• Contactless electrostatic piloerection for haptic sensations 

      Iriarte Cárdenas, Naroa; Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Elizondo Martínez, Sonia; Irisarri Erviti, Josu; Hemmerling, Daria; Ortiz Nicolás, Amalia; Marzo Pérez, Asier Upna Orcid (IEEE, 2023)   Artículo / Artikulua  OpenAccess
      In this project, we create artificial piloerection using contactless electrostatics to induce tactile sensations in a contactless way. Firstly, we design various high-voltage generators and evaluate them in terms of their ...
    • Content adaptation and depth perception in an affordable multi-view display 

      Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Arregui Roldán, Adriana; Ardaiz Villanueva, Óscar Upna Orcid; Ortiz, Amalia; Marzo Pérez, Asier Upna Orcid (MDPI, 2020)   Artículo / Artikulua  OpenAccess
      We present SliceView, a simple and inexpensive multi-view display made with multiple parallel translucent sheets that sit on top of a regular monitor; each sheet reflects different 2D images that are perceived cumulatively. ...
    • Enhancing the quality of amplitude patterns using time-multiplexed virtual acoustic fields 

      Elizondo Martínez, Sonia; Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Goñi Carnicero, Jaime Upna; Galar Idoate, Mikel Upna Orcid; Marzo Pérez, Asier Upna Orcid (American Institute of Physics, 2023)   Artículo / Artikulua  OpenAccess
      Ultrasonic fields can push and levitate particles, heat up materials, induce contactless tactile stimuli, or affect the blood-brain barrier. Current phased-arrays can create dynamic amplitude patterns, but their quality ...
    • Generating airborne ultrasonic amplitude patterns using an open hardware phased array 

      Morales González, Rafael; Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Irisarri Erviti, Josu; Andrade, Marco A.B.; Marzo Pérez, Asier Upna Orcid (MDPI, 2021)   Artículo / Artikulua  OpenAccess
      Holographic methods from optics can be adapted to acoustics for enabling novel applications in particle manipulation or patterning by generating dynamic custom-tailored acoustic fields. Here, we present three contributions ...
    • Hand-as-a-prop: using the hand as a haptic proxy for manipulation in virtual reality 

      Marichal Baráibar, Sebastián Roberto; Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Morales González, Rafael; Ortiz Nicolás, Amalia; Marzo Pérez, Asier Upna Orcid; Ardaiz Villanueva, Óscar Upna Orcid (Springer, 2023)   Artículo / Artikulua  OpenAccess
      Haptic feedback can be almost as important as visual information in virtual reality environments. On the one hand, in Active Haptic Feedback, specialized devices such as vibrotactile gloves are employed; however, these ...
    • Interactions with digital mountains: tangible, immersive and touch interactive virtual reality 

      Ardaiz Villanueva, Óscar Upna Orcid; Marzo Pérez, Asier Upna Orcid; Baztán Larrea, Rubén Upna; Ezcurdia Aguirre, Íñigo Fermín Upna Orcid (Association for Computing Machinery (ACM), 2020)   Contribución a congreso / Biltzarrerako ekarpena  OpenAccess
      Digitization of Earth mountains and terrains has facilitated to plan journeys, manage natural resources, and learn about the Earth from the comfort of our homes. We aim to develop new interactions on digital mountains with ...
    • LeviPrint: contactless additive manufacturing using acoustic levitation with position and orientation control of elongated parts 

      Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Morales González, Rafael; Marzo Pérez, Asier Upna Orcid (2021)   Contribución a congreso / Biltzarrerako ekarpena  OpenAccess
      LeviPrint assembles small objects in a contactless way using ultrasonic phased-arrays and optimization algorithms. We explore a set of methods that enables 6 Degrees-of-Freedom (DoF) control of elongated bodies. We then ...
    • Microfluidic platform using focused ultrasound passing through hydrophobic meshes with jump availability 

      Koroyasu, Yusuke; Nguyen, Thanh-Vinh; Sasaguri, Shun; Marzo Pérez, Asier Upna Orcid; Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Nagata, Yuuya; Yamamoto, Tatsuya; Nomura, Nobuhiko; Hoshi, Takayuki; Ochiai, Yoichi; Fushimi, Tatsuki (Oxford University Press, 2023)   Artículo / Artikulua  OpenAccess
      Applications in chemistry, biology, medicine, and engineering require the large-scale manipulation of a wide range of chemicals, samples, and specimens. To achieve maximum efficiency, parallel control of microlitre droplets ...
    • Mid-air contactless haptics to augment VR experiences 

      Ezcurdia Aguirre, Íñigo Fermín Upna Orcid; Fernández Ortega, Unai Javier; Olaz Moratinos, Xabier; Marzo Pérez, Asier Upna Orcid (Association for Computing Machinery, 2023)   Contribución a congreso / Biltzarrerako ekarpena  OpenAccess
      We present four technologies to deliver contactless haptic stimuli for enriching Virtual Reality (VR) experiences. The technologies are electrostatic piloerection, focused light-induced heat, electric plasma, and ultrasound; ...
    • Optimization of acoustic fields: advances towards its use for matter manipulation and contactless fabrication 

      Ezcurdia Aguirre, Íñigo Fermín Upna Orcid (2023)   Tesis doctoral / Doktoretza tesia  OpenAccess
      Los campos de presión acústica son capaces de modelar y levitar partículas de una amplia gama de materiales y tamaños a través del aire, el agua o el tejido biológico. Esto tiene aplicaciones en cristalografía, manipulación ...
    • Volumetric reach-through displays for direct manipulation of 3D content 

      Ezcurdia Aguirre, Íñigo Fermín Upna Orcid (ACM, 2020)   Contribución a congreso / Biltzarrerako ekarpena  OpenAccess
      In my PhD, I aim at developing a reach-through volumetric display where points of light are emitted from each 3d position of the display volume, and yet it allows people to introduce theirs hands inside to directly interact ...

      El Repositorio ha recibido la ayuda de la Fundación Española para la Ciencia y la Tecnología para la realización de actividades en el ámbito del fomento de la investigación científica de excelencia, en la Línea 2. Repositorios institucionales (convocatoria 2020-2021).
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