Ortho3D (Q10155): Difference between revisions

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(‎Created claim: summary (P836): The project aims at identifying optimal processes, design and modelling of the internal structures of orthopaedic, oncological and trauma implants by 3D printing of bio-compatible titanium alloys, i.e. as a means to develop new approaches to moderate the aforementioned compensations, to use programmable tuthoi and tethers without limitations due to the currently used conventional modes of production., Adding English summary)
Property / summary
 
The project aims at identifying optimal processes, design and modelling of the internal structures of orthopaedic, oncological and trauma implants by 3D printing of bio-compatible titanium alloys, i.e. as a means to develop new approaches to moderate the aforementioned compensations, to use programmable tuthoi and tethers without limitations due to the currently used conventional modes of production. (English)
Property / summary: The project aims at identifying optimal processes, design and modelling of the internal structures of orthopaedic, oncological and trauma implants by 3D printing of bio-compatible titanium alloys, i.e. as a means to develop new approaches to moderate the aforementioned compensations, to use programmable tuthoi and tethers without limitations due to the currently used conventional modes of production. (English) / rank
 
Normal rank

Revision as of 16:30, 25 February 2020

Project in Czech Republic financed by DG Regio
Language Label Description Also known as
English
Ortho3D
Project in Czech Republic financed by DG Regio

    Statements

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    11,792,984.04 Czech koruna
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    471,719.36159999995 Euro
    10 January 2020
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    17,659,455.0 Czech koruna
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    706,378.2000000001 Euro
    10 January 2020
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    66.7799999490358 percent
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    1 July 2015
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    30 September 2018
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    ProSpon, spol. s r.o.
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    50°8'25.69"N, 14°6'27.00"E
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    27201
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    Projekt je zaměřený na nalezení optimálních postupů, konstrukčních návrhů a modelace vnitřních struktur ortopedických, onkologických i traumatologických implantátů pomocí 3D tisku biokompatibilní titanové slitiny, tedy jako prostředek k vývoji nových přístupů v modelaci výše zmíněných náhrad, využití programovatelné tuhosti i porozity bez omezení způsobených limitujícími způsoby v současnosti používaných konvenčních způsobů výroby. a. (Czech)
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    The project aims at identifying optimal processes, design and modelling of the internal structures of orthopaedic, oncological and trauma implants by 3D printing of bio-compatible titanium alloys, i.e. as a means to develop new approaches to moderate the aforementioned compensations, to use programmable tuthoi and tethers without limitations due to the currently used conventional modes of production. (English)
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    Identifiers

    CZ.01.1.02/0.0/0.0/15_019/0000735
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