10 research outputs found

    Expert Involvement and Adherence to Medical Evidence in Medical Mobile Phone Apps:A Systematic Review

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    BACKGROUND: Both clinicians and patients use medical mobile phone apps. Anyone can publish medical apps, which leads to contents with variable quality that may have a serious impact on human lives. We herein provide an overview of the prevalence of expert involvement in app development and whether or not app contents adhere to current medical evidence. OBJECTIVE: To systematically review studies evaluating expert involvement or adherence of app content to medical evidence in medical mobile phone apps. METHODS: We systematically searched 3 databases (PubMed, The Cochrane Library, and EMBASE), and included studies evaluating expert involvement or adherence of app content to medical evidence in medical mobile phone apps. Two authors performed data extraction independently. Qualitative analysis of the included studies was performed. RESULTS: Based on inclusion criteria, 52 studies were included in this review. These studies assessed a total of 6520 apps. Studies dealt with a variety of medical specialties and topics. As much as 28 studies assessed expert involvement, which was found in 9-67% of the assessed apps. Thirty studies (including 6 studies that also assessed expert involvement) assessed adherence of app content to current medical evidence. Thirteen studies found that 10-87% of the assessed apps adhered fully to the compared evidence (published studies, recommendations, and guidelines). Seventeen studies found that none of the assessed apps (n=2237) adhered fully to the compared evidence. CONCLUSIONS: Most medical mobile phone apps lack expert involvement and do not adhere to relevant medical evidence

    National Implementation of Simulator Training Improves Transurethral Resection of Bladder Tumours in Patients

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    BACKGROUND: Transurethral resection of bladder tumours (TURBT) is the initial diagnostic treatment for patients with bladder cancer. TURBT is not an easy procedure to master and simulator training may play a role in improving the learning curve. OBJECTIVE: To implement a national training programme for simulation-based mastery learning in TURBT and explore operating theatre performance after training. DESIGN, SETTING, AND PARTICIPANTS: From June 2019 to March 2021, 31 doctors at urology departments in Denmark performed two pretraining TURBT procedures on patients, followed by proficiency-based mastery learning on a virtual reality simulator and then two post-training TURBTs on patients. OUTCOME MEASUREMENTS AND STATISTICAL ANALYSES: Operating theatre performances were video-recorded and assessed by two independent, blinded raters using the Objective Structured Assessment for Transurethral Resection of Bladder Tumours Skills (OSATURBS) assessment tool. Paired-sample t tests were used to compare pretraining and post-training analyses and independent t tests for between-group comparisons. This trial is registered at ClinicalTrials.gov as NCT03864302. RESULTS AND LIMITATIONS: Before training, novices had significantly lower performance scores in comparison to those with intermediate experience (p = 0.017) and experienced doctors (p < 0.001). After training, novices significantly improved their clinical performance score (from 11.4 to 17.1; p = 0.049, n = 10). Those with intermediate experience and experienced doctors did not benefit significantly from simulator training (p = 0.9 and p = 0.8, respectively). CONCLUSIONS: Novices improved their TURBT performance in the operating theatre after completing a proficiency-based training programme on a virtual reality simulator. PATIENT SUMMARY: We trained surgeons in an operation to remove bladder tumours using a virtual reality simulator. Novice doctors improved their performance significantly after the training, but the training effects for more experienced doctors were minimal. Therefore, we suggest the introduction of mandatory simulator training in the residency programme for urologists
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