Q2867045 (Q2867045): Difference between revisions
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(Changed an Item: Edited by the materialized bot - inferring region from the coordinates) |
(Created claim: summary (P836): To manufacture synthetic bone substitutes with the same morphology as human bone, opt for additive 3d printing manufacturing, and this is the only viable way to obtain a geometry as complex as the human bone in its two mineralised cortical and medullary components., translated_summary) |
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To manufacture synthetic bone substitutes with the same morphology as human bone, opt for additive 3d printing manufacturing, and this is the only viable way to obtain a geometry as complex as the human bone in its two mineralised cortical and medullary components. (English) | |||||||||||||||
Property / summary: To manufacture synthetic bone substitutes with the same morphology as human bone, opt for additive 3d printing manufacturing, and this is the only viable way to obtain a geometry as complex as the human bone in its two mineralised cortical and medullary components. (English) / rank | |||||||||||||||
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Property / summary: To manufacture synthetic bone substitutes with the same morphology as human bone, opt for additive 3d printing manufacturing, and this is the only viable way to obtain a geometry as complex as the human bone in its two mineralised cortical and medullary components. (English) / qualifier | |||||||||||||||
point in time: 7 July 2021
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Revision as of 01:11, 7 July 2021
Project Q2867045 in Portugal
Language | Label | Description | Also known as |
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English | No label defined |
Project Q2867045 in Portugal |
Statements
186,805.27 Euro
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76.0 percent
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1 September 2019
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30 November 2021
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RESDEVMED, LDA
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Fabricar substitutos ósseos de origem sintética com a mesma morfologia do osso humano, para tal opta por fabricação aditiva por impressão 3d sendo esta a única forma viável para obter uma geometria tão complexa como é o osso humano nas suas duas componentes mineralizadas a cortical e medular. (Portuguese)
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To manufacture synthetic bone substitutes with the same morphology as human bone, opt for additive 3d printing manufacturing, and this is the only viable way to obtain a geometry as complex as the human bone in its two mineralised cortical and medullary components. (English)
7 July 2021
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Ovar
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Identifiers
CENTRO-01-0247-FEDER-045284
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