In this paper preliminary results are summarized on the use of a combined Additive Layer Manufacturing (ALM) and indirect replication methodology to reconstruct reticular-like, three-dimensional (3D) structures mimicking the 3D vascular network of the adult human thyroid gland. In a first step, we developed a fractal-like algorithm capable of modeling the native arterial distribution of the adult thyroid lobe, allowing for vascular growth within its geometrical domain. Although some arbitrary simplifications were adopted, yet the vascular density of the computational simulation showed good consistency with that of a native thyroid lobe. In a second step, single vascular branches were prototyped based on the STL output of the algorithm a...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufactur...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufacturi...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufactur...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufacturi...
none9noProceedings of the 5th International Conference on Advanced Research in Virtual and Rapid Pro...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing and indirect replicatio...
We describe an innovative methodology combining Additive Layer Manufacturing and indirect replicatio...
Fractal properties have been demonstrated in literature for several human vascular systems. In the f...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufactur...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufacturi...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufactur...
In this paper preliminary results are summarized on the use of a combined Additive Layer Manufacturi...
none9noProceedings of the 5th International Conference on Advanced Research in Virtual and Rapid Pro...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect repl...
We describe an innovative methodology combining Additive Layer Manufacturing and indirect replicatio...
We describe an innovative methodology combining Additive Layer Manufacturing and indirect replicatio...
Fractal properties have been demonstrated in literature for several human vascular systems. In the f...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...
It is currently known that a number of human vascular systems have a fractal geometry. Since we have...