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Abstract:

Currently, endovascular correction has become the method of choice in most cases of secondary atrial septal defects.

The obvious superiority lies in low trauma, a decrease in the incidence of early complications, atrial flutter and fibrillation, systemic thromboembolism, ischemic stroke, and all-cause mortality.

We present the initial experience of using new occluders for ASD closure.

 

References

1.     Warnes CA, Williams RG, Bashore TM, et al. ACC/AHA 2008 guidelines for the management of adults with congenital heart disease: a report of the American College of Cardiology/American heart association task force on practice guidelines (Writing committee to develop guidelines on the management of adults with congenital heart disease). Developed in collaboration with the American society of echocardiography, heart rhythm society, international society for adult congenital heart disease, society for cardiovascular angiography and interventions, and society of thoracic surgeons. J Am Coll Cardiol. 2008; 52: 143-263.

2.     King TD, Thompson SL, Steiner C, et al. Secundum atrial septal defect. Nonoperative closure during cardiac catheterization. JAMA. 1976; 235: 2506-2509.

3.     Alexi-Meskishvili VV, Konstantinov IE. Surgery for atrial septal defect: from the first experiments to clinical practice. Ann Thorac Surg. 2003; 76: 322-327.

4.     Nassif М, Abdelghani М, Bouma J, et al. Historical developments of atrial septal defect closure devices: what we learn from the past. Expert Review of Medical Devices. 2016; 13(6).

5.     Регистрационное удостоверение на медицинское изделие от 30 марта 2020 года № РЗН 2020/9850: «Окклюдер кардиологический «NanoMed» по НАЕФ.942511.015 ТУ.

Registration certificate for medical device, March 30, 2020 No. RZN 2020/9850: «NanoMed cardiological occluder» ac. to NAEF.942511.015 [In Russ].

6.     Базылев В.В., Шматков М.Г., Пьянзин А.И., Морозов З.А. «Отдаленные результаты применения отечественных коронарных стентов с биоинертным углеродным покрытием «Наномед». Журнал Диагностическая и интервенционная радиология. 2020; 14(1); 47-54.

Bazylev VV, Shmatkov MG, Pianzin AI, Morozov ZA. Long-term results of using domestic coronary stents with bioinert carbon coating, «Nanomed». Journal Diagnostic & interventional radiology. 2020; 14(1); 47-54 [In Russ].

https://doi.org/10.25512/DIR.2020.14.1.05

7.     Базылев В.В., Шматков М.Г., Морозов З.А. «Сравнительные результаты использования коронарных стентов с лекарственным покрытием «НаноМед» и Orsiro. Журнал Диагностическая и интервенционная радиология. 2019; 13(4); 21-26.

Bazylev VV, Shmatkov MG, Morozov ZA. Comparison of results of the use of coronary stents with drug eluting, «Nanomed» and Orsiro. Journal Diagnostic & interventional radiology. 2019; 13(4); 21-26 [In Russ].

https://doi.org/10.25512/DIR.2019.13.4.02

8.     Majunke N, Sievert H. ASD/PFO devices: what is in the pipeline? J Interv Cardiol. 2007; 20: 517-523.

9.     Aytemir K, Oto A, Ozkutlu S, et al. Early-midterm follow-up results of percutaneous closure of the interatrial septal defects with occlutech figulla devices: a single center experience. J Interv Cardiol. 2012; 25: 375-381.

10.   Haas NA, Happel CM, Soetemann DB, et al. Optimal septum alignment of the Figulla(R) Flex occluder to the atrial septum in patients with secundum atrial septal defects. EuroIntervention. 2016: 11(10):1153-60.

https://doi.org/10.4244/EIJY14M12_09

11.   Roymanee S, Promphan W, Tonklang N, et al. Comparison of the Occlutech (R) Figulla (R) septal occluder and Amplatzer (R) septal occluder for atrial septal defect device closure. Pediatr Cardiol. 2015; 36: 935-941.

12.   Sharifi M, Burks J. Efficacy of clopidogrel in the treatment of post-ASD closure migraines. Catheter Cardiovasc Interv. 2004; 63: 255.

 

Abstract:

A case report of right ventricular outlet (RVO) stenting as palliative treatment of pulmonary artery atresia (PAA) in combination with interventricular septum defect (ISD), in situation when radical surgical intervention has high operative risk due to condition severity and low weight RVO stenting in newborn and children with low weight is made seldom and noted as a case reports. Peculiarity of this case is that intervention was made in patient with extremely low weight and age (age - 6 month, weight - 3 kg) after performed early central aorto-venous bypass and further palliative reconstruction of right ventricular outflow.

 

References

1.     Chang A.C., Hanley F.L., Lock J.E., et. al. Management and outcome of low birth weight neonates with congenital heart disease. J. Pediatr. 1994; 124: 461-6.

2.     Reddy V.M., Elhinney D.B., Sagrado T., et.al. Results of 102 cases of complete repair of congenital heart defects in patients weighing 700 to 2500 grams. Thorac. Cardiovasc. Surg. 1999; 117: 324-31.

3.     Wernovsky G., RubensteinS.D., Spray T.L. Cardiac surgery in the low-birth weight neonate: new approaches. Clin. Perinatol. 2001; 28:249-4.

4.     Laudito А., Varsha M., Bandisode J., Lucas F. et al. Right Ventricular Outflow Tract Stent as a Bridge to Surgery in a Premature Infant with Tetralogy of Fallot. Ann. Thorac. Surg. 2006; 81:744-746.

5.     Kirklin J. V., Barrat-Boyes. Cardiac surgery J V. New York: Churhill Livingstoun 2003.

6.     Sahu Raj., Syamasundar Rao., Transcatheter Stent Therapy in Children: An Update. Pediat. Therapeut. 2012, S5.

7.     Meadows J., Catheter-Based Interventions for Congenital Heart Disease Meadows Jeff. J. Clin. Exp. Cardiolog. 2012, S: 8.

8.     Gibbs J.L., Uzun O., BlackburnM.E., et. al. Right ventricular outflow stent implantation: an alternative to palliative surgical relief of infundibular pulmonary stenosis. Heart. 1997; 77:176-9.

9.     Sugiyama H., Williams W., Benson L.N. Implantation of endovascular stents for the obstructive right ventricular outflow tract Heart. 2005; 91:10581063.doi:10.1136/ hrt.2004.034819.

10.   Alwi M., Alwi M., Choo K.K., Latiff H.A., et. al. Initial results and medium-term follow-up of stent implantation in patent ductus arteriosus in ductdependent pulmonary circulation. J. Am. Coll. Cardiology 2004; 44(2):438-45. 

11.   Gladman G., Mc Crindle B.W., Williams W.G., et. al. The modified blalock-taussig shunt: clinical impact and morbidity in Fallot’s tetralogy in the currentera. J. Thorac. Cardiovasc. Surg. 1997; 114:25-30.

 

 

Abstract:

This case report is about endovascular treatment of pulmonary arteriovenous malformations accompanied by severe arterial hypoxemia in the newborn. The peculiarity of this case is the extreme rarity of manifestation and successful treatment of the pathology in infancy The second feature was the use of vascular occlude devices. Currently due to the sporadic clinical observations in newborn, we consider to appropriate description of this case, focusing on the technical aspects of the intervention. 

 

References

1.     Khurshid I., Downie G. Pulmonary arteriovenous malformation. Postgrad Med J 2002; 78:191-7.

2.     Andrade C., Ferreira H., Fischer G. Congenital lung malformations. Bras. Pneumol. 2011; 37: 259-271.

3.     Churton T., Multiple aneurysms of pulmonary artery. BMJ. 1897; 1: 1223.

4.     Mitchell R., Austin E. Pulmonary arteriovenous malformation in the neonate. J. Pediatr. Surg. 1993; 28: 1536-1538.

5.     Porstmann W. Therapeutic embolization of arteriovenous pulmonary fistula by catheter technique. Current concepts in pediatric radiology. Springer. 1977; 23-31.

6.     Pollak J.S., Saluja S., Thabet A. et al. Clinical and Anatomic Outcomes after Embolotherapy of Pulmonary Arteriovenous Malformations. J. Vasc. Interv. Radiol. 2006; 17: 35-45.

7.     Cirstoveanu C., Balomir A., Bizubac M., Costinean S. Pulmonary arteriovenous malformation - a rare cause of hypoxemia. Practic. Med. 2012; 7: 28.

8.     Koppen S., Korver C., Dalinghaus M., Westermann C. Neonatal pulmonary arteriovenous malformation in hereditary haemorrhagic telangiectasia. Arch. Dis. Child. Fetal Neonatal Ed. 2002; 87: 226-227.

9.     Guidone P., Burrows P., Blickman J. Pediatric case of the day. Congenital pulmonary arteriovenous malformation. Am. J. Roentgenol. 1999; 173: 818-819.

10.   Trivedi K., Sreeram N. Neonatal pulmonary arteriovenous malformation. Arch. Dis. Child. 1996; 74: 80.

11.   Ravasse P., Maragnes P., Petit T., et al. Total pneumonectomy as a salvage procedure for pulmonary arteriovenous malformation in a newborn: report of one case. J. Pediatr. Surg. 2003; 38: 254-255.

12.   Trerotola S., Pyyeritz R . PAVM Embolization: An Update. AJR. 2010; 195: 837-845

13.   Swanson K., Prakash U., Stanson A. Pulmonary arteriovenous fistulas: Mayo Clinic experience. Mayo Clinic Proc. 1999; 74: 671-680.

14.   Shapiro J., Paul C. Stillwell - Diffused Pulmonary arteriovenous malformation (Angiodysplasia) with unusual histologic features: Case report and review of the literature. Pediatric Pulmonology 1995; 21: 255-261.

15.   Белозеров Ю.М., Детская кардиология. М.: Медпрессинформ. 2004;167-180. Belozerov Ju. M., Detskaja kardiologija [Pediatrics cardiology]. M.: Med-pressinform. 2004;167-180 [In Russ]. 

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