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Errata

Erratum: “A Computational Method for Predicting Inferior Vena Cava Filter Performance on a Patient-Specific Basis” [ASME J. Biomech. Eng., 2014, 136(8), p. 081003]

J Biomech Eng 137(11), 117001 (Oct 05, 2015) (2 pages) Paper No: BIO-15-1431; doi: 10.1115/1.4031634 History: Received August 31, 2015; Revised September 09, 2015

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References

Sastry, S. P. , Kim, J. , Shontz, S. M. , Craven, B. A. , Lynch, F. C. , Manning, K. B. , and Panitanarak, T. , 2013, “ Patient-Specific Model Generation and Simulation for Pre-Operative Surgical Guidance for Pulmonary Embolism Treatment,” Image-Based Geometric Modeling and Mesh Generation, Springer, Rotterdam, The Netherlands, pp. 227–254.
Kaufman, J. A. , Waltman, A. C. , Rivitz, S. M. , and Geller, S. C. , 1995, “ Anatomical Observations on the Renal Veins and Inferior Vena Cava at Magnetic Resonance Angiography,” Cardiovasc. Interventional Radiol., 18(3), pp. 153–157. [CrossRef]
Trigaux, J.-P. , Vandroogenbroek, S. , De Wispelaere, J.-F. , Lacrosse, M. , and Jamart, J. , 1998, “ Congenital Anomalies of the Inferior Vena Cava and Left Renal Vein: Evaluation With Spiral CT,” J. Vasc. Interventional Radiol., 9(2), pp. 339–345. [CrossRef]

Figures

Grahic Jump Location
Fig. 1

Patient-specific IVC geometries with original (left) and corrected (right) out-of-plane resolutions

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