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Showing posts with label ultrahaptics. Show all posts
Showing posts with label ultrahaptics. Show all posts

Monday, April 20, 2015


 Human-Computer Interation
Human emotion can be transferred by technology that stimulates different parts of the hand without making physical contact with your body, according to a new study.





Human emotion can be transferred by technology that stimulates different parts of the hand without making physical contact with your body, a University of Sussex-led study has shown.

Sussex scientist Dr. Marianna Obrist, Lecturer at the Department of Informatics, has pinpointed how next-generation technologies can stimulate different areas of the hand to convey feelings of, for example, happiness, sadness, excitement or fear.

For example, short, sharp bursts of air to the area around the thumb, index finger and middle part of the palm generate excitement, whereas sad feelings are created by slow and moderate stimulation of the outer palm and the area around the ‘pinky’ finger.

The findings, which will be presented at the CHI 2015 conference in South Korea, provide “huge potential” for new innovations in human communication, according to Dr Obrist.

According to Obrist, "Imagine a couple that has just had a fight before going to work. While she is in a meeting she receives a gentle sensation transmitted through her bracelet on the right part of her hand moving into the middle of the palm. That sensation comforts her and indicates that her partner is not angry anymore.

“These sensations were generated in our experiment using the Ultrahaptics system.

“A similar technology could be used between parent and baby, or to enrich audio-visual communication in long-distance relationships.

“It also has huge potential for ‘one-to-many’ communication – for example, dancers at a club could raise their hands to receive haptic stimulation that enhances feelings of excitement and stability.”

Using the Ultrahaptics system – which enables creating sensations of touch through air to stimulate different parts of the hand – one group of participants in the study was asked to create patterns to describe the emotions evoked by five separate images: calm scenery with trees, white-water rafting, a graveyard, a car on fire, and a wall clock. The participants were able to manipulate the position, direction, frequency, intensity and duration of the stimulations.

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A second group then selected the stimulations created by the first group that they felt best described the emotions evoked by the images. They chose the best two for each image, making a total of 10.

Finally, a third group experienced all 10 selected stimulations while viewing each image in turn and rated how well each stimulation described the emotion evoked by each image.

The third group gave significantly higher ratings to stimulations when they were presented together with the image they were intended for, proving that the emotional meaning had been successfully communicated between the first and third groups.

Now Obrist has been awarded £1 million by the European Research Council for a five-year project to expand the research into taste and smell, as well as touch.

The SenseX project will aim to provide a multisensory framework for inventors and innovators to design richer technological experiences.

Obrist said, “Relatively soon, we may be able to realise truly compelling and multi-faceted media experiences, such as 9-dimensional TV, or computer games that evoke emotions through taste.

“Longer term, we will be exploring how multi-sensory experiences can benefit people with sensory impairments, including those that are widely neglected in Human-Computer Interaction research, such as a taste disorder.”



SOURCE  University of Sussex

By 33rd SquareEmbed

Thursday, October 17, 2013


 Computer Interfaces
Prototype 'ultrahaptic' technology developed at the University of Bristol allows users to feel when they control their computers with mid-air hand movements.




Researchers at the University of Bristol have demonstrated a mid-air tactile feedback prototype system that allows people to interact with computer interfaces by touching invisible fields in the air above them while performing gestures.

UltraHaptics allows people interacting with a screen to feel what is displayed and also receive invisible information before touching it.

The technology works through the use of acoustic radiation force, projected through ultrasonic transducers. These emit very high frequency sound waves which when they meet mid-air, create a sensation on a person's skin.

UltraHaptic interface prototype

By combining several waves, the researchers were able to create multiple points of tactile feedback with different properties that can be distinguished by users.

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One of the researchers working on the UltraHaptics project, PhD student Tom Carter, said current multi-touch systems with integrated interactive surfaces allow users to use them with their bare hands, but people cannot feel what is on the screen.

The researchers aimed to build in haptic feedback into existing interactive surfaces without sacrificing their ease of use and accessibility.

"To achieve this, we have designed a system with an ultrasound transducer array positioned beneath an acoustically transparent display," Carter said.  The team also used a Leap Motion sensor to capture the user's hand motions and position.

"This arrangement allows the projection of focused ultrasound through the interactive surface and directly onto the users' bare hands. By creating multiple simultaneous feedback points, and giving them individual tactile properties, users can receive localized feedback associated to their actions."



SOURCE  The Guardian

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