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Ibuprofen improves survival and neurologic outcome after resuscitation from cardiac arrest.

Post-ischemic inflammatory changes in the central nervous system (CNS) following cardiac arrest and resuscitation are potentially responsible for ultimate survival and much of the neurologic damage, producing greater morbidity and mortality in successfully resuscitated patients. This study was undertaken to assess the non-steroidal anti-inflammatory agent, ibuprofen, in a controlled and monitored experimental model of canine cardiac arrest and resuscitation. With the investigator blinded as to the intervention, eight of 21 dogs were randomly assigned to receive ibuprofen as an i.v. bolus (10 mg/kg) and a 6-h i.v. infusion (5 mg/kg per h). The other 13 dogs received an equivalent volume of 0.9% NaCl to serve as controls. No statistically significant differences between the two groups were detected in any pre-arrest variables. All 21 dogs were successfully resuscitated. At 24 h, dogs receiving ibuprofen exhibited 100% survival, while control dogs exhibited only 54% survival (P = 0.03). The majority of deaths for the control group occurred within the first 6 h. Neurologic deficit scores were assigned at 1, 2, 6 and 24 h after resuscitation. A general trend occurred such that dogs treated with ibuprofen improved over time, while the control dogs remained severely impaired. A significant difference in neurologic deficit score was detected at 6 h (P = 0.01). At 24 h the ibuprofen group exhibited minimal neurologic deficit (5.9 +/- 3.2), and the control group exhibited significantly more severe neurologic impairment (52.2 +/- 13.0, P = 0.01). These results suggest that ibuprofen may be helpful in the pharmacologic management of cardiac arrest as a means of increasing survival and decreasing neurologic impairment.

Animals↗

Prevention of transmission of infection during mouth-to-mouth resuscitation.

The risk of infection transmitted during mouth-to-mouth or mouth-to-nose resuscitation procedures is difficult to define but is possibly quite low. However, the perceived risk is sufficient to cause serious concern for many individuals, including trained hospital personnel as well as the general public, and may preclude prompt and effective action. A novel airway device was evaluated for the retention of infective droplets and fluid permeability under simulated resuscitation conditions using a cardiopulmonary resuscitation training manikin. Retention of a 0.5-5.0 micron aerosol of Staphylococcus aureus cells was greater than 80% at flow rates of 6 l/min while under simulated resuscitation conditions the trapping of bacteria, originating predominantly from saliva, was over 90%. These data suggest that this device may afford significant protection against transmission of infection during exhaled air resuscitation manoeuvres.

Bacterial Infections↗

Resuscitation skills amongst anaesthetists.

Resuscitation skills were assessed in a group of 24 anaesthetists of varying experience using 3 pre-determined scenarios. Seventy-nine percent of participants were found to be competent at resuscitation following the guidelines suggested by the Resuscitation Council (UK) in 1989. No one grade of anaesthetist was found to be consistently poor at resuscitation. Anaesthetists by the nature of their jobs may maintain the skills and knowledge of cardiopulmonary resuscitation as well as other groups in the hospital.

Anesthesiology↗

Establishing a resuscitation model in rabbits with closed-thoracic cardiopulmonary by-pass.

This study aims to establish an animal model of resuscitation in rabbits by using closed-thoracic cardiopulmonary by-pass (CTCPB). The rabbits were randomly divided into four groups according to cardiac arrest times which were 8, 10, 12, and 15 min. Neurologic outcome and blood lactate were determined within 150 min after resuscitation. It was indicated that the rabbits' neurologic functions were progressively injured with prolonged cardiac arrest time. The threshold of circulatory arrest time that induced a vegetative state in the rabbits was between 10 and 12 min. There were no significant differences in cardiac resuscitability among the four groups, as was so for plasma lactate, although it increased significantly from the control levels. The establishment of a small-animal model of resuscitation by using CTCPB, and the problems in dealing with it are also described and discussed in detail in this paper. Our experience indicated that this is a simple, convenient, and economical animal model for the study of resuscitation.

Animals↗

Structural basis of information capacity changes of sensory-motor cerebral cortex of rat brain during post-resuscitation period.

In a rat model of asphyxial cardiac arrest the volume of the sensory-motor cortex and the number of neurons and synapses were determined 90 min, 6 h, and 1, 3, 7, 14, and 30 days post-resuscitation. The number of synapses was determined from serial fragmental sections, using selective contrast in ethanol solution of phosphorotungsten acid (PTA), and by cytoarchitectonic analysis on medium-thick sections. The sensory-motor cortex (SMC) volume did not change significantly during the subsequent 30 days after resuscitation. The number of neurons decreased from 2.462 +/- 0.082) x 10(6) pre-insult to (1.441 +/- 0.098) x 10(6) 30 days after resuscitation. Damage was most severe in the small neuronal cell complexes of layers III-IV, which serve as an afferent cortical 'entrance'. Damage was least in the large neuronal cell complexes of layer V, which serves as an efferent cortical 'outlet'. The number of SMC synapses decreased from (5.920 +/- 0.51) x 10(9) pre-insult to (3.441 +/- 0.305) x 10(9) 30 days after resuscitation. Damage was most severe in the synaptic pool of the cortical SMC 'entrance'. An increase in the number of high-efficiency hypertrophic synaptic contacts was observed during the post-resuscitation period, which may significantly change interneuronal relationships.

Animals↗

Chemically modified heparin improves hepatocellular function, cardiac output, and microcirculation after trauma-hemorrhage and resuscitation.

BACKGROUND: Although heparinization before hemorrhagic shock improves tissue perfusion and organ function, the anticoagulant properties of conventional heparin preclude its clinical use. The purpose of this study was to determine whether chemically modified heparin (CMH), which does not have any significant anticoagulant activity, produces any beneficial effects on hepatocellular and cardiovascular function and microcirculation after trauma-hemorrhage and resuscitation. METHODS: After induction of tissue trauma (that is, laparotomy), rats were bled to and maintained at a mean arterial pressure of 40 mm Hg until 40% of maximum bleedout volume was returned in the form of Ringer's lactate (RL). The animals were then resuscitated with three times the volume of shed blood with RL over 45 minutes, followed by two times RL and CMH (7 mg/kg body wt; approximately 10% of the anticoagulant activity of conventional heparin), conventional heparin (7 mg/kg), or normal saline solution over 60 minutes. Hepatocellular function, cardiac output, and microvascular blood flow were determined thereafter. RESULTS: The results indicate that hepatocellular function, cardiac output, and microvascular blood flow in the liver, kidney, spleen, and small intestine decreased markedly after trauma-hemorrhage and resuscitation. Infusion of CMH or conventional heparin during resuscitation, however, restored or significantly improved the mentioned parameters. CONCLUSIONS: Because CMH does not have any significant anticoagulant properties and because it restores or significantly improves hepatocellular function, cardiac output, and tissue perfusion, this agent appears to be a useful adjunct in the treatment of trauma and hemorrhagic shock, even in the absence of blood resuscitation.

Animals↗

Aminophylline fails to improve the outcome of cardiopulmonary resuscitation from prolonged ventricular fibrillation: a placebo-controlled, randomized, blinded experimental study.

OBJECTIVES: The purpose of this study was to evaluate systematically the effects of the adenosine antagonist aminophylline on resuscitation outcome in a canine model of postcardioversion nonperfusing rhythm. BACKGROUND: Theoretic considerations and experimental studies indicate that myocardial adenosine accumulation during prolonged ventricular fibrillation might play a significant role in postcardioversion asystole and electromechanical dissociation. A recent uncontrolled clinical trial has suggested that the adenosine antagonist aminophylline might improve the outcome of cardiopulmonary resuscitation from refractory bradyasystolic cardiac arrest. METHODS: Two placebo-controlled, randomized, blinded experimental studies were performed. In protocol 1 (20 dogs), ventricular fibrillation was induced and maintained for 7.5 min. Sixty seconds before cardioversion, dogs received 1 mg of epinephrine followed by 250 mg of aminophylline or placebo. In protocol 2 (20 dogs), dogs were cardioverted to electromechanical dissociation after 5 min of unsupported ventricular fibrillation. Sixty seconds later, all dogs received 1 mg of epinephrine followed by 250 mg of aminophylline or placebo. In both experiments, resuscitation efforts were continued until return of spontaneous circulation, or up to 30 min. The primary end point was survival to 1 h. RESULTS: In protocol 1, 4 of 10 dogs survived in the aminophylline group, whereas 7 of 10 dogs survived in the placebo group, a nonsignificant trend toward unfavorable outcome from aminophylline. Pretreatment with aminophylline increased the number of cardioversion applications required to terminate ventricular fibrillation. In protocol 2, 5 of 10 and 6 of 10 dogs survived in the aminophylline and placebo groups, respectively. CONCLUSIONS: The results of this study suggest that aminophylline fails to improve the outcome of resuscitation from prolonged ventricular fibrillation. It does not reverse established electromechanical dissociation and may in fact increase the number of cardioversion applications required to terminate ventricular fibrillation. The rationale for conducting clinical trials with aminophylline during cardiopulmonary resuscitation is questionable.

Aminophylline↗

Open- versus closed-chest cardiac compressions in a canine model of pediatric cardiopulmonary resuscitation.

Whether or not the principles of adult resuscitation apply to the pediatric population remains unknown. In order to study this issue, a pediatric animal model was developed using puppies 6-12 weeks of age and 2-8 kg in weight. Hemodynamic status was assessed using standard methods, and measured global cerebral blood flow was assessed using the nitrous oxide (Kety-Schmidt) technique after placement of a catheter in the sagittal sinus. In this initial study, five puppies resuscitated with closed-chest cardiac compression (CCCC) were compared with five receiving open-chest cardiac compression (OCCC). Although mean systolic arterial pressures were equal with both methods during resuscitation (40 versus 49 mm Hg, P = 0.19), OCCC produced a greater cardiac output and a higher cerebral blood flow (5 versus 18 ml/100 g/min, P = 0.008). Only one of five dogs treated with CCCC had a blood flow during resuscitation greater than 15 ml/100 g/min, as compared with four of five receiving OCCC. Finally, three of five dogs in the CCCC group experienced liver lacerations, while none who were resuscitated by OCCC sustained any gross visceral injuries.

Animals↗

Gas exchange and regional redistribution of pulmonary blood flow during resuscitation of acute pulmonary bead embolization.

Acute pulmonary embolism (PE) was induced by injecting polystyrene beads into the right atrium of 18 anaesthetized dogs. The animals were resuscitated for 45 min with either Ringer's Lactate (RL), norepinephrine (NE) or isoproterenol (IP). The multiple inert gas elimination technique (MIGET) was used to estimate the distributions of ventilation (V) and blood flow (Q) to different V/Q regions. Measurements were made prior to embolism, 10 min after PE and during the resuscitative phase. Microspheres with three different radioactive labels were also used to mark blood flow distribution to different lung regions in these three phases. The data show that cardiac output decreases after PE, while perfusion to shunt and low V/Q regions increases. Pulmonary blood flow heterogeneity, estimated from the MIGET data, is also increased after PE. Resuscitation by RL or NE consistently increases cardiac output but IP does so inconsistently and is associated with systemic hypotension. All three methods of resuscitation cause increases in perfusion to the shunt and low V/Q regions but no change in perfusion heterogeneity in the remaining V/Q units. Increases in regional blood flow during resuscitation occur preferentially in the less embolized areas. The concomitant increase in perfusion to shunt and low V/Q units suggests that increased perfusion to these less embolized regions results in further hypoxemia despite improvement in cardiac output.

Animals↗

Potential risks of high-dose epinephrine for resuscitation from ventricular fibrillation in a porcine model.

The arterial plasma concentrations and hemodynamic effects of epinephrine, 10 micrograms/kg, IV (group A, N = 8) and 50 micrograms/kg, IV (group B, N = 8) were compared in a porcine resuscitation model after 3 minutes of circulatory arrest induced by ventricular fibrillation. All animals in group A were successfully resuscitated after 4.9 +/- 2.8 minutes and 2.8 +/- 1.6 defibrillations. In group B, only 6 of 8 animals were successfully resuscitated after 6.3 +/- 1.1 minutes and 4.0 +/- 2.7 defibrillations (mean +/- SD). During CPR, cardiac output (CO), left ventricular systolic pressure (LVSP), and mean arterial pressure (MAP) were nearly identical in the groups. The hemodynamic situation during the first hour after restitution of spontaneous circulation in group B was characterized by a significantly higher heart rate, combined with significantly lower values for cardiac inotropy, CO, LVSP, and MAP compared to group A. Mean arterial peak epinephrine concentrations (group A 197 +/- 133 ng/mL, group B 1173 +/- 298 ng/mL) were approximately fivefold higher in group B. After resuscitation, plasma concentrations returned to baseline levels within 7 minutes in group A and 15 minutes in group B. Later hemodynamic differences between the groups are thereby attributed to a detrimental impact of high-dose epinephrine on the heart during resuscitation.

Animals↗

Cardiocerebral resuscitation for cardiac arrest.

Survival rates from out-of-hospital cardiac arrest continue to be low despite periodic updates in the Guidelines for Emergency Medical Services and periodic improvements such as the addition of automatic external defibrillators (AEDs). The low incidence of bystander cardiopulmonary resuscitation (CPR), substantial time without chest compressions throughout the resuscitation effort, and a lack of response to initial defibrillation after prolonged ventricular fibrillation contribute to these unacceptably poor results. Resuscitation guidelines are only revised every 5 to 7 years and can be difficult to change because of the lack of randomized controlled trials in humans. Such trials are rare because of a number of logistical difficulties, including the problem of obtaining informed consent. An alternative approach to advancing resuscitation science is for evidence-based demonstration projects in areas that have adequate records, so that one may determine whether the new approach improves survival. This is reasonable because the current guidelines make provisions for deviations under certain local circumstances or as directed by the emergency medical services medical director. A wealth of experimental evidence indicates that interruption of chest compressions for any reason in patients with cardiac arrest is deleterious. Accordingly, a new approach to out-of-hospital cardiac arrest called cardiocerebral resuscitation (CCR) was developed that places more emphasis on chest compressions for witnessed cardiac arrest in adults and de-emphasizes ventilation. There is also emphasis on chest compressions before defibrillation in circulatory phase of cardiac arrest. CCR was initiated in Tucson, Arizona, in November 2003, and in two rural Wisconsin counties in early 2004.

Cardiopulmonary Resuscitation↗

Resuscitation fluid volume and abdominal compartment syndrome in patients with major burns.

Abdominal compartment syndrome (ACS) is rarely reported as a complication of severe burn. This study clarified the risk of burned patients with and without ACS, especially regarding the resuscitation fluid volume. Extensively burned patients admitted to our burn unit from January 2003, through to June 2004, were examined. Vital signs, blood gas analysis, bladder pressure to estimate intra-abdominal pressure (IAP), peak inspiratory pressure (PIP), resuscitation fluid volume, and urine output (UO) were analyzed. Intra-abdominal hypertension (IAH) was defined as an IAP of more than 30 cm of H2O. Eight of 48 patients suffering from a more than 30% total burn surface area developed ACS in 18.3+/-4.9 h. In these patients, IAP (49+/-12 cmH2O), PIP (50+/-16 cmH2O), heart rate (115+/-8/min), and PaCO2 (54.6+/-10.1 mmHg) were higher than normal, and their resuscitation volume was 0.40+/-0.11 L/kg. Also, a significant correlation between the IBP, PIP and resuscitation volume was observed. Most patients with severe burns required more than 300 mL/kg of resuscitation fluid for the first 24 h after injury that led to ACS and had higher HR, IBP, PIP and PaCO2 despite arterial pressure showing no significant difference.

Abdomen↗

Resuscitation burn card--a useful tool for burn injury assessment.

It is well recognised that the initial assessment of body surface area affected by a burn is often over estimated in Accident and Emergency Departments. A useful aide-memoir in the acute setting is Wallace's "rule of nines" or using the patients' palmar surface of the hand, which approximates 1% of the total body surface area, as a method of assessment. Unfortunately, as with every system, limitations apply. Factors such as patient size and the interpretation of what is exactly the 'palmar surface' may significantly influence burn size estimations and subsequently fluid resuscitation. Our aim is to develop a simple, quick and easy reproducible method of calculating burn injuries for medical professionals in the acute setting. Worldwide, the dimensions of a credit card are standardized (8.5 cm x 5.3 cm), thus producing a surface area of 45 cm2. We created a resuscitation burn card (RBC) using these exact same proportions, upon which a modified body surface area (BSA) nomogram was printed. Knowing the patient height and weight, we calculated the surface area of the card as percentage of total body surface area (TBSA). On the opposite site of the RBC, a Lund and Browder chart was printed, as well as the Parkland formula and a formula to calculate paediatric burn fluid requirements. The plastic, flexible RBC conformed well to the body contour and was designed for single use. We used the resuscitation burn card in the initial assessment of simulated burns in a Regional Burn Centre and in an Accident and Emergency Department. The information present on the card was found to be clear and straightforward to use. The evaluation of burn extent was found to be more accurately measured than the estimation obtained without the RBC. The resuscitation burn card can be a valuable tool in the hands of less experienced medical professionals for the early assessment and fluid resuscitation of a burn.

Adult↗

Burn patient characteristics and outcomes following resuscitation with albumin.

BACKGROUND: Use of colloids in acute burn resuscitation may reduce fluid requirements, but effect on mortality is unknown. We hypothesized that patients who received albumin would have similar mortality to patients who did not receive albumin. METHODS: We performed a case-controlled study of inpatients who sustained burns of > or =20% total body surface area (TBSA). Patients who received albumin during resuscitation because of increased fluid requirements (ALB) were compared to a cohort of patients matched for age and TBSA who did not receive albumin (CON). RESULTS: Patients with inhalation injury were significantly more likely to receive albumin (OR 4.89, 95% CI 2.58-9.30). ALB patients had significantly higher mean initial lactate (3.64 versus 2.29, p=0.01), longer mean time to resuscitation (52.8 h versus 36.3 h; p=0.001), and higher resuscitation volume (9.4 mL/kg/%TBSA versus 6.4 mL/kg/%TBSA for CON). Mortality was not significantly different between the two groups (OR 1.90, 95% CI 0.85-4.22). Albumin was protective in a multivariate model of mortality (OR 0.27, 95% CI 0.07-0.97). CONCLUSIONS: Despite more severe systemic dysfunction, burn patients who received albumin did not suffer increased mortality. A novel finding is the decreased likelihood of mortality associated with the administration of albumin during burn resuscitation.

Adult↗

Does cardiopulmonary resuscitation cause rib fractures in children? A systematic review.

BACKGROUND: There is a diagnostic dilemma when a child presents with rib fractures after cardiopulmonary resuscitation (CPR) where child abuse is suspected as the cause of collapse. We have performed a systematic review to establish the evidence base for the following questions: (i) Does cardiopulmonary resuscitation cause rib fractures in children? (ii) If so, what are the frequency and characteristics of these fractures that may help to distinguish them from rib fractures caused by physical abuse? METHODS: We performed a literature search of original articles, references, textbooks, and conference abstracts, published in any language from 1950 to 1 October 2005. Articles were identified from ASSIA, Caredata, Medline, Ovid Medline in Process, ChildData, CINAHL, Embase, ISI Proceedings, SIGLE, Science Citation Index, Social Science Citation Index, and TRIP databases. We included all studies that addressed rib fractures and CPR in children less than 18 years, and excluded review articles, expert opinion, consensus guidelines, and studies that were significantly methodologically flawed on critical appraisal. Each study underwent two independent reviews (with a third review if there was disagreement). Each reviewer used standardized criteria for study definition, data extraction, and critical appraisal, to determine the quality of the study and to establish if it met the inclusion criteria of this systematic review. FINDINGS: Of the 427 studies reviewed, 6 were included: 1 case control, 4 cross-sectional, and 1 case series. These represent data on 923 children who underwent CPR. Three children sustained rib fractures as a result of resuscitation; all three of these had fractures that were anterior (two mid-clavicular and one costo-chondral). We did not find any child in the literature who had a posterior rib fracture due to CPR. Resuscitation was performed variably by both medical and non-medical personnel. CONCLUSION: Rib fractures after cardiopulmonary resuscitation are rare. When they do occur, they are anterior and may be multiple. As the studies performed to date did not use the most sensitive techniques for detecting rib fractures, further prospective studies of children would be valuable to provide additional clarification on this question.

Adolescent↗

The role of oxygen in neonatal resuscitation.

New knowledge has accumulated in recent years making it prudent to ask questions regarding current oxygenation policies and guidelines. Because new-born resuscitation affects so many individuals, and because resuscitation procedures may have dramatic consequences on infant and child health, intensified discussion and research in this field are not only necessary but are a requirement. In particular, there is a lack of data on infants born before term. It is difficult to give absolute recommendations on which oxygen concentration should be applied for newborn resuscitation; however, it seems that ambient air is safe. It is easy to handle, is always at hand, and is inexpensive. Conversely, regarding 100% O2, I believe we have sufficient data to conclude that this should not be given routinely at birth to depressed infants; however, whether it is beneficial or harmful to start out resuscitation with 30%, 40%, or 60% O2 is not known. No data exist to answer this question. A call for more research in this area is timely. The effect of pure oxygen on cell growth and cell death, gene activation, and possibly DNA damage should be carefully investigated. Even before such data are collected, it is known that pure oxygen at birth triggers long-term and poorly understood effects. Oxygen obviously is more toxic than previously thought, and oxygen given to small infants has a 50-year history of uncertain benefits. Table 1 summarizes the pros and cons of using 21%versus 100% 02 for newborn resuscitation. Brain circulation as assessed by microspheres is restored as quickly with 21% O2 as it is with 100% O2; however, microcirculation is somewhat slower. Metabolism, pulmonary flow, and myocardial performance are normalized just as quickly by 21% and 100% O2. Brain injury as assessed by glycerol augmentation, matrix injury, and neonatal mortality is less in infants given 21% versus 100% O2.

Air↗

Pitfalls in neonatal resuscitation.

Ten percent of all newborns require resuscitation at birth. The Neonatal Resuscitation Program establishes the authoritative technique of newborn resuscitation. Errors continue to occur that are related to the use of unskilled resuscitators; intubation; inadequate suctioning of meconium; and the postresuscitation problems of hypoglycemia, hypocarbia, and hypotension. Specific recommendations are offered to avoid these pitfalls of neonatal resuscitation.

Carbon Dioxide↗

The effects of biphasic waveform design on post-resuscitation myocardial function.

OBJECTIVES: This study examined the effects of biphasic truncated exponential waveform design on survival and post-resuscitation myocardial function after prolonged ventricular fibrillation (VF). BACKGROUND: Biphasic waveforms are more effective than monophasic waveforms for successful defibrillation, but optimization of energy and current levels to minimize post-resuscitation myocardial dysfunction has been largely unexplored. We examined a low-capacitance waveform typical of low-energy application (low-energy biphasic truncated exponential [BTEL]; 100 microF, < or =200 J) and a high-capacitance waveform typical of high-energy application (high-energy biphasic truncated exponential [BTEH]; 200 microF, > or =200 J). METHODS: Four groups of anesthetized 40- to 45-kg pigs were investigated. After 7 min of electrically induced VF, a 15-min resuscitation attempt was made using sequences of up to three defibrillation shocks followed by 1 min of cardiopulmonary resuscitation. Animals were randomized to BTEL at 150 J or 200 J or to BTEH at 200 J or 360 J. RESULTS: Resuscitation was unsuccessful in three of the five animals treated with BTEH at 200 J. All other attempts were successful. Significant therapy effects were observed for survival (p = 0.035), left ventricular ejection fraction (p < 0.001), stroke volume (p < 0.001), fractional area change (p < 0.001), cardiac output (p = 0.044), and mean aortic pressure (p < 0.001). Hemodynamic outcomes were negatively associated with energy and average current but positively associated with peak current. Peak current was the only significant predictor of survival (p < 0.001). CONCLUSIONS: Maximum survival and minimum myocardial dysfunction were observed with the low-capacitance 150-J waveform, which delivered higher peak current while minimizing energy and average current.

Animals↗