First experiences with the implementation of the European standard EN 62304 on medical device software for the quality assurance of a radiotherapy unit

BackgroundAccording to the latest amendment of the Medical Device Directive standalone software qualifies as a medical device when intended by the manufacturer to be used for medical purposes. In this context, the EN 62304 standard is applicable which defines the life-cycle requirements for the development and maintenance of medical device software. A pilot project was launched to acquire skills in implementing this standard in a hospital-based environment (in-house manufacture).MethodsThe EN 62304 standard outlines minimum requirements for each stage of the software life-cycle, defines the activities and tasks to be performed and scales documentation and testing according to its criticality. The required processes were established for the pre-existent decision-support software FlashDumpComparator (FDC) used during the quality assurance of treatment-relevant beam parameters. As the EN 62304 standard implicates compliance with the EN ISO 14971 standard on the application of risk management to medical devices, a risk analysis was carried out to identify potential hazards and reduce the associated risks to acceptable levels.ResultsThe EN 62304 standard is difficult to implement without proper tools, thus open-source software was selected and integrated into a dedicated development platform. The control measures yielded by the risk analysis were independently implemented and verified, and a script-based test automation was retrofitted to reduce the associated test effort. After all documents facilitating the traceability of the specified requirements to the corresponding tests and of the control measures to the proof of execution were generated, the FDC was released as an accessory to the HIT facility.ConclusionsThe implementation of the EN 62304 standard was time-consuming, and a learning curve had to be overcome during the first iterations of the associated processes, but many process descriptions and all software tools can be re-utilized in follow-up projects. It has been demonstrated that a standards-compliant development of small and medium-sized medical software can be carried out by a small team with limited resources in a clinical setting. This is of particular relevance as the upcoming revision of the Medical Device Directive is expected to harmonize and tighten the current legal requirements for all European in-house manufacturers.

[1]  O Jäkel,et al.  The Heidelberg Ion Therapy Center. , 2004, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.

[2]  Thomas Haberer,et al.  Proton and carbon ion radiotherapy for primary brain tumors delivered with active raster scanning at the Heidelberg Ion Therapy Center (HIT): early treatment results and study concepts , 2012, Radiation oncology.

[3]  Oliver Jäkel,et al.  Treatment of pediatric patients and young adults with particle therapy at the Heidelberg Ion Therapy Center (HIT): establishment of workflow and initial clinical data , 2012, Radiation oncology.

[4]  Jürgen Debus,et al.  First experiences in treatment of low-grade glioma grade I and II with proton therapy , 2012, Radiation oncology.

[5]  D. Schardt,et al.  Magnetic scanning system for heavy ion therapy , 1993 .

[6]  Jürgen Weitz,et al.  Neoadjuvant chemoradiation with Gemcitabine for locally advanced pancreatic cancer , 2012, Radiation oncology.

[7]  Katia Parodi,et al.  Heidelberg Ion Therapy Center (HIT): Initial clinical experience in the first 80 patients , 2010, Acta oncologica.

[8]  Jack Wong,et al.  Regulatory Affairs for Medical Device Clinical Trials in Asia Pacific , 2013 .

[9]  Xu Qian-qian,et al.  Study on Implementation Approach for Standard YY/T 0316(ISO 14971) "Medical Devices-Application of Risk Management to Medical Devices" , 2012 .

[10]  Oliver Jäkel,et al.  Particle therapy at the Heidelberg Ion Therapy Center (HIT) - Integrated research-driven university-hospital-based radiation oncology service in Heidelberg, Germany. , 2010, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.