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Organizations today are complex, hyperdimensional, and continuously changing in response to the environment. Over the past decade, the Military Health System has seen continuous organizational change to transform healthcare delivery, and the Air Force Medical Service (AFMS) is currently transitioning to an Air Force Medical Command (AFMEDCOM) structure to best prepare for Great Power Competition and other challenges ahead. The current state of the enterprise involves decision making, resourcing, and execution of education and training that is largely decentralized in nature. To support these efforts, in February 2024, a team of diverse AFMS stakeholders gathered in Washington, D.C. to examine the future of medical education and training for the U.S. Air Force in a new way: through systems theory and ecosystem mapping. This ecosystem approach enables development of an organizational structure and process for change that considers how all stakeholders relate, what external factors threaten the desired transformation, and how the resulting enterprise could become more resilient with future uncertainty and change. This paper discusses the theory behind the ecosystem approach and how it was used to develop a transformed model for the AFMS to organize its education and training. Additionally, a dialogue is presented on how this unique methodology to understanding stakeholder relationships can be leveraged in the re-optimization efforts for Great Power Competition.
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http://dx.doi.org/10.1093/milmed/usae401 | DOI Listing |
Biomaterials
September 2025
Key Laboratory of Biopharmaceutical Preparation and Delivery, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, PR China; University of Chinese Academy of Sciences, Beijing, 100049, PR China. Electronic address:
The stimulator of interferon genes (STING) pathway represents a promising target in cancer immunotherapy. However, the clinical translation of cyclic dinucleotide (CDN)-based STING agonists remains hindered by insufficient formation of functional CDN-STING complexes. This critical bottleneck arises from two interdependent barriers: inefficient cytosolic CDN delivery and tumor-specific STING silencing via DNA methyltransferase-mediated promoter hypermethylation.
View Article and Find Full Text PDFAm J Emerg Med
September 2025
Department of Surgical Education, Orlando Regional Medical Center, Orlando, FL, USA; Department of Surgery, Division of Trauma and Surgical Critical Care, Orlando Regional Medical Center, Orlando, FL, USA. Electronic address:
Background: There is conflicting literature regarding mortality outcomes associated with REBOA usage in patients with severe thoracic or abdominal trauma. Our study aims to assess the benefits and negative implications of REBOA use in adult trauma patients in hemorrhagic shock with severe thoracic or abdominal injuries.
Methods: This retrospective cohort analysis utilized the American College of Surgeons Trauma Quality Improvement Program Participant Use File (ACS-TQIP-PUF) database from 2017 to 2023 to evaluate adult patients with severe isolated thoracic or abdominal trauma undergoing REBOA placement.
Anim Reprod Sci
September 2025
Department of Biomedical & Clinical Sciences (BKV), BKH/Obstetrics & Gynecology, Faculty of Medicine and Health Sciences, Linköping University, Linköping SE-58185, Sweden.
Embryo transfer (ET) is a valuable reproductive technology in pigs, albeit its efficiency remains significantly lower than that of natural mating or artificial insemination (AI), owing to high embryonic death rates. Critical for embryo survival and pregnancy success is the placenta, which supports conceptus development through nutrient exchange, hormone production, and immune modulation. Alterations in placental development and function may therefore underlie the reduced efficiency of ET.
View Article and Find Full Text PDFJ Econ Entomol
September 2025
Department of Entomology and Nematology, Southwest Florida Research and Education Center (SWFREC), University of Florida/IFAS, Immokalee, FL, USA.
The Citrus Under Protective Screen is a novel production system implemented to grow citrus free of huanglongbing disease vectored by Asian citrus psyllid, Diaphorina citri. Other significant pests such as mites, scales, thrips, mealybugs, and leafminers, as well as parasitoids and small predators, have been identified from Citrus Under Protective Screen and require management. Chrysomphalus aonidum (L.
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