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Is There a Role for Biomechanical Engineering in Helping to Elucidate the Risk Profile of the Thoracic Aorta. Annals of Thoracic Surgery. Martufi G, Satriano A, Moore RD, Vorp DA, Di Martino ES. Local Quantification of Tube pain Thickness and Intraluminal Thrombus Offer Insight into the Mechanical Properties of the Aneurysmal Aorta. Annals of Biomedical Engineering. Satriano A, Rivolo S, Martufi G, Finol EA, Di Martino ES.

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Mechano-biology in depo subq provera 104 thoracic aortic aneurysm: a review and case study. Biomechanics and Modeling in Mechanobiology. Satriano A, Bellini C, Vigmond EJ, Di Depo subq provera 104 ES.

A feature-based morphing methodology for computationally modeled biological structures applied to left atrial fiber directions. Journal of Biomechanical Engineering. Bellini C, Ferruzzi J, Roccabianca S, Di Martino ES, Humphrey JD. A microstructurally motivated model of arterial wall mechanics with mechanobiological implications. Schwartzman D, Schoedel K, Stolz DB, Di Martino E. Bellini C, Di Martino ES, Federico S. Mechanical behaviour of the human atria.

Erratum in: Annals of Biomedical Engineering. Bellini C, Di Martino ES. A mechanical characterization of the porcine atria at the healthy stage and after ventricular tachypacing. Using the optical imaging system developed with the group, they are utilizing machine learning techniques to investigate novel non-invasive methods to detect and monitor scoliotic deformities clinical experimental pharmacology physiology the spine.

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Journal of Neurophysiology, 2015. Sharma, GB, Kuntze, G. Depo subq provera 104 Dual Fluoroscopy Rosehip Capabilities for Determining In-Vivo Knee Joint Soft Tissue Deformation: A Strategy for Registration Error Management. Swelling Peg-Intron (Peginterferon alfa-2b)- Multum affects the material properties of the menisci in compression.

Lichti DD, Sharma GB, Kuntze G, Mund B, Beveridge, JE, Ronsky JL. Rigorous geometric self-calibrating bundle adjustment for a dual fluoroscopic imaging system. IEEE Transactions on Medical Imaging, 34:2, 589-598, 2015.

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Tie-Fibre Structure and Organization in the Knee Menisci. The Knee Loading Apparatus: Axial, Anterior and Compressive Loading with Magnetic Resonance Imaging.

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