The paper presents the design and evaluation of an efficient routing structure for implementation within a dedicated multiprocessor architecture whose target is 3D medical imaging applications, and computer graphics rastering. Computational similarities between these two techniques are also pointed out and discussed. Simulations are presented showing the various data flows and required performance.

A dedicated multiprocessor system for pixel treatment in rastering and medical imaging applications / Di Lecce, V.; Di Sciascio, E.. - STAMPA. - (1996), pp. 1083-1086. (Intervento presentato al convegno 8th Mediterranean Electrotechnical Conference on Industrial Applications in Power Systems, Computer Science and Telecommunications, MELECON '96 tenutosi a Bari, Italy nel May 13-16, 1996) [10.1109/MELCON.1996.551396].

A dedicated multiprocessor system for pixel treatment in rastering and medical imaging applications

V. Di Lecce;E. Di Sciascio
1996-01-01

Abstract

The paper presents the design and evaluation of an efficient routing structure for implementation within a dedicated multiprocessor architecture whose target is 3D medical imaging applications, and computer graphics rastering. Computational similarities between these two techniques are also pointed out and discussed. Simulations are presented showing the various data flows and required performance.
1996
8th Mediterranean Electrotechnical Conference on Industrial Applications in Power Systems, Computer Science and Telecommunications, MELECON '96
0-7803-3109-5
A dedicated multiprocessor system for pixel treatment in rastering and medical imaging applications / Di Lecce, V.; Di Sciascio, E.. - STAMPA. - (1996), pp. 1083-1086. (Intervento presentato al convegno 8th Mediterranean Electrotechnical Conference on Industrial Applications in Power Systems, Computer Science and Telecommunications, MELECON '96 tenutosi a Bari, Italy nel May 13-16, 1996) [10.1109/MELCON.1996.551396].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/15141
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