Showing posts sorted by date for query "natural user interface". Sort by relevance Show all posts
Showing posts sorted by date for query "natural user interface". Sort by relevance Show all posts

Jul 23, 2013

Monkeying Around with Autism Assessments: Kinect-based game by Vectorform and Kaiser Permanente therapists offers a barrel of possibilities!

"The goal was to build a game that is extremely accessible, non-complex and includes simple mechanics that children with autism can quickly understand to retain their attention, prevent over-stimulation, encourage play, and prevent frustration." -Vectorform "Monkey Business" Team


I recently had the chance to visit the team at Vectorform's Royal Oak (MI) headquarters and experience a demo of one of their newest applications, a Kinect-based game developed to assist in the assessment of children with autism. The game, known as Monkey Business, was designed in collaboration with physical, occupational, and speech therapists from Kaiser Permanente, a large health care service provider in California. The project was supported by Kaiser Permanente's Innovation Fund for Technology group.

I was impressed!

As I watched the demo, it was clear that much time and attention was given to the input of the therapists at Kaiser Permanente. The avatar in the game is a friendly monkey who embodies the mannerisms of a friendly, curious child.  The artwork is visually appealing and not too busy. The sound effects relate to the interaction at hand and provide feedback to the child as they engage in various game-like tasks designed to assess visual-motor, gross motor, and basic receptive language skills.  Another good feature of this application is the simplicity of the screens designed for input of the child's information and viewing data regarding progress.

In my opinion, the Monkey Business assessment game has the potential for use in school settings, and would be enhanced if additional assessment activities are provided in the application.  Expanded activities within the Monkey Business environment could support a range of treatment, education, and related intervention efforts. In addition to supporting assessment and intervention of children with autism, the Monkey Business concept would be especially useful in working with children who have experienced a traumatic brain injury.


Below are screen shots and descriptions of a few activities from the Monkey Business game:

Lily Pad Jumping Test
In the jumping test, the child is asked to jump across a pond, from one lily pad to another.  The child is provided with a set of toy lily pads on the floor.  As the child jumps, the Kinect sensor picks up movement and displays the jumps on the screen in the form of the monkey.























Balance Beam Test
The following screen shot depicts the monkey avatar crossing a stream on a balance beam. The monkey's movements reflect the child's movements across a real balance beam in front of the Kinect sensor and a large screen display.






















Block Building Test
In the block building test, the monkey avatar encourages the child to build a tower of blocks to match the one displayed on the large screen.  The child uses real blocks, placed on a table, to build a tower while the monkey provides encouragements.  Objects other than blocks can be used, as the Kinect sensor is capable of identifying a variety of objects that can be use for building and stacking.






















Clinician Screens
The screens designed for inputting and reviewing data regarding the child are designed with simplicity and ease-of use in mind, as shown in the pictures below:












































In the present version of Monkey Business, a TV remote is used to control the application. It is possible that future versions of Monkey Business could integrated with a Smartwatch to input student information and control the activities in the application.  


Comment: As a school psychologist who works with children, teens, and young adults with autism and other significant disabilities, I know how difficult it can be to conduct assessments using traditional test materials.  If a student has difficulty interacting with unfamiliar adults, has communication challenges, or has motor difficulties, it may not be possible to administer an assessment that generates meaningful or valid results.  Even if the student is capable of completing some of the traditional test tasks, much time and effort is required on the part of the evaluator to sustain their interest, effort, and attention.   

To get a better picture of a student's emerging skills, I use interactive multimedia applications during my assessments of children with autism.  Newer technologies such as interactive whiteboards, larger touch-screen monitors, and tablets have proven to be useful tools in assessment.   A significant drawback to my approach is that it is cobbled together and might be difficult to replicate by other evaluation teams.  I see a growing need for a range of technologically-enhanced tools for assessment, including applications that offer opportunities for playful engagement.  Monkey Business holds potential to fill the bill.

What next?

I'd like to share some stories about the people who make things come to life at Vectorform. During my visit, I learned that they are involved in a number of projects related to health care and are always brainstorming new ways to harness technology for their various clients.  

Over the past several years, I've followed Vectorform's journey as they've jumped off of the desktop and transformed from web-developers to Post-WIMP explorers of natural user interfaces and interaction.  The most recent area of exploration is Google Glass. 

Intrigued by Google Glass?  So am I.  

During my visit to Vectorform, I had a chance to see the world - or rather Vectorform's basement conference room - through Google Glass.  As soon as I put them on I was flooded with ideas, and will expand on my ideas, and those of others, in future posts.

In the meantime, take the time to read an excellent post by Kevin Foreman, Vectorform's Director of Product Vision.  In "The Glass Experience", Kevin provides an in-depth reflection of his experience wearing Google Glass throughout his daily routine.  He also explains the inner workings of the hardware, the strengths and limitations of the Glass system, details about the user interface, the "on-board" accessories, and a few comments about what it is like to be a new Glass-wearing celebrity.


RELATED
Here are just three of the innovators I met during my recent visit to Vectorform, left to right: Jennifer Tonio, Marketing Manager, Kevin Foreman, Director of Product Vision, and Patric Samona, Director of Health Solutions.


















Below are a few links related to the use of games for the assessment and intervention of autism, along with links to information about the use of games and emerging technologies for rehabilitation, health care and health promotion:





Microsoft Kinect and Autism (SlideShare) Susan McCarthy, Little Angel's School 2/09/13


Italian Team Uses the Kinect to Treat Autistic Children Andrea Lorini, Epoch Times, 12/13/12

Microsoft Surface Multi-touch Application for Pediatric Neuropsychology Assessment (Featuring Vectorform) Lynn Marentette, TechPsych Blog, 8/26/09   



Xbox One, Kinect 2.0 and the future of health technology Marcelo Calbucci, Mobihealth News, 5/26/13



Accessible Games for Health and K-12 Education: Lessons from the Classroom (SlideShare) Lynn Marentette, 5/9/08, Games for Health Conference Presentation

Researchers: Microsoft Kinect is a Money-Saving Telemedicine Device Gabriel Perna, Healthcare Informatics, 2/15/13

Lowes, LP., Alfano LN, Yetter BA, Worthen-CHaudhari, L, Hinchman W, Samona P, Flanigan KM, Mendell JR Proof of Concept of the Ability of the Kinect to Quantify Upper Extremity Function in Dystrophinopathy
PLoS Curr. 2013 Mar 14; 5   doi:  10.1371/currents.md.9ab5d872bbb944c6035c9f9bfd314ee2

Jun 6, 2013

Interactive Displays and "Billboards" in Public Spaces; Pervasive Displays 2013

The 2013 International Symposium on Pervasive Displays (PerDis 2013), recently convened  in Mountain View, California.  Since I couldn't attend this conference, I was happy to learn from Albrecht Schmidt that the conference proceedings were recently uploaded to the ACM Digital library.  There are many exciting things going on in this interdisciplinary field!

Researchers involved with the Instant Places project, described in the video below, presented their work at PerDis 2013. The Instant Places project was part of PD-Net, a series of research efforts exploring the future of pervasive display networks in Europe. (See the "Related" section for additional references and links.)


Instant Places: Tools and Practices for Situated Publication in Display Networks

Below is information from the Instant Places video and website:
"The video describes a novel screen media system that explores new practices for individual publication and identity projection in public digital displays." 

"Instant Places has been developed by the Ubicomp group of the Information Systems Department, at the University of Minho, and has been funded within the scope of pd-net: Towards Future Pervasive Display Networks, by the European Union Seventh Framework Programme (FP7/2007-2013) under grant agreement no. 244011."

Saul Greenberg was the keynote speaker at PerDis 2013.  His keynote, "Proxemic Interactions: Displays and Devices that Respond to Social Distance", highlights how far off-the-desktop our digital/physical lives have become, and how this has influenced recent research in human-computer interaction. Saul is a professor at the University of Calgary and leads research in Human Computer Interaction, Computer Supported Cooperative Work, and Ubiquitous Computing.

Although the video of Saul Greenberg's presentation below is not from PerDis 2013, it touches on the same topics and is worth taking an hour to watch.  In this video, Greenberg presents an overview of the history of human-computer interaction. He also offers up a discussion how an understanding social theory, perception of spatial relationships, and embodied interaction can be applied to the design of natural user interfaces and interactive systems.  Useful examples of interaction design explorations, within an ecological context, are provided later in the video.

Proxemic Interactions: the New Ubicomp?




RELATED


My Backstory
Regular readers of this blog know that to subject interactive displays in public spaces holds my interest. When I was taking computer courses during the mid 2000s, I focused some of my energy on projects designed for large interactive displays, inspired by reading articles like "Physically Large Displays Improve Performance on Spatial Tasks" (Desney S. Tan, Darren Gergle, Peter Scupelli, and Randy Pausch) and "Dynamo: public interactive surface supporting the cooperative sharing and exchange of media(Shahram Izadi, Harry Brignull, Tom Rodden, Yvonne Rogers, Mia Underwood).  

Jeff Han's 2006 TED talk was another inspiration. I remember my excitement as watched his demonstration of an interactive multi-touch touch screen the size of a drafting board, before the iPhone/iPad was born.  Another inspiration was Hans Rosling's TED Talk  about health statistics, with his animated interactive data visualizations presented on a huge screen.

The following year, I stumbled upon the  NUI-Group while searching for information about multi-touch displays, and was inspired by many of the early members of the group.  I also became acquainted with a world-wide network of people who share similar interests, such as Albrecht Schmidt and his team of researchers at the Unversity of Stuttgart. This busy group recently presented at PerDis 2013 and at CHI 2013 and are involved in a wider range of ongoing projects.

INTERACTIVE DISPLAYS
Alt, F. Sahami, A., Kubitza, T., Schmidt, A.  Interaction Techniques for Creating and Exchanging Content with Public Displays. In: Proceedings of the 2013 ACM Annual Conference on Human Factors in Computing Systems 
Hinrichs, U., Carependale, S., Valkanova, N., Kulkkaniemi, K., Jacucci, G., Moer, A.V., Interactive Public Displays   Computer Graphics, Vol. 33(2) IEEE Computer Society (25-27)
PerDis 2013 Program
Sample Papers:
Otero, N., Muller, M., Alissandrakis, A., and Milrad, M. Exploring video-based interactions around digital public displays to foster curiosity about science in the schools. PerDis 2013 (pdf)
Alt, F., Schneegass, S., Girgis, M., Schmidt, A. Cognitive Effects of Interactive Public Display Applications. Proceedings of the 2nd ACM International Symposium on Pervasive Displays. 2013
Langeinrich, M., Schmidt, A., Davies, N., and Jose, R.  A practical framework for ethics: the 

Note:  Members of ACM have access to all of the proceedings of PerDis2013 in the ACM Digital Library. Non-members have access to the abstracts.

PD-NET
PD-net approach to supporting ethics compliance in public display studies. Proceedings of the 2nd ACM International Symposium on Pervasive Displays. 139-143
PD-Net 
PD-NET Publications - a great reference list, with links to many papers
Reading List on Pervasive Public Displays
About Instant Places
About the Living Lab for Screens Set

DOOH-DIGITAL OUT-OF-HOME
Daily Digital Out of Home post "Billboards That Look Back" : Could miniature cameras embedded in ads lead to Big Brother at the mall? The World Is My Interactive Interface, 5/28/08
J. Müller et al., "Looking Glass: A Field Study on Noticing Interactivity on a Shop Window," Proc. 2012 SIGCHI Conf. Human Factors in Computing Systems (CHI 12), ACM, 2012, pp. 297–306
Michelis, D., Meckel, M. Why Do We Want to Interact With Electronic Billboards in Public Space?  First Workshop on Pervasive Advertising, Pervasive 2009, 5/11/09
The Rage of Interactive Billboards
The Print Innovator, 11/28/12
10 Brilliant Interactive Billboards (Videos)
Amy-Mae Elliot, Mashable, 8/21/11


SOME INTERESTING EARLIER WORK
Jeff Han's 2006 TED Talk (This is worth revisiting, as it came out before the iPhone, iPad, etc.)


Tan, D.S., Gergle, D, Scupelli, P., Pauch, R. Physically large displays improve performance on spatial tasks. ACM Transactions on Computer-Human Interaction, V13(1) 2006 (71-99)

Revisiting promising projects: Dynamo an application for sharing information on large interactive displays in public spaces (blog post)
Lynn Marentette, Interactive Multimedia Technology, 09/16/07

Brignull, H., Izadi, S., Fitzpatrick, G., Rogers, Y., Rodden,  T. The introduction of a shared interactive surface into a communal space. Proceedings of the 2004 ACM conference on Computer supported cooperative work (CSCW'04), Chicago, ACM Press, 2004 (pdf)


Izadi, S., Brignull, H., Rodden, T., Rogers, Y. and Underwood,M. Dynamo: public interactive surface supporting the cooperative sharing and exchange of media. In Proc. User
Interfaces and Software Technologies (UIST’03), Vancouver, ACM Press, 2003, 159-168. (pdf)

Proxemics (Wikipedia)


Why Do We Want to Interact With Electronic Billboards in Public Space? 


Mar 11, 2013

Leap Motion: My Dev Kit Arrived - Now What?! Thoughts About "NUI" Child-Computer-Tech-Interaction - and More



My Leap Motion developer kit arrived last week. I carefully unboxed the small device and tried out the demo apps that came with the SDK.  I'm doing more looking than leaping at this point.

I'd like to create a simple cause-and-effect music, art and movement application for my 2-year-old grandson, knowing that he'll be turning three near the end of this year.  It would be nice if my app could provide young children with enough scaffolding to support gameplay and learning over a few years of development.

Now that I'm a grandmother, I've spent some time thinking about what the evolution of NUI will mean for young children like my grandson.   Family and friends captured his first moments after birth with iPhones, and shared across the Internet.  Born into the iWorld, he knows how to use an iPad or smart phone to view his earlier digital self on YouTube, without ever touching a mouse or a physical keyboard.

The little guy is pretty creative in his method of interacting with technology, as I've informally documented on video.   He was seven months old when he first encountered my first iPad.  It was fingers-and-toes interaction from the start.  

In the first picture below,  he's playing with NodeBeat.  In the second picture, he's 27 months old, experimenting with hand and foot interaction, on a variety of apps.




















My grandson is new to motion control applications, so I'm just beginning to learn what he likes,  and what he is capable of doing.  A couple of weeks ago, we played River Rush, from the Kinect Adventures game. He loved jumping up and down as he tried to hit the adventure pins. Most of the time, he kept jumping right out of the raft!  (I think next time we'll try Kinect Sesame Street TVor revisit Kinectimals.)  


One of the steps I'm taking to prepare for my Leap Motion adventure is take a look at what people have done with it so far.  There are at least 12,000 developer kits released, so hopefully there will be some interesting apps to go along with the retail version of Leap Motion when it is released at Best Buy on May 19th of this year.

One app I really like is  Adam Somer's AirHarp, featured in the video clip below:


I also like the idea behing the following app, developed by undergraduate students:

Social Sign: Multi-User sign language gesture translator using the Leap Motion Controller (git.to/socialSign)
 
"Built at the PennApps Spring 2013 hackathon, Social Sign is a friendly tool for learning sign language! By using the Leap Motion device, the BadApples team implemented a rudimentary machine learning algorithm to track and identify American Sign Language from a user's hand gestures."

"Social Sign visualizes these hand gestures and broadcasts them in textual and visual representations to other signers in a signing room. In a standard chat room fashion, the interface permits written communication but with the benefit of enhanced learning in mind. It's all about learning a new way to communicate."-BadApples Team



There are a few NUI-focused tech companies that have experimented with Leap Motion. Today, I received a link to the following videoclip Joanna Taccone, of Intuilab, featuring their most recent work:
Gesture recognition with Leap Motion using IntuiFace Presentation

"Preview of our work with the Leap Motion controller. In the same spirit as our support for Microsoft Kinect, we have encoded true gesture support, not just mouse emulation, for the creation of interactive applications by non-programmers. The goal is to hide complexity from designers using our product, IntuiFace Presentation (IP). Through the use of IP's trigger/action syntax, designers simply select a gesture as a trigger - Swipe Left, Swipe Right, Point, etc. - and associate that gesture with an action like "turn the page" or "rotate the carousel". As you can see in this video, it works quite well. :-) We will offer Leap support as soon as it ships." -IntuiLab



Below is a demonstration of guys playing Drop Cord, a collaboration between Leap Motion and Double Fine.  From the video, you can tell that they had a blast!  

Here is an excerpt from the chatter:  "The thing is that everyone just looks cool..Yeah, I know, it doesn't matter what you are doing...it's got the right amount of speed-up-slow-down stutter-y stuff...it is like a blend of art and science.."

According to the website, Drop Chord is a "A music-driven score challenge game for the Leap Motion controller, coming soon for PC, Mac, & IOS from the creators of Kinect Party.."  

The following video is a demonstration of the use of Leap Motion to control an avatar and other interaction in Second Life:



Below are a few more videos featuring Leap Motion:


Control Your Computer With a Chopstick: Leap Motion Hands On (Mashable)


The Leap Motion Experience at SXSW 2013


LEAP Motion demo: Visualizer, Windows 8, Fruit Ninja, and More...



RELATED
Air Harp for Leap Motion, Responsive Interaction
Leap Motion and Double Fine team on Dropchord, give air guitar skills an outlet
John Fingas, Engadget, 3/7/13
Leap Motion Controller Set To Ship May 13 for Global Pre-Orders, In Best Buy Stores May 19.
Hands on With Leap Motion's Controller
Lance Ulanoff, Mashable, 3/10/13
Leap Motion website
Social Sign
IntuiLab
Leap Motion: Low Cost Gesture Control for Your Computer Display

SOMEWHAT RELATED
Kinect for Windows Academic: Kaplan Early Learning
"3 years & up. Hands-on play with a purpose -- the next generation way. This unique learning tool uses your body as the game controller making it a great opportunity to combine active play and learning all in one. Use any surface to actively engage kinesthetic, visual, and audio learners. Bundle includes the following software: Word Pop, Directions, Patterns, and Shapes."

Comment:
I've been an enthusiastic supporter of natural-user interfaces and interaction for years - back in 2007 I worked on touch-screen applications for large displays as a graduate student, and became an early member of the NUI group.  I'm also a school psychologist, and from my experience, I understand how NUI-based applications and technologies, such as interactive whiteboards and touch-tablets, such as the iPad can support the learning, communication, and leisure needs of students who have significant special needs.   It looks like Leap Motion and similar technologies have the potential to support a wide range of applications that target special populations, of all ages.