TY - JOUR A1 - Hörmann, Simon A1 - dos Santos, Luara Ferreira A1 - Morkisch, Nadine A1 - Jettkowski, Katrin A1 - Sillis, Moran A1 - Devan, Hemakumar A1 - Kanagasabai, Parimala S. A1 - Schmidt, Henning A1 - Krüger, Jörg A1 - Dohle, Christian A1 - Regenbrecht, Holger A1 - Hale, Leigh A1 - Cutfield, Nicholas J. T1 - Computerised mirror therapy with Augmented Reflection Technology for early stroke rehabilitation BT - clinical feasibility and integration as an adjunct therapy JF - Disability and rehabilitation : an international, multidisciplinary journal N2 - Purpose: New rehabilitation strategies for post-stroke upper limb rehabilitation employing visual stimulation show promising results, however, cost-efficient and clinically feasible ways to provide these interventions are still lacking. An integral step is to translate recent technological advances, such as in virtual and augmented reality, into therapeutic practice to improve outcomes for patients. This requires research on the adaptation of the technology for clinical use as well as on the appropriate guidelines and protocols for sustainable integration into therapeutic routines. Here, we present and evaluate a novel and affordable augmented reality system (Augmented Reflection Technology, ART) in combination with a validated mirror therapy protocol for upper limb rehabilitation after stroke. Results: The results showed that the combination and application of the Berlin Protocol for Mirror Therapy together with ART was feasible for clinical use. This combination was integrated into the therapeutic plan of subacute stroke patients at the two clinical locations where the second part of this research was conducted. Conclusions: Our findings pave the way for using technology to provide mirror therapy in clinical settings and show potential for the more effective use of inpatient time and enhanced recoveries for patients. IMPLICATIONS FOR REHABILITATION Computerised Mirror Therapy is feasible for clinical use Augmented Reflection Technology can be integrated as an adjunctive therapeutic intervention for subacute stroke patients in an inpatient setting Virtual Rehabilitation devices such as Augmented Reflection Technology have considerable potential to enhance stroke rehabilitation KW - Augmented reality KW - virtual reality KW - usability KW - user experience KW - upper limb KW - visual illusion Y1 - 2017 U6 - https://doi.org/10.1080/09638288.2017.1291765 SN - 0963-8288 SN - 1464-5165 VL - 39 SP - 1503 EP - 1514 PB - Routledge, Taylor & Francis Group CY - Abingdon ER - TY - THES A1 - Lopes, Pedro T1 - Interactive Systems Based on Electrical Muscle Stimulation N2 - How can interactive devices connect with users in the most immediate and intimate way? This question has driven interactive computing for decades. Throughout the last decades, we witnessed how mobile devices moved computing into users’ pockets, and recently, wearables put computing in constant physical contact with the user’s skin. In both cases moving the devices closer to users allowed devices to sense more of the user, and thus act more personal. The main question that drives our research is: what is the next logical step? Some researchers argue that the next generation of interactive devices will move past the user’s skin and be directly implanted inside the user’s body. This has already happened in that we have pacemakers, insulin pumps, etc. However, we argue that what we see is not devices moving towards the inside of the user’s body, but rather towards the body’s biological “interface” they need to address in order to perform their function. To implement our vision, we created a set of devices that intentionally borrow parts of the user’s body for input and output, rather than adding more technology to the body. In this dissertation we present one specific flavor of such devices, i.e., devices that borrow the user’s muscles. We engineered I/O devices that interact with the user by reading and controlling muscle activity. To achieve the latter, our devices are based on medical-grade signal generators and electrodes attached to the user’s skin that send electrical impulses to the user’s muscles; these impulses then cause the user’s muscles to contract. While electrical muscle stimulation (EMS) devices have been used to regenerate lost motor functions in rehabilitation medicine since the 1960s, in this dissertation, we propose a new perspective: EMS as a means for creating interactive systems. We start by presenting seven prototypes of interactive devices that we have created to illustrate several benefits of EMS. These devices form two main categories: (1) Devices that allow users eyes-free access to information by means of their proprioceptive sense, such as the value of a variable in a computer system, a tool, or a plot; (2) Devices that increase immersion in virtual reality by simulating large forces, such as wind, physical impact, or walls and heavy objects. Then, we analyze the potential of EMS to build interactive systems that miniaturize well and discuss how they leverage our proprioceptive sense as an I/O modality. We proceed by laying out the benefits and disadvantages of both EMS and mechanical haptic devices, such as exoskeletons. We conclude by sketching an outline for future research on EMS by listing open technical, ethical and philosophical questions that we left unanswered. N2 - Wie können interaktive Geräte auf unmittelbare und eng verknüpfte Weise mit dem Nutzer kommunizieren? Diese Frage beschäftigt die Forschung im Bereich Computer Interaktion seit Jahrzehnten. Besonders in den letzten Jahren haben wir miterlebt, wie Nutzer interaktive Geräte dauerhaft bei sich führen, im Falle von sogenannten Wearables sogar als Teil der Kleidung oder als Accessoires. In beiden Fällen sind die Geräte näher an den Nutzer gerückt, wodurch sie mehr Informationen vom Nutzer sammeln können und daher persönlicher erscheinen. Die Hauptfrage, die unsere Forschung antreibt, ist: Was ist der nächste logische Schritt in der Entwicklung interaktiver Geräte? Mache Wissenschaftler argumentieren, dass die Haut nicht mehr die Barriere für die nächste Generation von interaktiven Geräten sein wird, sondern dass diese direkt in den Körper der Nutzer implantiert werden. Zum Teil ist dies auch bereits passiert, wie Herzschrittmacher oder Insulinpumpen zeigen. Wir argumentieren jedoch, dass Geräte sich in Zukunft nicht zwingend innerhalb des Körpers befinden müssen, sondern sich an der richtigen „Schnittstelle“ befinden sollen, um die Funktion des Gerätes zu ermöglichen. Um diese Entwicklung voranzutreiben haben wir Geräte entwickelt, die Teile des Körpers selbst als Ein- und Ausgabe-Schnittstelle verwenden, anstatt weitere Geräte an den Körper anzubringen. In dieser Dissertation zeigen wir eine bestimmte Art dieser Geräte, nämlich solche, die Muskeln verwenden. Wir haben Ein-/Ausgabegeräte gebaut, die mit dem Nutzer interagieren indem sie Muskelaktivität erkennen und kontrollieren. Um Muskelaktivität zu kontrollieren benutzen wir Signalgeber von medizinischer Qualität, die mithilfe von auf die Haut geklebten Elektroden elektrische Signale an die Muskeln des Nutzers senden. Diese Signale bewirken dann eine Kontraktion des Muskels. Geräte zur elektrischen Muskelstimulation (EMS) werden seit den 1960er-Jahren zur Regeneration von motorischen Funktionen verwendet. In dieser Dissertation schlagen wir jedoch einen neuen Ansatz vor: elektrische Muskelstimulation als Kommunikationskanal zwischen Mensch und interaktiven Computersysteme. Zunächst stellen wir unsere sieben interaktiven Prototypen vor, welche die zahlreichen Vorteile von EMS demonstrieren. Diese Geräte können in zwei Hauptkategorien unterteilt werden: (1) Geräte, die Nutzern Zugang zu Information direkt über ihre propriozeptive Wahrnehmung geben ohne einen visuellen Reiz. Diese Informationen können zum Beispiel Variablen, Diagramme oder die Handhabung von Werkzeugen beinhalten. (2) Des Weiteren zeigen wir Geräte, welche die Immersion in virtuelle Umgebungen erhöhen indem sie physikalische Kräfte wie Wind, physischen Kontakt, Wände oder schwere Objekte, simulieren. Wir analysieren in dieser Arbeit außerdem das Potential von EMS für miniaturisierte interaktive Systeme und diskutieren, wie solche EMS Systeme die propriozeptive Wahrnehmung wirksam als Ein-/Ausgabemodalität nutzen können. Dazu stellen wir die Vor- und Nachteile von EMS und mechanisch-haptischen Geräten, wie zum Beispiel Exoskeletten, gegenüber. Zum Abschluss skizzieren wir zukünftige Richtungen in der Erforschung von interaktiven EMS Systemen, indem wir bislang offen gebliebene technische, ethische und philosophische Fragen aufzeigen. KW - electrical muscle stimulation KW - wearables KW - virtual reality KW - Wearable KW - elektrische Muskelstimulation KW - virtuelle Realität Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-421165 ER - TY - GEN A1 - Marwecki, Sebastian A1 - Wilson, Andrew D. A1 - Ofek, Eyal A1 - Franco, Mar Gonzalez A1 - Holz, Christian T1 - Mise-Unseen BT - Using Eye-Tracking to Hide Virtual Reality Scene Changes in Plain Sight T2 - UIST '19: Proceedings of the 32nd Annual ACM Symposium on User Interface Software and Technology N2 - Creating or arranging objects at runtime is needed in many virtual reality applications, but such changes are noticed when they occur inside the user's field of view. We present Mise-Unseen, a software system that applies such scene changes covertly inside the user's field of view. Mise-Unseen leverages gaze tracking to create models of user attention, intention, and spatial memory to determine if and when to inject a change. We present seven applications of Mise-Unseen to unnoticeably modify the scene within view (i) to hide that task difficulty is adapted to the user, (ii) to adapt the experience to the user's preferences, (iii) to time the use of low fidelity effects, (iv) to detect user choice for passive haptics even when lacking physical props, (v) to sustain physical locomotion despite a lack of physical space, (vi) to reduce motion sickness during virtual locomotion, and (vii) to verify user understanding during story progression. We evaluated Mise-Unseen and our applications in a user study with 15 participants and find that while gaze data indeed supports obfuscating changes inside the field of view, a change is rendered unnoticeably by using gaze in combination with common masking techniques. KW - Eye-tracking KW - virtual reality KW - change blindness KW - inattentional blindness KW - staging Y1 - 2019 SN - 978-1-4503-6816-2 U6 - https://doi.org/10.1145/3332165.3347919 SP - 777 EP - 789 PB - Association for Computing Machinery CY - New York ER - TY - JOUR A1 - Wiepke, Axel P. A1 - Miklashevsky, Alex T1 - Imaginary Worlds and Their Borders: An Opinion Article JF - Frontiers Media SA KW - imaginary world KW - fiction KW - narrative KW - embodied cognition KW - virtual reality KW - feeling of presence KW - mental simulation Y1 - 2021 U6 - https://doi.org/10.3389/fpsyg.2021.793764 SN - 1664-1078 VL - 12 SP - 1 EP - 2 PB - Frontiers Research Foundation CY - Lausanne, Schweiz ER - TY - GEN A1 - Wiepke, Axel P. A1 - Miklashevsky, Alex T1 - Imaginary Worlds and Their Borders: An Opinion Article T2 - Zweitveröffentlichungen der Universität Potsdam : Humanwissenschaftliche Reihe T3 - Zweitveröffentlichungen der Universität Potsdam : Humanwissenschaftliche Reihe - 767 KW - imaginary world KW - fiction KW - narrative KW - embodied cognition KW - virtual reality KW - feeling of presence KW - mental simulation Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-550991 SN - 1866-8364 VL - 12 SP - 1 EP - 2 PB - Universitätsverlag Potsdam CY - Potsdam ER - TY - JOUR A1 - Pawassar, Christian Matthias A1 - Tiberius, Victor T1 - Virtual reality in health care BT - Bibliometric analysis JF - JMIR Serious Games N2 - Background: Research into the application of virtual reality technology in the health care sector has rapidly increased, resulting in a large body of research that is difficult to keep up with. Objective: We will provide an overview of the annual publication numbers in this field and the most productive and influential countries, journals, and authors, as well as the most used, most co-occurring, and most recent keywords. Methods: Based on a data set of 356 publications and 20,363 citations derived from Web of Science, we conducted a bibliometric analysis using BibExcel, HistCite, and VOSviewer. Results: The strongest growth in publications occurred in 2020, accounting for 29.49% of all publications so far. The most productive countries are the United States, the United Kingdom, and Spain; the most influential countries are the United States, Canada, and the United Kingdom. The most productive journals are the Journal of Medical Internet Research (JMIR), JMIR Serious Games, and the Games for Health Journal; the most influential journals are Patient Education and Counselling, Medical Education, and Quality of Life Research. The most productive authors are Riva, del Piccolo, and Schwebel; the most influential authors are Finset, del Piccolo, and Eide. The most frequently occurring keywords other than “virtual” and “reality” are “training,” “trial,” and “patients.” The most relevant research themes are communication, education, and novel treatments; the most recent research trends are fitness and exergames. Conclusions: The analysis shows that the field has left its infant state and its specialization is advancing, with a clear focus on patient usability. KW - virtual reality KW - healthcare KW - bibliometric analysis KW - literature review KW - citation analysis KW - VR KW - usability KW - review KW - health care Y1 - 2021 U6 - https://doi.org/10.2196/32721 SN - 2291-9279 VL - 9 SP - 1 EP - 19 PB - JMIR Publications CY - Toronto, Kanada ET - 4 ER - TY - GEN A1 - Pawassar, Christian Matthias A1 - Tiberius, Victor T1 - Virtual Reality in Health Care: Bibliometric Analysis T2 - Zweitveröffentlichungen der Universität Potsdam : Wirtschafts- und Sozialwissenschaftliche Reihe N2 - Background: Research into the application of virtual reality technology in the health care sector has rapidly increased, resulting in a large body of research that is difficult to keep up with. Objective: We will provide an overview of the annual publication numbers in this field and the most productive and influential countries, journals, and authors, as well as the most used, most co-occurring, and most recent keywords. Methods: Based on a data set of 356 publications and 20,363 citations derived from Web of Science, we conducted a bibliometric analysis using BibExcel, HistCite, and VOSviewer. Results: The strongest growth in publications occurred in 2020, accounting for 29.49% of all publications so far. The most productive countries are the United States, the United Kingdom, and Spain; the most influential countries are the United States, Canada, and the United Kingdom. The most productive journals are the Journal of Medical Internet Research (JMIR), JMIR Serious Games, and the Games for Health Journal; the most influential journals are Patient Education and Counselling, Medical Education, and Quality of Life Research. The most productive authors are Riva, del Piccolo, and Schwebel; the most influential authors are Finset, del Piccolo, and Eide. The most frequently occurring keywords other than “virtual” and “reality” are “training,” “trial,” and “patients.” The most relevant research themes are communication, education, and novel treatments; the most recent research trends are fitness and exergames. Conclusions: The analysis shows that the field has left its infant state and its specialization is advancing, with a clear focus on patient usability. T3 - Zweitveröffentlichungen der Universität Potsdam : Wirtschafts- und Sozialwissenschaftliche Reihe - 148 KW - virtual reality KW - healthcare KW - bibliometric analysis KW - literature review KW - citation analysis KW - VR KW - usability KW - review KW - health care Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-550412 SN - 1867-5808 VL - 9 SP - 1 EP - 19 PB - Universitätsverlag Potsdam CY - Potsdam ET - 4 ER - TY - RPRT A1 - Zerfaß, Ansgar A1 - Stieglitz, Stefan A1 - Clausen, Sünje A1 - Ziegele, Daniel A1 - Berger, Karen T1 - Communications trend radar 2023 BT - state revival, scarcity management, unimagination, augmented workflows & parallel worlds T2 - Communication insights N2 - How do social changes, new technologies or new management trends affect communication work? A team of researchers at Leipzig University and the University of Potsdam (Germany) observed new developments in related disciplines. As a result, the five most important trends for corporate communications are identified annually and published in the Communications Trend Radar. Thus, Communications managers can identify challenges and opportunities at an early stage, take a position, address issues and make decisions. For 2023, the Communications Trend Radar identifies five key trends for corporate communications: State Revival, Scarcity Management, Unimagination, Parallel Worlds, Augemented Workflows. KW - public relation KW - trend KW - country KW - stakeholders KW - bottleneck KW - resilience KW - artificial intelligence KW - virtual reality Y1 - 2023 UR - https://hdl.handle.net/10419/270993 U6 - https://doi.org/10419/270993 SN - 2749-893X VL - 17 PB - Academic Society for Management & Communication CY - Leipzig ER -