Barbara L. Teeter
Duke University
6 Papers
776 Citations
Barbara L. Teeter is an academic researcher from Duke University. The author has contributed to research in topics: Tube (container) & Tube (fluid conveyance). The author has an hindex of 5, co-authored 6 publications.
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Papers
Patent
Intraluminal stent graft
William M. Colone,Kevin G. Farl,Barbara L. Teeter,William L. Creer,Joseph B. Sinnott +4 more
- 24 Jul 2000
TL;DR: A conformable ePTFE tube is made by a special process which insures that the tube is radially deformable up to a predetermined diameter without exceeding the plastic deformation limit of the tube as mentioned in this paper.
531
Patent
Delivery system for self-expanding stents and grafts
TL;DR: In this article, a radially self-expanding endoprosthesis is implanted in an elongated catheter with a flexible elongation release element cooperating with the sheath.
155
Patent
A method of making large diameter vascular prosthesis and a vascular prosthesis made by said method
William M. Colone,Kevin G. Farl,Barbara L. Teeter,William L. Creer,Joseph B. Sinnott +4 more
- 01 Feb 2000
TL;DR: In this article, a method for making vascular prostheses from ePTFE was described, with the prostheses having a diameter which is larger and a wall thickness smaller than previously achievable using ram extrusion techniques.
54
Patent
Balloon-assisted intraluminal stent graft
William M. Colone,Kevin G. Farl,Barbara L. Teeter,William L. Creer,Joseph B. Sinnott +4 more
- 26 Jul 1999
TL;DR: A conformable ePTFE tube is made by a special process which insures that the tube is radially deformable up to a predetermined diameter without exceeding the plastic deformation limit of the tube.
23
Patent
Method of manufacturing custom intravascular devices
William M. Colone,Edward B. Diethrich,Barbara L. Teeter,Kevin G. Farl,William L. Creer +4 more
- 23 Aug 2001
TL;DR: In this article, a method for manufacturing a custom-sized intravascular device includes the steps of measuring the diameter of a diseased vessel, and then manufacturing the custom-size device according to the diameter.
9