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Items: 5

1.

Computational modeling guides tissue-engineered heart valve design for long-term in vivo performance in a translational sheep model.

Emmert MY, Schmitt BA, Loerakker S, Sanders B, Spriestersbach H, Fioretta ES, Bruder L, Brakmann K, Motta SE, Lintas V, Dijkman PE, Frese L, Berger F, Baaijens FPT, Hoerstrup SP.

Sci Transl Med. 2018 May 9;10(440). pii: eaan4587. doi: 10.1126/scitranslmed.aan4587.

PMID:
29743347
2.

Percutaneous pulmonary valve replacement using completely tissue-engineered off-the-shelf heart valves: six-month in vivo functionality and matrix remodelling in sheep.

Schmitt B, Spriestersbach H, O H-Icí D, Radtke T, Bartosch M, Peters H, Sigler M, Frese L, Dijkman PE, Baaijens FP, Hoerstrup SP, Berger F.

EuroIntervention. 2016 May 17;12(1):62-70. doi: 10.4244/EIJV12I1A12.

3.

First percutaneous implantation of a completely tissue-engineered self-expanding pulmonary heart valve prosthesis using a newly developed delivery system: a feasibility study in sheep.

Spriestersbach H, Prudlo A, Bartosch M, Sanders B, Radtke T, Baaijens FP, Hoerstrup SP, Berger F, Schmitt B.

Cardiovasc Interv Ther. 2017 Jan;32(1):36-47. doi: 10.1007/s12928-016-0396-y. Epub 2016 May 2.

PMID:
27139179
4.

A Universal Delivery System for Percutaneous Heart Valve Implantation.

Bartosch M, Peters H, Spriestersbach H, O H-Ici D, Berger F, Schmitt B.

Ann Biomed Eng. 2016 Sep;44(9):2683-94. doi: 10.1007/s10439-016-1561-2. Epub 2016 Feb 10.

PMID:
26864537
5.

The influence of the region of interest width on two-dimensional speckle tracking-based measurements of strain and strain rate.

Spriestersbach H, Oh-Icí D, Schmitt B, Berger F, Schmitz L.

Echocardiography. 2015 Jan;32(1):89-95. doi: 10.1111/echo.12589. Epub 2014 Mar 26.

PMID:
24665977

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