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Clinical use of sodium bicarbonate during cardiopulmonary resuscitation--is it used sensibly?

This study retrospectively analyzed the pattern of sodium bicarbonate (SB) use during cardiopulmonary resuscitation (CPR) in the Brain Resuscitation Clinical Trial III (BRCT III). BRCT III was a prospective clinical trial, which compared high-dose to standard-dose epinephrine during CPR. SB use was left optional in the study protocol. Records of 2915 patients were reviewed. Percentage, timing and dosage of SB administration were correlated with demographic and cardiac arrest variables and with times from collapse to Basic Life Support, to Advanced Cardiac Life Support (ACLS) and to the major interventions performed during CPR. SB was administered in 54.5% of the resuscitations. The rate of SB use decreased with increasing patient age-primarily reflecting shorter CPR attempts. Mean time intervals from arrest, from start of ACLS and from first epinephrine to administration of the first SB were 29+/-16, 19+/-13, and 10.8+/-11.1 min, respectively. No correlation was found between the rate of SB use and the pre-ACLS hypoxia times. On the other hand, a direct linear correlation was found between the rate of SB use and the duration of ACLS. We conclude that when SB was used, the time from initiation of ACLS to administration of its first dose was long and severe metabolic acidosis probably already existed at this point. Therefore, if SB is used, earlier administration may be considered. Contrary to physiological rationale, clinical decisions regarding SB use did not seem to take into consideration the duration of pre-ACLS hypoxia times. We suggest that guidelines for SB use during CPR should emphasize the importance of pre-ACLS hypoxia time in contributing to metabolic acidosis and should be more specific in defining the duration of "protracted CPR or long resuscitative efforts", the most frequent indication for SB administration.

Advanced Cardiac Life Support↗

Selective aortic perfusion and oxygenation: an effective adjunct to external chest compression-based cardiopulmonary resuscitation.

OBJECTIVES: The purpose of this study was to compare the perfusion pressure and rate of return of spontaneous circulation produced by standard advanced cardiac life support with that resulting from advanced cardiac life support with simultaneous aortic occlusion and proximal infusion with oxygenated fluid. BACKGROUND: Cardiopulmonary resuscitation based solely on external chest compression is unable to achieve return of spontaneous circulation in most patients with cardiac arrest. Adjunctive therapies that enhance myocardial oxygen supply may improve outcomes. METHODS: We conducted a prospective, randomized study in mongrel dogs using a fibrillatory model of cardiac arrest with a 20-min arrest time. Dogs were randomized to two groups. Aortic arch and right atrial micromanometers were placed to measure intravascular pressure. Manual external chest compression was used and standardized to an esophageal pulse pressure of 50 mm Hg. Two minutes after initiation of advanced cardiac life support, selective aortic perfusion and oxygenation were initiated in dogs assigned to one group by inflation of an occluding balloon in the descending aorta and infusion of 450 ml of ultrapurified polymerized bovine hemoglobin through a large bore central infusion port. RESULTS: Maximal aortic pressure during standard advanced cardiac life support was 42 +/- 23 (mean +/- SD) versus 69 +/- 28 mm Hg during advanced cardiac life support with selective aortic perfusion and oxygenation. Maximal coronary perfusion pressure during standard therapy was 33 +/- 21 versus 62 +/- 26 mm Hg during combined therapy. Only 2 of 10 dogs receiving standard therapy had return of spontaneous circulation versus 6 of 7 dogs receiving combined therapy. Balloon occlusion alone did not increase perfusion pressure significantly. CONCLUSIONS: The use of selective aortic perfusion and oxygenation increases aortic and coronary perfusion pressures during cardiopulmonary resuscitation, resulting in a large increase in the rate of return of spontaneous circulation. This technique may be an effective adjunct to advanced cardiac life support based on any method of external chest compression and may improve the poor prognosis of patients with cardiac arrest.

Animals↗

[Guidelines for basic cardiopulmonary resuscitation of adult patients. European Resuscitation Council 1992].

In this paper 18 experts from 11 countries publish the European Resuscitation Council's guidelines for adult basic cardiac life support. Persons trained in advanced cardiac life support should use these guidelines together with the guidelines for advanced cardiac life support, also presented in this issue. The Council hopes that the guidelines and the accompanying algorithm will serve as ready to use "how-to-do-it" instructions, and function as part of any training manual in basic cardiac life support.

Adult↗

Establishing a self-perpetuating American Heart Association/Advanced Cardiac Life Support program in West Germany.

Sudden cardiac death is one of the major health problems in industrialized nations. The American Heart Association-sponsored Basic Life Support and Advanced Cardiac Life Support (ACLS) programs provide consensus training programs geared to teach local persons and health care providers the techniques of CPR and advanced life support, respectively. In April 1988, the staff of the U.S. Army Hospital Berlin conducted an ACLS provider course for German physicians. Fourteen students attended the first course; nine passed, and two did not complete the course. Two more courses have been completed. The enthusiasm expressed by the German physicians led to the nomination of one of the physicians for an associate faculty position, and plans for an instructor course of German physicians are under way.

American Heart Association↗

Medical reliability of advanced prehospital cardiac life support.

Records of 263 consecutive patients receiving prehospital advanced cardiac life support for dysrhythmias associated with clinical cardiac arrest were reviewed to determine 1) accuracy of diagnosis of presenting rhythm by the paramedic in the field and the medical control physician at the telemetry base station; and 2) whether the treatment rendered was appropriate. The initial rhythm was misinterpreted by the paramedic in 41 patients (16%) and by the medical control physician in 22 patients (11%). In 16 patients (8%) both paramedic and physician misinterpreted the initial rhythm. Treatment errors occurred in 120 patients (46%). Forty-seven errors (18%) resulted from failure to establish an intravenous line, 17 (6%) resulted from failure to secure a controlled airway, and 38 (14%) were medication errors from failure to adhere to protocol. We conclude that errors in management of prehospital cardiac arrest victims in our emergency medical services system result most often from mistakes in specific therapy rather than from failure to identify the precipitating dysrhythmia.

Adolescent↗

Cardiopulmonary resuscitation: historical perspective to recent investigations.

There are at least 300,000 cardiac arrests annually in the United States. Cardiopulmonary resuscitation (CPR) effectively restores hemodynamic stability, return of spontaneous circulation (ROSC), in 40% to 60% of arrests. Prolonged survival is significantly lower because of underlying illness and the postresuscitation syndrome, specifically central nervous system injury and left ventricular stunning after resuscitation. Prognostic variables have been shown to predict survival in multivariate analyses, but no models are sufficiently accurate to predict futility. End-tidal carbon dioxide has prognostic value and can measure the efficacy of CPR. Cardiac arrest outcomes will be most improved with public education and earlier initiation of resuscitative efforts, both Basic Life Support and Advanced Cardiac Life Support, notably defibrillation. Active compression-decompression and interposed abdominal compressions improved ROSC in prospective randomized trials; abdominal compressions have also been shown to increase survival to hospital discharge. Despite 30 years of research, CPR is now performed much as it was initially. Further research into the mechanisms of cardiac arrest, development of predictive models, and improved means to improve cardiac output and survival are needed.

Cardiopulmonary Resuscitation↗

Simulated pediatric cardiopulmonary resuscitation: initial events and response times of a hospital arrest team.

BACKGROUND: Cardiopulmonary resuscitation (CPR) training programs exist to enhance knowledge and skills retention. However, they do not ensure that effective CPR will be performed by trainees or resuscitation teams. One aspect of CPR effectiveness is the ability of the team to respond to an emergency call in a timely manner. METHODS: We prospectively evaluated the time required for team members to respond to an emergency call and to initiate definitive treatment in our pediatric facility. The medical staff who responded had no prior knowledge of the simulated cardiac arrest (SCA) events. All events were recorded on audio-cassette tape to determine the sequence of events and response time of arrest team members. SCA scenarios represented examples of cardiac, hematologic, renal, respiratory, and pharmacologic pathophysiology. All participants were instructed to respond as though the SCA were an actual emergency. RESULTS: From December 1991 to January 1993, 37 SCAs were evaluated. Documentation began after a concise arrest scenario had been presented to a designated nursing representative who was to be the first rescuer on the scene. The rescuer first assessed the patient's condition, activated the cardiac arrest system (median elapsed time, MET, 0.50 minutes), and then initiated single-person CPR (MET 0.58 minutes). Administration of oxygen occurred at an MET of 2.25 minutes. The first member of the arrest team to respond was the pediatric resident (MET 3.17 minutes) followed by the respiratory therapist (MET 3.20 minutes), an ICU nurse (MET 3.58 minutes), a pharmacist (MET 3.42 minutes), and anesthesiology personnel (MET 4.70 minutes). DISCUSSION: The use of SCAs (termed "Mega Code") serves as an extension of Basic Life Support and Advanced Cardiac Life Support education and provides a valuable learning experience and quality assurance tool. Limitations that might influence patient outcome during an actual in-hospital arrest have led to refinements in our cardiac arrest procedures. Of particular note was the delay in oxygen administration, which may be linked to its omission from the 1986 and 1992 American Heart Association Basic Life Support Guidelines. CONCLUSION: We believe that BLS education for hospital employees should include and emphasize oxygen delivery for resuscitation.

Cardiopulmonary Resuscitation↗

Cost-effectiveness and benefit of alternatives to improve training for prehospital trauma care in Mexico.

INTRODUCTION: In Latin America, there is a preponderance of prehospital trauma deaths. However, scarce resources mandate that any improvements in prehospital medical care must be cost-effective. This study sought to evaluate the cost-effectiveness of several approaches to improving training for personnel in three ambulance services in Mexico. METHODS: In Monterrey, training was augmented with PreHospital Trauma Life Support (PHTLS) at a cost of [US] dollar 150 per medic trained. In San Pedro, training was augmented with Basic Trauma Life Support (BTLS), Advanced Cardiac Life Support (ACLS), and a locally designed airway management course, at a cost of dollar 400 per medic. Process and outcome of trauma care were assessed before and after the training of these medics and at a control site. RESULTS: The training was effective for both intervention services, with increases in basic airway maneuvers for patients in respiratory distress in Monterrey (16% before versus 39% after) and San Pedro (14% versus 64%). The role of endotrachal intubation for patients with respiratory distress increased only in San Pedro (5% versus 46%), in which the most intensive Advanced Life Support (ALS) training had been provided. However, mortality decreased only in Monterrey, where it had been the highest (8.2% before versus 4.7% after) and where the simplest and lowest cost interventions were implemented. There was no change in process or outcome in the control site. CONCLUSIONS: This study highlights the importance of assuring uniform, basic training for all prehospital providers. This is a more cost-effective approach than is higher-cost ALS training for improving prehospital trauma care in environments such as Latin America.

Adolescent↗

15 years of experience with cardiopulmonary resuscitation in the Kingdom of Saudi Arabia: a critical analysis.

The objective of this review is to establish a framework about the educational activities of the Cardiopulmonary Resuscitation (CPR) National Committee of the Saudi Heart Association (SHA) and determine if it has had any effect on the survival rate in daily hospital work. Further, the review puts forward recommendations regarding the key to success for future implementations and improvement in the outcome of heart attacks in the Kingdom of Saudi Arabia (KSA). Cardiopulmonary resuscitation (CPR) was introduced into the Kingdom of Saudi Arabia in the 1980s. The birth of CPR in the Kingdom was conducted by the American Heart Association (AHA) provision of the first instructor course in Basic Cardiac Life Support (BCLS) and Advanced Cardiac Life Support (ACLS) in the spring of 1984. This educational activity was initiated by the Postgraduate Center of the College of Medicine and currently is a function of the Saudi Heart Association (SHA). The National Heart Center (NHC) continually expands its activities. The number of courses organized, conducted, and reported herein totaled 459 for providers and instructors in BCLS and ACLS. This resulted in certification of 916 and 204 instructors in basic and advanced CPR respectively. There were 80 centers established in the Kingdom over the span of 15 years. They all provide BCLS courses; only 13 provide ACLS courses. The SHA issued a total of 84,659 certificates.

Cardiac Care Facilities↗

Army nurses' knowledge base for determining triage categories in a mass casualty.

The timing, location, and participants in a mass casualty scenario cannot be predicted. Nurses may be involved in performing triage, yet there is no published documentation of military nurses' ability to triage. A prospective design was used to describe 82 Army nurses' knowledge base related to designating triage categories for patients during a mass causality, examining the relationships among their education and experience as evaluated by The Darnall Mass Casualty Triage Test and Demographic Data Form. The most significant areas associated with higher scores on the Triage Test were: completion of Advanced Cardiac Life Support, advanced certification as a Certified Registered Nurse Anesthetists, Certified Emergency Nurse, or Critical Care Registered Nurse, and attendance to the Medical Management of Nuclear Weapons Course. An improved average score for nurses overall was also noted when compared with previous work with the Darnall MASCAL Triage Test.

Analysis of Variance↗

Evaluation of a cardiac surgery advanced life support course.

The most critical emergency situation seen in cardiac surgical units is the need for chest reopening. While senior nurses often manage cardiac arrest they currently are not trained to open chests, which can be a life-saving action if performed efficiently. This article evaluates a three-day cardiac surgery advanced life support course with protocols to manage critically ill cardiac surgical patients who suffer a cardiac arrest and who need their chest reopening.

Advanced Cardiac Life Support↗

"PALS for life!" A required trauma-oriented pediatric advanced life support course for pediatric and emergency medicine housestaff.

While advanced cardiac life support (ACLS) and advanced trauma life support (ATLS) courses have become accepted standards for physicians who care for the critically ill and injured patient, only recently have pediatric advanced life support (PALS) courses been developed. The American Academy of Pediatrics has shown renewed interest in pediatric cardiopulmonary arrest after impressive gains made in adult resuscitation. The American Heart Association filled a void by including new chapters on Pediatric and Neonatal Resuscitation in the Textbook of Advanced Cardiac Life Support, 1981. A joint committee of AHA and AAP is seeking to unify course objectives and materials for standard curriculum. Because trauma is the most common cause of death and disability in children, pediatric trauma life support measures should be incorporated into any program directed toward emergency physicians and pediatricians who function in an emergency department or rural primary care setting. The Department of Pediatrics and Surgery and its division of Emergency Medicine has developed and implemented a PALS curriculum which is different from most other programs in that emphasis has been placed on pediatric trauma in addition to traditional cardiac (ACLS) resuscitation. This 20-hour program combines a modified ACLS curriculum with specific pediatric trauma lectures and laboratory sessions. It includes a canine surgical procedure lab and modified ATLS skill stations. At the completion of the course, students are eligible for ACLS certification. In the two years in which the course was given, 39 pediatric houseofficers were enrolled in the course.(ABSTRACT TRUNCATED AT 250 WORDS)

Child↗

[Advanced prehospital treatment of heart arrest by the mobile emergency unit in Aarhus. 1-year survival after out-of-hospital heart arrest--with focus on response time, survival, the given treatment and admission].

INTRODUCTION: The Mobile Emergency Care Unit (MECU) in Arhus includes an experienced anaesthesiologist and a specially trained rescuer. It covers a radius of 25 km from the centre of Arhus with 330,000 inhabitants. Rescue workers in Denmark are permitted to give basic life support and defibrillation. The MECU carriers out advanced cardiac life support in accordance with "The 1998 Guidelines of the European Resuscitation Council". MATERIAL AND METHODS: Data collected by the MECU doctor on a standardised chart and survival data received from the Central Hospital Database were analysed retrospectively. RESULTS: In 1998, 4725 emergency calls were received. Twenty-five per cent of the calls were for trauma, 515 patients had cardiac disease, 158 of whom had cardiac arrest. In 86 patients, death was determined on the spot and no treatment was given. Seventy-two patients received advanced cardiac life support. Twenty-five patients were admitted to hospital. Thirteen patients were alive one year later, which gives a survival rate of 52% of the patients admitted to hospital. Of the 25 patients who were resuscitated and admitted to hospital, 21 received defibrillation, 16 were intubated, 19 had adrenaline, 11 lidocaine, and 9 amidarone. Other drugs used were atropine, NaHCO3, sotalol, and CaCl. DISCUSSION: These results illustrate that for patients with out-of-hospital cardiac arrest early treatment with advanced cardiac life support performed by experienced doctors probably had a positive impact on survival, as compared to basic cardiac life support.

Adult↗

Effect of advanced cardiac life-support training in rural, community hospitals.

OBJECTIVES: To define the effectiveness of training personnel in rural, community hospitals in advanced cardiac life support (ACLS) and the changes that result in the process and quality of care to patients with ischemic heart disease that can be attributed to participation by team members in an ACLS course. DESIGN: Case-controlled, retrospective abstraction of hospital records of 869 consecutive patients with ischemic heart disease, who were admitted during the year preceding and the year following the ACLS course. SETTING: Seven rural, community hospitals in Wisconsin. SUBJECTS: Physicians, nurses, and other critical care staff (others). INTERVENTIONS: Training in ACLS using 12 3-hr sessions in an interdisciplinary format by a multidisciplinary faculty. MEASUREMENTS AND MAIN RESULTS: Rates of successful attainment of the terminal behavior objectives by physicians and nurses were 84.0% and 78.8%, respectively. Less than 50% of others achieved a satisfactory level of competence. Performance on an examination of cognitive ability improved significantly for all groups (p < .005 for nurses; p < .05 for physicians). Enhancement of knowledge base and integrative skills occurred in all areas of designated ACLS content. Difficulty remained apparent relative to the pharmacologic effects of epinephrine and atropine. No statistically significant deterioration in didactic knowledge base could be detected 1 to 2 yrs after completion of the ACLS course. Slight deterioration in intubation and defibrillation skills occurred in < 3 months after completion of the course. Substantial costs were encumbered by the hospitals, despite the free training provided to the institutions. After ACLS training had been given, overall mortality rates decreased from 17.4% to 13.4% (p < .05). A pooled estimate of the decrease in the mortality rate was 1.4 +/- 3.8%/quarter. Across the entire spectrum of severity of illness, the probabilities for survival increased at a given severity of illness following completion of the course (p = .06). When extremes of severity of illness were excluded from the analysis, the differences in probability for survival over the midrange of severity were statistically significant (p < .05). CONCLUSIONS: Training directed to the entire team likely to participate in the provision of ACLS in the community hospital favorably affects the overall practice of ACLS and the survival rate of patients with ischemic heart disease.

Aged↗

Need for advanced cardiac life-support training in rural, community hospitals.

OBJECTIVE: To define the relative needs of the staffs of rural, community hospitals for training in advanced cardiac life support (ACLS), identify weaknesses, and modify a standard ACLS course to meet these needs. DESIGN: Prospective assessment of knowledge and skills relating to the practice of ACLS. SETTING: Rural, community hospitals in southern Wisconsin. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: A well-validated, multiple-option, precourse test for life-support knowledge and clinical judgment was administered to the staff nurses, respiratory therapists, and practicing physicians of 12 rural, community hospitals in southern Wisconsin before their participation in a modified, extended, ACLS course, using the pre-1992 American Heart Association standards and guidelines. Testing was accomplished over 4 yrs. Detailed item analysis of the test was performed. A total of 461 persons participated. Overall, physicians performed better (p < .001) than did the nurses. Precourse difficulties included electrocardiographic rhythm strip interpretation, particularly with identification of the atrioventricular (A-V) blocks. Only 39.6% of the nurses and 64.1% of the physicians correctly identified third-degree A-V block. One third of the nurses and 22% of the physicians did not correctly identify coarse ventricular fibrillation. The pharmacologic properties and utility of atropine and epinephrine were not understood. Propranolol was selected for treatment of third-degree A-V block by 31.6% and 22.8% of the nurses and the physicians, respectively. Neither group was able to accurately distinguish between the components of disturbances in acid-base balance. The esophageal obturator airway tube was not a familiar tool to any of the groups. No improvement in overall performance on pretests occurred across the calendar years of the study. CONCLUSIONS: There is a need for ACLS training in community hospitals. Educational programs for physicians and staffs should be designed to meet that need.

Clinical Competence↗

Are the "life-support" courses updated? An evaluation of their literature base.

BACKGROUND: As a condition of employment, many physicians practicing in the United States are mandated to remain current in their certification of some or all of the life-support courses. These courses reputedly set the standard of care by establishing nationally recognized paradigms of resuscitation. These courses' textbooks are revised and re-released at regular intervals. OBJECTIVES: To determine whether the source data for these texts are vigorously updated with each revision and whether there is an obvious literature-based impetus to release a new version. METHODS: A comparison was made of the years of the references contained within the three most recent textbook editions of the advanced cardiac life support (ACLS), advanced trauma life support, basic life support, and pediatric advanced life support courses. The years of the references were tallied for each text, and these tallies were compared both within and between the courses. Data were divided into three groups: group 1, references published before the previous versions' release; group 2, references published after previous versions' release; group 3, references dated within three years of the texts' release. RESULTS: There appears to be a large amount of overlap of group 1 data throughout most of the course texts; the number of references in group 2 and 3 varies greatly between and within these courses. CONCLUSIONS: With one exception (ACLS in 2003), the life-support courses appear to be based on similar reference sets for the last 7 to 11 years. There may be a reason other than an availability of a critical mass of new information that prompts the release of a new edition of these life-support courses.

Advanced Cardiac Life Support↗

The Ontario Prehospital Advanced Life Support (OPALS) Study: rationale and methodology for cardiac arrest patients.

The Ontario Prehospital Advanced Life Support Study represents the largest prehospital study yet conducted, worldwide. This study will involve more than 25,000 cardiac arrest, trauma, and critically ill patients over an 8-year period. The study will evaluate the incremental benefit of rapid defibrillation and prehospital Advanced Cardiac Life Support measures for cardiac arrest survival and the benefit of Advanced Life Support for patients with traumatic injuries and other critically ill prehospital patients. This article describes the OPALS study with regard to the rationale and methodology for cardiac arrest patients.

Cost-Benefit Analysis↗