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Circulation | 2010

Part 8: Advanced Life Support 2010 International Consensus on Cardiopulmonary Resuscitation and Emergency Cardiovascular Care Science With Treatment Recommendations

Laurie J. Morrison; Charles D. Deakin; Peter Morley; Clifton W. Callaway; Richard E. Kerber; Steven L. Kronick; Eric J. Lavonas; Mark S. Link; Robert W. Neumar; Charles W. Otto; Michael Parr; Michael Shuster; Kjetil Sunde; Mary Ann Peberdy; Wanchun Tang; Terry L. Vanden Hoek; Bernd W. Böttiger; Saul Drajer; Swee Han Lim; Jerry P. Nolan

Part 8 : Advanced life support : 2010 International Consensus on Cardiopulmonary Resuscitation and Emergency Cardiovascular Care Science With Treatment Recommendations


Circulation | 2010

Part 12: Cardiac Arrest in Special Situations 2010 American Heart Association Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care

Terry L. Vanden Hoek; Laurie J. Morrison; Michael Shuster; Michael W. Donnino; Elizabeth Sinz; Eric J. Lavonas; Farida M. Jeejeebhoy; Andrea Gabrielli

This section of the 2010 AHA Guidelines for CPR and ECC addresses cardiac arrest in situations that require special treatments or procedures beyond those provided during basic life support (BLS) and advanced cardiovascular life support (ACLS). We have included 15 specific cardiac arrest situations. The first several sections discuss cardiac arrest associated with internal physiological or metabolic conditions, such as asthma (12.1), anaphylaxis (12.2), pregnancy (12.3), morbid obesity (12.4), pulmonary embolism (PE) (12.5), and electrolyte imbalance (12.6). The next several sections relate to resuscitation and treatment of cardiac arrest associated with external or environmentally related circumstances, such as ingestion of toxic substances (12.7), trauma (12.8), accidental hypothermia (12.9), avalanche (12.10), drowning (12.11), and electric shock/lightning strikes (12.12). The last 3 sections review management of cardiac arrest that may occur during special situations affecting the heart, including percutaneous coronary intervention (PCI) (12.13), cardiac tamponade (12.14), and cardiac surgery (12.15). Asthma is responsible for more than 2 million visits to the emergency department (ED) in the United States each year, with 1 in 4 patients requiring admission to a hospital.1 Annually there are 5,000 to 6,000 asthma-related deaths in the United States, many occurring in the prehospital setting.2 Severe asthma accounts for approximately 2% to 20% of admissions to intensive care units, with up to one third of these patients requiring intubation and mechanical ventilation.3 This section focuses on the evaluation and treatment of patients with near-fatal asthma. Several consensus groups have developed excellent guidelines for the management of asthma that are available on the World Wide Web: ### Pathophysiology The pathophysiology of asthma consists of 3 key abnormalities: Complications of severe asthma, such as tension pneumothorax, lobar atelectasis, pneumonia, and pulmonary edema, can contribute to fatalities. Severe asthma exacerbations are commonly associated with …


Circulation | 2015

Part 1: Executive summary: 2015 American Heart Association guidelines update for cardiopulmonary resuscitation and emergency cardiovascular care

Robert W. Neumar; Michael Shuster; Clifton W. Callaway; Lana M. Gent; Dianne L. Atkins; Farhan Bhanji; Steven C. Brooks; Allan R. de Caen; Michael W. Donnino; Jose Maria E. Ferrer; Monica E. Kleinman; Steven L. Kronick; Eric J. Lavonas; Mark S. Link; Mary E. Mancini; Laurie J. Morrison; Robert E. O'Connor; Ricardo A. Samson; Steven M. Schexnayder; Eunice M. Singletary; Elizabeth Sinz; Andrew H. Travers; Myra H. Wyckoff; Mary Fran Hazinski

Publication of the 2015 American Heart Association (AHA) Guidelines Update for Cardiopulmonary Resuscitation (CPR) and Emergency Cardiovascular Care (ECC) marks 49 years since the first CPR guidelines were published in 1966 by an Ad Hoc Committee on Cardiopulmonary Resuscitation established by the National Academy of Sciences of the National Research Council.1 Since that time, periodic revisions to the Guidelines have been published by the AHA in 1974,2 1980,3 1986,4 1992,5 2000,6 2005,7 2010,8 and now 2015. The 2010 AHA Guidelines for CPR and ECC provided a comprehensive review of evidence-based recommendations for resuscitation, ECC, and first aid. The 2015 AHA Guidelines Update for CPR and ECC focuses on topics with significant new science or ongoing controversy, and so serves as an update to the 2010 AHA Guidelines for CPR and ECC rather than a complete revision of the Guidelines. The purpose of this Executive Summary is to provide an overview of the new or revised recommendations contained in the 2015 Guidelines Update. This document does not contain extensive reference citations; the reader is referred to Parts 3 through 9 for more detailed review of the scientific evidence and the recommendations on which they are based. There have been several changes to the organization of the 2015 Guidelines Update compared with 2010. “Part 4: Systems of Care and Continuous Quality Improvement” is an important new Part that focuses on the integrated structures and processes that are necessary to create systems of care for both in-hospital and out-of-hospital resuscitation capable of measuring and improving quality and patient outcomes. This Part replaces the “CPR Overview” Part of the 2010 Guidelines. Another new Part of the 2015 Guidelines Update is “Part 14: Education,” which focuses on evidence-based recommendations to facilitate widespread, consistent, efficient and effective implementation …


Circulation | 2010

Part 8: Advanced Life Support

Laurie J. Morrison; Charles D. Deakin; Peter Morley; Clifton W. Callaway; Richard E. Kerber; Steven L. Kronick; Eric J. Lavonas; Mark S. Link; Robert W. Neumar; Charles W. Otto; Michael Parr; Michael Shuster; Kjetil Sunde; Mary Ann Peberdy; Wanchun Tang; Terry L. Vanden Hoek; Bernd W. Böttiger; Saul Drajer; Swee Han Lim; Jerry P. Nolan

art 8: Advanced life support 010 International Consensus on Cardiopulmonary Resuscitation and Emergency ardiovascular Care Science with Treatment Recommendations , harles D. Deakin (Co-chair) ∗,1 , Laurie J. Morrison (Co-chair)1 , Peter T. Morley , Clifton W. Callaway , ichard E. Kerber, Steven L. Kronick, Eric J. Lavonas, Mark S. Link, Robert W. Neumar, Charles W. Otto, ichael Parr, Michael Shuster, Kjetil Sunde, Mary Ann Peberdy, Wanchun Tang, aje erry L. Vanden Hoek, Bernd W. Böttiger, Saul Dr dvanced Life Support Chapter Collaborators


BMC Emergency Medicine | 2011

Unified treatment algorithm for the management of crotaline snakebite in the United States: results of an evidence-informed consensus workshop

Eric J. Lavonas; Anne-Michelle Ruha; William Banner; Vikhyat S. Bebarta; Jeffrey N Bernstein; Sean P. Bush; William Kerns; William H. Richardson; Steven A. Seifert; David A. Tanen; Steve C Curry; Richard C. Dart

BackgroundEnvenomation by crotaline snakes (rattlesnake, cottonmouth, copperhead) is a complex, potentially lethal condition affecting thousands of people in the United States each year. Treatment of crotaline envenomation is not standardized, and significant variation in practice exists.MethodsA geographically diverse panel of experts was convened for the purpose of deriving an evidence-informed unified treatment algorithm. Research staff analyzed the extant medical literature and performed targeted analyses of existing databases to inform specific clinical decisions. A trained external facilitator used modified Delphi and structured consensus methodology to achieve consensus on the final treatment algorithm.ResultsA unified treatment algorithm was produced and endorsed by all nine expert panel members. This algorithm provides guidance about clinical and laboratory observations, indications for and dosing of antivenom, adjunctive therapies, post-stabilization care, and management of complications from envenomation and therapy.ConclusionsClinical manifestations and ideal treatment of crotaline snakebite differ greatly, and can result in severe complications. Using a modified Delphi method, we provide evidence-informed treatment guidelines in an attempt to reduce variation in care and possibly improve clinical outcomes.


Circulation | 2015

Part 4: Advanced life support

Jasmeet Soar; Clifton W. Callaway; Mayuki Aibiki; Bernd W. Böttiger; Steven C. Brooks; Charles D. Deakin; Michael W. Donnino; Saul Drajer; Walter Kloeck; Peter Morley; Laurie J. Morrison; Robert W. Neumar; Tonia C. Nicholson; Jerry P. Nolan; Kazuo Okada; Brian O’Neil; Edison Ferreira de Paiva; Michael Parr; Tzong-Luen Wang; Jonathan Witt; Lars W. Andersen; Katherine Berg; Claudio Sandroni; Steve Lin; Eric J. Lavonas; Eyal Golan; Mohammed A. Alhelail; Amit Chopra; Michael N. Cocchi; Tobias Cronberg

The International Liaison Committee on Resuscitation (ILCOR) Advanced Life Support (ALS) Task Force performed detailed systematic reviews based on the recommendations of the Institute of Medicine of the National Academies1 and using the methodological approach proposed by the Grading of Recommendations, Assessment, Development, and Evaluation (GRADE) Working Group.2 Questions to be addressed (using the PICO [population, intervention, comparator, outcome] format)3 were prioritized by ALS Task Force members (by voting). Prioritization criteria included awareness of significant new data and new controversies or questions about practice. Questions about topics no longer relevant to contemporary practice or where little new research has occurred were given lower priority. The ALS Task Force prioritized 42 PICO questions for review. With the assistance of information specialists, a detailed search for relevant articles was performed in each of 3 online databases (PubMed, Embase, and the Cochrane Library). By using detailed inclusion and exclusion criteria, articles were screened for further evaluation. The reviewers for each question created a reconciled risk of bias assessment for each of the included studies, using state-of-the-art tools: Cochrane for randomized controlled trials (RCTs),4 Quality Assessment of Diagnostic Accuracy Studies (QUADAS)-2 for studies of diagnostic accuracy,5 and GRADE for observational studies that inform both therapy and prognosis questions.6 GRADE evidence profile tables7 were then created to facilitate an evaluation of the evidence in support of each of the critical and important outcomes. The quality of the evidence (or confidence in the estimate of the effect) was categorized as high, moderate, low, or very low,8 based on the study methodologies and the 5 core GRADE domains of risk of bias, inconsistency, indirectness, imprecision, and other considerations (including publication bias).9 These evidence profile tables were then used to create a …


Circulation | 2015

Part 10: Special Circumstances of Resuscitation: 2015 American Heart Association Guidelines Update for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care.

Eric J. Lavonas; Ian R. Drennan; Andrea Gabrielli; Alan C. Heffner; Christopher O. Hoyte; Aaron M. Orkin; Kelly N. Sawyer; Michael W. Donnino

This Part of the 2015 American Heart Association (AHA) Guidelines Update for Cardiopulmonary Resuscitation (CPR) and Emergency Cardiovascular Care (ECC) addresses cardiac arrest in situations that require special treatments or procedures other than those provided during basic life support (BLS) and advanced cardiovascular life support (ACLS). This Part summarizes recommendations for the management of resuscitation in several critical situations, including cardiac arrest associated with pregnancy (Part 10.1), pulmonary embolism (PE) (10.2), and opioid-associated resuscitative emergencies, with or without cardiac arrest (10.3). Part 10.4 provides recommendations on intravenous lipid emulsion (ILE) therapy, an emerging therapy for cardiac arrest due to drug intoxication. Finally, updated guidance for the management of cardiac arrest during percutaneous coronary intervention (PCI) is presented in Part 10.5. A table of all recommendations made in this 2015 Guidelines Update as well as those made in the 2010 Guidelines is contained in the Appendix. The special situations of resuscitation section (Part 12) of the 2010 AHA Guidelines for CPR and ECC 1 covered 15 distinct topic areas. The following topics were last updated in 2010: Additional information about drowning is presented in Part 5 of this publication, “Adult Basic Life Support and Cardiopulmonary Resuscitation Quality.” The recommendations in this 2015 Guidelines Update are based on an extensive evidence review process that was begun by the International Liaison Committee on Resuscitation (ILCOR) with the publication of the ILCOR 2010 International Consensus on CPR and ECC Science With Treatment …


The New England Journal of Medicine | 2014

An Outbreak of Exposure to a Novel Synthetic Cannabinoid

Andrew A. Monte; Alvin C. Bronstein; Dazhe Cao; Kennon Heard; Jason A. Hoppe; Christopher O. Hoyte; Janetta L. Iwanicki; Eric J. Lavonas

Young men in Colorado presented with altered mental status and seizures after ingestion of a synthetic cannabinoid known as “black mamba.” Medical toxicologists and public health and law enforcement officials identified 263 cases of exposure to this novel substance.


Clinical Toxicology | 2012

The EXTRIP (EXtracorporeal TReatments In Poisoning) workgroup: Guideline methodology

Valéry Lavergne; Thomas D. Nolin; Robert S. Hoffman; Darren M. Roberts; Sophie Gosselin; David S. Goldfarb; Jan T. Kielstein; Robert Mactier; Robert MacLaren; James B. Mowry; Timothy E. Bunchman; David N. Juurlink; Bruno Mégarbane; Kurt Anseeuw; James F. Winchester; Paul I. Dargan; Kathleen D. Liu; Lotte Christine Groth Hoegberg; Yi Li; Diane P. Calello; Emmanuel A. Burdmann; Christopher Yates; Martin Laliberté; Brian S. Decker; Carlos Augusto Mello-Da-Silva; Eric J. Lavonas; Marc Ghannoum

Abstract Extracorporeal treatments (ECTRs), such as hemodialysis and hemoperfusion, are used in poisoning despite a lack of controlled human trials demonstrating efficacy. To provide uniform recommendations, the EXTRIP group was formed as an international collaboration among recognized experts from nephrology, clinical toxicology, critical care, or pharmacology and supported by over 30 professional societies. For every poison, the clinical benefit of ECTR is weighed against associated complications, alternative therapies, and costs. Rigorous methodology, using the AGREE instrument, was developed and ratified. Methods rely on evidence appraisal and, in the absence of robust studies, on a thorough and transparent process of consensus statements. Twenty-four poisons were chosen according to their frequency, available evidence, and relevance. A systematic literature search was performed in order to retrieve all original publications regardless of language. Data were extracted on a standardized instrument. Quality of the evidence was assessed by GRADE as: High = A, Moderate = B, Low = C, Very Low = D. For every poison, dialyzability was assessed and clinical effect of ECTR summarized. All pertinent documents were submitted to the workgroup with a list of statements for vote (general statement, indications, timing, ECTR choice). A modified Delphi method with two voting rounds was used, between which deliberation was required. Each statement was voted on a Likert scale (1–9) to establish the strength of recommendation. This approach will permit the production of the first important practice guidelines on this topic.


Clinical Toxicology | 2010

A multicenter comparison of the safety of oral versus intravenous acetylcysteine for treatment of acetaminophen overdose

Vikhyat S. Bebarta; Kao L; Froberg B; Richard F. Clark; Eric J. Lavonas; Qi M; Delgado J; McDonagh J; Thomas C. Arnold; Odujebe O; O'Malley G; Lares C; Aguilera E; Richard C. Dart; Kennon Heard; Stanford C; Gregory M. Bogdan; Mendoza C; Sara L. Mlynarchek; Sean H. Rhyee; Jason A. Hoppe; Haur W; Tan Hh; Tran Nn; Shawn M. Varney; Zosel A; Buchanan J; Al-Helial M

Oral and intravenous (IV) N-acetylcysteine (NAC) are used for the treatment of acetaminophen poisoning. The objective of this multicenter study was to compare the safety of these two routes of administration. Methods. We conducted a multicenter chart review of all patients treated with NAC for acetaminophen poisoning. The primary safety outcome was the percentage of patients with NAC-related adverse events. Results. A total of 503 subjects were included in the safety analysis (306 IV-only, 145 oral-only, and 52 both routes). There were no serious adverse events related to NAC for either route. Nausea and vomiting were the most common related adverse events and were more common with oral treatment (23 vs. 9%). Anaphylactoid reactions were more common with IV administration (6 vs. 2%). Conclusions. IV and oral NAC are generally mild adverse drug reactions.

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William Kerns

Carolinas Medical Center

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Kurt Kleinschmidt

University of Texas Southwestern Medical Center

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Michael Shuster

Children's Hospital of Philadelphia

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Michael W. Donnino

Beth Israel Deaconess Medical Center

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