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  1. Article: Radio Frequency Identification (RFID) in health care: where are we? A scoping review.

    Profetto, Laura / Gherardelli, Monica / Iadanza, Ernesto

    Health and technology

    2022  Volume 12, Issue 5, Page(s) 879–891

    Language English
    Publishing date 2022-08-23
    Publishing country Germany
    Document type Journal Article ; Review
    ZDB-ID 2581463-1
    ISSN 2190-7196 ; 2190-7188
    ISSN (online) 2190-7196
    ISSN 2190-7188
    DOI 10.1007/s12553-022-00696-1
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article: A robotic arm for safe and accurate control of biomedical equipment during COVID-19.

    Iadanza, Ernesto / Pasqua, Giammarco / Piaggio, Davide / Caputo, Corrado / Gherardelli, Monica / Pecchia, Leandro

    Health and technology

    2023  Volume 13, Issue 2, Page(s) 285–300

    Abstract: Purpose: Hospital facilities and social life, along with the global economy, have been severely challenged by COVID-19 since the World Health Organization (WHO) declared it a pandemic in March 2020. Since then, countless ordinary citizens, as well as ... ...

    Abstract Purpose: Hospital facilities and social life, along with the global economy, have been severely challenged by COVID-19 since the World Health Organization (WHO) declared it a pandemic in March 2020. Since then, countless ordinary citizens, as well as healthcare workers, have contracted the virus by just coming into contact with infected surfaces. In order to minimise the risk of getting infected by contact with such surfaces, our study aims to design, prototype, and test a new device able to connect users, such as common citizens, doctors or paramedics, with either common-use interfaces (e.g., lift and snack machine keyboards, traffic light push-buttons) or medical-use interfaces (e.g., any medical equipment keypad).
    Method: To this purpose, the device was designed with the help of Unified Modelling Language (UML) schemes, and was informed by a risk analysis, that highlighted some of its essential requirements and specifications. Consequently, the chosen constructive solution of the robotic system, i.e., a robotic-arm structure, was designed and manufactured using computer-aided design and 3D printing.
    Result: The final prototype included a properly programmed micro-controller, linked via Bluetooth to a multi-platform mobile phone app, which represents the user interface. The system was then successfully tested on different physical keypads and touch screens. Better performance of the system can be foreseen by introducing improvements in the industrial production phase.
    Conclusion: This first prototype paves the way for further research in this area, allowing for better management and preparedness of next pandemic emergencies.
    Language English
    Publishing date 2023-01-05
    Publishing country Germany
    Document type Journal Article
    ZDB-ID 2581463-1
    ISSN 2190-7196 ; 2190-7188
    ISSN (online) 2190-7196
    ISSN 2190-7188
    DOI 10.1007/s12553-022-00715-1
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  3. Article ; Online: Designing and developing a mobile application for indoor real-time positioning and navigation in healthcare facilities.

    Luschi, Alessio / Villa, Eleonora Annamaria Borsani / Gherardelli, Monica / Iadanza, Ernesto

    Technology and health care : official journal of the European Society for Engineering and Medicine

    2022  Volume 30, Issue 6, Page(s) 1371–1395

    Abstract: Background: Navigation portable applications have largely grown during the last years. However, the majority of them works just for outdoor positioning and routing, due to their architecture based upon Global Positioning System signals. Real-Time ... ...

    Abstract Background: Navigation portable applications have largely grown during the last years. However, the majority of them works just for outdoor positioning and routing, due to their architecture based upon Global Positioning System signals. Real-Time Positioning System intended to provide position estimation inside buildings is known as Indoor Positioning System (IPS).
    Objective: This paper presents an IPS implemented as a mobile application that can guide patients and visitors throughout a healthcare premise.
    Methods: The proposed system exploits the geolocation capabilities offered by existing navigation frameworks for determining and displaying the user's position. A hybrid mobile application architecture has been adopted because it allows to deploy the code to multiple platforms, simplifying maintenance and upgrading.
    Results: The developed application features two different working modes for on-site and off-site navigation, which offer both the possibility of actual navigation within the hospital, or planning a route from a list of available starting points to the desired target, without being within the navigable area. Tests have been conducted to evaluate the performance and the accuracy of the system.
    Conclusion: The proposed application aims to overcome the limitations of Global Navigation Satellite System by using magnetic fingerprinting in combination with sensor fusion simultaneously. This prevents to rely on a single technology, reducing possible system failures and increasing the scalability.
    MeSH term(s) Humans ; Mobile Applications ; Algorithms ; Geographic Information Systems ; Computer Systems ; Delivery of Health Care
    Language English
    Publishing date 2022-08-15
    Publishing country Netherlands
    Document type Journal Article
    ZDB-ID 1159961-3
    ISSN 1878-7401 ; 0928-7329
    ISSN (online) 1878-7401
    ISSN 0928-7329
    DOI 10.3233/THC-220146
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  4. Article ; Online: Evidence-based medical equipment management: a convenient implementation.

    Iadanza, Ernesto / Gonnelli, Valentina / Satta, Francesca / Gherardelli, Monica

    Medical & biological engineering & computing

    2019  Volume 57, Issue 10, Page(s) 2215–2230

    Abstract: Maintenance is a crucial subject in medical equipment life cycle management. Evidence-based maintenance consists of the continuous performance monitoring of equipment, starting from the evidence-the current state in terms of failure history-and ... ...

    Abstract Maintenance is a crucial subject in medical equipment life cycle management. Evidence-based maintenance consists of the continuous performance monitoring of equipment, starting from the evidence-the current state in terms of failure history-and improvement of its effectiveness by making the required changes. This process is very important for optimizing the use and allocation of the available resources by clinical engineering departments. Medical equipment maintenance is composed of two basic activities: scheduled maintenance and corrective maintenance. Both are needed for the management of the entire set of medical equipment in a hospital. Because the classification of maintenance service work orders reveals specific issues related to frequent problems and failures, specific codes have been applied to classify the corrective and scheduled maintenance work orders at Careggi University Hospital (Florence, Italy). In this study, a novel set of key performance indicators is also proposed for evaluating medical equipment maintenance performance. The purpose of this research is to combine these two evidence-based methods to assess every aspect of the maintenance process and provide an objective and standardized approach that will support and enhance clinical engineering activities. Starting from the evidence (i.e. failures), the results show that the combination of these two methods can provide a periodical cross-analysis of maintenance performance that indicates the most appropriate procedures. Graphical abstract The left side shows a block diagram of the process needed to calculate the proposed set of KPIs, starting from technological, organizational and financial data. On the upper right it is shown an example of scheduled maintenance analysis for a specific class of equipment (legend in the article body). The bottom right part shows how the KPIs can be implemented in a business intelligence dashboard.
    MeSH term(s) Biomedical Engineering ; Equipment and Supplies/economics ; Maintenance ; Telemetry
    Language English
    Publishing date 2019-08-10
    Publishing country United States
    Document type Journal Article
    ZDB-ID 282327-5
    ISSN 1741-0444 ; 0025-696X ; 0140-0118
    ISSN (online) 1741-0444
    ISSN 0025-696X ; 0140-0118
    DOI 10.1007/s11517-019-02021-x
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  5. Article: A QGIS Tool for Automatically Identifying Asbestos Roofing

    Tommasini, Maurizio / Bacciottini, Alessandro / Gherardelli, Monica

    ISPRS international journal of geo-information. 2019 Mar. 06, v. 8, no. 3

    2019  

    Abstract: Exposure to asbestos fibers implies a long-term risk for human health; therefore, the development of information systems that are able to detect the extent and status of asbestos over a certain territory has become a priority. This work presents a tool ( ... ...

    Abstract Exposure to asbestos fibers implies a long-term risk for human health; therefore, the development of information systems that are able to detect the extent and status of asbestos over a certain territory has become a priority. This work presents a tool (based on the geographic information system open source software, QGIS) that is conceived for automatically identifying buildings with asbestos roofing. The area under investigation is the metropolitan area around Prato (Italy). The performance analysis of this system was carried out by classifying images that were acquired by the WorldView-3 sensor. These images are available at a low cost when compared with those obtained by means of aerial surveys, and they provide adequate resolution levels for roofing classification. The tool, a QGIS plugin, has shown fairly good performance in identifying asbestos roofing, with some false negatives and some false positives when applying a per-pixel classification. A performance improvement is obtainable when considering the percentage of asbestos pixels that are contained in each roof of the analyzed image. This value is also available with the plugin. In the future, this tool should make it possible to monitor the asbestos roof removal process over time in the area of interest, in accordance with other image data that give evidence of such removals.
    Keywords aerial surveys ; asbestos ; buildings ; computer software ; geographic information systems ; health effects assessments ; human health ; information systems ; metropolitan areas ; Italy
    Language English
    Dates of publication 2019-0306
    Publishing place Multidisciplinary Digital Publishing Institute
    Document type Article
    ZDB-ID 2655790-3
    ISSN 2220-9964
    ISSN 2220-9964
    DOI 10.3390/ijgi8030131
    Database NAL-Catalogue (AGRICOLA)

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