simon mercer, microsoft, pour la journée e-health 2013

42

Upload: thearkvalais

Post on 07-Nov-2014

468 views

Category:

Health & Medicine


1 download

DESCRIPTION

 

TRANSCRIPT

Page 1: Simon Mercer, Microsoft, pour la journée e-health 2013
Page 2: Simon Mercer, Microsoft, pour la journée e-health 2013
Page 3: Simon Mercer, Microsoft, pour la journée e-health 2013

••

••

••

••

••

••

Page 4: Simon Mercer, Microsoft, pour la journée e-health 2013

Expand the

state of the art

across the

breadth

of computing

Rapidly

transfer

innovative

technologies

into

Microsoft

products

Ensure that

Microsoft

products have a

future

Page 5: Simon Mercer, Microsoft, pour la journée e-health 2013

Microsoft Research Global Presence

INDIA

Fuse Labs

XCG

Research Connections

Station Q

SILICON VALLEY NEW YORK CITY

ATL Europe ATL Israel

ATL Cairo

ASIA

CAMBRIDGE REDMOND

NEW ENGLAND

Page 6: Simon Mercer, Microsoft, pour la journée e-health 2013

Page 7: Simon Mercer, Microsoft, pour la journée e-health 2013
Page 8: Simon Mercer, Microsoft, pour la journée e-health 2013

The SenseCam project

Prototype (2003) Research product (2009) Product (2012)

Page 9: Simon Mercer, Microsoft, pour la journée e-health 2013

INTERACTIVE IDENTITY BADGE Norman Pohl, Steve Hodges, John Helmes, Nic Villar, Tim

Paek

Belt-worn identity badge with embedded LCD display

that senses movement of retractable string attachment to

allow lightweight, single-hand access to information.

OMNITOUCH Chris Harrison, Hrvoje Benko, Andy Wilson

Uses a camera/projector system mounted on

the shoulder to seamlessly appropriate

surfaces around the user as interactive

displays. MOODWINGS Asta Roseway, Paul Johns, Patrick Therien, Mary

Czerwinski

Takes input from affective monitoring devices and

physically actuates butterfly wings to signify moods

such as stress or happiness.

BIONIC CONTACT LENS Babak Parviz, Brian Otis, Desney Tan, et al.

Uses electronics embedded in a contact lens to project a

virtual display directly on the retina. Can also measure

chemical content in the tears (e.g. to continuously sense

glucose levels). MOUTH-COMPUTER INTERFACE Scott Saponas, Desney Tan, Daniel Kelley, Babak

Parviz

Uses optical sensors built into a dental retainer to

measure tongue gestures for interaction and

potentially for correcting speech impediments.

HUMANTENNA Gabe Cohn, Dan Morris, Shwetak Patel, Desney Tan, et

al.

Uses static electric field sensing and body as antenna

to detect when user has touched walls and to infer

whole body gestures, all with zero environmental

instrumentation.

MUSCLE-COMPUTER INTERFACE Scott Saponas, Dan Morris, Desney Tan, et al.

Uses electromyography (EMG) to sense

muscular activity on forearm and infer finger

gestures without instrumenting hand or wrist.

SKINPUT Chris Harrison, Dan Morris, Desney Tan

Uses bio-acoustic sensing to localize finger

taps on the skin. Augmented with a pico-

projector, can provide direct manipulation,

graphical user interface on the hand, arm, or

body.

ARMBAND COMMUNICATION Ran Gilad-Bachrach, Gerald DeJean, Trang Thai, Asta

Roseway

Uses electric fields to turn arm into confined

communication channel that does not require wire. Can

also allow secure communication between people when

they touch.

DIGITS David Kim, Otmar Hilliges, Shahram Izadi, et al.

Uses infrared illumination/camera system on wrist,

coupled with biomechanical model of hand, to sense

and reconstruct high-resolution finger gestures.

Wearables @

SEPTIMU Guobin Shen, Feng Zhao, John Stankovic, et al.

Uses an IMU, IR sensor, and microphone embedded in

earphones to detect heart rate, activity level, head

gestures, and context. Can be used to control games or

music playback.

SENSECAM Steve Hodges, Ken Wood, Abi Sellen, et al.

Wearable camera that automatically captures

photos. Useful in aiding people with memory loss,

logging dietary intake, measuring environmental

context, etc.

Page 10: Simon Mercer, Microsoft, pour la journée e-health 2013

••

Build your own device: .NET Gadgeteer

Page 11: Simon Mercer, Microsoft, pour la journée e-health 2013

Modular Hardware

Software Tools

Physical Design

The .NET Gadgeteer Platform

Page 12: Simon Mercer, Microsoft, pour la journée e-health 2013

Modular Hardware

Software Tools

Physical Design

The .NET Gadgeteer Platform

Page 13: Simon Mercer, Microsoft, pour la journée e-health 2013

Modular hardware: mainboards

Page 14: Simon Mercer, Microsoft, pour la journée e-health 2013

Modules: sensors

Page 15: Simon Mercer, Microsoft, pour la journée e-health 2013

Modules: communication

Page 16: Simon Mercer, Microsoft, pour la journée e-health 2013

Modules: display and user input

Page 17: Simon Mercer, Microsoft, pour la journée e-health 2013

Modules: power and actuation

Page 18: Simon Mercer, Microsoft, pour la journée e-health 2013

Modules: storage and audio

Page 19: Simon Mercer, Microsoft, pour la journée e-health 2013

Modules: extensibility

Page 20: Simon Mercer, Microsoft, pour la journée e-health 2013

Sockets have types, which specify their electronic interface capabilities

Page 21: Simon Mercer, Microsoft, pour la journée e-health 2013

Connecting a module to a mainboard

Page 22: Simon Mercer, Microsoft, pour la journée e-health 2013

Modular Hardware

Software Tools

Physical Design

The .NET Gadgeteer Platform

Page 23: Simon Mercer, Microsoft, pour la journée e-health 2013

Based on the .NET Micro Framework: Subset of .NET

Programming in C# and Visual Basic

Interactive debugging

.NET Gadgeteer adds: Gadgeteer Core Libraries

Visual Studio Graphical Designer

Framework for mainboard and module drivers

Software tools

Page 24: Simon Mercer, Microsoft, pour la journée e-health 2013

Starting a new .NET Gadgeteer project

Page 25: Simon Mercer, Microsoft, pour la journée e-health 2013
Page 26: Simon Mercer, Microsoft, pour la journée e-health 2013

Modular Hardware

Software Tools

Physical Design

The .NET Gadgeteer Platform

Page 27: Simon Mercer, Microsoft, pour la journée e-health 2013

Laser-cut enclosure (arcade game)

Page 28: Simon Mercer, Microsoft, pour la journée e-health 2013

3D-printed enclosure

Page 30: Simon Mercer, Microsoft, pour la journée e-health 2013
Page 31: Simon Mercer, Microsoft, pour la journée e-health 2013

Identifying Genetic Causes of Disease

Page 32: Simon Mercer, Microsoft, pour la journée e-health 2013

A A A A

A A T A A A A A

T T

T T T T

T T T T

T

T

T A A

A A A

A A

A

A

A

A A

A A

A

Page 33: Simon Mercer, Microsoft, pour la journée e-health 2013

Factored Spectrally Transformed Linear Mixed Models

nature | methods September 2011

nature | methods June 2012

FaST-LMM

previous

state of

the art

Page 34: Simon Mercer, Microsoft, pour la journée e-health 2013

••

••

http://snap.cs.berkeley.edu/

Page 35: Simon Mercer, Microsoft, pour la journée e-health 2013

•• http://bio.codeplex.com

Page 36: Simon Mercer, Microsoft, pour la journée e-health 2013
Page 37: Simon Mercer, Microsoft, pour la journée e-health 2013

••

••

Acquisition Annotation Collaboration

Page 38: Simon Mercer, Microsoft, pour la journée e-health 2013

•http://research.microsoft.com/medimaging

Acquisition Annotation Collaboration

Page 39: Simon Mercer, Microsoft, pour la journée e-health 2013

••

••

•http://research.microsoft.com/medimaging

Acquisition Annotation Collaboration

Page 40: Simon Mercer, Microsoft, pour la journée e-health 2013

Questions?

Page 41: Simon Mercer, Microsoft, pour la journée e-health 2013
Page 42: Simon Mercer, Microsoft, pour la journée e-health 2013