Publications by authors named "Eric A Elster"

Background: Patients with sepsis-induced hypotension are generally treated with a combination of intravenous fluids and vasopressors. The attributes of patients receiving a liberal compared to a restrictive fluid strategy have not been fully characterized. We use machine learning (ML) techniques to identify key predictors of restrictive versus liberal fluids strategy, and the likelihood of receiving each strategy in distinct patient phenotypes.

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  • This study aims to enhance prediction of patient outcomes after severe traumatic brain injury (sTBI) by integrating clinical data with serum inflammatory and neuronal protein levels.
  • Researchers enrolled 53 adult patients and used machine learning techniques to develop models predicting post-traumatic vasospasm (PTV) and mortality, identifying specific biomarkers and clinical signs as key predictors.
  • Findings reveal that certain inflammatory markers and demographic factors can better predict PTV development and mortality than standard clinical tools, indicating the importance of biochemical data in assessing sTBI outcomes.
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  • Researchers studied septic patients with acute respiratory failure (ARF) needing mechanical ventilation to identify different patient phenotypes, aiming to understand the variability in their clinical presentation and outcomes.
  • They conducted a multi-center retrospective study, analyzing clinical data from ICU patients across two hospitals and using machine learning to cluster the data into distinct phenotypes.
  • Four phenotypes were identified, each displaying unique clinical features and mortality outcomes, demonstrating significant differences in 28-day mortality rates among them despite similar demographics.
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Mini abstract US military assets have been integral to the response to global pandemics, natural disasters, civilian casualties, and combat care. Strategies are being implemented to strengthen the military health care system and curtail the erosion of relevant surgical skills and knowledge during periods of low combat intensity. However, additional challenges remain.

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Background: Top-tier general and specialty scientific journals serve as a bellwether for national research priorities. We hypothesize that military-relevant publications are underrepresented in the scientific literature and that such publications decrease significantly during peacetime.

Methods: We identified high impact journals in the fields of Medicine, Surgery and Critical Care and developed Boolean searches for military-focused topics using National Library of Medicine Subject Headings terms.

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Background: Septic patients who develop acute respiratory failure (ARF) requiring mechanical ventilation represent a heterogenous subgroup of critically ill patients with widely variable clinical characteristics. Identifying distinct phenotypes of these patients may reveal insights about the broader heterogeneity in the clinical course of sepsis. We aimed to derive novel phenotypes of sepsis-induced ARF using observational clinical data and investigate their generalizability across multi-ICU specialties, considering multi-organ dynamics.

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Background: The clinical demands of mass casualty events strain even the most well-equipped trauma centers and are especially challenging in resource-limited rural, remote, or austere environments. Gynecologists and urologists care for patients with pelvic and abdominal injuries, but the extent to which they are able to serve as "force multipliers" for trauma care is unclear. This study examined the abilities of urologists and gynecologists to perform 32 trauma procedures after mentored training by expert trauma educators to inform the potential for these specialists to independently care for trauma patients.

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Background: All military surgeons must maintain trauma capabilities for expeditionary care contexts, yet most are not trauma specialists. Maintaining clinical readiness for trauma and mass casualty care is a significant challenge for military and civilian surgeons. We examined the effect of a prescribed clinical readiness program for expeditionary trauma care on the surgical performance of 12 surgeons during a 60-patient mass-casualty situation (MASCAL).

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The last 20 years of sustained combat operations during the Global War on Terror generated significant advancements in combat casualty care. Improvements in point-of-injury care, en route care, and forward surgical care appropriately aligned with the survival, evacuation, and return to duty needs of the small-scale unconventional conflict. However, casualty numbers in large-scale combat operations have brought into focus the critical need for modernized casualty receiving and convalescence: Role 4 definitive care.

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A combination of improved body armor, medical transportation, and treatment has led to the increased survival of warfighters from combat extremity injuries predominantly caused by blasts in modern conflicts. Despite advances, a high rate of complications such as wound infections, wound failure, amputations, and a decreased quality of life exist. To study the molecular underpinnings of wound failure, wound tissue biopsies from combat extremity injuries had RNA extracted and sequenced.

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Introduction: Graduate Medical Education plays a critical role in training the next generation of military physicians, ensuring they are ready to uphold the dual professional requirements inherent to being both a military officer and a military physician. This involves executing the operational duties as a commissioned leader while also providing exceptional medical care in austere environments and in harm's way. The purpose of this study is to review prior efforts at developing and implementing military unique curricula (MUC) in residency training programs.

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Introduction: Accurate identification of venous thromboembolism (VTE) is critical to develop replicable epidemiological studies and rigorous predictions models. Traditionally, VTE studies have relied on international classification of diseases (ICD) codes which are inaccurate - leading to misclassification bias. Here, we developed ClotCatcher, a novel deep learning model that uses natural language processing to detect VTE from radiology reports.

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  • Microbial contamination in combat wounds can lead to infections and negative health effects.
  • Current methods for detecting microbes in wounds are not very effective at identifying important functional genes.
  • Targeted metagenomic sequencing can provide detailed profiles of wound bacteria, which could improve clinical decision-making and predict wound healing outcomes.
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Dynamic Network Analysis (DyNA) and Dynamic Hypergraphs (DyHyp) were used to define protein-level inflammatory networks at the local (wound effluent) and systemic circulation (serum) levels from 140 active-duty, injured service members (59 with TBI and 81 non-TBI). Interleukin (IL)-17A was the only biomarker elevated significantly in both serum and effluent in TBI vs. non-TBI casualties, and the mediator with the most DyNA connections in TBI wounds.

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Background: Systemic inflammatory response remains a poorly understood cause of morbidity and mortality after traumatic injury. Recent nonhuman primate (NHP) trauma models have been used to characterize the systemic response to trauma, but none have incorporated a critical care phase without the use of general anesthesia. We describe the development of a prolonged critical care environment with sedation and ventilation support, and also report corresponding NHP biologic and inflammatory markers.

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Battlefield injury management requires specialized care, and wound infection is a frequent complication. Challenges related to characterizing relevant pathogens further complicates treatment. Applying metagenomics to wounds offers a comprehensive path toward assessing microbial genomic fingerprints and could indicate prognostic variables for future decision support tools.

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Introduction: The pathophysiology of the inflammatory response after major trauma is complex, and the magnitude correlates with severity of tissue injury and outcomes. Study of infection-mediated immune pathways has demonstrated that cellular microRNAs may modulate the inflammatory response. The authors hypothesize that the expression of microRNAs would correlate to complicated recoveries in polytrauma patients (PtPs).

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Optimal timing and procedure selection that define staged treatment strategies can affect outcomes dramatically and remain an area of major debate in the treatment of multiply injured orthopaedic trauma patients. Decisions regarding timing and choice of orthopaedic procedure(s) are currently based on the physiologic condition of the patient, resource availability, and the expected magnitude of the intervention. Surgical decision-making algorithms rarely rely on precision-type data that account for demographics, magnitude of injury, and the physiologic/immunologic response to injury on a patient-specific basis.

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Objectives: 1) Evaluate the value and strength of a competency framework for identifying and measuring performance requirements for expeditionary surgeons; 2) Verify psychometric integrity of assessment instrumentation for measuring domain knowledge and skills; 3) Identify gaps in knowledge and skills capabilities using assessment strategies; 4) Examine shared variance between knowledge and skills outcomes, and the volume and diversity of routine surgical practice.

Background: Expeditionary military surgeons provide care for patients with injuries that extend beyond the care requirements of their routine surgical practice. The readiness of these surgeons to independently provide accurate care in expeditionary contexts is important for casualty care in military and civilian situations.

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Unlabelled: In combat casualty care, tranexamic acid (TXA) is administered as part of initial resuscitation effort; however, conflicting data exist as to whether TXA contributes to increased risk of venous thromboembolism (VTE). The purpose of this study is to determine what factors increase risk of pulmonary embolism after combat-related orthopaedic trauma and whether administration of TXA is an independent risk factor for major thromboembolic events.

Setting: United States Military Trauma Centers.

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Importance: Low surgical volume in the US Military Health System (MHS) has been identified as a challenge to military surgeon readiness. The Uniformed Services University of Health Sciences, in partnership with the American College of Surgeons, developed the Knowledge, Skills, and Abilities (KSA) Clinical Readiness Program that includes a tool for quantifying the clinical readiness value of surgeon workload, known as the KSA metric.

Objective: To describe changes in US military general surgeon procedural volume and readiness using the KSA metric.

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Importance: Sustainment of comprehensive procedural skills in trauma surgery is a particular problem for surgeons in rural, global, and combat settings. Trauma care often requires open surgical procedures for low-frequency/high-risk injuries at a time when open surgical experience is declining in general and trauma surgery training.

Objective: To determine whether general surgeons participating in a 2-day standardized trauma skills course demonstrate measurable improvement in accuracy and independent performance of specific trauma skills.

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Article Synopsis
  • - The study aimed to assess the early activation of latent viruses in polytrauma patients and to determine if viral micro-RNAs can be used as prognostic indicators for these patients.
  • - Conducted at two civilian trauma centers and one military facility, the research involved adult polytrauma patients with severe injuries, analyzing blood samples for viral micro-RNAs linked to Kaposi's sarcoma and Epstein-Barr virus upon their arrival.
  • - The findings revealed that a significant majority of polytrauma patients exhibited detectable viral micro-RNAs, with interleukin-10 identified as a key predictor among other clinical variables and systemic biomarkers.
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