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                    <title><![CDATA[OSF HealthCare Newsroom]]></title>
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                    <lastBuildDate>Fri, 11 Sep 2026 01:08:17 +0200</lastBuildDate>
                    <pubDate>Thu, 11 Jun 2026 00:02:44 +0200</pubDate>
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                        <title>Science educators explore STEAM lessons during immersive visit to OSF Jump Simulation &amp; Education Center</title>
                        <link>https://newsroom.osfhealthcare.org/science-educators-explore-steam-lessons-during-immersive-visit-to-osf-jump-simulation--education-center/</link>
                        <guid>https://newsroom.osfhealthcare.org/science-educators-explore-steam-lessons-during-immersive-visit-to-osf-jump-simulation--education-center/</guid><pp:caseid>757605</pp:caseid><pp:summary><![CDATA[<p>Key Takeaways:</p><ul><li data-list-item-id="eebc364e04817f533c8215f530c119f48"><strong>Science educators from across Illinois explored hands-on STEAM activities</strong> <strong>at OSF Jump Trading Simulation & Education Center, gaining classroom-ready ideas and resources.</strong></li><li class="ck-list-marker-bold" data-list-item-id="ee81af0c9995314a788f47805a6d53f77"><strong>OSF HealthCare highlighted free educational tools and activities that inspire student interest in health care and STEAM careers.</strong></li><li class="ck-list-marker-bold" data-list-item-id="ed0cd88534d673806d3f56cc549696b73"><strong>Educators discovered new engagement strategies, including 3D printing, augmented reality, and simulation-based learning</strong></li></ul>]]></pp:summary><description><![CDATA[<p><strong>Science educators from across Illinois explored hands-on STEAM activities</strong> <strong>at OSF Jump Trading Simulation & Education Center, gaining classroom-ready ideas and resources.</strong></p>]]></description><content:encoded><![CDATA[<p><span>Science educators from across the state experienced a firsthand look at innovative STEAM learning opportunities during a state Board of Education Science Educator Summit at </span><a href="https://www.osfinnovation.org/jump-simulation" target="_blank"><span>Jump Trading Simulation & Education Center</span></a><span> in Peoria. The day-long visit was part of a week of other experiences including the Riverfront Museum and the Peoria Zoo.</span></p><p><span>At Jump Simulation they discovered new ways to bring science, technology, engineering, arts, and mathematics into their classrooms. The visit was designed to connect teachers with real-world learning experiences and classroom-ready resources. Participants divided into groups for specialized activities including the </span><i><span>Wing It: An Inside Look at Muscles & Bones </span></i><span>workshop and the T</span><i><span>our with Heart Pours Experience</span></i><span>.</span></p><p><span>During the </span><i><span>Heart Pours Experience</span></i><span>, educators explored multiple floors of the Jump Simulation & Education Center dedicated to simulation, innovation, and health care education. Organizers, including Katie Smith, coordinator of OSF Innovation Labs, say the experience highlights how interdisciplinary collaboration drives solutions to complex health care challenges.</span></p><p><span>Smith pointed out the goal of OSF STEAM programming is to create a pipeline for future health care workers. That can happen, Smith said, when teachers and their students have what she calls “ah-ha” moments as they realize what they thought was too complex is really not.</span></p><p><span>“Things like doing belly surgery laparoscopically but instead of on a belly, you use a cantaloupe. Or doing a shark dissection or making a robot hand that can actually work. Those types of things that we do here really, really inspire children but also inspire adults along the way too.”</span></p><h2><span style="color:#333230;"><span><strong>Free resources through OSF STEAM website</strong></span></span></h2><p><span>The summit also highlighted many free resources available to educators at </span><a href="https://steam.osfhealthcare.org/"><span>steam.osfhealthcare.org</span></a><span>, not only for middle and high school-age children, but for younger children as well.</span></p><p><span>“We have books that are PDF form you can print out. We have YouTube videos. We have [smart phone or tablet] applications that are free and we have all the dissection materials and things like that there too. Teachers can use them. People can use them at their homes if they want to do something fun for the summer with their child,” Smith suggested.</span></p><p><span>Teachers also participated in a unique hands-on activity by creating their own heart model with guidance from engineering professionals. Chicago public middle school teacher Misty Richmond said the day helped educators like her connect with technologies and innovations first-hand to see how they could apply to classroom lessons.</span></p><p><span>“They [OSF simulation specialists] were sharing stories about how they use some of these 3D models to help them [surgeons] practice for a surgery they’re going to do and so being able to have a student be able to experience something like that it’s like, ‘Wait, we have a 3D printer at school. We can made a heart. And I’m like ‘Yes, they can send us the molds!' So, then we could make those kinds of things at our own school. And so just being able to make those connections for myself and then being able to extend those opportunities to students.”</span></p><p><span>The tour of the Innovation Labs and simulation spaces also had Richmond’s creative ideas flowing.</span></p><p><span>“An experience like today especially really opens your eyes to possibilities. And so, while we’re doing a lot of hands-on activities, I think it also makes you think about your own experiences in learning and how you can think about bringing experiences like this to your students so that they get to have the same excitement that you’re having.”</span></p><h2><span style="color:#333230;"><span><strong>Workshops spark strategies for future lessons</strong></span></span></h2><p><span>Following the morning sessions, educators reconvened for a series of collaborative learning opportunities, including a </span><i><span>Microscope Makers Space w</span></i><span>orkshop focused on innovation and design thinking. The session provided participants with practical strategies and activities that can be implemented directly in the classroom.</span></p><p><span>Additional sessions introduced teachers to augmented reality technology and demonstrated how AR can be used to enhance student engagement and visualization of scientific concepts. Participants also received an overview of STEAM resources, digital materials, field trip opportunities, and educational partnerships available through OSF HealthCare.</span></p><p><span>The day ended with a question-and-answer panel and planning session, allowing educators to discuss curriculum integration, explore program options, and identify future opportunities for student engagement. Streator High School forensic and physical science teacher Nate Nugent has lessons he’ll share with other teachers.</span></p><p><span>“Being able to take these activities back to the school and even share them with my co-workers like, ‘Hey you should do this in your anatomy classes, and this is a place you should definitely check out.’ This was really eye opening.”</span></p><p><span>Organizers hope the summit will strengthen connections between schools and community partners while expanding access to innovative, medical pipeline-building STEAM experiences for students throughout the state.</span></p><h3><span style="color:#4E8209;">Video clips with Katie Smith</span></h3><h3><span style="color:#4E8209;">Video clips with Misty Richmond and Nate Nugent</span></h3><h3><span style="color:#4E8209;">B-roll-Science Educators Summit</span></h3>]]></content:encoded><category><![CDATA[innovate,OSF Innovation&#039;,Jump Trading Simulation &amp; Education Center,Jump Simulation,Jump Simulation &amp; Education Center,OSF STEAM,Shannon Egli,Katie Smith,augmented reality,baby shark]]></category>
            <pubDate>Wed, 10 Jun 2026 17:02:44 -0500</pubDate>
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                <pp:imageOriginal>https://content.presspage.com/uploads/1873/0724164a-9496-44c2-966b-634214fce97e/img_4741.jpg?10000</pp:imageOriginal><pp:imageTitle><![CDATA[Teacher learns about how tendons and nerves connect in a chicken hand]]></pp:imageTitle><pp:imageDescription><![CDATA[Teacher learns about how tendons and nerves connect in a chicken hand]]></pp:imageDescription></item><item>
                        <title>Top 10 OSF HealthCare digital health and innovation stories of 2025</title>
                        <link>https://newsroom.osfhealthcare.org/top-10-osf-healthcare-digital-health-and-innovation-stories-of-2025/</link>
                        <guid>https://newsroom.osfhealthcare.org/top-10-osf-healthcare-digital-health-and-innovation-stories-of-2025/</guid><pp:caseid>732229</pp:caseid><pp:summary><![CDATA[<p><strong>Key Takeaways:</strong></p><ul><li class="ck-list-marker-bold" data-list-item-id="e3b148b5c0ea002159211b06a011707d3"><span><strong>In 2025, virtual, mobile and AI-supported tools moved beyond pilots to deliver faster, more reliable care — especially for older adults, expectant mothers and patients facing long wait times.</strong></span></li><li class="ck-list-marker-bold" data-list-item-id="e7698676bdfa92904ad67544a4799fb56"><span><strong>From maternity deserts to rural ERs and underserved regions, OSF innovations prioritized reaching patients where care gaps exist while improving safety, accuracy and coordination.</strong></span></li><li class="ck-list-marker-bold" data-list-item-id="ecbaa1a9ed7eb5809edb834dd0b8cbf9f"><span><strong>Whether through VR-assisted surgery, child-designed medical devices or personalized genetic insights, OSF’s approach blended advanced tech with responsible, patient-centered design to improve real lives.</strong></span></li></ul>]]></pp:summary><description><![CDATA[<p>In 2025, virtual, mobile, and AI-supported tools prioritized reaching patients to fill care gaps, especially for vulnerable populations in both rural and urban areas.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/1873/34e2f58d-0ea4-4322-b62a-94473241f730/1920_katejohnsonandmobileunit.jpg?10000"><h2><span style="color:#007F9B;"><span><strong>Top 5 Digital Health stories of 2025</strong></span></span></h2><p><span>Digital health continues to reshape how people connect with care — breaking down barriers of distance, time and access in ways that were once unimaginable. In 2025, those advances moved from promise to practice, with new technologies helping patients get care faster and using data to make more informed decisions. OSF HealthCare, through its OSF OnCall digital health arm, has been able to reach communities that have long been underserved. From artificial intelligence and virtual care to immersive technologies and smarter data use, OSF OnCall continued to push health care forward.</span></p><p><span>These are the Top 5 digital health stories of 2025, in no particular order.</span></p><p><a href="https://newsroom.osfhealthcare.org/from-crisis-to-confidence-patient-praises-new-osf-247-primary-care/"><span><strong>From crisis to confidence: Patient praises new OSF 24/7 primary care</strong></span></a><span><strong> </strong>– Marci Schneider Batsakis&nbsp;of Orland Park, Illinois was the first patient enrolled in </span><a href="https://newsroom.osfhealthcare.org/osf-healthcare-offers-new-approach-to-primary-care-on-chicagos-southside/"><span>OSF CompleteCare 55+,</span></a><span> a new hybrid model of primary care in Evergreen Park, using virtual visits and digital connections to help older people get fast access to providers and stay on top of their health. Schneider Batsakis called the round-the-clock care team number when her blood pressure became dangerously high and that led to timely treatment in the hospital, follow-up support, and a care plan tailored to her needs.</span></p><p><a href="https://newsroom.osfhealthcare.org/osf-healthcare-receives-15-million-for-new-mobile-pregnancy-and-postpartum-care-unit/"><span><strong>OSF HealthCare receives $1.5 million for new mobile pregnancy and postpartum care unit</strong></span></a><span><strong> </strong>An OSF OnCall Connect mobile van will offer doorstep service as an extension for women on Medicaid enrolled in a pregnancy and postpartum digital support program. Meridian and Centene Foundation provided $1.5 million in funding<strong> </strong>for the van to operate in maternity deserts in 12 Illinois counties.</span></p><p><a href="https://newsroom.osfhealthcare.org/osf-healthcare-offers-another-layer-of-monitoring-for-moms-and-babies/"><span><strong>OSF HealthCare offers another layer of monitoring for moms and babies</strong></span></a><span><strong> </strong>– OSF HealthCare launched 24/7 virtual labor monitoring&nbsp;to enhance in-person care with AI technology. AI software alerts OSF OnCall Acute OB nurses to potential risks, enabling quick coordination with staff at Family Birthing Centers at hospitals across the OSF HealthCare Ministry. This is part of a broader effort to reduce mortality rates among women and babies which remain high compared to other wealthy nations. As part of that effort, we also opted to extend to all patients in the I-80 region, regardless of payor, a </span><a href="OSF%20OnCall%20to%20offer%20enhanced%20obstetric%20care%20in%20the%20I-80%20region"><span>Medicaid program for virtual visits and digital support</span></a><span>. The area has lost a number of OBGYN providers.</span></p><p><a href="https://newsroom.osfhealthcare.org/skip-the-wait-with-new-osf-oncall-virtual-exam-visit/"><span><strong>Skip the wait with new OSF OnCall virtual exam visit</strong></span></a><span><strong> </strong>– OSF OnCall Urgent Care walk-in clinics can get busy, especially during the winter with respiratory viruses. So OSF HealthCare installed new technology in urgent care clinics, allowing patients to do in-office virtual visits and bypass the waiting room. Visitors to the OSF OnCall Urgent Care can get accurate testing and diagnoses using digital tools and an on-screen OSF medical provider.</span></p><p><a href="https://newsroom.osfhealthcare.org/osf-healthcare-using-virtual-er-to-cut-patient-wait-times/"><span><strong>OSF HealthCare using virtual ER to cut patient wait times</strong></span></a><span><strong> </strong>– OSF HealthCare is using an innovative approach to help reduce wait times in the emergency departments at OSF HealthCare Saint Elizabeth Medical Center in Ottawa and Peru. Patients who meet certain criteria will be given the option to divert to a virtual medical exam through the use of advanced technology and an onsite nurse.</span></p><img src="https://content.presspage.com/uploads/1873/16ea4d9d-681f-42ba-aaad-9b2ffd25e3e3/1920_karismamorris-bushanddaughteramaneighstevenson.jpg?10000"><h2><span style="color:#007F9B;"><span><strong>Top 5 OSF Innovation stories of 2025</strong></span></span></h2><p><span>As we kick off a new year at OSF HealthCare, we’re looking back at 2025 and the big steps we took to make it easier for patients to access care and health information. Working alongside our academic and business partners, we continued to tap into shared expertise and use artificial intelligence in thoughtful, responsible ways — always guided by what’s fair, appropriate, valid, effective and safe (FAVES).</span></p><p><span>Those efforts are reflected in our Top 5 OSF Innovation stories of 2025, listed in no particular order.</span></p><p><a href="https://newsroom.osfhealthcare.org/osf-healthcare-named-one-of-americas-most-innovative-companies/"><span><strong>OSF HealthCare named one of </strong></span><i><span><strong>America’s Most Innovative Companies</strong></span></i></a><span> – Fortune recognized OSF for its innovation culture and forward-thinking approach, highlighting digital and AI-driven advancements transforming care delivery. OSF first received this distinction in 2023.</span></p><p><a href="https://newsroom.osfhealthcare.org/osf-innovation-brings-vr-beating-hearts-to-life-for-safer-surgeries/"><span><strong>OSF Innovation brings VR beating hearts to life for safer surgeries</strong></span></a><span><strong> – </strong>Thanks to a breakthrough at&nbsp;</span><a href="https://www.osfinnovation.org/"><span>OSF Innovation</span></a><span>, surgeons can “see” their patient’s heart beating in 3D before ever stepping into the operating room. For surgeons, the benefits are game-changing. They can see not only the anatomy but also how it changes with every beat. This is especially critical for conditions such as&nbsp;</span><a href="https://healthlibrary.osfhealthcare.org/Search/134,543"><span>hypertrophic obstructive cardiomyopathy,</span></a><span>&nbsp;where the problem lies in how the heart contracts. Even more surprising, the AI began rendering valves — structures notoriously difficult to see on CT scans.</span></p><p><a href="https://newsroom.osfhealthcare.org/an-osf-inventor-collaborates-to-help-kids-play-safely-through-cancer/"><span><strong>An OSF inventor collaborates to help kids play safely through cancer</strong></span></a><span><strong> – </strong>Exercise physiologist Nick Kemp collaborated with OSF Innovation Studio to design&nbsp;Port Guard that protects the central venous access port for kids with cancer who want to play and stay active. Seven-year-old Amaneigh Stevenson, pediatric cancer patient, was part of testing and declared, “It makes me feel safe. I love it a lot.”</span></p><p><a href="https://newsroom.osfhealthcare.org/osf-developing-app-to-diagnose-migraines-sooner-and-more-accurately/"><span><strong>OSF developing app to diagnose migraines sooner and more accurately</strong></span></a><span><strong> – </strong>For millions of people living with&nbsp;migraine headaches, getting the proper diagnosis can take years, sometimes even decades. A new digital tool developed by a team at the University of Illinois College of Medicine Peoria (UICOMP) and OSF HealthCare aims to change&nbsp;that by helping primary care and other first-contact healthcare providers to identify patients with migraine quickly and accurately.</span></p><p><a href="https://newsroom.osfhealthcare.org/decoding-your-dna-to-prevent-disease/"><span><strong>Decoding your DNA to prevent disease</strong></span></a><span> –<strong> </strong>Using innovative genetic testing, OSF HealthCare stepped farther into personalized medicine in 2025, with a pilot to allow people to be tested with just a swab of their cheek for genetic mutations to determine if someone is at high risk of any of 10 major diseases. So called polygenic testing is not yet covered by insurance but for someone with a a family history of heart disease, cancer or Alzheimer’s, this $250 test could provide some early warning signs and better yet, early intervention.</span></p>]]></content:encoded><category><![CDATA[innovate,OSF OnCall,OSF OnCall Acute OB team,OSF OnCall pregnancy and postpartum mobile support unit,OSF Innovation&#039;,OSF Innovation,OSF Innovation Design Lab,PortGuard,OSF CompleteCare 55+,Most Innovative Companies,Dr. Mathew Bramlet,Mathew Bramlet,Nick Kemp,hypertrophic obstructive cardiomyopathy,,Medicaid,Medicaid Innovation Collaborative,24/7 access,virtual,virtual care,virtual reality,virtual visit,virtual visits,digital health symposium,digital,Digital Care,digital experience,Digital Health,digital health strategy,Digital Hospital,Digital Innovation and Development,digital platform,digital tools,digital transformation,OSF Digital Innovation Development,OSF OnCall Digital Health,University of Illinois College of Medicine Peoria UICOMP,University of Illinois College of Medicine Peoria,University of Illinois College of Medicine]]></category>
            <pubDate>Wed, 31 Dec 2025 07:00:00 -0600</pubDate>
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                        <title>An OSF inventor collaborates to help kids play safely through cancer</title>
                        <link>https://newsroom.osfhealthcare.org/an-osf-inventor-collaborates-to-help-kids-play-safely-through-cancer/</link>
                        <guid>https://newsroom.osfhealthcare.org/an-osf-inventor-collaborates-to-help-kids-play-safely-through-cancer/</guid><pp:caseid>713628</pp:caseid><pp:summary><![CDATA[<p><strong>Key Takeaways:</strong></p><ul><li><strong>Exercise physiologist Nick Kemp collaborated with OSF Innovation Studio to design </strong><span style="text-align:start;"><strong>Port Guard that protects the central venous access port for pediatric cancer patients who want to stay active.</strong></span></li><li><span style="text-align:start;"><strong>PortGuard fosters a sense of normalcy and inclusion while ensuring patient safety.</strong></span></li><li><strong>Seven-year-old Amaneigh Stevenson, pediatric cancer patient, was part of testing and declared, “It makes me feel safe. I love it a lot.”</strong><br>&nbsp;</li></ul>]]></pp:summary><description><![CDATA[<p>Exercise physiologist Nick Kemp collaborated with OSF Innovation Studio on PortGuard, a device to protect pediatric cancer patients' treatment ports, allowing kids to stay active.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/1873/16ea4d9d-681f-42ba-aaad-9b2ffd25e3e3/1920_karismamorris-bushanddaughteramaneighstevenson.jpg?10000"><p><span>Amaneigh (pronounced uh-MAHN-ee) Stevenson of Bloomington, Illinois, is a sassy 7-year-old girl who until January had never undergone surgery or even had a broken bone. But that month she was diagnosed with Stage 3 </span><a href="https://healthlibrary.osfhealthcare.org/Search/34,18221-1"><span>Hodgkin lymphoma</span></a><span> following a biopsy the previous month. Amaneigh is currently undergoing IV chemotherapy treatment at&nbsp;</span><a href="https://www.osfhealthcare.org/hospitals/childrens" target="_blank"><span>OSF HealthCare Children's Hospital of Illinois</span></a><span> in Peoria. Her treatment is expected to last six months.</span></p><p><span>Having cancer has been a difficult challenge for the girl who embraces challenges, her mom, Karisma Morris-Bush, says. This was not a challenge her daughter was prepared for as Amaneigh has always been full of energy.</span></p><p><span>“Ever since she was a little girl, she’s been very active. She’s in gymnastics, she’s done cheerleading, she likes to play outside, run around, cartwheels, flips, you name it. Since she was a baby, she’s been climbing on everything.”</span></p><p><span>Before January, Amaneigh had never missed a gymnastics practice. But the middle child with three brothers was sidelined from that activity for her safety after having a central venous port implanted to deliver chemotherapy and other medications directly to the bloodstream. The port makes treatment safer and more comfortable for frequent infusions or blood draws.</span></p><p><span>Concerned about protecting the port, Morris-Bush worried about her daughter riding a bike or playing with friends. That’s when Nick Kemp, an exercise physiologist with OSF Children's Hospital of Illinois, told her about PortGuard, a device he was working on designing with </span><a href="https://www.osfinnovation.org/invent/osf-innovation-studio"><span>OSF Innovation Studio</span></a><span> engineers that prevents damage to a port during contact activities.</span></p><p><span>“She has lots of friends who are also very active, and there were incidents in which she was bumped into. I was concerned about maybe it [the port] might be dislodged or put her at some type of risk, and he [Nick Kemp] told me that he was creating this PortGuard. He gave me the entire plan. This is when it was in the beginning stages, and I told him I thought it sounds wonderful.”</span></p><p><span>Kemp says he outlined his ideas to the Innovation engineers and told them his solution needed to be durable and comfortable.</span></p><p><span>“It needed to be lightweight, kind of mobile, something that wouldn’t get in the way during sports – that they could wear it and not have any type of disadvantage during their sport, so I really wanted it to be as comfortable as possible.”</span></p><p><span><strong>Bracing for impact</strong></span></p><p><span><img class="image_resized image-style-align-left" style="width:200px;" src="https://content.presspage.com/uploads/1873/44d7493d-45ae-4276-8a48-3817f48e77bf/500_amaneighstevensonandherfriendbella.jpg?x=1752173149437" alt="Amaneigh Stevenson and her friend Bella" width="200">OSF Innovation Studio engineer Reid Jockisch says they needed to create a divot in the design so that upon impact, the molded plastic would not contact the port that it was designed to protect. Jockisch explains engineers used a meter device to measure the force against the PortGuard as they hurled various size balls at high impact.</span></p><p><span>“We used balls from different sports – basketballs, baseballs. We threw them at the port to see and try to measure what kind of impact the port would have. That’s where the force gauge was. So, we measured what those numbers would be as compared to what it would be with no device, and we were able to get them to almost zero.”</span></p><p><span>That means the force on the port would be nearly zero with a high impact hit. Jockisch says they also tested the port’s durability and after pummeling it full force with a baseball bat, two-by-four and even a hammer, it was nearly indestructible.</span></p><p><span>The challenge, says Jockisch, was finding a balance between weight and comfort.</span></p><p><span>“We had to find lighter materials to encase the device such that when it gets attached with the supports, it’s able to stay in place. So, what’s been most helpful; there is patient feedback and their experiences wearing the device and what kind of activities were causing the device to shift around so we could design the straps in a way that supports the weight of the device.”</span></p><p><span>Morris-Bush was part of the prototype testing and says the design works, as she turns to Amaneigh and explains it.</span></p><p><span>“There is a spot right here. It’s kind of a circular spot, Amaneigh chimes in and says, “It goes over my port,” while mom adds, “Right, and that actually hugs the port and, in that spot, – and I can even put my hand over it – there’s space.” Amaneigh adds, “It’s like my port has gone into a mold.”</span></p><p><span>Morris-Bush says the hand washable PortGuard can even be used while her daughter is swimming. With lightweight straps connecting the guard in two places, it can be adjusted depending on the child’s size and what they’re wearing. Most of the time, Amaneigh puts it on by herself. She’s a big fan of the Port Guard because it put her back in action. Amaneigh even showed off a few of her gymnastics moves while wearing it.</span></p><p><span>“It makes me feel protected. It makes me feel safe. I don’t wear it often, but I wear it when I’m doing stuff I’m not supposed to do right now in this situation.” She adds, “It helps me, and I get to play with all the other kids. I love it a lot.”</span></p><p><span>For Kemp, that’s what his invention is all about. He’s excited that his idea to help pediatric cancer patients is doing just that.</span></p><p><span>“That’s the best part. It’s seeing the reactions and seeing them able to do activities and sports that they may not have felt as comfortable doing. So that’s the ultimate goal – to get them comfortable and bring them back to the normalcy that they were used to before treatment.”</span></p><p><span>The protective device is currently in use by 10 pediatric cancer patients. Kemp and OSF will be looking to collaborate with other children’s hospitals across the country to collect patient feedback.&nbsp;Once OSF Innovation Studio has collected additional feedback and has a final product, the goal is to make PortGuard available for as many kids as possible and ultimately scale production for wider use.</span></p><h2><span style="color:#0a731b;">Karisma Morris-Bush</span></h2><h2><span style="color:#0a731b;">Nick Kemp, Reid Jockisch and Amaneigh Stevenson</span></h2><h2><span style="color:#0a731b;">B-roll-PortGuard and Amaneigh Stevenson playing</span></h2>]]></content:encoded><category><![CDATA[innovate,OSF Innovation&#039;,cancer,cancer care,Port Guard,OSF Cancer Institute,OSF HealthCare Children&#039;s Hospital of Illinois,OSF Innovation Studio,Karisma Morris-Bush,Nick Kemp,Reid Jockisch,central venus port,PortGuard]]></category>
            <pubDate>Fri, 11 Jul 2025 07:45:25 -0500</pubDate>
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                <pp:imageOriginal>https://content.presspage.com/uploads/1873/16ea4d9d-681f-42ba-aaad-9b2ffd25e3e3/karismamorris-bushanddaughteramaneighstevenson.jpg?10000</pp:imageOriginal><pp:imageTitle><![CDATA[Karisma Morris-Bush and daughter Amaneigh Stevenson]]></pp:imageTitle></item><item>
                        <title>Top 10 Digital Health and Innovation stories of 2024</title>
                        <link>https://newsroom.osfhealthcare.org/top-10-digital-health-and-innovation-stories-of-2024/</link>
                        <guid>https://newsroom.osfhealthcare.org/top-10-digital-health-and-innovation-stories-of-2024/</guid><pp:caseid>682143</pp:caseid><pp:summary><![CDATA[<p>Key Takeaways:</p><ul><li>OSF OnCall Digital Health expanded its digital hospital efforts and grew the number of virtual visits and digital interactions in 2024</li><li>OSF Innovation saw rewards from its academic partnerships, including the start of a clinical trial of an app to diagnose a concussion within minutes</li><li>AI in health care is advancing and OSF HealthCare has established governance, guiding principles and is preparing its workforce with mandatory, ongoing training&nbsp;</li></ul>]]></pp:summary><description><![CDATA[<p>In 2024, OSF HealthCare advanced academic partnerships, expanded access to care through digital and virtual options, and prepared its workforce for generative AI through training.</p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/1873/04594961-c0b2-4838-866f-e89a5e12565d/1920_imagefortop10.png?10000"><p>As we begin a new year at OSF HealthCare, we’re reflecting on 2024 and the major strides in digital transformation to make access to care and health information seamless for our patients. At OSF, we continue to collaborate with our academic and business partners to leverage collective expertise and to responsibly use the power of artificial intelligence, always taking care to use guiding principles of what is fair, appropriate, valid, effective and safe (FAVES).</p><p><strong>The efforts are highlighted here in our Top 10 Digital Health and Innovation stories of 2024 in no particular order.</strong></p><p><strong>1. </strong><a href="https://newsroom.osfhealthcare.org/osf-healthcare-unveils-new-55-primary-care-service-for-individuals-with-two-or-more-chronic-conditions/"><strong>OSF Unveils new 55+ primary care service in south suburban Chicago</strong></a>: Called OSF Complete Care 55+, this is a unique&nbsp;collaboration between OSF HealthCare Little Company of Mary Medical Center and OSF OnCall, the digital arm of the health care Ministry. When launched in early 2025, this primary care program will incorporate in-person visits, plus a mix of virtual care, digital health monitoring tools and 24/7 access to a care team<span> </span>focusing on those with chronic conditions.</p><p><strong>2. </strong><a href="https://newsroom.osfhealthcare.org/building-an-ai-prepared-workforce/"><strong>Building an AI prepared workforce</strong></a><span>: </span>OSF HealthCare leaders took just six weeks to develop mandatory training about generative AI for all 24,000 OSF Mission Partners (employees) because tools were already&nbsp;publicly available. Melissa Knuth<span>, </span>Vice President of Planning, outlines that to rise to the challenge, she worked with OSF Innovation to use mixed media to keep the content interesting and tapped generative AI tools to assist with the content creation.</p><p><strong>3.</strong><span><strong> </strong></span><a href="https://newsroom.osfhealthcare.org/osf-digital-hospital-patients-in-rockford-area-say-its-the-best-medicine/"><strong>OSF Digital Hospital patients in Rockford area say it’s the best medicine</strong></a><strong>:</strong><span><strong> </strong></span>OSF OnCall expands its digital hospital program to Rockford and receives rave reviews from some of its first patients. In addition, a well-known farm broadcaster <a href="https://newsroom.osfhealthcare.org/care-was-so-personal-says-broadcaster-former-state-ag-leader-about-osf-oncall-digital-hospital/">shares her story</a> about receiving acute-level care from the comfort of her own home and urges others who are eligible to consider the option.</p><p><strong>4. </strong><a href="https://newsroom.osfhealthcare.org/osf-innovation-sets-the-table-for-solution-to-prevent-cancelled-surgeries/"><strong>OSF Innovation sets the table for solution to prevent cancelled surgeries</strong></a><span><strong>: </strong></span>T<span>wo OSF HealthCare nurses</span> turned to the OSF Innovation Studio team to help improve their Device Table software that serves as a database for implanted medical devices – offering information needed for surgical teams to reference for safety in surgery planning. We also <a href="https://newsroom.osfhealthcare.org/opensurg-inc-and-osf-healthcare-collaborate-to-revolutionize-operating-room-efficiency-and-improve-patient-safety/">reported on the creation of a spin-off company</a>, <i>OpenSurg,</i>&nbsp;which will license and promote widespread sales of Device Table and related support features.</p><p><strong>5. </strong><a href="https://newsroom.osfhealthcare.org/osf-healthcare-experts-establish-guiding-principles-when-developing-digital-care-strategy/"><strong>OSF HealthCare experts: ‘Establish guiding principles when developing digital care strategy’</strong></a><span><strong>: </strong></span>OSF OnCall was a spotlight vendor and presenter at this year’s American Telemedicine Association’s annual Nexus conference in Phoenix, Arizona. OSF OnCall Senior Vice President Jennifer Junis advised during her presentation that health systems use guiding principles when developing their approach to digital health and to involve clinicians and patients when piloting new programs and digital tools. OSF HealthCare has also become a founding member of an <a href="https://newsroom.osfhealthcare.org/osf-healthcare-joins-american-telemedicine-associations-digital-health-alliance-as-founding-partner/">ATA Digital Center of Excellence</a>.</p><p><strong>6. </strong><a href="file:///C:/Users/sjdankoff/AppData/Local/Microsoft/Windows/INetCache/Content.Outlook/70INLRM3/Mapping%20the%20future%20for%20early%20diagnosis%20of%20rare%20diseases"><strong>Mapping the future for early diagnosis of rare diseases</strong></a>: A&nbsp;<a href="https://www.osfinnovation.org/invent/innovation-academic-incubator/jump-arches">Jump ARCHES</a>&nbsp;grant-funded project with the University of Illinois Urbana-Champaign&nbsp;is using generative AI and knowledge graphs that map symptoms to detect rare diseases. Adam Cross, MD, who leads the OSF Children's Innovation Lab in Peoria, Illinois, wants to create a point-of-care tool for primary care providers to help patients get an early diagnosis of a rare disease.</p><p><strong>7. </strong><a href="https://newsroom.osfhealthcare.org/health-economist-connectivity-and-trust-can-expand-telehealth/"><strong>Health economist: Connectivity and trust can expand telehealth</strong></a><strong>: </strong>OSF OnCall hosted its first-ever digital health symposium which drew nearly 150 clinicians and vendors. Keynote speaker health economist and advisor Jane Sarasohn-Kahn stressed evidence-based digital technologies can improve health outcomes, but health systems need to build trust and expand community partnerships to increase engagements.</p><p><strong>8. </strong><a href="https://newsroom.osfhealthcare.org/fast-tracking-hope-rapid-intake-at-the-osf-cancer-institute/"><strong>Fast-Tracking Hope: Rapid Intake at the OSF Cancer Institute</strong></a>: OSF HealthCare began 2024 with the opening of its new comprehensive Cancer Institute, offering advanced radiation therapy such as <a href="https://x.osfhealthcare.org/services/specialties/cancer/conditions-treatments/treatments/radiation/brachytherapy">brachytherapy</a> and <a href="https://x.osfhealthcare.org/services/specialties/cancer/conditions-treatments/treatments/radiation/brachytherapy">proton beam therapy</a>.<span>&nbsp; </span>It also launched a new rapid intake system, developed by OSF OnCall and OSF Innovation to offer a single point of contact through OSF-HOPE (844- 673-4467) so cancer patients can be immediately connected to treatment and support services.</p><p><strong>9.</strong> <a href="https://newsroom.osfhealthcare.org/piloting-a-smarter-colonoscopy/"><strong>Piloting a smarter colonoscopy</strong></a>:<span> </span>OSF HealthCare St. Joseph Medical Center piloted artificial intelligence-backed colonoscopies, using a company called GI Genius, to improve detection of precancerous polyps. During the pilot, the adenoma detection rate (ADR) averages increased among all patients involved to as high as 12%, while individual physician ADR increased as high as 32.8%. The technology is now being implemented across the OSF Ministry.</p><p><strong>10.</strong> <a href="https://newsroom.osfhealthcare.org/testing-the-path-to-better-concussion-diagnosis/"><strong>Testing the path to better concussion diagnosis</strong></a>: An OSF Innovation lab-designed FlightPath app is now being tested by athletes at Illinois State, Bradley and Illinois Wesleyan Universities. The app only takes about two minutes to collect more than a million data points as a person tries to catch a hummingbird within a 3D space on a screen. The clinical trial could last two years.&nbsp;</p>]]></content:encoded><category><![CDATA[innovate,Digital Innovation Development,Digital Innovation and Development,Illinois Innovation Network,innovation,Innovation Labs,Jump Simulation and Innovation Center,Medicaid Innovation Collaborative,OSF Digital Innovation Development,OSF Innovation Design Lab,24/7 access,3D model,adenoma detection,adenoma,Advance Imaging &amp; Modeling,cancer,cancer care,Cancer center,Cancer Institute,cancer journey,cancer navigaion,cancer patient navigator,OSF Cancer Support Services,OSF HealthCare Cancer Institute,Jump ARCHES,Jump Simulation,Jump Simulation &amp; Education Center,Jump STEAM,Jump Trading Simulation &amp; Education Center,OSF Complete Care 55+,OSF HealthCare Little Company of Mary,AI,AI engagement,AI training,Melissa Knuth,OSF OnCall,OSF OnCall Digital Health,OSF OnCall Digital Hospital,OSF Innovation Studio,OSF Innovation&#039;,OpenSurg,OpenSurg.com,Device Table,medical device,Mary Marvin,Jill Teubel,Jim Weldy,ATA,ATA Nexus 2024,American Telemedicine Association,Jennifer Junis,Brandi Clark,Becky Buchen,Dr. John Vozenilek,John Vozenelik,Dr. Jonathan Handler,Jonathan Handler,Adam Cross,Dr. Adam Cross,Noel Adams,University of Illinois,University of Illinois Chicago,University of Illinois College of Medicine Peoria,University of Illinois College of Medicine Peoria UICOMP,University of Illinois Urbana-Champaign,Bradley University,Illinois State University,Illinois State University Athletics,Dr. Karan Rai,Jane Sarasohn-Kahn,OSF OnCall Digital Health Symposium,brachytherapy,Proton beam therapy,rapid intake model,rapid intake,Dr. Omar Khokhar,FlightPath,Illinois Wesleyan University,Kathleen Kinsella,Kate Barth]]></category>
            <pubDate>Thu, 26 Dec 2024 13:00:00 -0600</pubDate>
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                        <title>Beating hearts pump up virtual reality for pre-surgery planning</title>
                        <link>https://newsroom.osfhealthcare.org/beating-hearts-pump-up-virtual-reality-for-pre-surgery-planning/</link>
                        <guid>https://newsroom.osfhealthcare.org/beating-hearts-pump-up-virtual-reality-for-pre-surgery-planning/</guid><pp:caseid>582059</pp:caseid><description><![CDATA[<p><span style="background-color:white;">Innovation for Health OSF HealthCare-Bradley University grant is pumping $50,000 in research money into AI, virtual reality for complex heart surgeries.</span></p>]]></description><content:encoded><![CDATA[<img src="https://content.presspage.com/uploads/1873/e0665f6a-23c0-446a-b392-5d2eeb6b71c1/1920_plunketheartmixedreality.png?10000"><p><span>In a rapidly evolving technological landscape, machine learning has emerged as a transformative force; it is reshaping countless industries, health care included. Machine learning and artificial intelligence </span><span style="background-color:white;"><span>increases productivity, reduces human errors and frees up time for other tasks that can have greater impact. In the case of converting medical scans into 3D or 4D images for a deeper view of organs, tissues and tumors, AI has the possibility of changing how surgeons prepare to operate on patients with complex issues.</span></span></p><p><span style="background-color:white;">Matthew Bramlet, MD, is a pediatric cardiologist at the University of Illinois College of Medicine at Peoria who specializes in congenital cardiac MRI for the Children’s Hospital of Illinois.<span>&nbsp; </span>His Advanced Imaging and Modeling (AIM) lab at </span><a href="https://www.osfinnovation.org/jump-simulation"><span style="background-color:white;">Jump Trading Simulation & Education Center</span></a><span style="background-color:white;"> is focused on translation of medical images into 3D and 4D interactive models (for 3D printing for virtual reality) to assist in pre-surgical planning of complex cardiac and cancer cases.<span>&nbsp;</span></span></p><p><span style="background-color:white;">According to Dr. Bramlet, the heart is a unique organ because it changes shape as it expands and contracts to pump blood through the body. This change in shape becomes a problem when the muscle of the heart grows abnormally and obstructs its own ability to pump blood out of the heart. This is a problem, because no current technology exists that allows a surgeon to view this 4D, dynamic obstruction.<span>&nbsp;</span></span></p><p><span style="background-color:white;">Rather than relying on years of trial and error of surgical expertise to determine the correct way to cut out muscle to relieve the obstruction, this project seeks to provide the surgeon with a VR view of their next patient’s beating heart in 4D.</span></p><p><span style="background-color:white;">The Innovation for Health (IFH) grant program with Bradley University in Peoria, Illinois is designed to inject funding ($50,000) to combine clinical problems with computer science expertise.<span>&nbsp; </span></span><span>Assistant Professor Sam Hawkins, PhD, and graduate students at Bradley University plan</span><span style="background-color:white;"> to utilize machine learning to convert standard medical images into a sequence of 3D models, that when played sequentially create a 3D beating heart; the “4D heart”.<span>&nbsp;&nbsp;</span></span></p><p><span style="background-color:white;">This concept </span><a href="https://threedmedprint.biomedcentral.com/articles/10.1186/s41205-018-0034-7"><span style="background-color:white;">has been previously demonstrated</span></a><span style="background-color:white;"> by Dr. Bramlet’s AIM lab, but it took an entire summer to convert images of a 4D heart, showing both the expansion and contraction of the heart that could be viewed through a virtual reality headset. Dr. Bramlet says that’s not a sustainable approach.</span></p><p><span>“How do we put the CT data into a computer and slice by slice, say this is the myocardial tissue so we get an exact replica of the heart. But I don't need just one (3D replica of a heart); I need 20 to make each phase of that heart (he simulates the sound of repetitive beats) into a 4D heart.”</span></p><p><span>Assistant professor Hawkins believes machine learning can be leveraged to perform the labor-intensive process of converting images. Hawkins explains Computer Science graduate students at Bradley are part of the research effort.</span></p><p><span>“First, we need to figure out what part of the image is the heart and what part is not. And then we need to combine these tiny images into a 3D image. And then we need to do that many times to get the 4D.”</span></p><p><strong>Improving pre-surgery planning</strong></p><p><span>The solution should allow surgeons to virtually preview the beating heart of their patient, showing the obstruction in 4D, therefore providing a completely new pre-surgical analysis tool. The multidimensional view allows surgeons to zero in on structures of the heart, significantly enlarge elements and get a much better view of the anatomy. This machine learned 4D generation of a beating heart will be a first of its kind technology.</span></p><p><span>Researchers believe creating an automated solution can reduce the manual process of converting images from months, to hours, and eventually perhaps minutes. That option could eventually be applied to images for other types of complex medical cases in adults, children and the smallest infants.</span></p><p><span>Dr. Bramlet says new AI-supported software could provide a scaled solution for surgeons everywhere.</span></p><p><span>“The most immediate impact isn’t going to be the 4D heart. The impact at a grander scale will be the scalability of how any program will be able to create models for pre-surgical planning; 3D printed or for VR with this technology.”</span></p><p><span>Hawkins believes the technology will lead to other hospitals adopting the approach for pre-surgery planning.</span></p><p><span>“It has the potential to really remove the barrier of entry for institutions that don’t have the expertise or the time but do have images they wanted to view (more intricately).”</span></p><p><span>This entire machine learning project has been made possible by Jump Simulation’s long-term investment in sharing 3D insights. Since, 2014, Jump has contributed 3D models of congenital heart disease to Dr. Fauci’s 3D database at the </span><a href="https://3d.nih.gov/collections/heart-library?tab=search"><span>NIH</span></a><span>. This library of annotated 3D models provides the rich dataset of raw material needed for machine learned insights into automated segmentation of patient specific 3D models.&nbsp;&nbsp;</span></p><p><span>Within a year, this project aims to automate, through machine learned algorithms, the conversion of cardiac CTs into virtual reality. The 4D view will enable surgeons to see the beating hearts specific to individual patients.</span></p><p><span>Imagine being a surgeon who can plan a surgery in VR by seeing the beating heart of your patient before you walk into the OR. This project seeks to transition this vision from science fiction to science fact.</span></p><h2><span style="color:#16a085;">Dr. Matthew Bramlet</span></h2><h2><span style="color:#16a085;">Sam Hawkins, PhD</span></h2><h2><span style="color:#16a085;">4D Hearts B-roll</span></h2>]]></content:encoded><pp:quotes><pp:quote>
                    <pp:quotename><![CDATA[Dr. Matthew Bramlet, pediatric cardiologist, director of Advanced Imaging and Modeling Lab at Jump Trading Simulation &amp; Education Center.]]></pp:quotename>
                    <pp:quotetext><![CDATA[The most immediate impact isn’t going to be the 4D heart. The impact at a grander scale will be the scalability of how any program will be able to create models for pre-surgical planning; 3D printed or for VR with this technology.]]></pp:quotetext>
                </pp:quote></pp:quotes><category><![CDATA[Innovation for Health,IFH,OSF HealthCare,OSF Innovation&#039;,Bradley University,Dr. Matthew Bramlet,Sam Hawkins,cardiac CT,CT scan&#039;,MRI,beating heart,3D,4D,machine learning&#039;,AI,Jump Trading Simulation &amp; Education Lab,University College of Medicine Peoria,innovate,health equity,medical imagine,AIM Lab,Advance Imaging &amp; Modeling,pre-surgery planning&#039;,virtual reality,VR]]></category>
            <pubDate>Fri, 21 Jul 2023 10:43:00 -0500</pubDate>
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