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    Academic Journal

    Πηγή: Russian Journal of Pediatric Surgery, Anesthesia and Intensive Care; Vol 12 (2022): Supplement; 93 ; Российский вестник детской хирургии, анестезиологии и реаниматологии; Vol 12 (2022): Supplement; 93 ; 2587-6554 ; 2219-4061 ; 10.17816/psaic.2022

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    Διαθεσιμότητα: https://rps-journal.ru/jour/article/view/1397

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    Academic Journal

    Πηγή: Messenger of ANESTHESIOLOGY AND RESUSCITATION; Том 19, № 1 (2022); 82-90 ; Вестник анестезиологии и реаниматологии; Том 19, № 1 (2022); 82-90 ; 2541-8653 ; 2078-5658

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.vair-journal.com/jour/article/view/630/543; Росстат: Федеральная служба государственной статистики. 2020. URL: https://rosstat.gov.ru/storage/mediabank/progn7.xls (дата доступа: 28.12.2021).; Храмов А. Э., Макаров М. А., Макаров С. А. и др. Местные осложнения эндопротезирования тазобедренного и коленного суставов у пациентов с ревматоидным артритом и остеоартритом // Научно-практическая ревматология. – 2017. – Т. 55, № 5. – С. 549–554. doi:10.14412/1995-4484-2017-549-554.; Ahmed A., Arora D. Ultrasound-guided neurolysis of six genicular nerves for intractable pain from knee osteoarthritis: a case series // Pain. Pract. – 2019. – Vol. 19, № 1. – P. 16–26. doi:10.1111/papr.12710; Barnsley L., Lord S., Wallis B. False-positive rates of cervical zygapophysial joint blocks // Clin. J. Pain. – 1993. – Vol. 9, № 2. – P. 124–130. doi:10.1097/0 0002508-199306000-00007.; Burckett-St. Laurant D., Peng P., Girón Arango L. et al. The nerves of the adductor canal and the innervation of the knee: an anatomic study // Reg. Anesth. Pain. Med. – 2016. – Vol. 41, № 3. – P. 321–327. doi:10.1097/AAP.0000000000000389.; Carr A. J., Robertsson O., Graves S. et. al. Knee replacement // Lancet. – 2012. – Vol. 379, № 9823. – P. 1331–1340. doi:10.1016/S0140-6736(11)60752-6.; Cedeno D. L., Vallejo A., Kelley C. A. et al. Comparisons of lesion volumes and shapes produced by a radiofrequency system with a cooled, a protruding, or a monopolar probe // Pain. Physician. – 2017. – Vol. 20, № 6. – P. E915–E922.; Chen C. H., Weng P. W., Wu L. C. et al. Radiofrequency neurotomy in chronic lumbar and sacroiliac joint pain: A meta-analysis // Medicine (Baltimore). – 2019. – Vol. 98, № 26. – P. e16230. doi:10.1097/MD.0000000000016230.; Choi W. J., Hwang S. J., Song J. G. et al. Radiofrequency treatment relieves chronic knee osteoarthritis pain: a double-blind randomized controlled trial // Pain. – 2011. – Vol. 152, № 3. – P. 481–487. doi:10.1016/j.pain.2010.09.029.; Cohen S. P., Doshi T. L., Constantinescu O. C. et al. Effectiveness of lumbar facet joint blocks and predictive value before radiofrequency denervation: the facet treatment study (facts), a randomized, controlled clinical trial. Anesthesiology // 2018. – Vol. 129, № 3. – P. 517–535. doi:10.1097/ALN.0000000000002274.; Cohen S. P., Strassels S. A., Kurihara C. et al. Randomized study assessing the accuracy of cervical facet joint nerve (medial branch) blocks using different injectate volumes // Anesthesiology. – 2010. – Vol. 112. – P. 144–152. doi:10.1097/ALN.0b013e3181c38a82.; Cosman E. R. Jr., Dolensky J. R., Hoffman R. A. Factors that affect radiofrequency heat lesion size // Pain. Med. – 2014. – Vol. 15, № 12. – P. 2020–2036. doi:10.1111/pme.12566.; Dass R. M., Kim E., Kim H. K. et al. Alcohol neurolysis of genicular nerve for chronic knee pain // Korean. J. Pain. – 2019. – Vol. 32, № 3. – P. 223–227. doi:10.3344/kjp.2019.32.3.223.; Davis T., Loudermilk E., DePalma M. et al. prospective, multicenter, randomized, crossover clinical trial comparing the safety and effectiveness of cooled radiofrequency ablation with corticosteroid injection in the management of knee pain from osteoarthritis // Reg. Anesth. Pain. Med. – 2018. – Vol. 43, № 1. – P. 84–91. doi:10.1097/AAP.0000000000000690.; Dellon A. Joint denervation: An atlas of surgical techniques. (Springer International Publishing, 2019). doi:10.1007/978-3-030-05538-7.; Dellon A. L., Mont M. A., Krackow K. A. et al. Partial denervation for persistent neuroma pain after total knee arthroplasty // Clin. Orthop. Relat. Res. – 1995. – Vol. 316. – P. 145–150.; Dellon A. L., Mont M. A., Mullick T. et al. Partial denervation for persistent neuroma pain around the knee // Clin. Orthop. Relat. Res. – 1996. – Vol. 329. – P. 216–222. doi:10.1097/00003086-199608000-00027.; El-Hakeim E. H., Elawamy A., Kamel E. Z. et al. Fluoroscopic guided radiofrequency of genicular nerves for pain alleviation in chronic knee osteoarthritis: a single-blind randomized controlled trial // Pain. Physician. – 2018. – Vol. 21, № 2. – P. 169–177.; Evans P. J. Cryoanalgesia. The application of low temperatures to nerves to produce anaesthesia or analgesia // Anaesthesia. – 1981. – Vol. 36, № 1. – P. 1003–1013. doi:10.1111/j.1365-2044.1981.tb08673.x.; Fonkoué L., Behets C., Kouassi J. K. et al. Distribution of sensory nerves supplying the knee joint capsule and implications for genicular blockade and radiofrequency ablation: an anatomical study // Surg. Radiol. Anat. – 2019. – Vol. 41, № 12. – P. 1461–1471. doi:10.1007/s00276-019-02291-y.; Fonkoue L., Behets C. W., Steyaert A. et al. Current versus revised anatomical targets for genicular nerve blockade and radiofrequency ablation: evidence from a cadaveric model // Reg. Anesth. Pain. Med. – 2020. – Vol. 45, № 8. – P. 603–609. doi:10.1136/rapm-2020-101370.; Fonkoue L., Stoenoiu M. S., Behets C. W. et al. Validation of a new protocol for ultrasound-guided genicular nerve radiofrequency ablation with accurate anatomical targets: cadaveric study // Reg. Anesth. Pain. Med. – 2021. – Vol. 46, № 3. – P. 210–216. doi:10.1136/rapm-2020-101936.; Fonkoue L., Steyaert A., Kouame J. E. K. et al. A comparison of genicular nerve blockade with corticosteroids using either classical anatomical targets vs revised targets for pain and function in knee osteoarthritis: a double-blind, randomized controlled trial // Pain. Med. – 2021 – Vol. 22, № 5. – P. 1116–1126. doi.org/10.1093/pm/pnab014.; Franco C. D., Buvanendran A., Petersohn J. D. et al. Innervation of the Anterior Capsule of the Human Knee: Implications for Radiofrequency Ablation // Reg. Anesth. Pain. Med. – 2015. – Vol. 40, № 4. – P. 363–368. doi:10.1097/AAP.0000000000000269.; Fusco M., Skaper S. D., Coaccioli S. Degenerative joint diseases and neuroinflammation // Pain. Pract. – 2017. – Vol. 17, № 4. – P. 522–532. doi:10.1111/papr.12551.; Gardner E. The innervation of the knee joint // Anat. Rec. – 1948. – Vol. 101, № 1. – P. 109–130. doi:10.1002/ar.1091010111.; Gill W., Fraser J., Carter D. C. Repeated freeze-thaw cycles in cryosurgery // Nature. – 1968. – Vol. 219, № 5152. – P. 410–413. doi:10.1038/219410a0.; Golovac S. Radiofrequency neurolysis // Neuroimaging Clin. N. Am. – 2010. – Vol. 20, № 2. – P. 203–214. doi:10.1016/j.nic.2010.02.007.; Gong W., Wang A., Fan K. A simple and novel ultrasound-guided approach for infrapatellar branch of the saphenous nerve block // J. Clin. Anesth. – 2019. – Vol. 57. – P. 22–23. doi:10.1016/j.jclinane.2019.02.027.; Gupta A., Huettner D. P., Dukewich M. Comparative effectiveness review of cooled versus pulsed radiofrequency ablation for the treatment of knee osteoarthritis: A systematic review // Pain. Physician. – 2017. – Vol. 20, № 3. – P. 155–171.; Hirasawa Y., Okajima S., Ohta M. et al. Nerve distribution to the human knee joint: anatomical and immunohistochemical study // Int. Orthop. – 2000. – Vol. 24, № 1. – P. 1–4. doi:10.1007/s002640050001.; Horner G., Dellon A. L. Innervation of the human knee joint and implications for surgery // Clin. Orthop. Relat. Res. – 1994. – Vol. 301. – P. 221‒226.; Hu E., Preciado J., Dasa V. Development and validation of a new method for locating patella sensory nerves for the treatment of inferior and superior knee pain // J. Exp. Orthop. – 2015. – Vol. 2. – P. 16. doi:10.1186/s40634-015-0032-2.; Ikeuchi M., Ushida T., Izumi M. et. al. Percutaneous radiofrequency treatment for refractory anteromedial pain of osteoarthritic knees // Pain. Med. – 2011. – Vol. 12, № 4. – P. 546–551. doi:10.1111/j.1526-4637.2011.01086.x.; Institute of Medicine (US) Committee on Advancing Pain Research, Care, and Education. Relieving Pain in America: A Blueprint for Transforming Prevention, Care, Education, and Research. Washington (DC): National Academies Press (US); 2011. 2, Pain as a Public Health Challenge. Available from: https://www. ncbi.nlm.nih.gov/books/NBK92516.; Jamison D. E., Cohen S. P. Radiofrequency techniques to treat chronic knee pain: a comprehensive review of anatomy, effectiveness, treatment parameters, and patient selection // J. Pain. Res. – 2018. – Vol. 11. – P. 1879–1888. doi:10.2147/JPR.S144633.; Jeletsky A. G. On the innervation of the capsule and epiphysis of the knee joint // Vestn. Khir. – 1931. – Vol. 22. – P. 74–112.; Kalthur S. G., Sumalatha S., Nair N. et al. Anatomic study of infrapatellar branch of saphenous nerve in male cadavers // Ir. J. Med. Sci. – 2015. – Vol. 184, № 1. – P. 201–206. doi:10.1007/s11845-014-1087-2.; Kennedy J. C., Alexander I. J., Hayes K. C. Nerve supply of the human knee and its functional importance // Am. J. Sports Med. – 1982. – Vol. 10, № 6. – P. 329–335. doi:10.1177/036354658201000601.; Kim J. H., Shustorovich A., Arel A. T. et al. Genicular nerve anatomy and its implication for new procedural approaches for knee joint denervation: A cadaveric study // Pain Med. – 2021. doi:10.1093/pm/pnab238. Epub ahead of print.; Krishna Prasad B. P., Joy B., Raghavendra V. A. et al. Ultrasound-guided peripheral nerve interventions for common pain disorders // Indian. J. Radiol. Imaging. – 2018. – Vol. 28, № 1. – P. 85–92. doi:10.4103/ijri.IJRI_108_17.; Lee C. H., Chung C. K., Kim C. H. The efficacy of conventional radiofrequency denervation in patients with chronic low back pain originating from the facet joints: a meta-analysis of randomized controlled trials // Spine J. – 2017. – Vol. 17, № 11. – P. 1770–1780. doi:10.1016/j.spinee.2017.05.006.; Lee D. W., Pritzlaff S., Jung M. J. et al. Latest evidence-based application for radiofrequency neurotomy (LEARN): Best Practice Guidelines from the American Society of Pain and Neuroscience (ASPN) // J. Pain. Res. – 2021. – Vol. 8, № 14. – P. 2807–2831. doi:10.2147/JPR.S325665.; Li G., Zhang Y., Tian L. et al. Radiofrequency ablation reduces pain for knee osteoarthritis: A meta-analysis of randomized controlled trials // Int. J. Surg. – 2021. – Vol. 91. – P. 105951. doi:10.1016/j.ijsu.2021.105951.; McCormick Z. L., Korn M., Reddy R. et al. Cooled radiofrequency ablation of the genicular nerves for chronic pain due to knee osteoarthritis: six-month outcomes // Pain. Med. – 2017. – Vol. 18, № 9. – P. 1631–1641. doi:10.1093/pm/pnx069; McCormick Z. L., Reddy R., Korn M. et al. A Prospective randomized trial of prognostic genicular nerve blocks to determine the predictive value for the outcome of cooled radiofrequency ablation for chronic knee pain due to osteoarthritis // Pain. Med. – 2018. – Vol. 19, P. 8. – P. 1628–1638. doi:10.1093/pm/pnx286.; McCormick Z. L., Walker J., Marshall B. et al. A novel modality for facet joint denervation: Cooled radiofrequency ablation for lumbar facet syndrome. A case series // Phys. Med. Rehabil. Int. – 2014. – Vol. 1, № 5. – P. 5.; McLean B. C., Nguyen C. D., Newman D. P. Cryoablation of the infrapatellar branch of the saphenous nerve identified by non-invasive peripheral nerve stimulator for the treatment of non-surgical anterior knee pain: A case series and review of the literature // Cureus. – 2020. – Vol. 12, №6. – P. e8747. doi:10.7759/cureus.8747.; Nahabedian M. Y., Mont M. A., Hungerford D. S. Selective denervation of the knee: experience, case reports, and technical notes // Am. J. Knee. Surg. – 1998. – Vol. 11, № 3. – P. 175–180.; Neogi T. The epidemiology and impact of pain in osteoarthritis // Osteoarthritis Cartilage. – 2013. – Vol. 21, № 9. – P. 1145–1153. doi:10.1016/j.joca.2013.03.018.; Orduña Valls J. M., Vallejo R., López Pais P. Anatomic and ultrasonographic evaluation of the knee sensory innervation: a cadaveric study to determine anatomic targets in the treatment of chronic knee pain // Reg. Anesth. Pain. Med. – 2017. – Vol. 42, № 1. – P. 90–98. doi:10.1097/AAP.0000000000000516; Putman S., Argenson J.N., Bonnevialle P. et al. Société française de chirurgie orthopédique et traumatologie (SOFCOT). Ten-year survival and complications of total knee arthroplasty for osteoarthritis secondary to trauma or surgery: A French multicentre study of 263 patients // Orthop. Traumatol. Surg. Res. – 2018. – Vol. 104, №2. – P. 161-164. doi:10.1016/j.otsr.2017.11.019.; Radnovich R., Scott D., Patel A. T. et al. Cryoneurolysis to treat the pain and symptoms of knee osteoarthritis: a multicenter, randomized, double-blind, sham-controlled trial // Osteoarthritis Cartilage. – 2017. – Vol. 25, № 8. – P. 1247–1256. doi:10.1016/j.joca.2017.03.006.; Santana Pineda M. M., Vanlinthout L. E., Moreno Martín A. et al. Analgesic effect and functional improvement caused by radiofrequency treatment of genicular nerves in patients with advanced osteoarthritis of the knee until 1 year following treatment // Reg. Anesth. Pain. Med. – 2017. – Vol. 42, № 1. – P. 62–68. doi:10.1097/AAP.0000000000000510.; Schmitt J., Lange T., Günther K. P. et al. indication criteria for total knee arthroplasty in patients with osteoarthritis – a multi-perspective consensus study // Z. Orthop. Unfall. – 2017. – Vol. 155, № 5. – P. 539–548. doi:10.1055/s-0043-115120.; Schwarzer A. C., Aprill C. N., Derby R. The false-positive rate of uncontrolled diagnostic blocks of the lumbar zygapophysial joints // Pain. – 1994. – Vol. 58, № 2. – P. 195–200. doi:10.1016/0304-3959(94)90199-6.; Shen W. S., Xu X. Q., Zhai N. N. et al. Radiofrequency Thermocoagulation in Relieving Refractory Pain of Knee Osteoarthritis // Am. J. Ther. – 2017. – Vol. 24, № 6. – P. e693-e700. doi:10.1097/MJT.0000000000000393.; Shi S. M., Meister D. W., Graner K. C. et al. Selective denervation for persistent knee pain after total knee arthroplasty: a report of 50 cases // J. Arthroplasty. – 2017. – Vol. 32, № 3. – P. 968–973. doi:10.1016/j.arth.2016.09.043.; Sutaria R. G., Lee S. W., Kim S. Y. et al. Localization of the Lateral Retinacular Nerve for Diagnostic and Therapeutic Nerve Block for Lateral Knee Pain: A Cadaveric Study // PM R. – 2017. – Vol. 9, № 2. – P. 149–153. doi:10.1016/j. pmrj.2016.06.017.; Toms A. D., Mandalia V., Haigh R. et al. The management of patients with painful total knee replacement // J. Bone Joint. Surg. Br. – 2009. – Vol. 91, № 2. – P. 143–150. doi:10.1302/0301-620X.91B2.20995.; Tran J., Peng P. W. H., Lam K. et al. Anatomical study of the innervation of anterior knee joint capsule: implication for image-guided intervention // Reg. Anesth. Pain. Med. – 2018. – Vol. 43, № 4. – P. 407–414. doi:10.1097/AAP.0000000000000778.; Wahezi S. E., Molina J. J., Alexeev E. et al. Cervical medial branch block volume dependent dispersion patterns as a predictor for ablation success: A cadaveric study // PM R. – 2019. – Vol. 11, № 6. – P. 631–639. doi:10.1016/j. pmrj.2018.10.003; Walega D., McCormick Z., Manning D. et al. Radiofrequency ablation of genicular nerves prior to total knee replacement has no effect on postoperative pain outcomes: a prospective randomized sham-controlled trial with 6-month follow-up // Reg Anesth Pain Med. – 2019. doi:10.1136/rapm-2018-100094. Epub ahead of print.; Walega D. R., McCormick Z. L. Chemical neurolysis of the genicular nerves for chronic knee pain: Reviving an old dog and an old trick // Pain. Med. – 2018. – Vol. 19, № 9. – P. 1882–1884. doi:10.1093/pm/pny023.; Wang H. J., Song Y. F., Yan X. et al. Using anatomic landmarks to locate schöttle's point was accurate without fluoroscopy during medial patellofemoral ligament reconstruction // Arthroscopy. –2021. – Vol. 37, № 6. – Р. 1902–1908. doi:10.1016/j.arthro.2021.01.041.; Xiao L., Shu F., Xu C. et al. Highly selective peripheral nerve radio frequency ablation for the treatment of severe knee osteoarthritis // Exp. Ther. Med. – 2018. – Vol. 16, № 5. – P. 3973–3977. doi:10.3892/etm.2018.6658.

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    Academic Journal

    Relation: Касько, М. И. Малоинвазивное лечение кист печени [Электронный ресурс] / М. И. Касько, Ю. А. Никонова // Проблемы и перспективы развития современной медицины : сб. науч. ст. XIII Респ. науч.-практ. конф. с междунар. участием студентов и молодых ученых, Гомель, 6-7 мая 2021 г. : в 9 т. / Гомел. гос. мед. ун-т; редкол. : И. О. Стома [и др. ]. – Гомель : ГомГМУ, 2021. – Т. 5. – С. 40–42. – 1 электрон. опт. диск (CD-ROM). Научный руководитель: ассистент В. А. Плашков, к.м.н., доцент В. В. Берещенко; http://elib.gsmu.by/handle/GomSMU/8798

    Διαθεσιμότητα: http://elib.gsmu.by/handle/GomSMU/8798

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