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At least 145 records · Page 8Linked to original sources

Influence of compression rate on initial success of resuscitation and 24 hour survival after prolonged manual cardiopulmonary resuscitation in dogs.

The influence of chest compression rate on initial resuscitation success and 24 hr survival after prolonged manual cardiopulmonary resuscitation (CPR) was investigated in 26 morphine-anesthetized dogs (17 to 30 kg). After placement of aortic and right atrial micromanometers and induction of ventricular fibrillation, manual CPR was commenced immediately and continued for 30 min. One group of 13 dogs underwent manual CPR at a compression rate of 60/min, and the other group at a rate of 120/min. The compression durations in the two groups were not significantly different (51.7 +/- 1.8% at 60/min vs 51.6 +/- 1.9% at 120/min). No drugs other than sodium bicarbonate were administered during CPR. A maximum of three attempts was permitted to defibrillate the heart. Successfully defibrillated animals were followed for 24 hr, during which time no treatment, other than naloxone, was given to reverse the effects of morphine. Arterial blood pH, PCO2, and PO2 were not significantly different in the two groups throughout the CPR period. When compared with the compression rate of 60/min, the compression rate of 120/min produced more successfully defibrillated animals (12/13 at 120/min vs 2/13 at 60/min, p less than .002) and more 24 hr survivors (8/13 at 120/min vs 2/13 at 60/min, p less than .03). All 24 hr survivors were conscious and able to sit, stand, and drink normally. One 24 hr survivor in each group had difficulty walking. Improved survival with the high-rate compression technique was consistent with the significantly higher mean aortic (systolic and diastolic) and coronary perfusion pressures attained with high-rate compressions (all p less than .002). Although the clinical applicability of these findings has yet to be demonstrated, they provide empirical support for the recent decision to increase the chest compression rate for manual CPR recommended by the American Heart Association, and indicate that the hemodynamic and survival benefits of faster compression rates in this experimental preparation were not dependent on covariant alterations in compression duration.

Animals↗

Interposed abdominal compression-cardiopulmonary resuscitation and resuscitation outcome during asystole and electromechanical dissociation.

BACKGROUND: Coronary perfusion pressure has been shown to be a significant determinant of return of spontaneous circulation from cardiac arrest during asystole and electromechanical dissociation. The addition of interposed abdominal compression to otherwise standard cardiopulmonary resuscitation (CPR) increases coronary perfusion pressure in animal and human models. METHODS AND RESULTS: Accordingly, we conducted a randomized prospective study of 143 consecutive patients experiencing cardiac arrest in a large university-affiliated teaching hospital in whom the initial arrest rhythm was asystole or electromechanical dissociation. Patients were randomized to receive either interposed abdominal compression-CPR or standard CPR. The two end points studied were return of spontaneous circulation and 24-hour survival. In addition, we studied the complications associated with interposed abdominal compression-CPR. Sixty-nine men and 74 women with a mean age of 64 years (range, 19-97 years) were studied. The overall rate of return of spontaneous circulation was 38%. Return of spontaneous circulation was significantly greater in the group receiving interposed abdominal compression-CPR compared with the group receiving standard CPR (49% versus 28%, p = 0.01). At 24 hours, there was a significantly greater number of patients alive in the experimental group than in the control group (33% versus 13%, p = 0.009). We found no complication directly related to the procedure of interposed abdominal compression in a small subset of patients who died and underwent necropsy. CONCLUSIONS: We conclude that the addition of interposed abdominal compression may be a useful adjunct to otherwise standard CPR that can improve resuscitation outcome of patients experiencing in-hospital cardiac arrest from asystole and electromechanical dissociation.

Abdomen↗

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

In this article, 15 experts from six countries present an abridged version of the 1998 European Resuscitation Council guidelines for adult basic life support. Persons trained in advanced life support should use these guidelines together with the guidelines for advanced life support, also published in this journal. There are a few changes from the previous guidelines published in 1993. The ventilation tidal volume has been reduced to 400-600 ml, and the chest compression frequency has been increased to 100 min-1. In Norway, but not in the rest of Europe, the evaluation of the circulation by a pulse check has been eliminated in basic, but not in advanced cardiopulmonary resuscitation. This is due to reports that pulse checks performed by lay rescuers require much time with poor specificity and sensitivity. Finally, in evaluating the patient's own ventilation the differentiation between agonal gasps and regular breaths is stressed.

Adult↗

[Learning cardiopulmonary resuscitation using conventional external cardiac massage or active compression-decompression in simulated cardiopulmonary resuscitation].

OBJECTIVE: To compare medical students' simulated learning of two different techniques of cardiopulmonary resuscitation (CPR). One was conventional external cardiac massage (ECM) and the other was active compression-decompression (ACD-CPR). MATERIAL AND METHODS: The study group (group S) comprised 111 students enrolled in their fourth year of medical studies who had no prior experience of CPR. Group R, the control group, was made up of 32 medical residents in anesthesiology and post-anesthetic intensive care. Before the study, group S received 5 hours of theoretical classes on CPR and both groups saw a video explaining each technique just before performing the test. All subjects applied each method to an adult dummy for one minute. The variables evaluated were frequency of complete and effective thoracic compressions and the body weight of the resuscitator. RESULTS: Each group performed similarly using the two techniques in terms of frequency of total compressions achieved. For each technique, the number of effective compressions achieved by group S (49.4 +/- 22.9 with ECM and 42.5 +/- 20.7 with ACD-CPR) was significantly lower (p < 0.05) than the number attained by group R (71.2 +/- 18.6 with ECM and 58.8 +/- 12 with ACD-CPR). Group R's frequency of effective compressions was significantly higher (p < 0.05) with CPR than with ACD-CPR. Body weight had no influence on the number of total compressions or efficacy in group R, whereas lower body weight in group S was significantly related to lower frequency of effective compressions with ECM p < 0.05). Neither group achieved a frequency of 80 total compressions in one minute. CONCLUSIONS: With the present teaching method, the medical students' performance was poor for both types of CPR and was affected by body weight. The residents' performance was less effective with ACD-CPR, a technique that was new to them, than with conventional ECM, with which they were expert and on which body weight had no impact.

Adult↗

Mass cardio-pulmonary resuscitation: a new method of public cardio-pulmonary resuscitation teaching.

A mass CPR (cardio-pulmonary resuscitation) teaching programme, believed to be the first in Malaysia, was held at the Dewan Tunku Canselor, University of Malaya (UM) on Saturday, 13th July 1996. Organised by the Resuscitation Committee of University Hospital, Kuala Lumpur, this programme was conducted for 200 first year UM students. We describe the organisation of this non-traditional and non-threatening, new CPR teaching programme and propose that this be further developed for the dissemination of CPR skills to our Malaysian public.

Cardiopulmonary Resuscitation↗

Determining the relationship between end-of-life decisions expressed in advance directives and resuscitation efforts during cardiopulmonary resuscitation.

In recent years, there has been an increased focus on end-of-life decisions and the use of medical technology. It is not well documented in the literature whether or not and to what extent patients' advance directives are used for directing resuscitative efforts. The purpose of this study was to determine how useful patients' advance directives were to members of the health care team in determining treatment and end-of-life decisions among patients who received cardiopulmonary resuscitation (CPR) efforts. Medical records of 135 adult patients who had undergone CPR efforts within the previous year were reviewed to determine if and to what extent advance directives were useful in directing end-of-life care and treatment decisions. Only 35 of these patients had advance directives. Three categories for advance directives emerged: those that were "independently directive," those that were "vague and required further clarification," and those that were "nondirective." Information from this study may be used to clarify treatment options for end-of-life care and to determine if and what further interventions are required to ensure that advance directives can be executed as meaningful documents.

Advance Directive Adherence↗

[New recommendations in European cardiopulmonary resuscitation guidelines (Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care 2000: an International Consensus on Science].

The article presents most important changes in international guidelines for adult cardiopulmonary resuscitation. In this article guideline changes in basic and advanced life support published in Guidelines 2000 for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care--a Consensus on Science are discussed. Major changes in guidelines presented in this article include: pulse check, ventilation technique for rescue breathing, compression technique, abdominal thrust recommendations, precordial thump, universal algorithm changes.

Cardiology↗

[Investigation on nurses' knowledge of and experience in cardiopulmonary resuscitation and on nurses' knowledge of the guidelines for cardiopulmonary resuscitation and emergency cardiovascular care established in 2000--results of a survey at Asahikawa Medical College Hospital (second report)].

BACKGROUND: We reported that the practical knowledge and skill on basic life support were not enough among nursing staffs. Therefore, to clarify the existing conditions and issues in CPR education we carried out a survey on knowledge of and experience in cardiopulmonary resuscitation (CPR) and on knowledge of the Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care (ECC) established in 2000. METHODS: Three hundred and four nurses at Asahikawa Medical College Hospital were asked to fill in questionnaires. RESULTS: The results show that more than 80% of the nurses are much interested in CPR. Most of the nurses had received education and training in CPR as students or after graduation. However, cases of cardiopulmonary arrest and CPR were experienced by only about 40% of the nurses. Most of the nurses had never heard of the Guidelines for CPR and ECC in 2000. CONCLUSION: The results of this survey demonstrate the need to provide more education (on CPR) to nursing staff.

Cardiopulmonary Resuscitation↗

Resuscitation of conscious pigs following hemorrhage: comparative efficacy of small-volume resuscitation.

Efficacy of small-volume resuscitation (4 ml/kg) with 7.5% NaCl in 6% Dextran 70 (HSD), 7.5% NaCl (HS), dextran (D), and 0.9% NaCl (NS) was evaluated in conscious swine bled 37.5 ml/kg over 60 min. Hemorrhage reduced cardiac index (CI), stroke volume (SV), and mean arterial pressure (MAP). Four-hour survival after HSD (67%) was significantly (P less than 0.05) greater than after HS (25%), D (17%), or NS (0%). The superior performance of HSD, and to a lesser extent HS, was associated with rapid plasma volume expansion, improved CI and SV, and decreased heart rate. The acute increases in cardiac index and stroke volume were greater following treatment with HSD and the improvement persisted for 4 hr. HSD also produced a transient increase in MAP. Plasma Na+ concentration and osmolality were increased to a similar extent with HSD and HS, while plasma K+ levels were initially decreased, returning to control levels within 60 min. HSD appears to be a superior small-volume resuscitation solution compared to the other treatments with no detrimental effects.

Animals↗

A multicenter registration project of cardiopulmonary resuscitation in Belgium. The Studygroup "Cerebral Resuscitation" of the Belgian Society of Intensive Care Medecine (SIZ).

Within the SIZ, a national multiïnstitutional clinical research group on cardiopulmonary and cerebral resuscitation (CPCR) has been formed in 1982. The objectives of the studygroup are: Study and improve CPR and cerebral resuscitation post CPR; Optimalise emergency medical services (EMS) in Belgium in this respect. A method to record relevant information on CA was developed and 551 patients were registered on the draft form in 1982. This report outlines the parameters which differ significantly between CPR failures (group I) and initially successful CPR (group II and III); between only initially successful CPR (group II) and longterm survival (group III); and between the different centers in these 551 patients. As the number of patients increases in 1983, this "data bank" information will be valuable both for prognostic prediction of outcome in individual patients post CPR and for guiding improvement in EMS organisation. The study method should allow subsequently the evaluation of future brainresuscitative therapies.

Belgium↗

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

In this paper 14 experts from 11 countries publish an abridged version of the European Resuscitation Council's guidelines for adult advanced cardiac life support. The guidelines describe in detail how to perform resuscitation of patients with cardiac arrest due to ventricular fibrillation, pulse-less ventricular tachycardia, asystole and electro-mechanical dissociation. They should be used together with the guidelines for basic 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 for ordinary practitioners and paramedics inside and outside hospital.

Adult↗

Hypertonic versus isotonic crystalloid for fluid resuscitation in critically ill patients.

BACKGROUND: Hypertonic solutions are considered to have a greater ability to expand blood volume and thus elevate blood pressure and can be administered as a small volume infusion over a short time period. On the other hand, the use of hypertonic solutions for volume replacement may also have important disadvantages. OBJECTIVES: To determine whether hypertonic crystalloid decreases mortality in patients with hypovolaemia with and without head injuries. SEARCH STRATEGY: We searched MEDLINE, EMBASE, The Cochrane Controlled Trials Register and the Specialised register of the Injuries Group. We checked reference lists of all articles identified and searched the National Research Register. SELECTION CRITERIA: Randomised trials comparing hypertonic to isotonic crystalloid in patients with trauma, burns or undergoing surgery. DATA COLLECTION AND ANALYSIS: Two authors independently extracted the data and assessed the quality of the trials. MAIN RESULTS: Sixteen trials were identified with a total of 837 participants. Data on death were obtained in twelve of the studies. Only one trial reported data on disability. The pooled RR for death in trauma patients was 0.84 (95% CI 0.61-1.16), and in patients with burns 1.49 (95% CI 0.56-3.95), and in patients undergoing surgery 0.62 (95% cI 0.08-4.57). In the one trial that gave data on disability using the Glasgow Outcome Scale the relative risk was 0.99 (95% CI 0.06-15.93). REVIEWER'S CONCLUSIONS: This review does not give us enough data to be able to say whether hypertonic crystalloid is better than isotonic crystalloid for the resuscitation of patients with trauma, burns, or those undergoing surgery. However, the confidence intervals are wide and do not exclude clinically significant differences. Further trials are needed comparing hypertonic to isotonic crystalloid. Trials need to be large enough to detect a clinically important difference.

Crystalloid Solutions↗

[The new 2005 resuscitation guidelines of the European Resuscitation Council: comments and supplements].

The new CPR guidelines are based on a scientific consensus which was reached by 281 international experts. Chest compressions (100/min, 4-5 cm deep) should be performed in a ratio of 30:2 with ventilation (tidal volume 500 ml, Ti 1 s, FIO2 if possible 1.0). After a single defibrillation attempt (initially biphasic 150-200 J, monophasic 360 J, subsequently with the respective highest energy), chest compressions are initiated again immediately for 2 min. Endotracheal intubation is the gold standard; other airway devices may be employed as well depending on individual skills. Drug administration routes for adults and children: first choice IV, second choice intraosseous, third choice endobronchial [epinephrine dose 2-3x (adults) or 10x (pediatric patients) higher than IV]. Vasopressors: 1 mg epinephrine every 3-5 min IV. After the third unsuccessful defibrillation attempt amiodarone IV (300 mg); repetition (150 mg) possible. Sodium bicarbonate (1 ml/kg 8.4%) only in excessive hyperkalemia, metabolic acidosis, or intoxication with tricyclic antidepressants. Consider atropine (3 mg) and aminophylline (5 mg/kg). Thrombolysis during spontaneous circulation only in myocardial infarction or massive pulmonary embolism; during CPR only during massive pulmonary embolism. Cardiopulmonary bypass only after cardiac surgery, hypothermia or intoxication. Pediatrics: best improvement in outcome by preventing cardiocirculatory collapse. Alternate chest thumps and chest compression (infants), or abdominal compressions (>1-year-old) in foreign body airway obstruction. Initially five breaths, followed by chest compressions (100/min; approximately 1/3 of chest diameter): ventilation ratio 15:2. Treatment of potentially reversible causes (4 "Hs", "HITS": hypoxia, hypovolemia, hypo- and hyperkaliemia, hypothermia, cardiac tamponade, intoxication, thrombo-embolism, tension pneumothorax). Epinephrine 10 microg/kg IV or intraosseously, or 100 microg (endobronchially) every 3-5 min. Defibrillation (4 J/kg; monophasic oder biphasic) followed by 2 min CPR, then ECG and pulse check. Newborns: inflate the lungs with bag-valve mask ventilation. If heart rate<60/min chest compressions:ventilation ratio 3:1 (120 chest compressions/min). Postresuscitation phase: initiate mild hypothermia [32-34 degrees C for 12-24 h; slow rewarming (<0.5 degrees C/h)]. Prediction of CPR outcome is not possible at the scene; determining neurological outcome within 72 h after cardiac arrest with evoked potentials, biochemical tests and physical examination. Even during low suspicion for an acute coronary syndrome, record a prehospital 12-lead ECG. In parallel to pain therapy, aspirin (160-325 mg PO or IV) and in addition clopidogrel (300 mg PO). As antithrombin, heparin (60 IU/kg, max. 4000 IU) or enoxaparine. In ST-segment elevation myocardial infarction, define reperfusion strategy depending on duration of symptoms until PCI (prevent delay>90 min until PCI). Stroke is an emergency and needs to be treated in a stroke unit. A CT scan is the most important evaluation, MRT may replace a CT scan. After hemorrhage exclusion, thrombolysis within 3 h of symptom onset (0.9 mg/kg rt-PA IV; max 90 mg within 60 min, 10% of the entire dosage as initial bolus, no aspirin, no heparin within the first 24 h). In severe hemorrhagic shock, definite control of bleeding is the most important goal. For successful CPR of trauma patients, a minimal intravascular volume status and management of hypoxia are essential. Aggressive fluid resuscitation, hyperventilation, and excessive ventilation pressure may impair outcome in severe hemorrhagic shock. Despite bad prognosis, CPR in trauma patients may be successful in select cases. Any CPR training is better than nothing; simplification of contents and processes remains important.

Adult↗

Part 8: advanced challenges in resuscitation. Section 2: toxicology in ECC. European Resuscitation Council.

Use of standard ACLS protocols for all patients who are critically poisoned may not result in an optimal outcome. Care of severely poisoned patients can be enhanced by urgent consultation with a medical toxicologist. Alternative approaches required in severely poisoned patients include: o Higher doses than usual. o Drugs that are rarely used to treat cardiac arrest (amrinone, calcium, esmolol, glucagon, insulin, labetalol, phenylephrine, physostigmine, and sodium bicarbonate). o Heroic measures, such as prolonged CPR and use of circulatory assist devices. When resuscitation is unsuccessful, organ donation may still be an option.

Cardiology↗

[Do-not-resuscitate orders and cardiopulmonary resuscitation at a Norwegian department of surgery].

BACKGROUND: A previous publication indicates a lack of clear guidelines for DNAR orders in Norwegian hospitals. The Norwegian Board of Health has recently published strict requirements for such a procedure. MATERIAL AND METHODS: Patients discharged from a surgical department from 1 March to 31 May 2001 with complicated or advanced cancer and/or a postoperative stay of minimum ten days. The patient files were studied for information on DNAR orders and/or cardiac arrest. RESULTS: 13 out of 69 patients had a DNAR order. In eight of them there was either no explanatory note in the files or no correct signature. Three of the five other patients had taken part in the discussion, so had next-of-kin in two circumstances. Resuscitation was not initiated in any of 14 patients with cardiac arrest. Six of these, who had no DNAR order, all had advanced, inoperable cancer or serious chronic cardiac and respiratory failure. There were no signs that a DNAR order had influenced any other treatment decision. INTERPRETATION: The department had a clear procedure for writing DNAR orders but it was followed in less than half of the cases.

Cardiopulmonary Resuscitation↗

[European Resuscitation Council guidelines for cardiopulmonary resuscitation in 2005].

ADULT BASIC LIFE SUPPORT: The ratio of compressions to ventilations is 30:2 for all adult victims of cardiac arrest. AUTOMATED EXTERNAL DEFIBRILLATION: A single defibrillatory shock is delivered, immediately followed by two minutes of uninterrupted CPR. ADULT ADVANCED LIFE SUPPORT: In out-of-hospital cardiac arrest attended, but unwitnessed, by healthcare professionals equipped with manual defibrillators, give CPR for 2 minutes before defibrillation. The recommended initial energy for biphasic defibrillators is 150-200 J, for second and subsequent shocks is 150-360 J. The recommended energy when using a monophasic defibrillator is 360 J for both the initial and subsequent shocks. Rhythm checks must be brief, and pulse cheks undertaken only if an organised rhythm is observed. Adrenaline is given 1 mg i.v. as soon as intravenous access is obtained, and repeated every 3-5 min thereafter until return of spontaneous circulation is achieved. Consider thrombolytic therapy when cardiac arrest is thought to be due to proven or suspected pulmonary embolus. Unconscious adult patinets, with spontaneous circulation, after out-of-hospital VF cardiac arrest should be cooled to 32-34 degrees C for 12-24 hours. PAEDIATRIC BASIC LIFE SUPPORT: Lay rescuers or lone rescuers witnessing paediatric cardiac arrest will start with 5 rescue breaths and continue with the 30:2 ratio as thaught in adult BLS. Two or more rescuers with a duty to respond will use the 15:2 ration in a child up to the onset of puberty. PAEDIATRIC ADVANCED LIFE SUPPORT: When using a manual defibrillator, a dose of 4 J/kg (biphasic or monophasic waveform) should be used for the first and subsequent shocks. Adrenaline iv. or i.o. should be given at the dose of 10 microg/kg (0.01 mg/kg) and repeated every 3-5 minutes. NEONATAL LIFE SUPPORT: Protect the newborn from heat loss. Standard resuscitation in delivery room should be made with 100% oxygen. Suctioning meconium from the baby's nose and mouth before delivery of the baby's chest (intrapartum suctioning) is not useful and no longer recommended.

Adult↗

Active compression-decompression. A new method of cardiopulmonary resuscitation. Cardiopulmonary Resuscitation Working Group.

OBJECTIVE: To describe and compare with standard cardiopulmonary resuscitation (CPR) in humans a new form of CPR that involves both active compression and active decompression of the chest. DESIGN: Patients in cardiac arrest in whom standard advanced cardiac life support failed were randomized to receive 2 minutes of either standard or active compression-decompression (ACD) CPR using a custom, hand-held suction device, followed by 2 minutes of the alternate technique. The ACD device was applied midsternum and used to perform CPR according to the guidelines of the American Heart Association: 80 compressions per minute, compression depth of 3.8 to 5 cm, 50% duty cycle, and constant-volume ventilation. Mechanical Thumper CPR was also compared in five patients. End-tidal carbon dioxide (ETCO2) concentrations and hemodynamic variables were measured. Transesophageal Doppler echocardiography was used to assess contractility, the velocity time integral (an analogue of cardiac output), and diastolic myocardial filling times. RESULTS: Ten patients were enrolled. The mean +/- SD ETCO2 was 4.3 +/- 3.8 mm Hg with standard CPR and 9.0 +/- 3.9 mm Hg with ACD CPR (P less than .0001). Systolic arterial pressure with standard CPR was 52.5 +/- 14.0 mm Hg and with ACD CPR, 88.9 +/- 24.7 mm Hg (P less than .003). The velocity time integral increased from 7.3 +/- 2.6 cm with standard CPR to 17.5 +/- 5.6 cm with ACD CPR (P less than .0001), and diastolic filling times increased from 0.23 +/- .09 seconds with standard CPR to 0.37 +/- .12 seconds with ACD CPR (P less than .004). Mechanical Thumper CPR consistently underperformed both standard and ACD CPR. Minute ventilation obtained in four patients during ACD CPR without endotracheal ventilation was 6.6 +/- 0.9 L/min. After 1 hour of standard CPR failed, three of 10 patients randomized to ACD CPR rapidly converted to a hemodynamically stable rhythm following 2 minutes of ACD CPR. CONCLUSION: ACD CPR is a simple manual technique that improved cardiopulmonary circulation in 10 patients during cardiac arrest. Although ACD CPR may have produced a return of spontaneous circulation in three patients refractory to standard measures, its impact on survival when used early in cardiac arrest remains to be determined.

Adult↗

Active compression-decompression resuscitation: a novel method of cardiopulmonary resuscitation.

Chest compression is an important part of cardiopulmonary resuscitation (CPR), but it only aids circulation during a portion of the compression cycle and has been shown to only minimally increase blood flow to vital organs. The purpose of this study was to quantitate the short-term hemodynamic effects of CPR with a hand-held suction device that incorporates both active compression and decompression of the chest. The suction device was applied to the middle of the sternum and compared with standard manual CPR in eight nonventilated anesthetized dogs. Coronary perfusion pressure, systolic and diastolic aortic pressures, right atrial diastolic pressure, and the velocity time integral (an analog of cardiac output), which were obtained by means of transesophageal pulsed wave Doppler echocardiography from the main pulmonary artery, were measured every 30 seconds during CPR. Minute ventilation was measured over the last minute of each CPR technique. Both active compression-decompression CPR and standard CPR were sequentially performed for 2 minutes in random order 30 seconds after induced ventricular fibrillation. The CPR techniques consisted of 100 compressions per minute, with a compression depth of 1.5 to 2 inches and a 50% duty cycle. Coronary perfusion pressure, velocity time integral (cardiac output analog), minute ventilation, and systolic arterial pressure were all significantly improved by active compression-decompression CPR when compared with standard CPR. We conclude that active compression-decompression CPR is a simple technique that appears to improve coronary perfusion pressure, systolic arterial pressure, cardiac output, and minute ventilation in nonventilated animals when compared with standard CPR.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗