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Three‐Dimensional Imaging Used for Virtual Dissection, Image Banking and Physical Replication of Anatomy and Physiology
Author(s) -
MACLELLANTOBERT SUSAN G.,
BUITHIEU JEAN,
BELOHLAVEK MAREK,
BEHRENBECK THOMAS,
GREENLEAF JAMES F.,
EDWARDS WILLIAM D.,
SEWARD JAMES B.
Publication year - 1998
Publication title -
echocardiography
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.404
H-Index - 62
eISSN - 1540-8175
pISSN - 0742-2822
DOI - 10.1111/j.1540-8175.1998.tb00582.x
Subject(s) - computer science , dissection (medical) , replication (statistics) , virtual reality , computer vision , artificial intelligence , human–computer interaction , anatomy , computer graphics (images) , medicine , virology
Historically, techniques of dissection have been used to aid in our understanding of human anatomy, physiology, and pathology. However, these techniques alter the structures and fine details being studied. New advances in computer technology, imaging equipment, data acquisition, processing, storage, and display now allow multidimensional imaging. Interactive computer programs can electronically display both static three‐dimensional and higher‐dimensional images that retain features such as motion, pressure, and temporal change. Multidimensional images can be reconstructed and manipulated using different holographic, stereolithographic, or interactive two‐dimensional displays. We describe the unique potential of multidimensional reconstruction, virtual dissection, and replication of cordiovascular structures using ultrasound data. Ultrasound technology has the advantage of depicting both anatomy and physiology. The ability to perform virtual dissection and surgery in the living patient without disruption of anatomy or physiology provides the clinician with a powerful new tool for diagnosis, teaching, and therapeutics.

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