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Bear Institute PACK logo

Winners of the third annual Bear Institute PACK Event

Bear Institute PACK logoOracle Health and Children’s National Hospital, announced the winners of the third annual Bear Institute’s Pediatric Accelerator Challenge for Kids (Bear PACK), a start-up competition aimed at fostering digital health innovation for children. The winners — Bend Health Inc., Kismet Health, RareCareNow, and Thynk Inc. — were recognized across four innovation tracks for their efforts to improve child health outcomes, enhance the care experience for patients, family, and clinicians and reduce the cost of care for patients and health systems.

With more than 250 standalone pediatric hospitals in the U.S. today, there is a significant opportunity for technology startups focused on pediatric care to overcome unique funding and go-to-market challenges to more successfully build and sustain their businesses and have a positive impact on the lives of thousands of children and their families.

“Bear PACK targets the entire pediatric healthcare community to help close the gap in innovative solutions dedicated to helping children, said Jessica Herstek, M.D., chief medical information officer, Children’s National Hospital. “Together, Oracle Health and Children’s National Hospital are helping startups accelerate innovation and technology adoption by showcasing new products and connecting startups with pediatric healthcare providers and administrators.”

“With less than one percent of global digital health funding being allocated for children’s health1, the Bear PACK challenge has never felt more important or needed,” said Nasim Afsar, M.D., MBA, MHM, senior vice president and chief health officer, Oracle Health. “Working with Children’s National Hospital, we’re continuing to make meaningful progress on bringing more digital health solutions for kids to market, helping to improve pediatric patient experience and health outcomes globally.”

The 2023 winners in each category are:

Using a telehealth platform, RareCareNow is helping patients who have been diagnosed and are seeking treatment for rare and genomic diseases in the U.S. With molecular diagnostics integrated earlier in the care process, patients can more quickly identify and connect with a specialist using RareCareNow’s network of physicians providing care specific to their needs. Patients will not only receive genetic counseling and treatment plans but will have a long-term provider for ongoing care coordination and symptom management.

“Our goal is to reimagine how genomic medicine is practiced by bringing cutting edge molecular diagnostics into the care process earlier and then providing ongoing care and coordination for all patients so they can benefit from their genomic results. While we’re improving access to care for patients with genomic and rare diseases, we also aim to ease the uncertainty of the diagnosis and the diagnostic odyssey. By embracing telehealth and technology, we will enable patients and families to be more proactively involved in their own care.” — Alexander Katz, chief medical officer and co-founder, RareCareNow

Designed by and for providers, Kismet Health’s pediatric virtual care platform offers a digital playspace that allows clinicians to communicate with patients through their language of play, increasing overall patient engagement and effectiveness. Kismet’s collaborative care technology allows providers to bring healthcare access to families where and when they need it most, allowing for longitudinal care throughout the entire year and more equitable outcomes.

“It’s an honor to be selected for this innovative program with like-minded individuals who are also passionate about revolutionizing the future of pediatric healthcare. Kismet has launched with digital health companies and smaller clinics, with the goal now to integrate with EHRs like Oracle Health’s to expand to children’s hospitals, health systems, and government programs — ultimately meeting families where they are and closing the gap in care access.” — Christie Sander, co-founder, president and COO, Kismet Health

Thynk Inc. developed an immersive game designed to help children improve cognitive skills and overall mental wellness in a safe and fun environment. Youth play an adventure game on a mobile device while wearing a headset that uses proprietary EEG technology that reads brainwaves to determine their level of focused attention. This measured focus level also controls the speed and success of the in-game character as it completes various missions, and the difficulty level adjusts accordingly. With regular use, children can improve 13 cognitive skills including focused attention, impulse management, and develop their self-regulation skills, all of which are important for academic success and personal growth.

“Our product has proven lasting effects in improving focus and attention for children who may be struggling with such skills. The outcomes of eight successful clinical studies with more than 300 users of our product have shown improvements in behavior, test scores, homework completion, and math and reading fluency. In addition to teaming with healthcare organizations, we’re working to also reach underserved populations who may lack access to the tools needed to improve cognitive skills.” — Christopher Tracy, co-founder, board director and chief operating officer, Thynk Inc.

Bend Health designed a virtual mental health platform for kids and their families to increase access, reduce wait times, and decrease costs of pediatric mental healthcare. As the only provider using the Collaborative Care Model in partnership with pediatric primary care, Bend’s data-driven platform allows primary care providers to easily refer and connect patients with virtual therapists. They then receive regular updates on care progress, more closely aligning medical and behavioral care. Offering services such as coaching, therapy, and expedited psychiatric care, Bend integrates virtual video visits, chat messaging, and digital experiences to achieve better outcomes through measurement-based care. Collaborating with leading insurers, employers, health systems, and providing self-pay options, Bend Health ensures widespread accessibility to its services.

“At Bend Health, pediatricians receive regular patient progress updates, empowering them to make informed care decisions based on timely mental health measures. Bend’s collaborative care teams enable practitioners to accurately diagnose children and provide a holistic approach that consistently achieves clinically significant results for both kids and their families. Our six peer-reviewed studies demonstrate these positive outcomes, with 80% of kids showing improvement in 60-90 days, and 4 out of 5 caregivers reporting reduced stress within a month of joining Bend.” — Dr. Monika Roots, President and Co-Founder, Bend Health

More information on this year’s winners can be found on the Bear Institute PACK website.

1Children’s digital health innovation received less than 1% ($167 million) of global digital health funding ($22 billion) in 2020, according to StartUp Health’s annual report on digital health funding.

surgeon doing laparoscopic surgery

Autonomous robotic laparoscopic surgery for intestinal anastomosis

surgeon doing laparoscopic surgery

Children’s National Hospital in collaboration with the University of North Carolina Wilmington and Johns Hopkins University developed an enhanced autonomous strategy for laparoscopic soft tissue surgery.

A new approach to soft tissue surgery could simplify autonomous surgical planning and enable collaborative surgery between an autonomous robot and human, a new study published in Science Robotics finds. This is the first time a robot can complete an autonomous soft tissue surgical task under laparoscopic conditions, forming the foundation for future soft tissue surgeries.

Children’s National Hospital in collaboration with the University of North Carolina Wilmington and Johns Hopkins University developed an enhanced autonomous strategy for laparoscopic soft tissue surgery. The multi-institutional effort made it possible to perform a robotic laparoscopic small bowel anastomosis in phantom and in vivo intestinal tissues. The findings further suggest that autonomous robot-assisted surgery has the potential to provide more efficacy, safety and consistency independent of an individual surgeon’s skill and experience.

The hold-up in the field

Autonomous anastomosis is known to be a challenging soft tissue surgery task. And in the laparoscopic setting, surgeries like these prove to be more challenging because of the need for high maneuverability and repeatability under motion and vision constraints – especially in pediatric patients.

“This work represents the first time autonomous soft tissue surgery has been performed using a laparoscopic technique and is the first step in bridging the gap between human and machine towards completing autonomous surgical tasks in soft tissue surgeries,” says Hamed Saeidi, Ph.D., assistant professor at University of North Carolina Wilmington and lead author of the study.

To overcome the unpredictable motions of the tissue, the experts used machine learning based techniques to track the dynamic motions of the soft tissue during the surgery. These methods also pave the way for markerless methods for tracking the tissue motion in future surgeries.

“Until now, laparoscopic autonomous surgeries were not possible in soft tissue due to the unpredictable motions of the tissue and limitations on the size and capabilities of surgical tools,” says Justin Opfermann, M.S., Ph.D., student and Johns Hopkins University and co-author.

What’s unique

Performing autonomous surgery would require the development of novel suturing tools, imaging systems and robotic controls to visualize a surgical scene, generate an optimized surgical plan and then execute that surgical plan with the highest precision.

The autonomous robot takes its skill one step further when performing surgical tasks on soft tissues by enabling a robot-human collaboration to complete more complicated surgical tasks where preoperative planning is not possible.

Additionally, the robot used in this work uses a novel shared control scheme called “conditional autonomy,” whereby the robot performs the majority of the surgical task, which the surgeon oversees.

Bottom line

“Combining all of these features into a single system is non-trivial,” Opfermann adds. “In 2016, we were the first group to demonstrate feasibility of semi-autonomous small bowel anastomosis with a robot in soft tissue, and now we can perform autonomous laparoscopic anastomosis.”

The resulting anastomosis had more consistency and achieved higher burst strength than surgeons suturing with manual technique, resulting in less anastomotic leak.

In laparoscopic surgeries – and pediatric patients especially – these challenges are even more difficult due to the small size of the patient. Robotic anastomosis is one way to ensure that surgical tasks that require high precision and repeatability can be performed with more accuracy and precision in every patient independent of surgeon skill.

“As a surgeon, I can attest to the potential benefits of improving how we perform surgery on our patients,” says Michael Hsieh, M.D., Ph.D., director of Transitional Urology at Children’s National Hospital. “Working with my engineering colleagues at Johns Hopkins, we’ve been able to develop prototypes of supervised, autonomous suturing robots that may be a step towards such improvements.”

Bear Institute PACK logo

Winners of the first annual Bear Institute PACK Event

Bear Institute PACK logo

On August 26, 2021, the Bear Institute, along with Children’s National Hospital and Cerner Corporation, hosted the first annual Bear Institute PACK (Pediatric Accelerator Challenge for Kids). Bear Institute PACK is a start-up competition aimed to address the gap in digital health innovation funding dedicated to children.

“Children are a unique population that requires different health solutions than those designed for adults, which address their unique needs,” says Dr. Lu de Souza, Vice President and Chief Medical Officer, Cerner Corporation. “With Bear Institute PACK, we hope to increase focus and delivery of digital health innovations for kids. Bear Institute PACK brings together the pediatric health care community, including pediatric health care providers and hospital administrators from across the country to identify top start-up digital applications that best serve children.”

This year’s start-up participants competed across four innovation tracks, including rare disease, telemedicine, remote patient monitoring and patient education. Student teams competed in a separate student track. Bear Institute PACK consists of three rounds of judging: an initial review of applications from the Bear Institute PACK team, judging from participating pediatric healthcare providers and administrators and review from an expert panel of judges during finalist start-ups’ live pitches.

The start-ups competed for a rich prize pool, including cash prizes totaling over $100,000, on-site pilots and software development support. Winners were selected in each of the event’s four innovation tracks, as well as an additional two student team winners. This year winners are:

  • In the rare disease track, first place winner, Bloom Standard, Inc., with its solution Automated Ultrasound Wrap that screen infants and children for serious lung and cardiac conditions, and second place winner, Mira Medical LLC, with its solution Bear Growth: A Three-Dimensional Pediatric Growth Modeling App.
  • In the telehealth track, Keriton, Inc., with its solution Keriton Kare, a healthcare SaaS platform built to improve outcomes for neonatal and pediatric patients.
  • In the remote patient monitoring track, Sonavi Labs, with its solution Feelix, a platform that features proprietary hardware embedded with clinically validated diagnostic software capable of detecting respiratory diseases.
  • In the patient education track, Smileyscope, with its comprehensive virtual reality (VR) platform to help support patients with procedural pain management, drug-free anxiety care, education, and guided relaxation.
  • Student team first place winner, CASP Technologies, with its solution Operation Serenity, which allows pediatric patients to prepare for and understand their simulated surgery to reduce anxiety and second place winner, Ankle Rehab, with its solution Foot Joystick for Children with Cerebral Palsy meant to improve mobility.

More information on this year’s winners can be found on the Bear Institute PACK website.

“This year’s Bear Institute PACK had a lot of start-ups and student team participants with very impressive innovation solutions for kids. Selecting a single winner in each innovation track was a tough decision, and it was encouraging to see all the work being done to bring these solutions to market,” says Matt MacVey, Vice President and Chief Information Officer, Children’s National Hospital. “Thank you to everyone who participated and helped make the inaugural Bear Institute PACK a success! We hope to make next year even bigger as we continue to strive to close the gap in funding for children’s digital health innovation.”

More information on next year’s event will be forthcoming on the Bear Institute PACK website.