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Noninvasive Functional Characterization of Coronary Plaques by Coronary Computed Tomography – Beyond the Morphology of Vulnerable Plaques

atherosclerotic plaque and vascular remodelling: current understanding and remaining questions. Cardiovasc Res . 2012;96:234-243. 12. Slager CJ, Wentzel JJ, Gijsen FJH, et al. The role of shear stress in the generation of rupture-prone vulnerable plaques. Nat Clin Pract Cardiovasc Med . 2005;2:401-407. 13. Fearon WF, Nishi T, De Bruyne B, et al. Clinical Outcomes and Cost-Effectiveness of Fractional Flow Reserve-Guided Percutaneous Coronary Intervention in Patients With Stable Coronary Artery Disease: Three-Year Follow-Up of the FAME 2 Trial (Fractional Flow

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CT Determination of Fractional Flow Reserve in Coronary Lesions

References 1. Meijboom WB, Meijs MF, Schuijf JD, et al. Diagnostic accuracy of 64-slice computed tomography coronary angiography: a prospective, multi-center, multivendor study. J Am Coll Cardiol . 2008;52:2135-2144. 2. Pijls NH, De Bruyne B, Peels K, et al. Measurement of fractional flow reserve to assess the functional severity of coronary-artery stenoses. N Engl J Med . 1996;334:1703-1708. 3. Windecker S, Kolh P, Alfonso F, et al. 2014 ESC/EACTS guidelines on myocardial revascularization: the task force on myocardial revascularization of

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Transluminal Attenuation Gradient for the Noninvasive Assessment of Functional Significance in Coronary Artery Stenoses

Coherence Tomography in Coronary Intervention. The Korean Journal of Internal Medicine . 2012;27:1-12. 5. Wongpraparut N, Yalamanchili V, Pasnoori V, et al. Thirty-month outcome after fractional flow reserve-guided versus conventional multivessel percutaneous coronary intervention. Am J Cardiol . 2005;96:877-884. 6. Fearon WF, Tonino PA, De Bruyne B, Siebert U, Pijls NH; FAME Study Investigators. Rationale and design of the Fractional Flow Reserve versus Angiography for Multivessel Evaluation (FAME) study. Am Heart J . 2007;154:632-636. 7. Tonino PA

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Noninvasive Assessment of Coronary Artery Disease: Fractional Flow Reserved Derived from Coronary Computed Tomography Angiography (FFRCT)

REFERENCES 1. Nichols M, Townsend N, Scarborough P, et al. Cardiovascular disease in Europe 2014: epidemiological update. Eur Heart J. 2014;35:2920-2929. 2. Norgaard BL, Leipsic J, Koo BK, et al. Coronary Computed Tomography Angiography Derived Fractional Flow Reserve and Plaque Stress. Curr Cardiovasc Rep . 2016;9:2. 3. Lucas FL, Siewers AE, Malenka DJ, et al. Diagnostic-therapeutic cascade revisited: coronary angiography, coronary artery bypass graft surgery, and percutaneous coronary intervention in the modern era. Circulation . 2008

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In-stent Flow Hemodynamics and the Risk of STent Failure Following Bioresorbable Vascular ScAFFolds Implantation – the STAFF Study

-Mawardy M, Sulimov DS, Richardt G, Abdel-Wahab M. The fate of incomplete scaffold apposition of everolimus-eluting bioresorble scaffolds: A serial optical coherence tomography analysis. J Cardiol . 2017;pii:S0914-5087(17)30094-1. 7. Duraiswamy N, Jayachandran B, Byrne J, Moore JE Jr, Schoephoerster RT. Spatial distribution of platelet deposition in stented arterial models under physiologic flow. Ann Biomed Eng . 2005;33:1767-1777. 8. DePaola N, Gimbrone MA Jr, Davies PF, Dewey CF Jr. Vascular endothelium responds to fluid shear stress gradients

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Brain Death in Children: Incidence, Donation Rates, and the Occurrence of Central Diabetes Insipidus

. Paolin A, Manuali A, Di Paola F, et al. Reliability in diagnosis of brain death. Intensive Care Med. 1995;21:657-62. 20. Flowers WM Jr, Patel BR. Persistence of cerebral blood flow after brain death. South Med J. 2000;93:364-70. 21. Leclercq TA, Grisoli F. Arterial blood supply of the normal human pituitary gland. An anatomical study. J Neurosurg. 1983;58:678-81. 22. de Freitas GR, Andre C. Sensitivity of transcranial Doppler for confirming brain death: a prospective study of 270 cases. Acta Neurol Scand. 2006;113:426-32. 23. Wijdicks EFM. Brain

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Invasive FFR — Current Applications and New Developments

Schaardenburgh P, Manoharan G, et al. Percutaneous coronary intervention of functionally nonsignificant stenosis: 5-year follow up of the DEFER Study. J Am Coll Cardiol. 2007;49:2105-2111. 4. Lin GA, Dudley RA, Lucas FL, Malenka DJ, Vittinghoff E, Redberg RF. Frequency of stress testing to document ischemia prior to elective percutaneous coronary intervention. JAMA . 2008;300:1765-1773. 5. Melikian N, De Bondt P, Tonino P, et al. Comparison between visual assessment and quantitative angiography versus fractional flow reserve for native coronary narrowing of

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Diagnostic Algorithm for Superficial Venous Malformations in Newborns

REFERENCES 1. Lee BB, Bergan J, Gloviczki P, et al. Diagnosis and treatment of venous malformations. Consensus document of the International Union of Phlebology (IUP)-2009. Int Angiol . 2009;28:434-451. 2. Lee BB, Baumgartner I, Berlien HP, et al. Consensus Document of the International Union of Angiology (IUA)-2013. Current concept on the management of arterio-venous management. Int Angiol . 2015;34:97-149. 3. Yoshida H, Yusa H, Ueno E. Use of Doppler color flow imaging for differential diagnosis of vascular malformations: a preliminary

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Outcomes of mucociliary clearance and rhinomanometrical changes in nasal pathology

., Kljajić V., Pilija V. - Correlation between subjective and objective nasal breathing assessments in examinees with nasal septum deformities. Vojnosanit Pregl., 2013;70(4):380-385. 8. Aziz T., Biron V.L., Ansari K., Flores-Mir C. - Measurement tools for the diagnosis of nasal septal deviation: a systematic review. J Otolaryngol Head Neck Surg., 2014;43:11. doi: 10.1186/1916-0216-43-11. 9. Bercin S., Ural A., Kutluhan A. - Effects of topical drops and sprays on mucociliary transport time and nasal air flow. Acta Otolaryngol., 2009;129(11):125712-61. doi: 10

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