Literature DB >> 30187174

[Medical Device Regulation as current challenge for the legally safe introduction of new technologies].

Ernst Klar1.   

Abstract

The main goal of the Medical Device Regulation (MDR) is the improvement of patient safety by laying down rules concerning the approval of medical devices for human use in the European Union. The MDR contains an extension of the conformity assessment procedure for products in the higher risk categories IIb and III. The clinical testing and assessment are regulated more strictly by e.g. the scrutiny process conducted by expert panels following the technical certification. The demand for documentation is vastly increasing due to more detailed registration (UDI) and an extension of post-market surveillance. The German Society of Surgery (DGCH) and the German Society for Biomedical Engineering have already defined a staged concept for innovation testing and clinical assessment during finalization of the MDR that contains the highest level of patient safety while simultaneously maintaining the potential for innovation. Essential elements are present in the MDR and can be implemented in a targeted way. The 3‑year phase of national MDR-implementation must be used for a proactive adaptation. The DGCH is represented in the advisory council of the Federal Ministry of Health (BMG) by the Association of the Scientific Medical Societies in Germany (AWMF). The aim is a responsible harmonization of national structures with the regulations of the MDR by the construction of specific registries which should be the responsibility of medical societies. The early integration of health technology assessment will be of importance during the planning phase of product development to facilitate a positive decision on reimbursement.

Entities:  

Keywords:  Clinical evaluation; Health technology assessment; Innovation; MDR-Implementation; Patient safety

Mesh:

Year:  2018        PMID: 30187174     DOI: 10.1007/s00104-018-0705-3

Source DB:  PubMed          Journal:  Chirurg        ISSN: 0009-4722            Impact factor:   0.955


  3 in total

1.  No surgical innovation without evaluation: the IDEAL recommendations.

Authors:  Peter McCulloch; Douglas G Altman; W Bruce Campbell; David R Flum; Paul Glasziou; John C Marshall; Jon Nicholl; Jeffrey K Aronson; Jeffrey S Barkun; Jane M Blazeby; Isabell C Boutron; W Bruce Campbell; Pierre-Alain Clavien; Jonathan A Cook; Patrick L Ergina; Liane S Feldman; David R Flum; Guy J Maddern; Jon Nicholl; Bournaby C Reeves; Christoph M Seiler; Steven M Strasberg; Jonathan L Meakins; Deborah Ashby; Nick Black; John Bunker; Martin Burton; Marion Campbell; Kalipso Chalkidou; Iain Chalmers; Marc de Leval; Jon Deeks; Patrick L Ergina; Adrian Grant; Muir Gray; Roger Greenhalgh; Milos Jenicek; Sean Kehoe; Richard Lilford; Peter Littlejohns; Yoon Loke; Rajan Madhock; Kim McPherson; Jonathan Meakins; Peter Rothwell; Bill Summerskill; David Taggart; Parris Tekkis; Matthew Thompson; Tom Treasure; Ulrich Trohler; Jan Vandenbroucke
Journal:  Lancet       Date:  2009-09-26       Impact factor: 79.321

2.  [Pioneering surgical innovations in Germany : Part 1: generation of medical evidence].

Authors:  S Weber; A Haverich
Journal:  Chirurg       Date:  2016-05       Impact factor: 0.955

Review 3.  Specific barriers to the conduct of randomised clinical trials on medical devices.

Authors:  Edmund A M Neugebauer; Ana Rath; Sunya-Lee Antoine; Michaela Eikermann; Doerthe Seidel; Carsten Koenen; Esther Jacobs; Dawid Pieper; Martine Laville; Séverine Pitel; Cecilia Martinho; Snezana Djurisic; Jacques Demotes-Mainard; Christine Kubiak; Vittorio Bertele; Janus C Jakobsen; Silvio Garattini; Christian Gluud
Journal:  Trials       Date:  2017-09-13       Impact factor: 2.279

  3 in total
  1 in total

1.  Medical Device Development Process, and Associated Risks and Legislative Aspects-Systematic Review.

Authors:  Petra Marešová; Blanka Klímová; Jan Honegr; Kamil Kuča; Wan Nur Hidayah Ibrahim; Ali Selamat
Journal:  Front Public Health       Date:  2020-07-30
  1 in total

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