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Certificado CE del implante femoral otorgado por Kiwa de acuerdo con la Directiva 93/42/EEC Annex-II Section 3.
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The days 21-22 of May, the fourth meeting of the Eurostars project granted to Tequir was held in Ankara (Turkey) due to the cooperation between Tequir and Normmed for the development of a specific antimicrobial coating for the Keep Walking Advanced connector.
We continue working to improve the quality of the patients with amputation!
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Durante los días 21 y 22 de mayo, se ha llevado a cabo el cuarto encuentro en Ankara (Turquía) del proyecto Eurostars, concedido a Tequir, debido a la cooperación entre Tequir y Normmed para el desarrollo de un recubrimiento antimicrobiano específico para el conector Keep Walking Advanced.
¡Seguimos trabajando para mejorar la calidad de vida de los pacientes con amputación!
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Proyecto liderado por Tequir en colaboración con la Universidad Católica de Valencia para el desarrollo y validación de una herramienta de software dirigida al diseño de guantes quirúrgicos personalizados para cirugía MIS de pie y validación de la técnica asociada en cadáver.
El guante quirúrgico desarrollado en este proyecto, es un dispositivo de guiado y sujeción destinado a diferentes intervenciones de cirugía de mínima incisión del pie, que reduce los factores de error dependientes de la habilidad y destreza del cirujano, al poder planificar la cirugía previamente mediante la realización de una Tomografía Axial Computerizada (TAC) con reconstrucción tridimensional del pie.
En la fase de diseño y planificación pre-quirúrgica, se obtienen las guías para cada una de las osteotomías planteadas con las angulaciones idóneas y precisas para cada uno de los ejes X, Y, Z. Tras la planificación de las osteotomías, se procede a imprimir en 3D el Guante quirúrgico personalizado.
Este proyecto ha sido cofinanciado por los fondos FEDER, dentro del Programa Operativo FEDER de la Comunitat Valenciana 2014-2020.
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Certificado CE Implante Femoral KEEP WALKING otorgado por laSocieté Nationale de Certification et d´Homologation de acuerdo con el Anexo II (excluyendo sección 4) de la directiva europea 93/42/EEC para productos médicos
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Certificado del Sistema de Gestión de la Calidad otorgado por Kiwa de acuerdo con el estándar EN ISO 13485:2016 para diseño, producción, control y ventas de implantes ortopédicos.
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If your organization is interested in collaboration, please don't hesitate in contacting us in order to work on development concepts.
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Experiencia en Gestión con Centros Tecnológicos y AEMPS: Experiencia de más de 12 años en el servicio y funcionamiento de los Centros Tecnológicos y Organismos de Certificación. Gestión con la AEMPS
Capacidad de Fabricación: Certificado UNE EN ISO 13485. SISTEMA DE GARANTIA DE CALIDAD TOTAL.
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Tequir is currently searching for medical devices companies experts in the manufacture of implantable electronics such as pacemakers and neurostimulators to participate in the European project H2020-FTIpilot-2015-1. If you’re interested in being part of this consortium or need more information about this project please contact us.
Email: magdabreso@tequir.com
Phone: +34 961 668 795
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At present, materials technology is one of the most promising fields in prosthesis. TEQUIR led a consortium with Spanish research centres (IBV, CBIT-UPV and INASMET-TECNALIA) to develop new biomaterials to be used in bone fusion. This consortium was involved in a CENIT INTELIMPLANT project (Advanced Biomaterials for a New Generation of Implants) led by BTI (Biotechnology Institute, S.L.). As a result of this project, a new biomaterial with promising properties in the regeneration of bone defects was developed. The project reached the synthesis stage of different biopolymers, their biological in vivo and in vitro evaluation and their mechanical evaluation. All these tests were carried out comparing them with a commercially available control commercial material with a similar functionality.
After the densitometry studies and 3D reconstruction, and the mechanical tests, no significant differences were founded in the newly-formed bone tissue as a result of repairing the generated defect, neither between the employed biomaterials (including the control material) nor between the test periods (8 and 16 weeks).
The behaviour of all test biomaterials (including the control material) is very similar both in the short term and the long term, and in all cases there is practically a full recovery of the mechanical resistance of the bone in comparison with healthy tissue. The fact that new biomaterials developed in the project achieve bone tissue regeneration in critical size defect comparable to that of the control material is a very positive result and indicates that any of these treatments could be used in the clinical application of vertebral fusions. As a result of the project, the enterprise has a new biomaterial that in the near future could reach the market, increasing the enterprise competitiveness.
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Tequir is currently searching for medical devices companies experts in the manufacture of implantable electronics such as pacemakers and neurostimulators to participate in the European project H2020-FTIpilot-2015-1. If you’re interested in being part of this consortium or need more information about this project please contact us.
Email: magdabreso@tequir.com
Phone: +34 961 668 795
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This year we’ve witnessed amazing innovations in technology with everything from wearable tech like Google Glass or Nike+ to the recent introduction of Coin, one card that stores all your credit cards, debit cards, personal accounts, business accounts and other cards typically filling your wallet. The healthcare industry was no exception to the rise in disruptive technology changing the way people are impacted. What are some of the most influential healthcare technologies you’ve seen appear this year?
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