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This book covers the most important topics in the field of
personalized orthopedics. It starts with the 3D
geometry of the bones, focusing on the problem of reverse
engineering of the bones. It also shows the application
of a 3D geometric model of bone for the design of personalized
implants and prostheses. This book
covers the application of additive technologies in
personalized orthopedics as well as prediction, simulation and
optimization in personalized orthopedics. Its
content provides the necessary knowledge for the transition
from classical to personalized orthopedics. The authors
present an original method for reverse bone
engineering—the Method of Anatomical Features (MAF). This method
is unique as it enables the reconstruction of the
original geometry and topology of the bone, even when only data on
its part are available. The application of this method is shown on
the examples of human long bones, mandible and hip bone
reconstruction. This book contains a review of several real
cases of personalized implants. It gives several
examples of prostheses for the design of which a 3D model of bones
was used, as well as other patient data on the basis of which
personalized prostheses were designed.
This book covers the most important topics in the field of
personalized orthopedics. It starts with the 3D geometry of the
bones, focusing on the problem of reverse engineering of the bones.
It also shows the application of a 3D geometric model of bone for
the design of personalized implants and prostheses. This book
covers the application of additive technologies in personalized
orthopedics as well as prediction, simulation and optimization in
personalized orthopedics. Its content provides the necessary
knowledge for the transition from classical to personalized
orthopedics. The authors present an original method for reverse
bone engineering-the Method of Anatomical Features (MAF). This
method is unique as it enables the reconstruction of the original
geometry and topology of the bone, even when only data on its part
are available. The application of this method is shown on the
examples of human long bones, mandible and hip bone reconstruction.
This book contains a review of several real cases of personalized
implants. It gives several examples of prostheses for the design of
which a 3D model of bones was used, as well as other patient data
on the basis of which personalized prostheses were designed.
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