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Tyler O'Neal, Staff Editor ACADEMIA April 7, 2022, 4:02 pm

MD Anderson builds ML models that predict adverse outcomes after abdominal hernia surgery

Procedure-specific risk calculator has the potential to encourage changes in patient behaviors before surgery to improve success in abdominal wall reconstruction operations

Machine learning (ML) models developed by surgeons at the University of Texas MD Anderson Cancer Center in Houston have shown a high level of accuracy in predicting which types of patients are most likely to have a hernia recurrence or other complications. Research findings are reported in an academic article published on the website of the Journal of the American College of Surgeons (JACS).

Repair of ventral hernias—hernias that occur when a bulge emerges through the abdominal muscles—is a common operation, with more than 400,000 performed annually in the U.S. However, more than a third of these types of hernias end up happening again or patients experience some other type of post-surgery complication.

“We found that the machine learning algorithm, trained by using our own data, could accurately predict the occurrence of complications after complex abdominal wall repair,” said lead study author Abbas M. Hassan, MD, postdoctoral fellow and Ph.D. candidate, department of plastic surgery, MD Anderson. “It was also able to identify factors associated with poor outcomes.”

Dr. Hassan and colleagues say this is the first study to describe the use of ML to predict postsurgery complications of abdominal wall reconstruction.

Ventral hernias can occur in patients who’ve had an abdominal operation for something other than hernia repair, such as gall bladder removal or, in many cases at MD Anderson, to remove a tumor and nearby tissue, or even part of an organ. The surgeons noted that with more than 4 million abdominal operations performed in the United States annually, the demand for abdominal wall reconstruction is growing.

Accuracy rates and identified risk factors
The ML models achieved average accuracy rates as follows:

  • 85% for predicting hernia recurrence
  • 72% for predicting surgical site occurrence
  • 84% for predicting 30-day hospital readmission

A deeper analysis found that factors that contributed to an increased risk of hernia recurrence were an existing breach of the rectus muscle of the front abdominal wall, obesity, and the bridged repair technique, which uses mesh to span the hernia defect.

Study insights
Dr. Butler explained the rationale for developing the ML models. “It’s really important for surgeons to understand what the risk factors are to abdominal wall reconstruction,” he said. “It is such a common problem that surgeons have to deal with in just about every subspecialty of surgery. It puts tremendous financial, emotional, and physical strains on the healthcare system and on the patients that are affected as well as the surgeons dealing with these problems.”

Many patients experience discomfort and distress if they develop a hernia as well as if their hernia recurs after an operation to repair it fails. “Any information that we can have to help predict some of these adverse outcomes and potentially avoid or mitigate them will be a huge benefit to the patients, their outcomes, and to the financial well-being of the healthcare system,” Dr. Butler said.

Dr. Hassan noted research that has shown that a 1% reduction in the rate of hernia recurrence alone would save the U.S. healthcare system $30 million, according to a 2012 study. “Reduction in complications is really one of the paramount goals of abdominal wall reconstruction,” Dr. Hassan said. “Patients who develop a complication may require readmission or reoperation, and this results in increased morbidity and mortality and healthcare costs, as well as reduced quality of life. So, this becomes a critical concern when we care for patients with cancer who are immunocompromised.”

Reducing risk factors that lead to complications
Dr. Butler said the goal is to incorporate an even broader dataset into the ML models and construct risk calculators that can help surgeons more clearly identify patients who are most susceptible to complications after ventral hernia repair and potential risk factors that can be modified to improve their chances of success. “And then you can have a frank discussion in real-time and set goals with patients,” he said. “For example, you can use the risk calculator to explain to the patient that your chance of hernia recurrence will go down by a certain percent if you lose weight, reduce your HbA1c*, and stop smoking. Also, your risk of having a surgical site occurrence by doing those things will go down by a different tangible percent.” This approach gives patients accurate, tangible goals and provides realistic motivation to actively participate in improving their outcomes of abdominal wall reconstruction.

“We believe the models can be improved and made to be more generalizable in subsequent iterations, and we’re currently embarking on a multicenter study to validate the models and develop a first-of-its-kind integrated tool that uses these models and clinical data and imaging data to provide a robust prediction tool,” Dr. Hassan said. “Our hope is that this tool will be integrated in the future in the electronic medical record and mobile interfaces.”

Study coauthors are Sheng-Chieh Lu, Ph.D., and C. Sidey-Gibbons, Ph.D., of the MD Anderson Center for INSPiRED Cancer Care, Department of Symptom Research; and Malke Asaad, MD, Jun Liu, Ph.D., and Anaeze C. Offodile 2nd, MD, MPH, of the Department of Plastic and Reconstructive Surgery at MD Anderson.

Dr. Offodile is also affiliated with the Institute for Cancer Care Innovation at MD Anderson. Dr. Butler is a consultant for Allergan/AbbVie. Dr. Offodile has received research funding from Blue Cross Blue Shield and the National Academy of Medicine unrelated to the submitted work and reports honorarium from Indiana University.

Surrey academics show how blockchain offers a solution to post-Brexit border digitization to build supply chain trust

Tyler O'Neal, Staff Editor ACADEMIA April 7, 2022, 4:14 am

As a result of the UK leaving the European Union, logistics firms have faced additional friction at UK borders. Consequently, there have been calls for automated digital borders, but few such systems exist. Surrey researchers have now discovered that a blockchain-based platform can improve supply chain efficiency and trust development at our borders. surrey blockchain links blue media 332c8

Blockchain is a system in which a record of transactions made in bitcoin, or another cryptocurrency, are maintained across several computers that are linked in a peer-to-peer network. The blockchain-based platform studied in this case is known as an RFIT platform; a pilot implementation blockchain system that links data together and ensures that this data is unalterable. This end-to-end visibility of unchangeable data helps to build trust between supply partners.

Professor of Digital Transformation at the University of Surrey and co-author of the study, Glenn Parry, said:

“Since the UK’s withdrawal from the EU Customs Union, businesses have faced increased paperwork, border delays, and higher costs. A digitally managed border system that identifies trusted shipments appears an obvious solution, but we needed to define what trust actually means and how a digital system can help.

“Supply chain participants have long recognized the importance of trust in business relationships. Trust is the primary reason companies cite when supply chain relationships break down, which is especially true at customs borders. Current supply chain friction at UK borders is replicated across the world. Delay is caused by a lack of trust in goods flows, and hence a need to inspect.”

Surrey academics stressed that the introduction of this platform does not remove the need for trust and trust-building processes in established buyer-supplier relationships. Blockchain platform providers must continue to build a position of trust with all participants.

In the case of the import of wine from Australia to the UK, researchers found that the RFIT platform can employ a blockchain layer to make documentation unalterable. The platform facilitates the building of trust across the supply chain by providing a single source of validated data and increasing visibility. Reduced data asymmetry between border agencies and suppliers improves accuracy, timeliness, and integrity.

Through its 2025 UK Border Strategy, the UK Government is seeking to establish technology leadership in reducing friction in cross-border supply chains.

Visiting Fellow at Surrey and co-author of the study, Mike Brookbanks, said:

“The broader findings from the case study are influencing the UK Government on how to address the current challenges with supply chains at UK customs borders. We hope our work will also influence the Government’s current focus on trust ecosystems, as part of the single trade window (STW) initiative. We truly believe that the use of this innovative digital technology will form the Government’s first step in developing a utility trade platform, encouraging broader digitization of our borders.”

Japanese researchers build simulations that explain Greenland’s slower summer warming

Tyler O'Neal, Staff Editor ACADEMIA April 6, 2022, 10:00 am

Climate changes in the tropical Pacific have temporarily put the brakes on rapid warming and ice melting in Greenland.

A puzzling, decade-long slowdown in summer warming across Greenland has been explained by researchers at Hokkaido University in Japan. Their observational analysis and supercomputer simulations revealed that changes in sea surface temperature in the tropical Pacific Ocean, thousands of miles to the south, trigger cooler summer temperatures across Greenland. The results, published in the journal Communications Earth & Environment, will help improve future predictions of the Greenland ice sheet and Arctic sea ice melting in the coming decades. A slow-down in summer warming and ice loss in Greenland over the past decade is linked to a shift in El Niño to events over central Pacific, via an atmospheric remote forcing. (Illustration: Shinji Matsumura).

“The Greenland ice sheet is melting in the long run due to global warming associated with greenhouse gas emissions, but the pace of that melting has slowed in the last decade,” says Hokkaido University environmental Earth scientist, Shinji Matsumura. “That slowing was a mystery until our research showed it is connected to changes to the El Niño climate pattern in the Pacific.”

El Niño is a natural, cyclic phenomenon that raises the water temperature in the central and east-central equatorial Pacific Ocean. Scientists know that such large-scale changes alter atmospheric conditions elsewhere due to their association with powerful waves of air pressure called teleconnections. But climate experts struggled to see how the Pacific El Niño could cool Greenland in the summer because easterly summer winds in the tropics usually prevent such teleconnections from forming.

In the new study, the team accounted for recent changes in the Pacific El Niño event, which pushed the warmer sea temperatures further north than usual. This took them beyond the influence of the easterly wind and allowed atmospheric teleconnections that stretch up to Greenland to form.

In turn, these teleconnections disrupt the atmospheric conditions and thus the weather around Greenland in the summertime. Specifically, they drive more intense cyclones, which move colder air over the land. This is enough, the new study shows, to explain the lower-than-expected temperatures and ice melting in the region. Temperatures and rates of ice sheet melting both peaked in 2012.

“The findings, and the slowdown in Greenland’s summertime warming, do not undermine the seriousness of climate change or the need to tackle greenhouse gas emissions,” Matsumura stresses. Rather, they demonstrate how natural changes can act alongside the long-term global warming trend to varying local conditions. The slowdown in warming is local to Greenland. The wider Arctic region remains one of the fastest-warming places on Earth.

El Niño events tend to be followed by similar but different natural climatic shifts called La Niña, in which sea surface temperatures drop. These events tend to bring higher temperatures to Greenland.

“We expect that global warming and ice sheet melting in Greenland and the rest of the Arctic will accelerate even further in the future due to the effects of anthropogenic warming,” Matsumura says.

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