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Items: 22

1.

Fluid-Structure Interaction Models of Bioprosthetic Heart Valve Dynamics in an Experimental Pulse Duplicator.

Lee JH, Rygg AD, Kolahdouz EM, Rossi S, Retta SM, Duraiswamy N, Scotten LN, Craven BA, Griffith BE.

Ann Biomed Eng. 2020 Feb 7. doi: 10.1007/s10439-020-02466-4. [Epub ahead of print]

PMID:
32034607
2.

Leaflet thrombosis and clinical events after TAVR: are paravalvular leaks a crucial trigger?

Deutsch MA, Scotten LN, Siegel R, Lange R, Bleiziffer S.

EuroIntervention. 2018 Aug 20;14(6):716-717. doi: 10.4244/EIJ-D-18-00348L. No abstract available.

3.

Anticoagulant independent mechanical heart valves: viable now or still a distant holy grail.

Chaux A, Gray RJ, Stupka JC, Emken MR, Scotten LN, Siegel R.

Ann Transl Med. 2016 Dec;4(24):525. doi: 10.21037/atm.2016.12.58.

4.
5.

Thrombogenic potential of transcatheter aortic valve implantation with trivial paravalvular leakage.

Scotten LN, Siegel R.

Ann Transl Med. 2014 May;2(5):43. doi: 10.3978/j.issn.2305-5839.2014.05.04.

6.

Importance of shear in prosthetic valve closure dynamics.

Scotten LN, Siegel R.

J Heart Valve Dis. 2011 Nov;20(6):664-72.

PMID:
22655497
7.

What parameters affect left ventricular diastolic flow propagation velocity? In vitro studies using color M-mode Doppler echocardiography.

Ogawa T, Scotten LN, Walker DK, Yoganathan AP, Bess RL, Nordstrom CK, Gardin JM.

Cardiovasc Ultrasound. 2005 Sep 1;3:24.

8.

New laboratory technique measures projected dynamic area of prosthetic heart valves.

Scotten LN, Walker DK.

J Heart Valve Dis. 2004 Jan;13(1):120-32; discussion 132-3.

PMID:
14765850
9.

Modified gorlin equation for the diagnosis of mixed aortic valve pathology.

Scotten LN, Walker DK, Dutton JW.

J Heart Valve Dis. 2002 May;11(3):360-8; discussion 368. Erratum in: J Heart Valve Dis. 2002 Sep;11(5):695..

PMID:
12056728
10.

The new St. Jude Medical regent mechanical heart valve: laboratory measurements of hydrodynamic performance.

Walker DK, Brendzel AM, Scotten LN.

J Heart Valve Dis. 1999 Nov;8(6):687-96.

PMID:
10616249
11.

A database obtained from in vitro function testing of mechanical heart valves.

Walker DK, Scotten LN.

J Heart Valve Dis. 1994 Sep;3(5):561-70.

PMID:
8000593
12.
13.

Balloon dilatation of the stenosed aortic valve: how does it work? Why does it fail?

Robicsek F, Harbold NB Jr, Scotten LN, Walker DK.

Am J Cardiol. 1990 Mar 15;65(11):761-6.

PMID:
2316457
14.

The in vitro function of 19-mm bioprosthetic heart valves in the aortic position.

Scotten LN, Walker DK, Brownlee RT.

Life Support Syst. 1987 Apr-Jun;5(2):145-53.

PMID:
3669721
15.

The Mitroflow pericardial heart valve. In vitro assessment over a range of sizes in aortic and mitral positions.

Walker DK, Scotten LN, Brownlee RT.

Scand J Thorac Cardiovasc Surg. 1985;19(2):131-8.

PMID:
4048883
16.

New generation tissue valves. Their in vitro function in the mitral position.

Walker DK, Scotten LN, Brownlee RT.

J Thorac Cardiovasc Surg. 1984 Oct;88(4):573-82.

PMID:
6482489
17.

Development and in vitro assessment of a new two-leaflet replacement heart valve designed using computer-generated bubble surfaces.

Walker DK, Scotten LN, Hewgill DE, Racca RG, Brownlee RT.

Med Biol Eng Comput. 1983 Jan;21(1):31-8. No abstract available.

PMID:
6865510
18.
19.

New tilting disc cardiac valve prostheses. In vitro comparison of their hydrodynamic performance in the mitral position.

Scotten LN, Racca RG, Nugent AH, Walker DK, Brownlee RT.

J Thorac Cardiovasc Surg. 1981 Jul;82(1):136-46. No abstract available.

PMID:
7242122
20.

In vitro assessment of mitral valve prostheses.

Walker DK, Scotten LN, Modi VJ, Brownlee RT.

J Thorac Cardiovasc Surg. 1980 May;79(5):680-8.

PMID:
7366235
21.

In vitro comparison of observed and calculated mitral valve areas.

Walker DK, Scotten LN, Brownlee RT.

Artif Organs. 1979 Nov;3(4):365-9. No abstract available.

PMID:
533429
22.

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