PURPOSE: Optimizing return to work after knee arthroplasty is becoming more important because of the growing incidence of KA among workers and poor return to work outcomes. The purpose of this study is to investigate the feasibility of Back At work After Surgery (BAAS): an integrated clinical pathway for return to work after knee arthroplasty.METHOD: Working patients who received unicompartmental knee arthroplasty (UKA) or total knee arthroplasty (TKA) between January 2021 and November 2021, younger than 65 years and motivated to return to work were eligible to participate. Feasibility was investigated on five domains: reach, dose delivered, dose received, fidelity and patients' attitudes. These outcomes were obtained by a patient-reported questionnaire and an interview with the occupational case manager and medical case manager.RESULTS: Of the eligible 29 patients, eleven were willing to participate (response rate 38%; due to travel distance to and from the hospital). The dose delivered was between 91 and 100%, except information given about return to work from the orthopedic surgeon which was 18%. The dose received was 100%. For fidelity, case managers reported nine shortcomings for which five solutions were mentioned. In terms of patients' attitude, all patients were satisfied and one patient mentioned an improvement.CONCLUSIONS: In terms of reach, participation was low: only 29%. The BAAS clinical pathway seems feasible based on dose delivered, dose received, fidelity and patient attitudes. The next step is to assess the effectiveness of the BAAS clinical pathway for return to work.
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This research aims to contribute to a better understanding of strategic collaborations between work-integration social enterprises (WISEs) and for-profit enterprises (FPEs) with the joint objective to improve labour market opportunities for vulnerable groups. We find that most collaborations strive towards integration or transformation in order to make more social impact.
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Social work is a profession that is very much part of and contributes to an ever changing and evolving society. It is therefore essential that social work is able to respond to the diverse and dynamic demands that it may encounter in that society and in the future. The critique of social work is, however, present and growing. The profession can no longer deny or ignore the need to legitimize its value and effectiveness. In this article, a research project – entitled Procivi – aimed at developing a method of legitimizing social work is presented. The method developed in Procivi proposes a way of legitimizing social work through the development of reflective professionals. The method teaches professionals to take a research frame of mind towards their own practice and helps them develop a vocabulary to describe their work to different audiences. The paper discusses whether and how this method forms a viable way of legitimizing social work and as such could be an alternative for the growing demand for social work based on scientific evidence (evidencebased practice, EBP).
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Vanwege veranderende onderwijskundige inzichten - 21st century learning - worden schoolgebouwen verbouwd of vervangen door nieuwbouw. Deze 21st century leeromgevingen blijken in de praktijk niet te voldoen aan de verwachting van de gebruikers. Het ontwikkelen en gebruiken van een 21st century leeromgeving stelt blijkbaar specifieke eisen aan de 21st century competenties van alle betrokkenen. Dit roept vragen op ten aanzien van product en proces. De beantwoording van deze vragen vereist kennis van wisselwerking tussen psycho-sociale leeromgeving en fysieke leeromgeving. Het betreft onder andere de benodigde “ruimtelijke competenties” van de betrokkenen om de fysieke leeromgevingen te ontwikkelen en te gebruiken en - andersom - hoe de fysieke leeromgeving de ontwikkeling van 21st century competenties beïnvloedt. De kiem voor dit onderzoeksproject is gelegd toen scholen en vormgevers deze vragen voorlegden aan experts van de NHL Hogeschool en TU Eindhoven. Dit KIEM project wil de probleemstelling in één of meerdere praktijkvragen articuleren door het uitvoeren van een reeks workshops met een focusgroep van stakeholders. De uitkomsten hiervan zullen worden vertaald naar een voorstel voor een langduriger onderzoeksproject. In dit beoogde vervolgproject zullen de gearticuleerde vragen worden vertaald naar één of meer praktijkonderzoeken waarin wetenschappelijke kennis en methodes worden doorontwikkeld en beproefd op het effectief stimuleren van 21st century vaardigheden van docenten en vormgevers in praktijksituaties. Dit project maakt deel uit van de opbouw van een regionaal kennisnetwerk Onderwijs & Ruimte, wat op een duurzame wijze wil bijdragen aan de kennisontwikkeling en -deling betreffende de 21st century leeromgeving. De kern van dit netwerk wordt gevormd door de initiatiefnemers van deze aanvraag; Adema Architecten (MKB), lectoraat Open Innovation van de NHL Hogeschool (Onderzoeksinstelling) en Next Level (Onderwijs).
Heb je wel eens gemerkt dat de premie voor je autoverzekering verandert als je in een andere wijk gaat wonen? Verzekeraars berekenen dit met een algoritme, wat kan leiden tot indirecte discriminatie. Dit project onderzoekt hoe zulke digitale differentiatie (DD) zowel eerlijk als rendabel kan.
Size measurement plays an essential role for micro-/nanoparticle characterization and property evaluation. Due to high costs, complex operation or resolution limit, conventional characterization techniques cannot satisfy the growing demand of routine size measurements in various industry sectors and research departments, e.g., pharmaceuticals, nanomaterials and food industry etc. Together with start-up SeeNano and other partners, we will develop a portable compact device to measure particle size based on particle-impact electrochemical sensing technology. The main task in this project is to extend the measurement range for particles with diameters ranging from 20 nm to 20 um and to validate this technology with realistic samples from various application areas. In this project a new electrode chip will be designed and fabricated. It will result in a workable prototype including new UMEs (ultra-micro electrode), showing that particle sizing can be achieved on a compact portable device with full measuring range. Following experimental testing with calibrated particles, a reliable calibration model will be built up for full range measurement. In a further step, samples from partners or potential customers will be tested on the device to evaluate the application feasibility. The results will be validated by high-resolution and mainstream sizing techniques such as scanning electron microscopy (SEM), dynamic light scattering (DLS) and Coulter counter.
Lectorate, part of NHL Stenden Hogeschool