In today’s multichannel retail environment, consumers’ experiences in one channel influence their perceptions of another channel. Specifically, consumer evaluations of a firm’s online store have been found to be influenced by consumer interactions with the firm’s in-store personnel. This paper is among the first to address this assumption and test it empirically. Drawing upon the analogical transfer paradigm, we propose hypotheses and accordingly model in-store personnel’s competence and friendliness as determinants of online store usefulness, online store enjoyment, and online store value. Using consumer data collected from two Dutch multichannel retailers, we test this model with partial least squares modeling. The results provide clear support for the model and confirm that consumers may use characteristics of in-store personnel as analogies when evaluating a firm’s online store. Implications for research and retail managers are discussed.
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Service robots provide retailers with new opportunities to innovate their in-store service offerings. Despite advances made in the fields of human-robot interaction, information systems, and marketing, there is relatively little known about how to apply a service robot in retailing. In this paper we aim to shed light on this issue by exploring the added value, roles, and prototyping of a service robot in fashion retailing. Using two Dutch fashion stores as real-life settings, we apply differentinteraction techniques (observation, interview, survey, structured role play, prototyping) to generate first insights and obtain lessons learned. The results of our study suggest that fashion retailers would benefit most from using service robots for communication of promotions and provision of product information. When applying service robots to these use cases, customers seem to prefer briefly and clearly expressed information that is communicated in a style that matches (in-)store communications. Still, the lack of personal attention and social support associated with a service robot makes retailers and store personnel rather reluctant to use them for their service excellence-oriented stores.
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Medical imaging practice changed dramatically with the introduction of digital imaging. Although digital imaging has many advantages, it also has made it easier to delete images that are not of diagnostic quality. Mistakes in imaging—from improper patient positioning, patient movement during the examination, and selecting improper equipment—could go undetected when images are deleted. Such an approach would preclude a reject analysis from which valuable lessons could be learned. In the analog days of radiography, saving the rejected films and then analyzing them was common practice among radiographers. In principle, reject analysis can be carried out easier and with better tools (ie, software) in the digital era, provided that rejected images are stored for analysis. Reject analysis and the subsequent lessons learned could reduce the number of repeat images, thus reducing imaging costs and decreasing patient exposure to radiation. The purpose of this study, which was conducted by order of the Dutch Healthcare Inspectorate, was to investigate whether hospitals in the Netherlands store and analyze failed imaging and, if so, to identify the tools used to analyze those images.
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Purpose – In the domain of healthcare, both process efficiency and the quality of care can be improved through the use of dedicated pervasive technologies. Among these applications are so-called real-time location systems (RTLS). Such systems are designed to determine and monitor the location of assets and people in real time through the use of wireless sensor networks. Numerous commercially available RTLS are used in hospital settings. The nursing home is a relatively unexplored context for the application of RTLS and offers opportunities and challenges for future applications. The paper aims to discuss these issues. Design/methodology/approach – This paper sets out to provide an overview of general applications and technologies of RTLS. Thereafter, it describes the specific healthcare applications of RTLS, including asset tracking, patient tracking and personnel tracking. These overviews are followed by a forecast of the implementation of RTLS in nursing homes in terms of opportunities and challenges. Findings – By comparing the nursing home to the hospital, the RTLS applications for the nursing home context that are most promising are asset tracking of expensive goods owned by the nursing home in orderto facilitate workflow and maximise financial resources, and asset tracking of personal belongings that may get lost due to dementia. Originality/value – This paper is the first to provide an overview of potential application of RTLS technologies for nursing homes. The paper described a number of potential problem areas that can be addressed by RTLS. Published by Emerald Publishing Limited Original article: https://doi.org/10.1108/JET-11-2017-0046 For this paper Joost van Hoof received the Highly Recommended Award from Emerald Publishing Ltd. in October 2019: https://www.emeraldgrouppublishing.com/authors/literati/awards.htm?year=2019
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In May 2018, the new Dutch Intelligence and Security Services Act 2017 (Wet op de Inlichtingen- en veiligheidsdiensten, Wiv) will enter into force. It replaces the previous 2002 Act and incorporates many reforms to the information gathering powers of the two intelligence and security services as well as to the accountability and oversight mechanisms. Due to the technologyneutral approach, both the civil and the military intelligence services are now authorized to, for example, intercept communications in bulk, hack third parties, decrypt files, store DNA or use any other future innovative technology. Also, the national security legislation extends the possibilities for the indiscriminate collection of data, and for the processing, storage and analysis thereof. The process leading to the law includes substantial criticism from the various stakeholders involved. Upon publication of this report, an official consultative referendum is being organized on the new act. The aim of this policy brief is to provide an international audience with a comprehensive overview of the most relevant aspects of the act and its context. In addition, there is considerable focus on the checks and balances as well as the bottlenecks of the Dutch intelligence gathering reform. The selection of topics is based on the core issues addressed during the parliamentary debate and on the authors’ insights.
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RFID technology is a promising technology currently finding its way into the field of customer interaction strategy, supply chain accuracy and inventory management. Primarily, RFID tags are seen as substitutes of traditional barcodes, yet they can add a lot of value and functionality. Where barcodes require a scanning device to be placed directly in front of the tag to be read, RFID tag readers are able to scan all tags that are in the proximity of the scanner . The next difference is that whereas barcodes usually are the same for all articles of the of the same type (i.e. a jar of peanut butter of brand x), RFID tags will be unique for each individual product occurrence. This opens up the possibility of tracking the entire history of a specific occurrence of a product. Moreover, due to the nature of the scanning technology, it suddenly becomes achievable for manufacturers to track individual products through all stages of production and base inventory management and front office planning on real-time data at item level from production facilities.
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Op 1 januari 2007 is officieel bij de faculteit Economie en Management (FEM) van Hogeschool Utrecht het kenniscentrum InnBus van start gegaan. InnBus kan gezien worden als een faculteitsbreed kenniscentrum1 waarbinnen alle lectoraten worden ondergebracht. De naam InnBus staat daarbij voor Innovatie en Business. Bij de inrichting van dit kenniscentrum naar domeinen voor de lectoraten is op een specifieke wijze aansluiting gezocht bij bestaande, algemeen geaccepteerde indelingen naar de Business-deelvakgebieden: Finance; Accountancy; Organisatie & Strategie; Informatiekunde; Marketing. Door hergroepering, splitsing en het uitlichten van International Business is een centrum in ontwikkeling ontstaan, waarbinnen in de nabije toekomst zes lectoraten functioneren. De achterliggende gedachte is het positioneren van de faculteit Economie en Management als kennisonderneming met taken op het gebied van kennisontwikkeling en kennisspreiding, gericht op de versterking van het innoverende vermogen van bedrijven en instellingen in de regio. De daarbij geformuleerde randvoorwaarden luiden: Te ontwikkelen kennis ontstaat vanuit aangetoonde maatschappelijke behoeften; De nieuwe kennis is gericht op professionalisering van de beroepspraktijk; De kennisontwikkeling voldoet aan methodische vereisten. Kort samengevat: binnen het faculteitsbrede kenniscentrum wordt bedrijfeconomisch relevant toegepast onderzoek gedaan, gericht op bedrijven en instellingen in de regio. De keuze voor de regio heeft tot gevolg dat er een zekere voorkeur voor branches of sectoren ontstaat. Kennisspreiding binnen de FEM-organisatie ontstaat door zowel docenten als studenten bij de uitvoering van dit onderzoek te betrekken en op onderzoek gebaseerde curricula verder te ontwikkelen. Sinds 1 januari 2007 heb ik de eervolle taak om samen met mijn medewerkers het proces van kennisontwikkeling en kennisspreiding gestalte te geven binnen het vakgebied van de kenniskring Lectoraat Marketing, Marktonderzoek en Innovatie. In deze openbare les wil ik aangeven wat dit voor ons inhoudt door allereerst aandacht te besteden aan de begrippen innovatie en innoveren en daarna de koppeling te leggen met het vakgebied Marketing en Marktonderzoek.
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This is a revised PAPAI (Personal Adapted Physical Activity Instructor) handbook 2020, part of the Sport Empowers Disabled Youth 2 (SEDY2) project. The original handbook of the PAPAI project, based on Finnish pilot-phase experiences, was written in 2016 by Aija Saari and Heidi Skantz. This revised (2020) PAPAI handbook contains updated materials and lessons learned by the Finnish Paralympic Committee and Inholland University during 2017-2020.
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Background: Digital health is well-positioned in low and middle-income countries (LMICs) to revolutionize health care due, in part, to increasing mobile phone access and internet connectivity. This paper evaluates the underlying factors that can potentially facilitate or hinder the progress of digital health in Pakistan. Objective: The objective of this study is to identify the current digital health projects and studies being carried out in Pakistan, as well as the key stakeholders involved in these initiatives. We aim to follow a mixed-methods strategy and to evaluate these projects and studies through a strengths, weaknesses, opportunities, and threats (SWOT) analysis to identify the internal and external factors that can potentially facilitate or hinder the progress of digital health in Pakistan. Methods: This study aims to evaluate digital health projects carried out in the last 5 years in Pakistan with mixed methods. The qualitative and quantitative data obtained from field surveys were categorized according to the World Health Organization’s (WHO) recommended building blocks for health systems research, and the data were analyzed using a SWOT analysis strategy. Results: Of the digital health projects carried out in the last 5 years in Pakistan, 51 are studied. Of these projects, 46% (23/51) used technology for conducting research, 30% (15/51) used technology for implementation, and 12% (6/51) used technology for app development. The health domains targeted were general health (23/51, 46%), immunization (13/51, 26%), and diagnostics (5/51, 10%). Smartphones and devices were used in 55% (28/51) of the interventions, and 59% (30/51) of projects included plans for scaling up. Artificial intelligence (AI) or machine learning (ML) was used in 31% (16/51) of projects, and 74% (38/51) of interventions were being evaluated. The barriers faced by developers during the implementation phase included the populations’ inability to use the technology or mobile phones in 21% (11/51) of projects, costs in 16% (8/51) of projects, and privacy concerns in 12% (6/51) of projects.
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No summary available Rechthebbende: Universiteit Utrecht
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