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[Controversies in hospital guidelines for non-resuscitation decisions].

Guidelines regarding non-resuscitation decisions sometimes raise conceptual and ethical questions. Establishing blood circulation and gas exchange is no useful criterium to determine the efficacy of resuscitation. A professional assessment of efficacy or medical futility of resuscitation may involve value judgements. These value judgements should not concern the life of the individual patient, but rather the objective of resuscitation in general. Furthermore, these judgements ought to be grounded on professional consensus. A patient should be informed of a non-resuscitation decision that has been taken, since in the normal course of events resuscitation is the correct treatment. Furthermore, a conversation serves not only to obtain informed consent but also to align the views and expectations of the patient and his treating physician. Suspension of a non-resuscitation policy during operations should be discussed with the patient. A physician is allowed to define the limits to the risks to which he wants to expose the patient.

Ethics, Institutional↗

Physicians as patients. Choices regarding their own resuscitation.

BACKGROUND: Attitudes toward cardiopulmonary resuscitation have changed considerably during the last 30 years. Although physicians are routinely involved in the decision making about cardiopulmonary resuscitation for their patients, little is known about their collective preferences regarding it for themselves. METHODS: A questionnaire was distributed at an internal medicine primary care review course at an urban community hospital. Of the 111 physicians registered at the meeting, 72 (65%) completed the questionnaire and serve as the basis for the results. Physicians were asked if they would want cardiopulmonary resuscitation for themselves in the presence of an acute myocardial infarction, Alzheimer's disease, and nine other advanced chronic diseases at the projected ages of 40, 60, and 80 years. RESULTS: At all projected ages, physicians' desire for cardiopulmonary resuscitation with any advanced chronic disease was significantly less than with an acute myocardial infarction (P < or = .000001 except for rheumatoid arthritis). Fewer physicians wanted cardiopulmonary resuscitation at age 80 years than at 40 years for any disease (P < or = .002). The results did not differ when analyzed by respondents' age, gender, or primary care specialty, or the size of the community in which they practiced. CONCLUSIONS: The results of this initial survey indicate that most physicians would not want cardiopulmonary resuscitation with a variety of underlying chronic diseases and corresponding functional impairments--particularly with advancing age. Conversely, with an acute myocardial infarction, all physicians surveyed would desire cardiopulmonary resuscitation at age 40 years, and many would continue to desire it with advancing age.

Acute Disease↗

Outcome and cost at a children's hospital following resuscitation for out-of-hospital cardiopulmonary arrest.

OBJECTIVE: To determine the outcome and cost for children resuscitated following out-of-hospital cardiopulmonary arrest. DESIGN: Retrospective case series. SETTING: An organized prehospital emergency medical system within Birmingham, Ala, in a county with 150,493 children under the age of 15 years. PATIENTS: Sixty-three pediatric victims of out-of-hospital cardiopulmonary arrest of any cause presenting to the emergency department of a children's hospital. INTERVENTION: Standard resuscitative techniques were performed for all patients until resuscitative efforts were discontinued in the hospital emergency department or successful resuscitation was achieved. MAIN OUTCOME MEASURES: Successful resuscitation, survival to hospital discharge, neurological outcome, final disposition, and cost of hospital care. RESULTS: Of 63 children with out-of-hospital cardiopulmonary arrest treated in the emergency department of a children's hospital, 60 were pulseless and apneic on arrival, 18 (28.6%) were successfully resuscitated and admitted to the intensive care unit, and six (9.5%) were discharged from the hospital. Five of the survivors had severe neurological deficits and one appeared normal. On follow-up, two patients had died (1 month and 7 months after discharge), three were in a vegetative state, and one was normal. The normal patient had successful defibrillation prior to arrival at the emergency department. The average inpatient charge was $10,667 per patient for those who died and $100,000 for those discharged. CONCLUSIONS: Aggressive treatment does not lead to intact survival for victims of out-of-hospital cardiopulmonary arrest who present to the pediatric emergency department with a preterminal rhythm and absence of spontaneous circulation. Resuscitation efforts in the emergency department are commonly successful but lead to death or severe neurological sequelae at discharge with extremely high cost of care.

Adolescent↗

Air versus oxygen for resuscitation of infants at birth.

BACKGROUND: 100% oxygen is the commonly recommended gas for the resuscitation of infants at birth. There is growing evidence from both animal and human studies that room air is as effective as 100% oxygen and that 100% oxygen may have adverse effects on breathing physiology and cerebral circulation. There is also the theoretical risk of tissue damage due to free oxygen radicals when 100% oxygen is given. The use of room air has, therefore, been suggested as a safer and possibly more effective alternative. OBJECTIVES: In newborn infants requiring resuscitation, does the use of room air reduce the incidence of death, neurological disability and short term morbidity when compared with the use of 100% oxygen? SEARCH STRATEGY: This included searches of the Oxford Database of Perinatal Trials, Cochrane Central Register of Controlled Trials (CENTRAL, The Cochrane Library, Issue 1, 2004) and MEDLINE PubMed 1966 to December 2003, and handsearches of reference lists of relevant articles and conference proceedings. SELECTION CRITERIA: All randomised and quasi-randomised studies comparing the use of room air or any other concentration of oxygen versus 100% oxygen in the resuscitation of infants at birth. DATA COLLECTION AND ANALYSIS: Three authors assessed the methodological quality of eligible trials and extracted data independently. When appropriate, meta-analysis was conducted to provide a pooled estimate of effect. For categorical data the relative risk (RR), risk difference (RD) and number needed to treat (NNT) with 95% confidence intervals (CI) were calculated. Continuous data were analysed using weighted mean difference (WMD). MAIN RESULTS: Five studies were identified which enrolled a total of 1302 infants. In two studies allocation was randomised and the caregivers were blinded to intervention group. In the other three studies, allocation was quasi-randomised and the caregivers were not blinded. Pooled analysis of the four trials reporting effect on death showed a significant reduction in the rate of death in the group resuscitated with room air [typical RR 0.71 (0.54, 0.94), typical RD -0.05 (-0.08, -0.01), NNT 20 (12, 100)]. There were no significant differences between the groups with respect to rates of grade 2 or 3 hypoxic ischaemic encephalopathy. One of the four trials reported a statistically significant difference in median 5 minute Apgar scores, favouring the group allocated to room air. However, the absolute difference between the medians was small and there were no significant differences in the median 10 minute Apgar scores in the three trials reporting this outcome. One trial followed up a selected subgroup of survivors to 18-24 months. There were no significant differences in rates of adverse neurodevelopmental outcomes including cerebral palsy and failure to achieve various milestones; however, the proportion of eligible patients seen was less than 70%. Analyses that were planned for this review, but not able to be carried out because of lack of published data, included a sub-analysis stratified by gestational age and assessments of the effect on bronchopulmonary dysplasia and retinopathy of prematurity. REVIEWERS' CONCLUSIONS: There is insufficient evidence at present on which to recommend a policy of using room air over 100% oxygen, or vice versa, for newborn resuscitation. A reduction in mortality has been seen in infants resuscitated with room air, and no evidence of harm has been demonstrated. However, the small number of identified studies and their methodologic limitations dictate caution in interpreting and applying these results. We note the use of back-up 100% oxygen in more than a quarter of infants randomised to room air. Therefore, on the basis of currently available evidence, if one chooses room air as the initial gas for resuscitation, supplementary oxygen should continue to be made available.

Air↗

Air versus oxygen for resuscitation of infants at birth.

BACKGROUND: 100% oxygen is the commonly recommended gas for the resuscitation of infants at birth. There is growing evidence from both animal and human studies that room air is as effective as 100% oxygen and that 100% oxygen may have adverse effects on breathing physiology and cerebral circulation. There is also the theoretical risk of tissue damage due to free oxygen radicals when 100% oxygen is given. The use of room air has, therefore, been suggested as a safer and possibly more effective alternative. OBJECTIVES: In newborn infants requiring resuscitation, does the use of room air reduce the incidence of death, neurological disability and short term morbidity when compared with the use of 100% oxygen? SEARCH STRATEGY: This included searches of the Oxford Database of Perinatal Trials, Cochrane Central Register of Controlled Trials (CENTRAL, The Cochrane Library, Issue 1, 2004) and MEDLINE PubMed 1966 to December 2003, and handsearches of reference lists of relevant articles and conference proceedings. SELECTION CRITERIA: All randomised and quasi-randomised studies comparing the use of room air or any other concentration of oxygen versus 100% oxygen in the resuscitation of infants at birth. DATA COLLECTION AND ANALYSIS: Three authors assessed the methodological quality of eligible trials and extracted data independently. When appropriate, meta-analysis was conducted to provide a pooled estimate of effect. For categorical data the relative risk (RR), risk difference (RD) and number needed to treat (NNT) with 95% confidence intervals (CI) were calculated. Continuous data were analysed using weighted mean difference (WMD). MAIN RESULTS: Five studies were identified which enrolled a total of 1302 infants. In two studies allocation was randomised and the caregivers were blinded to intervention group. In the other three studies, allocation was quasi-randomised and the caregivers were not blinded. Pooled analysis of the four trials reporting effect on death showed a significant reduction in the rate of death in the group resuscitated with room air [typical RR 0.71 (0.54, 0.94), typical RD -0.05 (-0.08, -0.01), NNT 20 (12, 100)]. There were no significant differences between the groups with respect to rates of grade 2 or 3 hypoxic ischaemic encephalopathy. One of the four trials reported a statistically significant difference in median 5 minute Apgar scores, favouring the group allocated to room air. However, the absolute difference between the medians was small and there were no significant differences in the median 10 minute Apgar scores in the three trials reporting this outcome. One trial followed up a selected subgroup of survivors to 18-24 months. There were no significant differences in rates of adverse neurodevelopmental outcomes including cerebral palsy and failure to achieve various milestones; however, the proportion of eligible patients seen was less than 70%. Analyses that were planned for this review, but not able to be carried out because of lack of published data, included a sub-analysis stratified by gestational age and assessments of the effect on bronchopulmonary dysplasia and retinopathy of prematurity. AUTHORS' CONCLUSIONS: There is insufficient evidence at present on which to recommend a policy of using room air over 100% oxygen, or vice versa, for newborn resuscitation. A reduction in mortality has been seen in infants resuscitated with room air, and no evidence of harm has been demonstrated. However, the small number of identified studies and their methodologic limitations dictate caution in interpreting and applying these results. We note the use of back-up 100% oxygen in more than a quarter of infants randomised to room air. Therefore, on the basis of currently available evidence, if one chooses room air as the initial gas for resuscitation, supplementary oxygen should continue to be made available.

Air↗

Active chest compression-decompression for cardiopulmonary resuscitation.

BACKGROUND: Active compression-decompression cardiopulmonary resuscitation (ACDR CPR) uses a hand-held suction device, applied mid sternum, to compress the chest then actively decompress the chest after each compression. Randomised controlled trials on use of active compression decompression cardiopulmonary resuscitation have results which are discordant. OBJECTIVES: To determine clinical effects and safety of active compression-decompression cardiopulmonary resuscitation compared with standard manual cardiopulmonary resuscitation (STR). SEARCH STRATEGY: We searched the Cochrane Central Register of Controlled Trials, MEDLINE and EMBASE. Last search was conducted in January 2004. We checked the reference list of retrieved articles and contacted enterprises manufacturing the active decompression devices. SELECTION CRITERIA: All randomised or quasi-randomised studies comparing active compression-decompression cardiopulmonary resuscitation compared with standard manual cardiopulmonary resuscitation in adults with a cardiac arrest who received cardiopulmonary resuscitation by a trained medical or paramedical team. DATA COLLECTION AND ANALYSIS: Data were independently extracted. All data were analysed on an intention-to-treat basis. The authors of the primary studies were contacted for more information when needed. Studies were cumulated, if appropriate, and pooled relative risk (RR) estimated. Subgroup analysis according to setting (out of hospital or in hospital) and attending team composition (with physician or paramedic only) were predefined. MAIN RESULTS: Ten trials were included: eight were in out-of-hospital settings, one set in-hospital only and one had both in-hospital and out-of-hospital components. Allocation concealment was adequate in 4 trials. The two in-hospital studies were very different in quality (A and C) and size (773 and 53 patients). Both found no differences between ACDR CPR and STR in any outcome. Trials conducted in out-of-hospital settings cumulated 4162 patients. There were no differences between ACDR CPR and STR for mortality either immediately (RR 0.98 [95% CI 0.94 - 1.03]) or at hospital discharge (RR 0.99 [95% CI 0.98 - 1.01]). The pooled RR of neurological impairment, any severity, was 1.71 [95% CI 0.90 - 3.25], with a non-significant trend to more frequent severe neurological damage in survivors of ACDR CPR (RR 3.11 [95% CI 0.98 - 9.83]). However, assessment of neurological outcome was limited and there were few patients with neurological damage. There was no difference between ACDR CPR and STR with regard complications such as rib or sternal fractures, pneumothorax or hemothorax (RR 1.09 [95% CI 0.86 - 1.38]). Skin trauma and ecchymosis were more frequent with ACDR CPR. REVIEWERS' CONCLUSIONS: Active chest compression-decompression in patients with cardiac arrest is not associated with clear benefit.

Adult↗

Positive end-expiratory pressure for resuscitation of newborn infants at birth.

BACKGROUND: Effective ventilation is the key to successful neonatal resuscitation. Positive pressure ventilation is initiated with manual ventilation devices which may or not deliver positive end-expiratory pressure (PEEP). PEEP is known to have beneficial effects in preterm animal models and its use is ubiquitous in mechanical ventilation in neonatal intensive care. OBJECTIVES: To determine whether the use of PEEP during positive pressure ventilation at neonatal resuscitation reduces mortality or morbidity. SEARCH STRATEGY: The standard search strategy of the Cochrane Neonatal Review Group was used. Pub Med (1966 to May 2004) was searched using the MeSH headings Infant, Newborn, Resuscitation, Positive Pressure Respiration and the text words Positive End-Expiratory Pressure or PEEP. The Cochrane Central Register of Controlled Trials (The Cochrane Library, Issue 1, 2004) was searched using text words Newborn and Resuscitation. No language restrictions were applied. The abstracts of the Society for Pediatric Research and the European Society for Pediatric Research, were searched from 1995-May 2004. Abstracts were also searched in Anaesthesiology, Canadian Journal of Anaesthesia, British Journal of Anaesthesia, Anaesthesia and Intensive Care and Anaesthesia and Analgesia. SELECTION CRITERIA: Randomised and quasi-randomised controlled trials comparing ventilation devices providing PEEP with those not providing PEEP in the resuscitation of infants at birth. DATA COLLECTION AND ANALYSIS: Assessment of methodology regarding blinding of randomisation, intervention and outcome measurements as well as completeness of follow-up was planned. We planned to evaluate the treatment effect using a fixed effects model using relative risk (RR), relative risk reduction, risk difference (RD) and number needed to treat (NNT) for categorical data and using mean, standard deviation and weighted mean difference (WMD) for continuous data. We planned an evaluation of heterogeneity to help determine the suitability of pooling results. MAIN RESULTS: No studies were found meeting the criteria for inclusion in this review. REVIEWERS' CONCLUSIONS: There is insufficient evidence to determine the efficacy and safety of PEEP during positive pressure ventilation at neonatal resuscitation. Randomised clinical trials comparing positive pressure ventilation with and without PEEP at neonatal resuscitation are warranted.

Humans↗

Sequential physiology scoring facilitates objective assessment of resuscitation in patients with an intra-abdominal emergency.

BACKGROUND: Patients who present with an intra-abdominal emergency often require urgent surgery. Before surgery a period of resuscitation is undertaken pre-emptively, or to correct any overt physiological derangement. The assessment of response to resuscitation and the decision when to operate is subjective. This study examined the role of sequential physiology scores in assessing the response to resuscitation objectively. METHODS: Sequential physiology scores were recorded in 92 patients with abdominal pathology that subsequently required urgent or emergency surgery. The physiology component of the Physiological and Operative Severity Score for enUmeration of Mortality and morbidity (POSSUM), Acute Physiology And Chronic Health Evaluation (APACHE) II and III, and Simplified Acute Physiology Score (SAPS) II were determined at presentation, during resuscitation and immediately before surgery. RESULTS: There were 76 survivors;16 patients died. All scoring systems showed an improvement during resuscitation but subsequent deterioration before surgery. The POSSUM, and APACHE II and III physiology scores differentiated more effectively between survivors and patients who died than SAPS II. CONCLUSION: Sequential physiology scores may facilitate the assessment of patients' response to resuscitation. Patients who fail to respond to resuscitation when identified may benefit from more expedient surgery.

Adolescent↗

Liver endothelial cell dysfunction occurs early following hemorrhagic shock and persists despite crystalloid resuscitation.

Although hepatocellular function is depressed early following hemorrhage, it remains unknown whether liver endothelial cell function is also compromised under such conditions. The aim of this study, however, was to determine if liver endothelial cell function is depressed during hemorrhage and persists following crystalloid resuscitation. To study this, rats underwent a 5-cm laparotomy (i.e., trauma induced) and were bled to and maintained at a mean arterial pressure of 40 mm Hg until 40% of maximal bleedout volume was returned in the form of Ringer's lactate. The animals were then resuscitated with 4 times the volume of maximal bleedout volume with Ringer's lactate. Arterial blood was taken before and during hemorrhage and after resuscitation. Plasma hyaluronic acid (HA) levels were determined using a Pharmacia assay kit. To determine whether the elevated HA is due to a decrease in its removal, HA clearance was assessed at 0 and 24 hr after resuscitation by injecting 30 microgram/100 g body wt HA intravenously. The results indicate that plasma HA levels increased significantly at the time of maximal bleedout, which persisted even 24 hr after the completion of resuscitation. Hyaluronic acid clearance decreased significantly at 0 and 24 hr after resuscitation, suggesting that the decreased HA clearance plays a major role in producing the elevated plasma HA levels. Since circulating HA is cleared exclusively by liver endothelial cells, these results, taken together, indicate that liver endothelial cell dysfunction (i.e., the increased plasma HA levels and decreased HA clearance) occurs early during hemorrhage (i.e., approximately 44 min after the onset of the insult) and persists despite resuscitation. Thus, the depressed liver endothelial cell function may directly or indirectly contribute to hepatocellular dysfunction observed under such conditions.

Animals↗

Pentoxifylline restores the depressed cardiac performance after trauma-hemorrhage and resuscitation.

Although studies have shown that pentoxifylline (PTX) improves tissue perfusion and hepatocellular function after trauma-hemorrhage and resuscitation, it is not known whether this agent has any beneficial effects on left ventricular performance under such conditions. To study this, rats underwent laparotomy (i.e., trauma induced) and were bled to and maintained at a blood pressure of 40 mm Hg until 40% of the maximum shed blood volume was returned in the form of Ringer's lactate. The animals were then resuscitated with four times the volume of shed blood with Ringer's lactate over 60 min, following which PTX (50 mg/kg body wt) or an equivalent volume of normal saline was infused intravenously over 100 min. Maximum dP/dt during contraction (+dP/dtmax) and relaxation (-dP/dtmax), maximum rate of a "pressure-normalized" change in ventricular pressure during ventricular contraction (dP/dtmax/P), and ventricular peak systemic pressure (VPSP) were determined at 15 min before the completion of resuscitation and every 30 min up to 4 hr after resuscitation. The results indicated that both +dP/dtmax and -dP/dtmax decreased significantly beginning at 0.5 h after resuscitation and remained depressed throughout the study period in saline-treated animals. In addition, VPSP was significantly depressed at 2.5 to 4 hr after resuscitation. Treatment with PTX, however, significantly improved the above parameters as well as dP/dtmax/P and heart rate. Since PTX restores various left ventricular performance parameters, this agent appears to be a useful adjunct for improving cardiac function after trauma and hemorrhagic shock, even in the absence of blood resuscitation.

Animals↗

Heparan preserves intestinal perfusion after hemorrhage and resuscitation.

BACKGROUND: Multiple system organ failure (MOF) remains a major source of morbidity and mortality in trauma patients. Despite restoration of central hemodynamics, intestinal hypoperfusion can persist. Mucosal ischemia and barrier breakdown are factors in the genesis of MOF. Heparan sulfate is a gycosaminoglycan similar to heparin, but with minimal anticoagulant properties. As an adjunct to resuscitation, it improves immunologic function and restores mucosal oxygenation and function. We hypothesized that resuscitation with heparan following hemorrhage wound prevents intestinal hypoperfusion. MATERIALS AND METHODS: In vivo videomicroscopy was used to study small intestine microcirculation in rats. Animals were hemorrhaged to 50% of baseline mean arterial pressure (MAP) and maintained there. Resuscitation was initiated when the return of 10% shed blood was required to keep MAP at 50%. Animals received either heparan (7 mg/kg/1 ml saline) or saline (1 ml) followed by the remaining shed blood and an equal volume of saline. MAP, cardiac output (CO), A1 arteriole diameters, and flow were determined. RESULTS: Resuscitation of the saline control group resulted in normal MAP with elevation of CO to 25-40% above baseline. The heparan group had return of MAP but only a moderate increase in CO (7-15%). Saline resuscitation led to progressive deterioration in A1 diameters and flow. The addition of heparan prevented delayed A1 constriction and significantly improved perfusion. CONCLUSIONS: Heparan prior to resuscitation improved intestinal perfusion, despite a relative reduction in CO. Improvement in nutrient blood flow may protect the mucosal barrier, reducing the incidence of MOF, and suggests that heparan may be useful in resuscitation of trauma patients.

Animals↗

Administration of ATP-MgCl2 after trauma-hemorrhage and resuscitation restores the depressed cardiac performance.

Although adenosine triphosphate (ATP)-MgCl2 has been shown to improve cardiac performance under normal and postischemic conditions, it is not known whether this agent has any salutary effects on cardiac performance following trauma-hemorrhage and crystalloid resuscitation. To determine this, rats underwent laparotomy (i.e., trauma induction) and were bled to and maintained at a mean arterial pressure of 40 mm Hg until 40% of the maximum shed blood volume was returned in the form of Ringer's lactate. The animals were then resuscitated with four times the volume of shed blood using Ringer's lactate over 60 min and received either ATP-MgCl2 (50 mumole/kg body wt) in 1 ml volume or an equivalent volume of normal saline intravenously over 95 min. Maximum dP/dt during contraction as well as relaxation (+/-dP/dtmax) and ventricular peak systolic pressure (VPSP) were determined 15 min prior to the end of resuscitation and every 30 min thereafter for 4 hr after the completion of resuscitation. The results indicate that both -dP/dtmax and +dP/dtmax decreased significantly beginning at 0 and 2 hr after the completion of resuscitation, respectively, and remained depressed throughout the duration of the study in saline-treated animals. In addition, VPSP was significantly depressed at 2-4 hr after resuscitation. Treatment with ATP-MgCl2, however, restored these parameters. Moreover, the depressed heart rate was also restored following ATP-MgCl2 administration. Since ATP-MgCl2 restores various left ventricular performance parameters, this agent appears to be a promising adjunct for improving cardiac function after trauma and hemorrhage, even in the absence of blood resuscitation.

Adenosine Triphosphate↗

The use of insulin and glucose during resuscitation from hemorrhagic shock increases hepatic ATP.

BACKGROUND: Hemorrhagic shock produces a marked decrease in hepatic ATP, adenylate energy charge, and total adenosine nucleotides. This is followed by slow recovery to normal levels after resuscitation. Nucleotide metabolites are increased following shock and resuscitation. Previous experimental work has shown that supraphysiologic doses of insulin have salutary effects in animals with hemorrhagic shock and in cardiac patients. It appears that insulin causes increased availability of glucose and energy-producing substrates. This study examined whether resuscitation with glucose and insulin after hemorrhagic shock would alter the changes previously seen to occur in hepatic ATP levels, adenylate energy charge, or nucleotide metabolites. METHODS: Male Sprague-Dawley rats were bled to a mean arterial blood pressure of 40 mm Hg for 30 min. They were then resuscitated with the shed blood and one of three fluids: (1) lactated Ringer's, (2) lactated Ringer's with 10% glucose, (3) lactated Ringer's with 10% glucose + 6 units/kg regular insulin. Liver biopsies were obtained prior to shock (baseline), after 30 min of shock (shock), and 90 min after resuscitation (90 min). Tissue levels of ATP, ADP, AMP, adenosine, inosine, hypoxanthine, and xanthine were measured. Serum at 90 min was evaluated for potassium, glucose, and tumor necrosis factor alpha (TNF-alpha). RESULTS: The insulin-treated group had significantly increased hepatic ATP and energy charge following resuscitation compared with the other two groups. The insulin group also exhibited significant hypoglycemia. Total adenine nucleotides (ATP, ADP, and AMP) were significantly elevated 90 min postresuscitation in the insulin group. Mean blood pressures throughout the experiment were not significantly different among groups. TNF-alpha was highest in the insulin-treated group, but this was not significant. CONCLUSIONS: Resuscitation with insulin and dextrose significantly increased hepatic ATP and adenylate energy charge after hemorrhagic shock in rats. Total nucleotide pool levels were not different between groups, indicating that there was a shift of the equilibrium away from the metabolites toward ATP and ADP in the insulin-treated group. Insulin treatment had no significant effect on blood pressure or TNF-alpha. However, it caused significant hypoglycemia and hypokalemia.

Adenosine Diphosphate↗

[Differential diagnosis of accident and resuscitation traumas].

The purpose of this paper is to define the criteria for the differential diagnosis of trauma following resuscitation and road accidents. To this end, 311 cases of thoracic and epigastric trauma were selected from the 2893 medico-legal autopsies carried out between 1979 and 1982 at the Institute of Forensic Medicine of the University of Heidelberg. Cardiopulmonary resuscitation had to be considered as the cause of trauma in 140 of these, but 45 of this group were excluded from further evaluation as they had been the victims of blunt trauma and no clear-cut distinction was possible between trauma resulting from an accident and trauma resulting from resuscitation. Thus, we were left with 95 cases of internal injury that presented as emergencies and in whom death followed resuscitation, as a group for comparison with 171 road accident victims who had not received cardiopulmonary resuscitation. Rib fractures, predominantly on the left side, were established in half the cases resuscitated, sternal fractures also being found in one-third of these victims. Bleeding at various sites, including hemato-thorax, was rare, with an incidence of 15%, thus making it highly unlikely that serious traumas caused by resuscitation were a major factor in the cause of death. This paper encompasses an extensive discussion on serious injuries, such as aortic and gastric ruptures, in this connection.

Abdominal Injuries↗

Improved survival with early fluid resuscitation following hemorrhagic shock.

Recent studies have questioned the benefits of early fluid resuscitation in hemorrhagic shock. The purpose of the current study is to evaluate the effects of early fluid resuscitation (HSE) (15 minutes), delayed fluid resuscitation (HSD) (60 minutes), and no fluid resuscitation (HSU) on cytokine levels, hepatic resting membrane potential (Em), renal function, and mortality. Eighty male Sprague-Dawley rats (350-450 g) were hemorrhaged 35% of their total blood volume and then received 40, 80, or 100 ml of crystalloid per kilogram as intravenous fluids (IVFs). The implementation of HSE resulted in stabilization of the Em (-29 mV), which was significantly different from that seen with HSD or HSU (-24 and -29 mV, respectively). The timing of resuscitation did not affect the elevation of tumor necrosis factor (TNFalpha) levels. The interleukin-6 (IL-6) levels for the HSE group were 81, 101, and 274 pg/ml for 40, 80, and 100 ml/kg, respectively. In contrast, HSD group IL-6 levels were 440, 566, and 632 pg/ml for 40, 80, and 100 ml/kg (p < 0.0001). IL-6 levels for the HSU group was 427 pg/ml, which was significantly different from that of the HSE group (p < 0.05). Urine output was present in 58% of the HSE rats but only 24% in the HSD rats and 0% of the HSU rats. Mortality was 11% for HSE, 58% for HSD, and 50% for HSU rats. Despite the recent studies questioning the benefits of early fluid resuscitation, these data show marked improvement in hepatic stability, the presence of urine output, decreased IL-6 levels, and significantly lower mortality when IVFs were given early after hemorrhagic shock. Furthermore, excessive fluid resuscitation (100 ml/kg) resulted in an increased inflammatory cytokine level and mortality and may account for the controversy.

Animals↗

Perspectives and new approaches for improving cardiopulmonary resuscitation in adults beyond current guidelines.

Setting clear priorities for the sequence and importance of actions during cardiopulmonary resuscitation (CPR) is of utmost importance for future guidelines. Unless performed under the rare condition of hypoxic arrest, combined compression and ventilation is usually not necessary in one-rescuer resuscitation of adults. After notifying the emergency medical services (EMS), precordial compression at a rate of 100/min is just as effective or may even be preferable in the majority of cases caused by arrhythmic arrest. Considering the pathophysiological and experimental evidence, chest compression has proven to be more important, even in multi-rescuer settings, than resuscitation ventilation with its problems and risks. International recommendations for compression without respiration for rescuers unwilling to perform resuscitation ventilation or for so-called telephone CPR were not included in the guidelines of the European Resuscitation Council (ERC) probably for reasons of brevity and simplification. However, training for basic cardiopulmonary resuscitation of adults with cardiac arrest should also stress the importance of chest compression over ventilation. Moreover, current studies controversially discuss the optimal time point of defibrillation after collapse. These findings point to the enormous demand for research in the field of cardiopulmonary resuscitation.

Adult↗

Ischemia, resuscitation, and reperfusion: mechanisms of tissue injury and prospects for protection.

Since its introduction in 1960, CPR has evolved into a complex program involving not only the medical community but also the lay public. Currently, program activities include instruction of the lay public in basic life support techniques, development and deployment of emergency medical systems, recommendations for drug protocols for advanced cardiac life support and, most recently, introduction of new methods for tissue protection following resuscitation. After 25 years of experience, we are beginning to understand the pathophysiology of tissue ischemia during cardiac arrest and the interventions required to improve chances of survival and quality of life of the cardiac arrest victim. Recent data in the literature suggest that modification of certain interventions in the resuscitation program may be needed. The poor neurologic outcomes with prolonged standard CPR show that it is not protective after 4 to 6 minutes of cardiac arrest. Modifications to this technique, including SVC-CPR or IAC-CPR, have not been shown to increase resuscitability or hospital discharge rates. Human studies of open-chest cardiac massage are needed to evaluate this option. Defibrillation is the definitive treatment for ventricular fibrillation. Greater emphasis should be placed on the earliest possible delivery of this treatment modality. Computerized defibrillators may provide greater and earlier access to defibrillation in the homes of patients at high risk of ventricular fibrillation. They may also be applicable by untrained public service personnel (police and firemen), individuals in geographically inaccessible areas (aircraft), or emergency medical technicians in rural areas where skill retention is a significant problem. Calcium has no proved benefit in cardiac resuscitation. There is biochemical evidence that it may be harmful in brain resuscitation. Its use in resuscitation should be discontinued. The dose of epinephrine currently advocated in the ACLS protocols may be inadequate to increase aortic diastolic pressure and coronary and cerebral perfusion pressures and thus aid resuscitation. Animal studies indicate that substantial increases in the current dosage are needed to achieve these effects. Human studies are needed to verify these results. A role for calcium antagonists in the treatment of postarrest encephalopathy has been demonstrated in animals and is currently undergoing clinical trials. Iron-dependent lipid peroxidative cell membrane injury may be important in the pathogenesis of postarrest encephalopathy. Animal studies suggest that the iron chelator deferoxamine may have a significant therapeutic role in the treatment of postarrest encephalopathy.

Animals↗

Rapid isotonic fluid resuscitation in pediatric thermal injury.

Intravenous fluid resuscitation within the first 24 hours after a burn is critical to prevent shock and maintain organ function. The Parkland burn resuscitation formula suggests that one half of the first 24-hour fluid requirement be given in the first 8 hours. Results of recent studies in animals suggest that compression of the first half of the initial resuscitation from 8 to 4 hours may have a physiological benefit. We reviewed the medical records of 44 children under 12 years of age who had burns of greater than 29% of total body surface. Twenty-two children received a standard resuscitation of one-half volume given over the first 8 hours, followed by one-half volume over the next 16 hours. Twenty-two children received a rapid isotonic fluid resuscitation of one-half volume over 4 hours or less, followed by the remainder given over 20 hours. Vital signs, urine output, urine specific gravity, blood gases (acidosis), ventilator need, morbidity, and mortality were compared between the two groups. The rapid group had increased normalization of vital signs (P < .001), increased urine output and normalization of urine specific gravity (P < .01), and decreased requirement for ventilator support (P < .05). The authors conclude that rapid isotonic fluid resuscitation is well tolerated by pediatric patients and may be better than the standard burn resuscitation technique.

Burns↗