Publications by authors named "David W Callaway"

Noninvasive positive-pressure ventilation (NPPV) is a form of ventilatory support that does not require the placement of an advanced airway. The authors discuss the use of NPPV on patients who will likely benefit. The use of NPPV has reduced the need for patients to require intubation and/or mechanical ventilation in some cases, as well as benefits.

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On September 1, 2019, Hurricane Dorian made landfall as a category 5 hurricane on Great Abaco Island, Bahamas. Hurricane Dorian matched the "Labor Day" hurricane of 1935 as the strongest recorded Atlantic hurricane to make landfall with maximum sustained winds of 185 miles/h.1 At the request of the Government of the Bahamas, Team Rubicon activated a World Health Organization Type 1 Mobile Emergency Medical Team and responded to Great Abaco Island.

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This case report describes the technical aspects in first use of a novel field improvised autologous transfusion (FIAT) system. It highlights a potential solution for specific trauma patients during advanced resuscitative care (ARC) and prolonged field care (PFC) scenarios where other blood products are not available.

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Objective: Disability-related education is essential for disaster responders and critical care transporters to ensure positive patient outcomes. This pilot study evaluated the effect of an online educational intervention on disaster responders and critical care transporters' knowledge of and feelings of self-efficacy about caring for individuals with developmental disabilities.

Methods: A 1-group, pretest-posttest, quasi-experimental design was used.

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Background: Uncontrolled hemorrhage remains a leading cause of preventable death in tactical and combat settings. Alternate routes of delivery of tranexamic acid (TXA), an adjunct in the management of hemorrhagic shock, are being studied. A working group for the Committee for Tactical Emergency Casualty Care reviewed the available evidence on the potential role for intramuscular (IM) administration of TXA in nonhospital settings as soon as possible from the point of injury.

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The ultimate goal of the emergency response and trauma system is to reduce potentially preventable death from trauma. Tremendous advances in trauma care emerged from the past 15 years of United States' combat engagements around the globe. Unfortunately, combat and insurgency tactics have also metastasized to the civilian world, resulting in increasingly complex and dynamic acts of intentional mass violence.

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Hemorrhage is the leading preventable cause of death in civilian and military trauma. Recent data from the ongoing conflicts in Iraq and Afghanistan suggest that early and aggressive tourniquet utilization is a safe and effective way to dramatically reduce mortality from extremity hemorrhage. As a result, prehospital tourniquet use is now endorsed by a majority of professional emergency medicine, emergency medical service and trauma professional societies.

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Combat operations necessitate bold thought and afford the opportunity to rapidly evolve and improve trauma care. The development and maturation of Tactical Combat Casualty Care (TCCC) is an important example of a critical process improvement strategy that reduced mortality in high-threat combat-related trauma. The Committee for Tactical Emergency Casualty Care (C-TECC) adapted the lessons of TCCC to the civilian high-threat environment and provided important all-hazards response principles for austere, dynamic, and resource-limited environments.

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There is some controversy about whether ballistic protective equipment (body armor) is required for medical responders who may be called to respond to active shooter mass casualty incidents. In this article, we describe the ongoing evolution of recommendations to optimize medical care to injured victims at such an incident. We propose that body armor is not mandatory for medical responders participating in a rapid-response capacity, in keeping with the Hartford Consensus and Arlington Rescue Task Force models.

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Tactical emergency medical support (TEMS) is a critical component of the out-of-hospital response to domestic high-threat incidents such as hostage scenarios, warrant service, active shooter or violent incidents, terrorist attacks, and other intentional mass casualty-producing acts. From its grass-roots inception in the form of medical support of select law enforcement special weapons and tactics (SWAT) units in the 1980s, the TEMS subspecialty of prehospital care has rapidly grown and evolved over the past 40 years. The National TEMS Initiative and Council (NTIC) competencies and training objectives are the only published recommendations of their kind and offer the opportunity for national standardization of TEMS training programs and a future accreditation process.

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Active violent incidents are dynamic and challenging situations that can produce a significant amount of preventable deaths. Lessons learned from the military?s experience in Afghanistan and Iraq through the Committee on Tactical Combat Casualty Care and the 75th Ranger Regiment?s Ranger First Responder Program have helped create the Committee for Tactical Emergency Casualty Care (C-TECC) to address the uniqueness of similar wounding patterns and to end preventable deaths. We propose a whole-community approach to active violent incidents, using the C-TECC Trauma Chain of Survival and a tiered approach for training and responsibilities: the first care provider, nonmedical professional first responders, medical first responders, and physicians and trauma surgeons.

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The 2014 midyear, full meeting of the Committee for Tactical Emergency Combat Care (C-TECC) was hosted by the Johns Hopkins University Center for Law Enforcement Medicine on June 9 and 10 in Baltimore, Maryland. As the C-TECC guidelines are increasingly recognized as the best-practice recommendations for civilian, high-threat, prehospital trauma response, a focused guidelines discussion occurred to develop best-practice recommendations for the management of open chest wounds, specifically regarding the application of vented and nonvented chest seals.

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Introduction: Disasters create major strain on energy infrastructure in affected communities. Advances in microgrid technology offer the potential to improve "off-grid" mobile disaster medical response capabilities beyond traditional diesel generation. The Carolinas Medical Center's mobile emergency medical unit (MED-1) Green Project (M1G) is a multi-phase project designed to demonstrate the benefits of integrating distributive generation (DG), high-efficiency batteries, and "smart" energy utilization in support of major out-of-hospital medical response operations.

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