資料介紹
Introduction
Real biological tissue is perishable and
expensive, especially if the origin is
human. Therefore, researchers prefer to
develop techniques for imaging, testing,
cutting, and so forth on less valuable,
inorganic materials. Researchers at the
University of Wisconsin have developed
such materials, called “phantoms”, for
evaluating and improving magnetic-
resonance and ultrasound imaging
systems.1-4?In order to function as a
substitute, these materials had to be
temporally stable and mechanically
comparable to real tissue. In this work,
we developed a technique for measuring
the storage and loss modulus of such
materials using dynamic indentation5-6
?on an Agilent Nano Indenter G200.
Real biological tissue is perishable and
expensive, especially if the origin is
human. Therefore, researchers prefer to
develop techniques for imaging, testing,
cutting, and so forth on less valuable,
inorganic materials. Researchers at the
University of Wisconsin have developed
such materials, called “phantoms”, for
evaluating and improving magnetic-
resonance and ultrasound imaging
systems.1-4?In order to function as a
substitute, these materials had to be
temporally stable and mechanically
comparable to real tissue. In this work,
we developed a technique for measuring
the storage and loss modulus of such
materials using dynamic indentation5-6
?on an Agilent Nano Indenter G200.
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