271–2280. doi:10.1002/jnr.21664.; Koskinen E., Brander A., Hakulinen U., Luoto T., Helminen M., Ylinen A. et al. Assessing the state of chronic spinal cord injury using diffusion tensor imaging // J. Neurotrauma. 2013. Vol. 30, No. 18. P. 1587–1595. doi:10.1089/neu.2013.2943.

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    Academic Journal

    Source: Urology Herald; Том 11, № 3 (2023); 131-141 ; Вестник урологии; Том 11, № 3 (2023); 131-141 ; 2308-6424 ; 10.21886/2308-6424-2023-11-3

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    Relation: https://www.urovest.ru/jour/article/view/763/501; Кадыков А.С., Шведков В.В., Коршунова Е.С., Пряников И.В. Место нейроурологии в системе клинической неврологии. Нейроурологическая реабилитация. Физическая и реабилитационная медицина, медицинская реабилитация. 2019;1(4):72-76. DOI:10.36425/2658-6843-2019-4-72-76; Шварц П.Г., Попов С.В. Нейрогенная задержка мочи. М.: Изд-во «Пресс Бюро». 2011.; Российские национальные рекомендации «Нейрогенная дисфункция нижних мочевыводящих путей». М.; 2021.; Gurcay E, Bal A, Eksioglu E, Cakci A. Quality of life in patients with spinal cord injury. Int J Rehabil Res. 2010;33(4):356-8. DOI:10.1097/MRR.0b013e328338b034; McIntyre A, Cheung KY, Kwok C, Mehta S, Wolfe D, Teasell RW. Quality of Life and Bladder Management post Spinal Cord Injury: A Systematic Review. Applied Research in Quality of Life. 2014;9(4):1081-1096. DOI:10.1007/s11482-013-9289-8; Guttmann L, Frankel H. The value of intermittent catheterisation in the early management of traumatic paraplegia and tetraplegia. Paraplegia. 1966;4(2):63-84. DOI:10.1038/sc.1966.7; Panicker JN, Fowler CJ, Kessler TM. Lower urinary tract dysfunction in the neurological patient: clinical assessment and management. Lancet Neurol. 2015;14(7):720-32. DOI:10.1016/S1474-4422(15)00070-8; Bjerklund Johansen T, Hultling C, Madersbacher H, Del Popolo G, Amarenco G; LoFric Primo Study Group. A novel product for intermittent catheterisation: its impact on compliance with daily life--international multicentre study. Eur Urol. 2007;52(1):213-20. DOI:10.1016/j.eururo.2006.11.041; Seth JH, Haslam C, Panicker JN. Ensuring patient adherence to clean intermittent self-catheterization. Patient Prefer Adherence. 2014;8:191-8. DOI:10.2147/PPA.S49060; Le Breton F, Guinet A, Verollet D, Jousse M, Amarenco G. Therapeutic education and intermittent self-catheterization: recommendations for an educational program and a literature review. Ann Phys Rehabil Med. 2012;55(3):201-12. DOI:10.1016/j.rehab.2012.01.006; Kriz J, Relichova Z. Intermittent self-catheterization in tetraplegic patients: a 6-year experience gained in the spinal cord unit in Prague. Spinal Cord. 2014;52(2):163-6. DOI:10.1038/sc.2013.154; Wyndaele JJ. Complications of intermittent catheterization: their prevention and treatment. Spinal Cord. 2002;40(10):536-41. DOI:10.1038/sj.sc.3101348; Clinical Practice Guidelines Adult Clean Intermittent Catheterization. SUNA, Society of Urologic Nurses and Associates. Accessed October, 20, 2015. URL: http://www.suna.org/resources/adultCICGuide.pdf; Sheldon P. Successful intermittent self-catheterization teaching: one nurse's strategy of how and what to teach. Urol Nurs. 2013;33(3):113-7. PMID: 23930442.; Lapides J, Diokno AC, Silber SJ, Lowe BS. Clean, intermittent self-catheterization in the treatment of urinary tract disease. J Urol. 1972;107(3):458-61. DOI:10.1016/s0022-5347(17)61055-3; Heard L, Buhrer R. How do we prevent UTI in people who perform intermittent catheterization? Rehabil Nurs. 2005;30(2):44-5, 61. DOI:10.1002/j.2048-7940.2005.tb00358.x; Leroux C, Turmel N, Chesnel C, Grasland M, Le Breton F, Amarenco G, Hentzen C. Determinants and impact of the time to perform clean intermittent self-catheterization on patient adherence and quality of life: A prospective observational study. Neurourol Urodyn. 2021;40(4):1027-1034. DOI:10.1002/nau.24662; Denys P, Chartier-Kastler E, Even A, Joussain C. How to treat neurogenic bladder and sexual dysfunction after spinal cord lesion. Rev Neurol (Paris). 2021;177(5):589-593. DOI:10.1016/j.neurol.2020.07.013; Abrams P, Andersson KE, Birder L, Brubaker L, Cardozo L, Chapple C, Cottenden A, Davila W, de Ridder D, Dmochowski R, Drake M, Dubeau C, Fry C, Hanno P, Smith JH, Herschorn S, Hosker G, Kelleher C, Koelbl H, Khoury S, Madoff R, Milsom I, Moore K, Newman D, Nitti V, Norton C, Nygaard I, Payne C, Smith A, Staskin D, Tekgul S, Thuroff J, Tubaro A, Vodusek D, Wein A, Wyndaele JJ; Members of Committees; Fourth International Consultation on Incontinence. Fourth International Consultation on Incontinence Recommendations of the International Scientific Committee: Evaluation and treatment of urinary incontinence, pelvic organ prolapse, and fecal incontinence. Neurourol Urodyn. 2010;29(1):213-40. DOI:10.1002/nau.20870; Nicolle LE. Urinary tract infections in patients with spinal injuries. Curr Infect Dis Rep. 2014;16(1):390. DOI:10.1007/s11908-013-0390-9; Bakke A. Clean intermittent catheterization--physical and psychological complications. Scand J Urol Nephrol Suppl. 1993;150:1-69. PMID: 8438132.; Biering-Sørensen F, Nielans HM, Dørflinger T, Sørensen B. Urological situation five years after spinal cord injury. Scand J Urol Nephrol. 1999;33(3):157-61. DOI:10.1080/003655999750015925; Turi MH, Hanif S, Fasih Q, Shaikh MA. Proportion of complications in patients practicing clean intermittent self-catheterization (CISC) vs indwelling catheter. J Pak Med Assoc. 2006;56(9):401-4. PMID: 17091752.; D'Ancona C, Haylen B, Oelke M, Abranches-Monteiro L, Arnold E, Goldman H, Hamid R, Homma Y, Marcelissen T, Rademakers K, Schizas A, Singla A, Soto I, Tse V, de Wachter S, Herschorn S; Standardisation Steering Committee ICS and the ICS Working Group on Terminology for Male Lower Urinary Tract & Pelvic Floor Symptoms and Dysfunction. The International Continence Society (ICS) report on the terminology for adult male lower urinary tract and pelvic floor symptoms and dysfunction. Neurourol Urodyn. 2019;38(2):433-477. DOI:10.1002/nau.23897; Mowbray C, Tan A, Vallée M, Fisher H, Chadwick T, Brennand C, Walton KE, Pickard RS, Harding C, Aldridge PD, Hall J. Multidrug-resistant Uro-associated Escherichia coli Populations and Recurrent Urinary Tract Infections in Patients Performing Clean Intermittent Self-catheterisation. Eur Urol Open Sci. 2022;37:90-98. DOI:10.1016/j.euros.2021.12.015; Bardsley A. Intermittent self-catheterisation in women: reducing the risk of UTIs. Br J Nurs. 2014;23 Suppl 18:S20-9. DOI:10.12968/bjon.2014.23.Sup18.S20; Günther M, Löchner-Ernst D, Kramer G, Stöhrer. Intermittent catheterization in male neurogenics: no harm to the urethra. Abstract poster 93 presented during Annual Scientific Meeting of IMSOP. Sydney, Australia; 2000.; Schumm K, Lam TB. Types of urethral catheters for management of short-term voiding problems in hospitalised adults. Cochrane Database Syst Rev. 2008;(2):CD004013. Update in: Cochrane Database Syst Rev. 2014;9:CD004013. PMID: 18425896. DOI:10.1002/14651858.CD004013.pub3; Кезина Л.П., Салюков Р.В., Тищенко Г.Е. Катетеры для периодической катетеризации мочевого пузыря, как техническое средство реабилитации пациентов с нейрогенной дисфункцией нижних мочевыводящих путей: вопросы организации обеспечения инвалидов. Физическая и реабилитационная медицина, медицинская реабилитация. 2019;1(4):77-81. DOI:10.36425/2658-6843-2019-4-77-81; Hudson E, Murahata RI. The 'no-touch' method of intermittent urinary catheter insertion: can it reduce the risk of bacteria entering the bladder? Spinal Cord. 2005;43(10):611-4. DOI:10.1038/sj.sc.3101760; Cardenas DD, Moore KN, Dannels-McClure A, Scelza WM, Graves DE, Brooks M, Busch AK. Intermittent catheterization with a hydrophilic-coated catheter delays urinary tract infections in acute spinal cord injury: a prospective, randomized, multicenter trial. PM R. 2011;3(5):408-17. DOI:10.1016/j.pmrj.2011.01.001; Li L, Ye W, Ruan H, Yang B, Zhang S, Li L. Impact of hydrophilic catheters on urinary tract infections in people with spinal cord injury: systematic review and meta-analysis of randomized controlled trials. Arch Phys Med Rehabil. 2013;94(4):782-7. DOI:10.1016/j.apmr.2012.11.010; Clark JF, Mealing SJ, Scott DA, Vogel LC, Krassioukov A, Spinelli M, Bagi P, Wyndaele JJ. A cost-effectiveness analysis of long-term intermittent catheterisation with hydrophilic and uncoated catheters. Spinal Cord. 2016;54(1):73-7. DOI:10.1038/sc.2015.117; Bermingham SL, Hodgkinson S, Wright S, Hayter E, Spinks J, Pellowe C. Intermittent self catheterisation with hydrophilic, gel reservoir, and non-coated catheters: a systematic review and cost effectiveness analysis. BMJ. 2013;346:e8639. DOI:10.1136/bmj.e8639; Rognoni C, Tarricone R. Intermittent catheterisation with hydrophilic and non-hydrophilic urinary catheters: systematic literature review and meta-analyses. BMC Urol. 2017;17(1):4. DOI:10.1186/s12894-016-0191-1; Feng D, Cheng L, Bai Y, Yang Y, Han P. Outcomes comparison of hydrophilic and non-hydrophilic catheters for patients with intermittent catheterization: An updated meta-analysis. Asian J Surg. 2020;43(5):633-635. DOI:10.1016/j.asjsur.2019.12.009; Кривобородов Г. Г., Салюков Р.В., Тищенко Г. Е., Кадыров З.А., Бушков Ф.А., Комаров А.Н, Кезина Л.П. Периодическая катетеризация мочевого пузыря. Методические рекомендации. 2017.; Kessler TM, Ryu G, Burkhard FC. Clean intermittent self-catheterization: a burden for the patient? Neurourol Urodyn. 2009;28(1):18-21. DOI:10.1002/nau.20610; Turmel N, Hentzen C, Miget G, Chesnel C, Charlanes A, Le Breton F, Tan E, Amarenco G. Analyse de la douleur urétrale lors de la pratique de l’autosondage : étude rétrospective sur 77 patients [Urethral pain during clean intermittent self catheterization: Retrospective analysis of 77 patients]. Prog Urol. 2019;29(7):360-365. (In French). DOI:10.1016/j.purol.2019.04.005; Pilloni S, Krhut J, Mair D, Madersbacher H, Kessler TM. Intermittent catheterisation in older people: a valuable alternative to an indwelling catheter? Age Ageing. 2005;34(1):57-60. DOI:10.1093/ageing/afh233; Kiddoo D, Sawatzky B, Bascu CD, Dharamsi N, Afshar K, Moore KN. Randomized Crossover Trial of Single Use Hydrophilic Coated vs Multiple Use Polyvinylchloride Catheters for Intermittent Catheterization to Determine Incidence of Urinary Infection. J Urol. 2015;194(1):174-9. DOI:10.1016/j.juro.2014.12.096; Bakke A, Brun OH, Høisaeter PA. Clinical background of patients treated with clean intermittent catheterization in Norway. Scand J Urol Nephrol. 1992;26(3):211-7. DOI:10.3109/00365599209180871; Chai T, Chung AK, Belville WD, Faerber GJ. Compliance and complications of clean intermittent catheterization in the spinal cord injured patient. Paraplegia. 1995;33(3):161-3. DOI:10.1038/sc.1995.35; Girotti ME, MacCornick S, Perissé H, Batezini NS, Almeida FG. Determining the variables associated to clean intermittent self-catheterization adherence rate: one-year follow-up study. Int Braz J Urol. 2011;37(6):766-72. DOI:10.1590/s1677-55382011000600013; Lefafta F, Miget G, Tan E, Pericolini M, Chesnel C, Haddad R, Turmel N, Amarenco G, Hentzen C. La méconnaissance initiale de l’anatomie périnéale n’influence pas l’apprentissage de l’auto-sondage intermittent chez la femme [An initial lack of knowledge of the perineal anatomy does not influence the learning of intermittent self-catheterization in women]. Prog Urol. 2022;32(11):744-750. (In French). DOI:10.1016/j.purol.2022.04.004; Perkash I, Giroux J. Clean intermittent catheterization in spinal cord injury patients: a followup study. J Urol. 1993;149(5):1068-71. DOI:10.1016/s0022-5347(17)36298-5; Maynard FM, Glass J. Management of the neuropathic bladder by clean intermittent catheterisation: 5 year outcomes. Paraplegia. 1987;25(2):106-10. DOI:10.1038/sc.1987.19; Bolinger R, Engberg S. Barriers, complications, adherence, and self-reported quality of life for people using clean intermittent catheterization. J Wound Ostomy Continence Nurs. 2013;40(1):83-9. DOI:10.1097/WON.0b013e3182750117; Jaquet A, Eiskjaer J, Steffensen K, Laursen BS. Coping with clean intermittent catherization--experiences from a patient perspective. Scand J Caring Sci. 2009;23(4):660-6. DOI:10.1111/j.1471-6712.2008.00657.x; van Achterberg T, Holleman G, Cobussen-Boekhorst H, Arts R, Heesakkers J. Adherence to clean intermittent self-catheterization procedures: determinants explored. J Clin Nurs. 2008;17(3):394-402. DOI:10.1111/j.1365-2702.2006.01893.x; Vahter L, Zopp I, Kreegipuu M, Kool P, Talvik T, Gross-Paju K. Clean intermittent self-catheterization in persons with multiple sclerosis: the influence of cognitive dysfunction. Mult Scler. 2009;15(3):379-84. DOI:10.1177/1352458508098599; Wang X, Cao X, Li J, Deng C, Wang T, Fu L, Zhang Q. Evaluation of Patient-Reported Outcome Measures in Intermittent Self-Catheterization Users: A Systematic Review. Arch Phys Med Rehabil. 2021;102(11):2239-2246. DOI:10.1016/j.apmr.2021.03.020; Hervé F, Ragolle I, Amarenco G, Viaene A, Guinet-Lacoste A, Bonniaud V, Everaert K. Assessment of Intermittent Self-Catheterization Procedures in Patients with Neurogenic Lower Urinary Tract Dysfunction: Dutch Translation and Validation of the Intermittent Catheterization Satisfaction Questionnaire, Intermittent Catheterization Acceptance Test, Intermittent Self Catheterization Questionnaire and Intermittent Catheterization Difficulty Questionnaire. Urol Int. 2019;102(4):476-481. DOI:10.1159/000499884; Culha Y, Acaroglu R. The Effect of Video-Assisted Clean Intermittent Catheterization Training on Patients' Practical Skills and Self-Confidence. Int Neurourol J. 2022;26(4):331-341. DOI:10.5213/inj.2244166.083; https://www.urovest.ru/jour/article/view/763

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    Academic Journal

    Source: Rossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics); Том 65, № 4 (2020); 122-127 ; Российский вестник перинатологии и педиатрии; Том 65, № 4 (2020); 122-127 ; 2500-2228 ; 1027-4065 ; 10.21508/1027-4065-2020-65-4

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    Source: POLYTRAUMA; № 4 (2018): декабрь; 71-75 ; ПОЛИТРАВМА / POLYTRAUMA; № 4 (2018): декабрь; 71-75 ; 2541-867X ; 1819-1495

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