Lung reperfusion injury in patients after balloon angioplasty for pulmonary artery stenosis

Lung reperfusion injury in patients after balloon angioplasty for pulmonary artery stenosis.

Yacouby S, Meador M, Mossad E.

J Cardiothorac Vasc Anesth. 2014 Jun;28(3):502-5. doi: 10.1053/j.jvca.2013.10.024. Epub 2014 Jan 29.

PMID: 24485563 [PubMed – in process]

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Comment: The risk of developing acute reperfusion injury (ARI) after pulmonary artery balloon angioplasty is significant [10 out of 46 patients (22%)]. In the absence of obvious signs and symptoms, when ARI is suspected, the PaO2/FIO2 ratio may provide insight into the presence of subclinical RI and guide post intervention care. Future studies on the individual type of bronchial circulation and its level of protection with dual supply may shed light on possible predictors of ARI.

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Initial clinical experience with the Coherex FlatStent™ and FlatStent™ EF PFO closure system for in-tunnel PFO closure: results of the Coherex-EU study

Initial clinical experience with the Coherex FlatStent™ and FlatStent™ EF PFO closure system for in-tunnel PFO closure: results of the Coherex-EU study.

Sievert H, Wunderlich N, Reiffenstein I, Ruygrok P, Grube E, Buellesfeld L, Meier B, Schofer J, Muller D, Jones RK, Gillam L.

Catheter Cardiovasc Interv. 2014 Jun 1;83(7):1135-43. doi: 10.1002/ccd.24565. Epub 2013 Nov 27.

PMID: 22815250 [PubMed – in process]

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Comment: The quest to find an ideal device for tunnel PFO closure with the goal to reduce the amount of foreign material in the left atrium and support easy, future trans-septal access continues. The results of the Coherex-EU Study demonstrate the potential for in-tunnel PFO closure. The initial experience with the Coherex FlatStent device during Part I of the study established the feasibility of an in- tunnel method for PFO closure. Part II of the study with the second-generation FlatStent EF device demonstrated that additional polyurethane foam increases the rate of PFO closure and that the addition of a larger device extends the opportunity for in-tunnel PFO closure to a larger population. Further investigation will be required to establish the place for in-tunnel PFO closure as well as the safety and efficacy of the Coherex FlatStent EF in appropriately selected patients.

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The closure rate for the 12 (25%) participants with Type 3 tunnels was only 64% whereas it was almost 100% with Type I and II PFOs. This analysis indicates that the Coherex FlatStent EF provides good closure of PFO tunnels with a stable tunnel length of at least 4 mm.

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06/ 2014 CHD Interventions Articles

Pulse Fluoroscopy Radiation Reduction in a Pediatric Cardiac Catheterization Laboratory.

Covi SH, Whiteside W, Yu S, Zampi JD.

Congenit Heart Dis. 2014 Jun 26. doi: 10.1111/chd.12197. [Epub ahead of print]

PMID: 24965688 [PubMed – as supplied by publisher]

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Direct measurement of a patient’s entrance skin dose during pediatric cardiac catheterization.

Sun L, Mizuno Y, Iwamoto M, Goto T, Koguchi Y, Miyamoto Y, Tsuboi K, Chida K, Moritake T.

J Radiat Res. 2014 Jun 26. pii: rru050. [Epub ahead of print]

PMID: 24968708 [PubMed – as supplied by publisher] Free Article

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Coarctoplasty and Stenting in a Case of Ventricular Septal Defect With Eisenmenger’s Syndrome: A Clinical Dilemma.

Mahimaiha J, Patra S, Subramaniun AP, Sastry UM, Srinivasa KH, Manjunath CN.

World J Pediatr Congenit Heart Surg. 2014 Jun 23;5(3):481-483. [Epub ahead of print]

PMID: 24958059 [PubMed – as supplied by publisher]

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Outcomes of critical congenital heart disease requiring emergent neonatal cardiac intervention.

Pruetz JD, Carroll C, Trento LU, Chang RK, Detterich J, Miller DA, Sklansky M.

Prenat Diagn. 2014 Jun 19. doi: 10.1002/pd.4438. [Epub ahead of print]

PMID: 24947130 [PubMed – as supplied by publisher]

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Chest pain 9 months after interventional atrial septal defect occlusion: do not forget the worst!

Vogt MO, Nöbauer C, Meierhofer C, Lange R.

Eur Heart J. 2014 Jun 18. pii: ehu249. [Epub ahead of print] No abstract available.

PMID: 24944328 [PubMed – as supplied by publisher]

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Simultaneous Transcatheter Treatment of Perimembranous Ventricular Septal Defect And Other Congenital Cardiopathies.

Xu XD, Bai Y, Chen XL, Liu SX, Zhao XX, Qin YW.

Heart Lung Circ. 2014 Jun 17. pii: S1443-9506(14)00504-6. doi: 10.1016/j.hlc.2014.05.008. [Epub ahead of print]

PMID: 24998101 [PubMed – as supplied by publisher]

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Percutaneous tricuspid valve-in-valve implantation in Ebstein’s anomaly: one-year follow-up of valve function.

Cunnington C, Hoschtitzky JA, Hasan R, Clarke B, Mahadevan VS.

Int J Cardiol. 2014 Jun 15;174(2):e77-8. doi: 10.1016/j.ijcard.2014.04.148. Epub 2014 Apr 21. No abstract available.

PMID: 24794058 [PubMed – in process]

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Initial Experience with a Novel Real-Time Three-Dimensional Intracardiac Ultrasound System to Guide Percutaneous Cardiac Structural Interventions: A Phase 1 Feasibility Study of Volume Intracardiac Echocardiography in the Assessment of Patients with Structural Heart Disease Undergoing Percutaneous Transcatheter Therapy.

Silvestry FE, Kadakia MB, Willhide J, Herrmann HC.

J Am Soc Echocardiogr. 2014 Jun 11. pii: S0894-7317(14)00306-X. doi: 10.1016/j.echo.2014.04.022. [Epub ahead of print]

PMID: 24930123 [PubMed – as supplied by publisher]

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Endovascular Venous Thrombolysis in Children Younger than 24 Months.

Kukreja KU, Lungren MP, Patel MN, Johnson ND, Racadio JM, Dandoy C, Tarango C.

J Vasc Interv Radiol. 2014 Jun 5. pii: S1051-0443(14)00408-4. doi: 10.1016/j.jvir.2014.04.003. [Epub ahead of print]

PMID: 24909354 [PubMed – as supplied by publisher]

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Usefulness of intracardiac echocardiography with a mechanical probe for catheter-based interventions: A 10-year prospective registry.

Rigatelli G, Dell’Avvocata F, Giordan M, Vicere N, Osanna RA, Braggion G, Aggio S, Cardaioli P, Chen JP.

J Clin Ultrasound. 2014 Jun 4. doi: 10.1002/jcu.22177. [Epub ahead of print]

PMID: 24898198 [PubMed – as supplied by publisher]

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A prospective observational multicenter study of balloon angioplasty for the treatment of native and recurrent coarctation of the aorta.

Harris KC, Du W, Cowley CG, Forbes TJ, Kim DW; Congenital Cardiac Intervention Study Consortium (CCISC).

Catheter Cardiovasc Interv. 2014 Jun 1;83(7):1116-23. doi: 10.1002/ccd.25284. Epub 2013 Dec 4.

PMID: 24917074 [PubMed – in process]

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Coronary artery compression during intention to treat right ventricle outflow with percutaneous pulmonary valve implantation: incidence, diagnosis, and outcome.

Fraisse A, Assaidi A, Mauri L, Malekzadeh-Milani S, Thambo JB, Bonnet D, Iserin L, Mancini J, Boudjemline Y.

Catheter Cardiovasc Interv. 2014 Jun 1;83(7):E260-8. doi: 10.1002/ccd.25471. Epub 2014 Mar 19.

PMID: 24619978 [PubMed – in process]

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Results of percutaneous closure of patent foramen ovale with the GORE(®) septal occluder.

Knerr M, Bertog S, Vaskelyte L, Hofmann I, Sievert H.

Catheter Cardiovasc Interv. 2014 Jun 1;83(7):1144-51. doi: 10.1002/ccd.25336. Epub 2014 Jan 20.

PMID: 24323667 [PubMed – in process]

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Select item 22815250

 

Initial clinical experience with the Coherex FlatStent™ and FlatStent™ EF PFO closure system for in-tunnel PFO closure: results of the Coherex-EU study.

Sievert H, Wunderlich N, Reiffenstein I, Ruygrok P, Grube E, Buellesfeld L, Meier B, Schofer J, Muller D, Jones RK, Gillam L.

Catheter Cardiovasc Interv. 2014 Jun 1;83(7):1135-43. doi: 10.1002/ccd.24565. Epub 2013 Nov 27.

PMID: 22815250 [PubMed – in process]

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Select item 22431164

 

Palliative stenting of patent ductus arteriosus in older children and young adults with congenital cyanotic heart disease.

Francis E, Kumar S, Kumar RK.

Catheter Cardiovasc Interv. 2014 Jun 1;83(7):1109-15. doi: 10.1002/ccd.24373. Epub 2013 Nov 30.

PMID: 22431164 [PubMed – in process]

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Select item 24612914

 

Lung reperfusion injury in patients after balloon angioplasty for pulmonary artery stenosis.

Yacouby S, Meador M, Mossad E.

J Cardiothorac Vasc Anesth. 2014 Jun;28(3):502-5. doi: 10.1053/j.jvca.2013.10.024. Epub 2014 Jan 29.

PMID: 24485563 [PubMed – in process]

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Select item 24075942

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