Publications by authors named "Neal J Richmond"

Burns are routinely assessed at the scene of the incident by prehospital or emergency medical services providers. The initial management of burns is based on the calculation of the extent of the injury, reported as percent total body surface area (TBSA). This study evaluates discrepancies in the estimation of TBSA between prehospital providers and burn team physicians over a 3-year period at an academic, university medical center serving as the regional burn center.

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Importance: There is wide variability among emergency medical systems (EMS) with respect to transport to hospital during out-of-hospital cardiac arrest (OHCA) resuscitative efforts. The benefit of intra-arrest transport during resuscitation compared with continued on-scene resuscitation is unclear.

Objective: To determine whether intra-arrest transport compared with continued on-scene resuscitation is associated with survival to hospital discharge among patients experiencing OHCA.

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Importance: Traumatic brain injury (TBI) is the leading cause of death and disability due to trauma. Early administration of tranexamic acid may benefit patients with TBI.

Objective: To determine whether tranexamic acid treatment initiated in the out-of-hospital setting within 2 hours of injury improves neurologic outcome in patients with moderate or severe TBI.

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Importance: Emergency medical services (EMS) commonly perform endotracheal intubation (ETI) or insertion of supraglottic airways, such as the laryngeal tube (LT), on patients with out-of-hospital cardiac arrest (OHCA). The optimal method for OHCA advanced airway management is unknown.

Objective: To compare the effectiveness of a strategy of initial LT insertion vs initial ETI in adults with OHCA.

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Background: 911 Emergency Medical Services (EMS) systems utilize supraglottic devices for either primary advanced airway management, or for airway rescue following failed attempts at direct laryngoscopy endotracheal intubation. There is, however, limited data on objective confirmation of supraglottic airway placement in the prehospital environment. Furthermore, the ability of EMS field providers to recognize a misplaced airway is unknown.

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Regionalization of medical resources by designating specialty receiving centers, such as trauma and stroke centers, within emergency medical services (EMS) systems is intended to ensure the highest-quality patient care in the most efficient and fiscally responsible fashion. Significant advances in the past decade such as induction of therapeutic hypothermia following resuscitation from cardiac arrest and a time-driven, algorithmic approach to management of septic patients have created compelling arguments for similar designation for specialized resuscitative interventions. Resuscitation of critically ill patients is both labor- and resource-intensive.

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There are few evidence-based measures of emergency medical services (EMS) system performance. In many jurisdictions, response-time intervals for advanced life support units and resuscitation rates for victims of cardiac arrest are the primary measures of EMS system performance. The association of the former with patient outcomes is not supported explicitly by the medical literature, while the latter focuses on a very small proportion of the EMS patient population and thus does not represent a sufficiently broad selection of patients.

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Introduction: The Privacy Rule, a follow-up to the Health Insurance Portability and Accountability Act, limits distribution of protected health information. Compliance with the Privacy Rule is particularly challenging for prehospital research, because investigators often seek data from multiple emergency medical services (EMS) and receiving hospitals.

Objective: To describe the impact of the Privacy Rule on prehospital research and to present strategies to optimize data collection in compliance with the Privacy Rule.

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Background: Ambulance response time is typically reported as the time interval from call dispatch to arrival on-scene. However, the often unmeasured "vertical response time" from arrival on-scene to arrival at the patient's side may be substantial, particularly in urban areas with high-rise buildings or other barriers to access.

Objectives: To measure the time interval from arrival on-scene to the patient in a large metropolitan area and to identify barriers to emergency medical services arrival.

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Introduction: On 14 August 2003, New York City and a large portion of the northeastern United States experienced the largest blackout in the history of the country. An analysis of such a widespread disaster on emergency medical service (EMS) operations may assist in planning for and managing such disasters in the future.

Methods: A retrospective review of all EMS activity within New York City's 9-1-1 emergency telephone system during the 29 hours during which all or parts of the city were without power (16:11 hours (h) on 14 August 2003 until 21:03 h on 15 August 2003) was performed.

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Background: Each year, approximately 40,000 patients with acute asthma are transported by the Fire Department of New York City (NYC) Emergency Medical Services (EMS). Out-of-hospital administration of bronchodilator therapy has, however, been restricted by scope of practice to advanced life support (ALS) providers. Since the rapid availability of ALS units cannot always be assured, some individuals with acute asthma may receive only basic life support (BLS) measures in the field.

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