

Designing a better onboarding experience for an AI symptom checker at clinics
Enabling doctors to spend less time on paperwork and more on patient care.
D4V is a Tokyo-based early stage Venture Capital in partnership with IDEO. Two years ago, D4V invested in healthcare startup Ubie, which develops a service called AI Monshin Ubie. The digital service was created with the goal of reducing the burden on healthcare professionals working long hours, under harsh conditions. AI Monshin Ubie automates a number of patient registration and documentation processes through digital tools, enabling doctors to spend less of their time on manual paperwork, and to dedicate their valuable skills and attention to the patients themselves. Currently, the service is installed in 200 medical institutions in 41 prefectures across Japan.
With AI Monshin Ubie, patients fill out preliminary forms on a tablet, rather than paper, entering information about their health history and current symptoms directly into their digital medical record. As patients fill out the questionnaire, the Ubie AI generates questions in real-time according to patients’ responses, which results in more appropriate and accurate data. The patient’s responses are automatically formatted for the doctor to review prior to and during the consultation. As a result, doctor consultation times and facility operation times are drastically reduced.
With the Coronavirus raising fears of a possible health system breakdown, Ubie has made improvements to anticipate and possibly prevent in-hospital infections. Until recently, Ubie’s services have been primarily used by large hospitals; but in light of the global health crisis, Ubie approached D4V—who partners with IDEO—to help rethink the onboarding experience and quickly facilitate the introduction of AI Monshin Ubie in regional clinics across Japan. D4V and IDEO have been working with Ubie for many years to collaborate in various areas, including UX, rebranding, international research, and more. Therefore, they had a foundation of knowledge from which to build these new features.
Typically, AI Monshin Ubie has been introduced to new hospital clients through direct, in-depth instructional visits from Ubie sales staff. This approach has worked well for rolling out the product to Japan’s 8,000 large hospitals; but for the 100,000 smaller clinics, Ubie needed a more efficient onboarding method to enable staff to get set up smoothly and independently.
During research, D4V and IDEO team members engaged with many different clinic staff members, including full-time doctors, part-time doctors, nurses and receptionists. The researchers found that staff tend to react skeptically to new tools and services, with a common preconception that they will add to their workload. One clinic director’s first impression of AI Monshin Ubie was, “It looks complicated.” But once he actually used the service, he realized that it was very user-friendly.
The team quickly understood that it was important to remove preconceptions by clearly communicating Ubie’s benefits and ease of use. They created a two-minute animation and designed three separate guidebooks. The animation adopted a friendly tone and expressed empathy for doctors, staff members and patients, highlighting how Ubie can bring benefits to each of them. The animation showed how Ubie fits into the existing workflow and explained complex systems in a straightforward and accessible way.
WATCH: A short video clip explains the benefit of their product and service to avoid the users’ concerns in advance.
The guidebook for doctors and directors explains how Ubie’s AI smooths the patient consultation experience and greatly improves the quality of medical care. It also introduces concrete how-tos around set-up, implementation, and ideal workflow. FAQs were also included, addressing concerns about whether or not elderly people would be able to use it.
Ubie business development leader Kenji Yamada says, “D4V and IDEO have a deep understanding not only of design, but of our entire business. They provide inspiration by bringing experience and knowledge that comes from working with other industries and clients outside of healthcare. We appreciate that they can share the knowledge that they’ve obtained with our business.”


Read the Japanese-language version of the Ubie case study here.
When You Feel Unwell, Ask Ubie: Check your symptoms for free
Learn more about Ubie: Global Company Website


An improved airway intubation system that helps physicians save more lives
The GlideScope Core offers elevated visibility and a seamless workflow for intubation, allowing doctors to better conduct routine procedures and respond to health crises.
In the emergency room, an intervention that’s administered too slowly could cost a patient their life. With COVID-19 fueling a surge in acute respiratory conditions, intubation—a procedure that involves inserting a tube through the mouth or nose and into the airway—is more common than ever. For patients struggling to breathe, the tube can be connected to a ventilator that pumps oxygen to the lungs, keeping them alive.
While a laser-focus on the present is critical for successful patient outcomes, hospitals and physicians often don’t have time to look ahead and anticipate the future of the operating room experience. As technology rapidly improves, there is a ripe opportunity and pressing need to evolve medical equipment to be more innovative and intuitive. Verathon Medical, a global medical device manufacturer, is supporting health care providers at the cutting-edge of care.
Verathon approached IDEO to redesign the existing product system for laryngoscopies and bronchoscopies—procedures that examine parts of the throat through intubation. During these examinations, a tube with a camera embedded in the tip is inserted through the patient’s nose or mouth. The doctor can then see inside the throat on a video monitor, and therefore more easily and quickly intubate and perform the exam.
To create a groundbreaking device, the team observed over a dozen laryngoscopies, bronchoscopies, and intubations. They noticed that many anesthesiologists relied on fixed equipment during the procedures. For example, some had grown accustomed to looking over their shoulder—away from the patient—to view the monitor.
During interviews, physicians and residents expressed difficulties with the current technology, sharing that the small screens aren’t conducive to team viewing or student instruction, and they must often use a separate computer to record patient notes. Others reported frustrating workflows, needing to constantly divert their attention and move their hands between the patient, prep tray, monitor, sterile bin, and disposal bin. These inconveniences and inefficiencies are not only cumbersome, but can increase the risk of infection and fatality.
The team relied on these insights to start designing a next-generation product. Through sketching, storyboarding, and building in real-time alongside doctors and clinic staff, designers quickly teased out additional findings and validated concepts.
This work led to the creation of the GlideScope Core: an all-in-one, portable product system that supports both video laryngoscopies and bronchoscopies. The base of the device—a wheeled cart—has built-in storage units for tools and a disposal bin, offering more mobility and accessibility for medical professionals.

The product’s tagline, “see more, do more,” points to the improvements made to the video system, including a large 10- or 15-inch high-definition touch screen monitor. Displayed images can be enlarged and rotated 180 degrees for improved visualization, team viewing, resident training, and classroom demonstration. To help doctors keep both the patient and monitor in their line of sight, the detachable screen can be secured to an adjustable arm that can be positioned directly over the patient. Additionally, the monitor’s patient annotation feature gives staff access to more of what they need in one device.
The product has been especially valuable for providers and patients during the coronavirus pandemic, when it’s imperative for doctors to keep their distance from patients’ mouths and noses. The GlideScope Core’s movable, detachable, and large, high-definition monitor makes it easier to take this precaution and intubate more quickly. This usefulness is reflected in the 5-fold increase in cart-based device orders for Verathon. While most providers typically order anywhere from 1 to 20 devices for airway procedures, one hospital system requested 600 GlideScope Core systems to meet current intubation demands.
Through modern technology and a focus on human needs, the GlideScope Core supports improved patient outcomes and creates a more seamless operating experience for medical professionals. The product underlines the key but often overlooked fact that often, in order to ensure the healthcare industry is patient-centered, medical device manufacturers and hospitals must also focus on improving the experience of providers.


Transforming a community hospital from the inside out
Designing for caregivers to create world-class care for patients.
Healthcare is notoriously difficult to change. Rules and regulations present complex barriers; health practitioners and organizations often have entrenched ways of working; and lives are literally on the line. Despite these significant barriers, the leaders at Newton-Wellesley Hospital (NWH) boldly committed to improving patient care through a new approach.
NWH is a community teaching medical center in Newton, Massachusetts. Because of its proximity to Boston—a city known for world-class healthcare institutions—NWH needed to differentiate itself. The hospital's new president, Dr. Michael R. Jaff, reached out to IDEO for help: "I knew that providing an unparalleled patient experience would set us apart from our competitors." But, Dr. Jaff’s particular approach was unique. He and Dr. Jodi Larson, Chief Quality and Experience Offer (CQXO), saw an opportunity to drive better patient outcomes through cultural and organizational change.
"You cannot learn any more than when you get to listen to your potential patients say why they would never walk into your place." —Dr. Michael R. Jaff
IDEO partnered with NWH for a year of work together, kicked off by defining the vision for NWH and ramping up to in-hospital prototyping and the launch of several new initiatives. A pilot project with the Women's Imaging Center (WIC) focused on solving departmental and employee challenges to provide a better experience for women getting mammograms.

Fueled by this potential, the WIC team redesigned key work processes and created a set of experience principles that inspired new service prototypes. Guided by principles like "Express mutual gratitude" and "Honor every voice," the WIC team tested ways for patients to acknowledge outstanding caregivers and created tools to gather better feedback from patients and adjust quickly. The experience of designing better services inspired the WIC staff to become ambassadors for the power of design thinking across other departments inside NWH and they continue to build on the work through new prototypes and experiments.
Next, IDEO partnered with NWH’s ambulatory surgery group. They took an analogous research trip to Boston’s Logan airport to see with fresh eyes how other high-touch customer service organizations provide customer value in a complex setting. Insights from the trip were applied through live prototyping of several new experiences inside the hospital, including a pre-surgery visit summary and pre-operation care carts.
Analogous research helped us realize that we can learn from other industries and incorporate some (cool) best practices if we allow ourselves to get over the ‘that would never work in the hospital’ mentality. - Dr. Jodi Larson

One of the most impactful prototypes was Care Modes, a tool to empower the NWH care teams to tailor their approach and interaction with patients based on the patients’ unique needs, beyond simply their clinical requirements. Four distinct approaches were identified for engaging a patient before surgery—Explain, Partner, Embrace, and Encourage. The Care Mode is determined based on the provider's understanding of a patient's degree of self-advocacy and their confidence that surgery is the best solution to their issue.

Historically, care providers have been trained to deliver consistent care above all else. However, Care Modes powerfully acknowledge that patients respond differently to different types of care. The Care Modes empower the team—from surgeon to nurse to anesthesiologist—with a clear framework for how to interact with and provide care for patients so they feel most comfortable. Based on the prototype's success with patients and impact on the staff culture, NWH has incorporated Care Modes into EPIC, the hospital's electronic medical record.
The importance of being patient-centered has been central to the healthcare conversation over the past thirty years; but new explorations reveal that there’s far more potential for innovation and improvement when the provider experience is considered in tandem with the patient’s. Each enables the other, and design for both together yields stronger solutions and better outcomes. IDEO's work with NWH demonstrates this vital shift in user-centered healthcare—one can't design services and experiences for patients without designing for their providers’ culture as well. When these go hand-in-hand, meaningful institutional change in healthcare is more than possible.


Helping a historic museum prepare for the future
Using design thinking to improve access, experience, and culture.
The mission of Chicago's Museum of Science and Industry (MSI) is to inspire children to achieve their full potential in the fields of science, technology, medicine, and engineering. Leaders at MSI realized they needed to drive day-to-day operations and maintain historic exhibits while focusing on where to go next. To prepare for its next decade, MSI worked with IDEO to create a new business focus to support the museum’s aspirations for the future. The plan would allow MSI to respond to the demands of the marketplace and raise the funds to get there.
At the beginning of the project, MSI laid out its priorities: improve equity of access, enhance the museum experience, and create a more innovative culture. To dive into each of these areas, IDEO conducted immersive research with families, teachers, donors, and staff.

IDEO brought together 60-plus donors, board members, and staff members to engage in a design thinking exercise to unpack and address the tensions that come with choosing a new strategic trajectory. Instead of having a standard ballot vote, the IDEO team encouraged participants to get up and vote with their feet, helping the group of stakeholders physically align on the museum’s new direction.
At the end of the research and prototyping phases, MSI and IDEO developed a vision called Provoking Minds, Inspiring Futures, creating six detailed design briefs to equip MSI teams to bring initiatives forward. The briefs laid out everything from recommending a new Department of Next, dedicated to ensuring that the future is at the heart of everything the MSI does, to MSI Runway, a place for experimental, small-scale, and limited-run exhibits. The ideas were brought to life with an interactive exhibit, built quickly with everyday materials like plywood and circuit boards, to demonstrate that creating an inspiring vision of the future doesn’t have to be an expensive endeavor.
The team also focused on insights that highlighted accessibility issues some families brought up early in the design process—travel across the city via public transportation can be lengthy, and the cost of admission to special exhibits could be prohibitive. To address these concerns, IDEO came up with the Mission Accessible brief: Inspired by casino buses, MSI bus stop signs would be posted in various low-income neighborhoods, signaling a way to take kids and families to the museum for free.

During the project, the IDEO team identified some low-hanging fruit, like rethinking ticketing and improving the student field trip experience, and helped the museum create cross-functional innovation teams to apply design thinking skills towards solving those challenges. They researched, brainstormed, and pushed forward new concepts, meeting weekly to share and build on ideas. At the end of the four week period, each team prototyped their ideas—new outdoor programming, software tools for visiting tour groups—and pitched them to each other.
In 2019, two years after the conclusion of the project, the collaboration paid off. With its new strategic plan and additional resources, the museum has renewed its commitment to serving youth, and MSI’s team, including donors, are aligned on a collective vision of the future. MSI raised more funds than in any previous year, including the single largest gift in its history—$125 million, nearly half of its $380 million fundraising goal—that will help ensure the years ahead.


The Big Green Button
Real life celebration in a digital world
Fast forward a few years and the big whiteboard has been replaced by a nimble digital tool that allows us to track and collect data about our projects, leads, and teams. Fantastic—except we lost the communal hoopla of physically erasing the board in front of our friends. Somehow clicking to archive didn’t have as much pizzazz.
What could we create that would provide that same, satisfying sequence of tangible action and group celebration in our now purely digital reality? Enter the Big Green Button.

It’s exactly what it sounds like—a massive green button that says “Push to Celebrate,” affixed to the wall next to the large monitors that track our projects. When a project is complete, a team member hits the button and a ridiculous animated gif overtakes the displays while music from "The Price is Right" plays over the speakers. It’s not confetti cannons, but it's fun and triggers the same enthusiastic cheering we enjoyed at the whiteboard.
So how did we do it? Here's the step by step.
The button itself is from Adafruit, and it’s huge. (Think the size of a grapefruit). The housing for the button is a 3D printed cowling that encases the button and the wiring and connects via an aesthetically pleasing audio cable. The audio cable allows us to unplug the button easily—no complex wiring to worry about.

At the other end of the cable is the brains—an Arduino with Adafruit’s ethernet shield. It receives the signal from the button, then sends out a POST request to the website’s server, which runs on IDEO’s network. Because multiple people can view the website at any given time, the user must locally “arm” the button on the AngularJS website with an option box. The option box tells the website that this website will respond to button presses. The go server running the server can then route the incoming request to the large screen’s website only.
This whole setup uses only a few lines of code to add a physical layer and a heightened level of excitement to our project completion ceremony—and everyone loves it.

A button like this is just asking to be pushed, but we added the sign to give people an extra nudge, and a hint as to what it actually does.

Few things are more satisfying than wrapping a months-long project. Back when the New York office tracked its active projects on a whiteboard in our kitchen, we’d celebrate these completed projects at our weekly meetings. Each team would walk up to the front of the room and—as the rest of the studio clapped and cheered—triumphantly erase their project from the board. It was a small thing, but it was ours, and it was pretty satisfying.


Great Balls of Fun
IDEO's Beach Ball Synth goes to Moogfest
What was IDEO’s contribution? Giant beach balls. But not for the beach. More like magical floating orbs that made music when you touched them.
“We wanted to build an instrument with play as an interface,” said creative director Peter Hyer. “An interactive environment in which anyone can play music without giving it a thought.”

How do they work? Here's the layperson’s version: The team fitted the balls with sensors that mapped the force of the impact to notes. Those notes were then matched to an algorithmically-generated backing track.
For the more technical version, keep on reading.

The process
Ideation
We knew that we wanted to channel the spirit of Bob Moog in our installation, so we began with a brainstorming and prototyping phase where we focused on bridging music and technology with creativity. We really wanted to break the barrier that prevents people from expressing themselves musically, and we also wanted to capture something of the Moogfest zeitgeist. Two ideas emerged—one around music, and one around narrative and synthesis based on the statements of the people at the festival. We loved both and wanted them to coalesce, but we were concerned they might be oil and water.

To find out, we began prototyping. We made a quadraphonic phase-music vocoder sampler in hopes of making spoken phrases musical; a computer-vision Post-it® Note step sequencer to bring musical life to an unintimidating object; and generative word games to try to tease out a crowd-sourced narrative arc of the festival. But nothing felt quite right, so we went back to the drawing board and asked ourselves, what is it that we want people to feel?
A Step Back
To get more perspective, we looked for reference points. We found inspiration in large scale installations from artists like Zimoun, where a simple idea like the sound of a cotton ball hitting a cardboard box took on new effect and meaning when scaled. It prompted us to wonder, what if we scaled the acoustic sound of balloons? What are the sounds the balloons should make, where should the sound come from, and how might that capture or express the narrative of the festival?
Iteration
Quickly and tragically, we discovered that combining a bunch of large balloons with an industrial fan was not quite as mind-blowing as we had expected. But, still, their innocuous beauty made balloons seem like a magical invitation to play.
We sought out people who had worked on similar projects, and who were not steeped in our brainstorming assumptions. We talked to Jack Gale from CCA, who had created an interactive balloon project, invited a group from San Francisco's Exploratorium to brainstorm and test out a rough prototype of balloon word games, and worked to find balloons that were big enough and robust enough for us to embed light elements and sensors in them.
Flexibility
Originally, we had based our design around an 8-foot by 16-foot box. Instead, we chose a covered outdoor basketball court. Huge! Central! Beautiful!
But the scale was drastically larger and the lights we had planned to embed couldn’t compete with daylight. To make it work, we scaled the beach ball diameter from 2.5 feet to 8 feet to better fit the space (we had already swapped the balloons for beach balls, since the materials are more robust), eliminated light elements, and put the emphasis on sound derived from beach ball interaction. Since we were at a music festival, it was poetic for sound to be the primary feedback mechanism.
Our friends at the Exploratorium invited us to do a trial install at their museum, which quickly brought the interaction questions to the forefront. You learn a lot quickly when the public kicks the tires. When people walked up to the beach balls, their first instinct was to hit them. But we didn’t want the beach balls to just work like a button—we wanted the installation to be more nuanced, and produce different sounds based on where and how each ball was hit. To do it, we used the nine degree of freedom inertial motion unit to map directional acceleration to pitch, which worked as though there was a keyboard wrapped around each beach ball.
How it works
The Beach Ball Sensor
Each beach ball has a sensor package in a custom made mechanical holder that is held captive by a carabiner. For sensing and communication, we used an Arduino with WiFi, a nine degree of freedom inertial motion sensor that detects acceleration in X, Y, and Z directions, rotation about X, Y, and Z directions, and magnetic field in X, Y, and Z directions. We also opted for an external antenna for added WiFi robustness.

This package communicates raw sensor data via OSC messages over WiFi to a computer that processes the sensor data. A USB battery designed to recharge your smartphone on-the-go powers the hardware and provides enough energy to run each system for about 14 hours—more than enough for an entire day of uninterrupted play.
Signal Processing and Gesture Recognition
On the computer, Max processes the streaming sensor data, recognizes gestures, and outputs a MIDI note with velocity whenever it detects a beach ball impact gesture. Ableton Live takes the MIDI data from all the beach balls, filters the notes to work with the current harmony, and triggers instrument sound.

Feedback
We wanted to be certain that participants could hear how they were changing the music, so while the background music played evenly throughout the installation, each individual beach ball generated a sound in the speaker closest to it—kind of like stage monitors that bands use playing live. That feedback encouraged everyone to play more.
Collaborative Music Design
To set the stage for musical confidence, we wrote algorithmic music that acted as a backing track, so no one felt the pressure to play the first note. Depending on where a beach ball was hit, one of 15 possible chromatic notes was generated. So, we filtered the beach ball notes so that they always fit consonantly with the backing track—you couldn’t play a “wrong” note. Even still, six different instruments playing over background texture can be too dense. So we opted for a section approach—three sets of two instruments. A trio with backing felt like the right balance of individual voice without cacophony.

Rigging
When we got to the venue, we had to invent a rigging system to get the beach balls to hang at the right place and height. In a divine moment of MacGyver-like inspiration, Diem Ho devised a hierarchical beach ball wiring system that could be lowered and raised quickly with precise control. When we were swarmed with little kids, this system allowed us to raise the beach balls just enough so people could see little kids behind a beach ball and avoid hitting them; things became a lot safer.
Improvisation
The most important design practice throughout the entire process was to stay nimble and improvise. We repurposed problems into constraints that catalyzed our evolving platform. In a sea of unknowns, improvisation allows you to find generative ways to translate even the simplest knowns into a compass toward meaning, and have fun doing it.

Lead engineer and composer Aaron Soloway couldn’t help but smile as he watched festival attendees interact with the balls. “Whether it was a huge bearded dude into modular synths, or a 5-year-old who just wanted to hit things, everyone was into it.”
For Hyer, that universal spirit of play was key. “It created an opportunity for people to connect with music that was unexpected and in the spirit of the festival,” he said. “Ultimately, it’s about celebrating the convergence of art and engineering. That’s what that Bob Moog was all about.”
Moog hit the big-time when his company started producing portable versions of his giant synthesizers (aka the Minimoog). For now however, the beach ball synth will remain enormous.
The name Moog conjures up images of retro-future machines and space-age sounds. In the mid-60s, Bob Moog created the synthesizers that unleashed an era of electronic experimental music. Today, as a tribute to Bob, we have Moogfest, a gathering of musicians, DJs, performance artists, and technologists. This year’s performers ranged from Gary Numan and Grimes to a classical guitarist having his toenails painted by a cybernetically-augmented accomplice, and an 8-hour DJ set during which the audience slept in provided beds.


Designing Kid-Centered Medicine
Recasting painful, awkward and embarrassing childhood experiences as rights of passage, spirit journeys and superpowers

Each mythic tool/medicine could be used to combat common childhood ailments and illnesses in a way that celebrates each malady from beginning to end.
We are big fans of design fiction as a means to push our thinking and to explore what the future could look and feel like. For this design fiction exercise, we challenged ourselves with finding ways of turning kids into the heroes of their own young lives. We set out to create empathetic tools for childhood ailments and illnesses that recast painful, awkward and embarrassing experiences as rites of passage, spirit journeys and superpowers. To that end we asked ourselves a few questions to get started:
How might we turn embarrassing childhood moments into badges of honor?
How might we empower kids to celebrate the sometimes awkward illnesses of childhood?
How might we design for rites of passage, or inspire rituals that spark a contagious creativity?

So, we let our imagination go into a world with monsters in the closet, serpents under the bed, and yellow eyes peering out of the darkness. And we asked ourselves how to take the trauma and the terror out of routine childhood experiences. One thing we knew for certain: solving problems technically and explaining them rationally wouldn’t get us very far. First, we had to address them on an emotional, even mystical plane.
Childhood can be full of play and promise, but also pain. What might seem like a temporary annoyance to grownups can be felt as an unending bout of humiliation and suffering for young hearts and minds. Pink eye, lice, ear infections, zits—the barrage of indignities can wreak havoc on even the most self-confident kid.

But what if these childhood ailments were recast as rites of passage and superpowers? What if the telltale itchy scalp or bloodshot eyes could be framed as something to embrace, even be proud of? That’s what Phantasy Pharmacy seeks to capture in its design fiction collection of mythic tools that could be used to combat common childhood ailments and illnesses in a way that celebrates each malady from beginning to end.
To get the full, unadulterated experience, check out phph.ideo.com.
Did you ever have lice as a kid? A bunch of us here at IDEO Cambridge did and we haven't forgotten how awful and embarrassing it felt. And when designers are faced with never-ending, wish-I-could-forget-you experiences, they start looking for ways to fix them. Recently, the studio banded together to create Phantasy Pharmacy, a bit of design fiction to help us stretch our imaginative limits and wrestle down unhappy childhood memories.


Creative Caffeine
Stories, people, spaces, startups and stuff getting our creative neurons firing
1. More than meets the eye
Tracking shots of winding country roads, and lingering peeks of sheet metal: car ads might seem as lifelike as it gets, but they’re often surprisingly realistic CGI, particularly for new cars that might not be public yet. To keep up that realism, post-production house The Mill’s neat solution has been to create a Transformers-like rig, with adjustable wheelbase, height, and driving style, to help its artists mimic pretty much any car, without costly shipping and availability worries. Take a closer look at the rig here.

2. The weird satisfaction of a close shave
For the crafty and OCD-inclined people—like us—who find pleasure in perfectly cubed fruit, watching cans being crushed, or a Leica body being painstakingly filed, relax and enjoy these slightly hypnotic videos of master Japanese ceramicist Abe Haruya at work.

3. Welcome to our open house
Kitchen of the future exhibitions stretch back half a century, but Arduino founder Massimo Banzi and acclaimed sci-fi writer Bruce Sterling have gone one further: they created Casa Jasmina, an open-source apartment in an old factory in Turin, to test what a connected home might look like in the future. Furniture and fittings are modular and hackable, and artists and companies are invited to submit ideas for connected appliances. Eventually, you’ll be able to rent the space out on Airbnb, says Banzi.

4. Getting conversational with computers
When Google’s AlphaGo deep learning software beat Go champion Lee Sedol, the world saw, via the media, a firsthand view of the power of artificial intelligence. But we’re still a long way from solving real problems, in part because interacting with AI is stuck at the computer science level. But an intrepid gang of interaction designers are building clever new ways for humans to better interact with these systems, argues computer vision and machine learning expert Greg Borenstein on Medium. Read the article here.

5. Go local with Airbnb
Fancy dining with a sumo wrestler, feeling frisky at a burlesque show, or getting your hands dirty with an urban farmer? Airbnb is helping travelers belong anywhere with a new product they’re testing. Called Experiences, it helps adventurous guests book escapades with local hosts. Check out Airbnb Experiences here.

In this week’s Creative Caffeine, IDEO London serves up a quintuple shot of inspiration: post-production house The Mill’s transformer car; the weird soothingness of shaving ceramics; a visit to Arduino’s open-source apartment; designing with artificial intelligence; and drinks with a sumo wrestler, courtesy of Airbnb.


Lindsey Turner
I’m passionate about building brands, products, and experiences that help organizations show up with meaning and momentum.
I help organizations cut through complexity by shaping how they show up, through brand strategy, identity, and storytelling.
Working at the intersection of brand and business, I bring an editorial eye and a bias toward making—turning ideas into tangible experiences that people can understand, trust, and believe in.
My work spans government, healthcare, financial services, media, and consumer goods, from launching Gen Z-focused ventures to building innovation labs and reimagining legacy brands. I relish moments of ambiguity and enjoy translating across teams, perspectives, and priorities to move ideas forward.
I started my career in editorial and digital design, shaping cross-platform experiences and identity systems in publishing and agency environments. That foundation still shapes how I work today: I’m detail-oriented, collaborative, and overreliant on the Oxford comma. I hold a BFA in Visual Communication from the School of the Art Institute of Chicago.


Rachel Young
My work helps organizations see who their products aren't working for—and build the will and the tools to do something about it
For 25 years, I've asked the same question: Who does this design exclude—and what are we going to do about it?
My work spans human-centered strategy, inclusive design, and qualitative research, with clients ranging from Microsoft, Google, and Verizon to the National Science Foundation, and San Francisco Unified School District.
Before IDEO, I taught elementary school in East Palo Alto and spent a decade doing design work with social service organizations—where I learned firsthand what it costs people when systems are built without them in mind.
I am currently writing User Error, a nonfiction book about digital access and the design decisions behind it. I live in Oakland, California.


Brian Pelsoh
I lead with craft, ensuring our work is creatively excellent: rooted in deep human insight and imagination, while also grounded in the realities of business and technology.
My expertise spans brand, communication, and product design across tech, education, the arts, and social impact.
I believe great work demands both high-level vision and obsessive attention to detail, and only happens through collaboration.
I bring an inclusive, hands-on approach and a deep understanding of business, which enables me to consistently deliver excellence while always asking why.
Before joining IDEO, I worked at the brand firms Pentagram and VSA Partners. I began my career as a designer, leading teams at the School of the Art Institute of Chicago and the Milwaukee Art Museum. I hold an MFA in graphic design from Maryland Institute College of Art and a BFA in communication design from the Milwaukee Institute of Art & Design, and have taught at some of the best design schools in the US.


Tony Wong
I am responsible for IDEO’s long-term success in China and working with clients to use design as a tool to enable growth.
I am responsible for IDEO’s long-term success in China and working with clients to use design as a tool to enable growth. Specifically, I have helped Chinese companies design holistic brand solutions through the development of their products, communication, services, and innovation teams, and I have helped multinationals expand their presence and influence in China.
I advise global leaders on developing China-led innovation and capabilities.
In over 15 years in IDEO Shanghai, I have worked on projects that use design to elevate the quality of the experience of healthcare products and services, streamline processes that increase productivity, create spaces and programs that promote and enable inclusive communities, and build next generation mobility solutions that are planet-positive.
Before joining IDEO, I worked at Philips Electronics and the Electrolux Group in Italy, the Netherlands, and Singapore on a number of breakthrough commercial products. I am a member of the Young President Organization in Shanghai.
Building a personal AI for the messiness of life: Sida Li
Most AI products today are built for work—a space with clear problems and established systems. One founder noticed a gap: personal life is messier, harder to systematize, and mostly left behind by the AI boom. So she built Cue, a personal AI that lives inside iMessage and group chats, to go where the other tools haven't.
In this episode, Becca Carroll, IDEO's Chief Strategy Officer, talks with Sida Li, co-founder and CEO of Shared Context Lab, about staying anchored to a human need while the technology around her keeps changing shape, why she treats her business model with the same rigor she'd bring to a product, and what it feels like to build a company at this particular, disorienting moment in AI.
The conversation also gets into how Sida makes design decisions: the language Cue uses to describe itself, the tradeoffs behind building inside iMessage instead of a new app, and a real story about a business idea that didn’t pan out.
This is the second in a two-part series profiling founders from IDEO's Startups-in-Residence program. The first conversation is with Johannes Seemann, founder of Sooner, on designing GenAI for the emotional side of money.
Designing GenAI for the emotional side of money: Johannes Seemann
Most personal financial tools are built to run the numbers and optimize towards a budget. While that works for some, most people experience money as a lived relationship that does not neatly fit into a spreadsheet. Johannes Seemann and Becca Carroll discuss why money is emotional before it is mathematical, and what a human-centered approach to building a generative AI financial product looks like in practice.
The curious leader's edge in uncertainty: Scott Shigeoka
Mina Seetharaman talks with Scott Shigeoka, author of Seek and Head of Curiosity Cultivation at the Eames Institute, about what distinguishes genuinely curious leadership from performative curiosity, how power dynamics shape curiosity, and why practicing curiosity can restore energy rather than drain it.
How constraints make us more creative: David Epstein
Mina Seetharaman talks with David Epstein, author of Inside the Box and Range, about why total freedom often produces average work, how leaders can design useful limits on purpose, and what organizations such as General Magic and Pixar reveal about the relationship between boundaries and creativity.
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