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Biomedical subjects

B W Böttiger

Publications and source records attributed to B W Böttiger.

At least 19 recordsLinked to original sources

[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↗

[Regulated hypothermia after cardiac arrest. A glimpse into the future].

The introduction of therapeutic mild hypothermia after cardiac arrest allows the neuronal damage caused by global cerebral ischemia to be advantageously influenced for the first time. Currently, hypothermia is induced by external or internal cooling of the patient (forced hypothermia). However, this results in activation of counter-regulation mechanisms which could be possible risk factors for the patient. The aim of this article is to give a review of possible, but at present only experimental, methods which could allow the body temperature set point to be decreased pharmacologically (regulated hypothermia). Various classes of substances will be discussed based on their effect on thermoregulation and their performance in animal experiments on cerebral ischemia.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

[New aspects in postoperative pain therapy].

This review summarizes and critically appraises important and clinically relevant publications dealing with postoperative pain therapy. Several consequences can be drawn from these studies: i) women anticipate postoperative pain more realistically and it occurs more often than in man; however, pain intensity and analgesic consumption are not different; ii) placebos elicit psychological phenomena (e. g. expectation) that trigger neurobiological processes (e. g. activation of endogenous opioid system); iii) COX-2 inhibitors increase the risk for thromboembolic complications (e. g. myocardial infarction, apoplex, pulmonary embolism) and perioperative mortality in patients undergoing aortocoronary bypass surgery; iv) NSAID as supplement to postoperative PCIA with opioids reduce the risk for PONV and sedation; v) preoperative administration of gabapentin reduces preoperative anxiety and postoperative pain; vi) epidural catheters situated at the site of major spinal surgery are promising approach to provide efficient postoperative analgesia; vii) in the literature contradictory results have been reported regarding the effect of perioperative acupuncture on intra- and postoperative consumption of anesthetics or analgesics; acupuncture appears to decrease the incidence of PONV, but no reduction in the postoperative use of antiemetic agents has not been shown yet; viii) laparoscopic versus open colectomy in patients with colon carcinoma results in prolongation of surgery, reduction of postoperative pain and analgesics, earlier mobilization and a reduced hospital stay, if conventional systemic opioid-based pain therapy was used postoperatively.

Anti-Inflammatory Agents, Non-Steroidal↗

[Therapeutic hypothermia after cardiac arrest].

The use of therapeutic hypothermia following different hypoxic-ischaemic insults has played an important role in various concepts of non-specific protection of cells for a long time. Although the use of deep therapeutic hypothermia after cardiac arrest in the last century did not lead to an improved outcome, recent data have demonstrated very positive effects of mild therapeutic hypothermia. The data from the European multicenter trial as well as those from Australia have clearly demonstrated a decrease in mortality and a better neurological outcome for patients being cooled to 32-34 degrees C for 12 or 24 h. In 2003, this led to the implementation of mild therapeutic hypothermia (32-34 degrees C) into the International Liaison Committee on Resuscitation (ILCOR) recommendations and guidelines for the treatment of unconscious patients after prehospital cardiac arrest. This article gives an overview on existing concepts and future perspectives of therapeutic mild hypothermia.

Animals↗

[Prehospital management of spinal cord injuries].

In both the United States and Europe about 10,000 patients suffer from spinal cord injury (SCI) each year and 20% die before being admitted to hospital. Prehospital management of SCI is very important since 25% of SCI damage may occur after the initial event. Emergency treatment includes examination of the patient, spinal immobilization, careful airway management, cardiovascular stabilization (maintenance of mean arterial blood pressure above 90 mmHg) and glucose levels within the normal range. From an evidence-based point of view, it is still not known whether additional specific therapy is useful and studies have not convincingly demonstrated that methylprednisolone (MPS) or other substances have clinically important benefits. Recently published statements from the US do not support the therapeutic use of MPS in patients suffering from SCI in the prehospital setting. Moreover, it is not known whether hypothermia or any other pharmacological interventions have beneficial effects. Networks for clinical studies in SCI patients should be established as a basic requirement for further improvement in outcome in these patients.

Blood Volume↗

[Errors and risks in perioperative thrombolysis therapy].

Until recently, perioperative thrombolysis has always been thought to be a contraindication, because of the risk of bleeding complications. However, many case reports now show that thrombolytic drugs can be successfully used in the perioperative period. Possible indications for perioperative thrombolysis are massive pulmonary embolism and cardiopulmonary resuscitation which are also important causes of cardiac arrest. Thrombolysis can be the decisive therapeutical option, e.g. when normal cardiopulmonary resuscitation measures are not successful. Nevertheless, even against the background of many positive case reports the indication for perioperative thrombolysis should be a case-specific decision as the frequency of complications depends on the surgical intervention and must be weighed against the possible benefits of early thrombolysis. For perioperative thrombolysis there are no data available showing a beneficial effect of one particular therapeutic regimen. In the literature it is suggested that thrombolysis should be performed as quickly as possible, because the risk of bleeding complications depends more on the duration of thrombolysis than on the dosage or the thrombolytic drug itself.

Cardiopulmonary Resuscitation↗

[Adrenal cortex and steroids. Supplementary therapy in the perioperative phase].

Since the publication of two case reports that are considered to represent the first clinical demonstration of iatrogenic adrenal insufficiency, it has been the generally accepted practice to cover steroid-treated patients undergoing surgery with glucocorticoids in the perioperative period. Both the inclusion criteria for the patients and the extent of the substitution pattern have been selected on an empirical rather than on a rational basis. Scientific advances over the past 50 years in the knowledge of the hypothalamic-pituitary-adrenal system's physiology and the molecular mechanism of action of its biologically active components are, for the most part, not reflected in current clinical practice and instead seem to be ignored. Clinical and experimental evidence suggests, however, that even glucocorticoid-treated patients undergoing surgery do not require maximum stress doses of hydrocortisone, which should be reserved for the treatment of sepsis. With regard to the broad spectrum of efficacy of glucocorticoids and their side effects, revision and modification of the historical regimen appear prudent.

Adrenal Cortex Diseases↗

[Acute coronary syndrome in the prehospital phase].

Cardiovascular diseases are the number one cause of death in Germany. In 2002 about 70,000 people died of acute myocardial infarction (AMI) and of these 37% died before arrival at hospital which underlines the relevance of adequate prehospital care. The generic term acute coronary syndrome (ACS) was introduced because a single pathomechanism accounts for the different forms and comprises unstable angina pectoris (iAP), non-ST-elevation myocardial infarction (NSTEMI), ST-elevation myocardial infarction (STEMI) and sudden cardiac death (SCD). Characteristic features are retrosternal pain, vegetative symptoms and radiation of pain into the adjoining regions. Further differentiation can only be achieved by the 12-lead ECG, as cardiac-specific enzymes do not play a role in prehospital decisions. Prehospital delays should be avoided, history and physical examination should be brief but focused, vital parameters should be assessed and monitored. Basic treatment for ACS should comprise inhalative oxygen, nitrates, morphine, aspirin and beta-blockers. If STEMI is diagnosed, patients with symptoms <12 h should undergo fibrinolytic therapy unless there is primary percutaneous coronary intervention (PCI) available within 90 min or if contraindicated. Heparin should be given to patients with STEMI depending on the choice of fibrinolytic agent, it otherwise results in a higher risk of bleeding, but in patients with iAP or NSTEMI it reduces mortality. All patients must be accompanied by the emergency physician during transportation and should be brought to a hospital with primary PCI, especially those with complicated ACS. Treatment of complications depends largely on the type, persistence and severity.

Acute Disease↗

["Highlights" in emergency medicine -- severe head trauma, polytrauma and cardiac arrest].

According to scientific publications focusing on emergency medicine and published in international journals in the past few months, new and clinically important results can be identified. In patients with severe head trauma (SHT), application of hypertonic solutions is possible; long term outcome, however, is not improved by this measure. Prehospital capnometry is important, because otherwise up to 40 % of all mechanically ventilated patients are hypoventilated. In a study in 200 patients with prehospital cardiac arrest and ventricular fibrillation as initial cardiac rhythm, subgroup analysis (alarm-response time > 5 min) showed an increase in survival rate (14 % vs. 2 %), if defibrillation was proceeded by 3 min of conventional cardiopulmonary resuscitation (CPR) for reperfusion. If ACD ("active compression decompression")-CPR is combined with a specific ventilatory valve ("inspiratory impedance threshold device", ITD) which does not allow passive inspiration, survival rate after cardiac arrest is increased for up to 24 h. Such a device facilitates an increase in venous return to the heart during decompression of the thorax. High-dose adrenalin for intrahospital CPR in children is not associated with better survival but with worse outcome. Comparison of an emergency medical service (EMS) system from U.K. with paramedics and a physician-staffed German EMS system demonstrated that survival rate following prehospital cardiac arrest is markedly increased with doctors on board. The European multicentre trial comparing vasopressin vs. adrenalin as first vasopressor during CPR in 1219 patients did not reveal any differences between both groups. In subgroup analyses of patients with asystoly and prolonged CPR, vasopressin was superior without being associated with a benefit on neurological outcome. Further subgroup analyses revealed beneficial effects of amiodarone and thrombolysis during CPR. Thrombolysis during CPR apears to be associated with an increased rate of haemodynamic stabilisation without increased risk of bleeding complications. In a very clear advisory statement, the "International Liaison Committee on Resuscitation" (ILCOR) has recommended mild therapeutic hypothermia (i. e., cooling of cardiac arrest victims to 32 - 34 degrees C central body temperature for 12 - 24 h following cardiac arrest of cardiac etiology) not only for unconciuous patients with ventricular fibrillation as initial prehospital rhythm, but also for all other adult patients (other rhythms, intrahospital CPR) following cardiac arrest. In randomised controlled clinical trials, this therapy has markedly improved survival rate and neurological outcome. Such therapeutic cooling can be initiated nearly everywhere and with simple methods - like the infusion of ice-cold cristalloid solutions.

Cardiopulmonary Resuscitation↗

[Catecholamine-resistant hypotension -- an update].

Vasoplegia as catecholamine resistent hypotension occurs in severe hemorrhagic or septic shock and post cardiopulmonary bypass. The entire rational behind this phenomenon is still unclear. An ATP-shortage in the vascular musculature, disregulation of vasopressin release, and the activation of ATP-dependent potassium-channels are discussed. In the last years, attention is drawn towards the activation of ATP-dependent potassium-channels and the possible therapeutic inhibition by glibenclamid. However, inhibition of potassium-channels does not normalize blood pressure under all circumstances. In particular in septic shock other mechanisms have to be involved. Overall, the sometimes desperate clinical situation has led to a large number of case reports und uncontrolled series of retrospectively analysed cases, where vasopressin or methylenblue were discribed as successfully reversing catecholamine resistent hypotension. Nevertheless, in hemorrhagic and septic shock scientific evidence of the clinical effects and the right dose as well as placebo controlled studies comparing the agents and possible combinations of agents are desirable but hardly available yet. In the case of severe hypotension following surgery under cardiopulmonary bypass results of the first randomized and placebo controlled studies describe successful restoration of blood pressure and even a decrease in perioperative mortality. Concerning the side effects, vasopressin and methylenblue, like most vasopressors, can cause gastrointestinal ischemia, but with the small number of patients enrolled so far, further major side effects can not be ruled out. Accordingly, the identification of risk factors for the development of vasoplegia and the prediction of the extent of the response or the rate of non-responders to these treatments are widely unknown. However, although the administration of vasopressin and methylenblue can not be recommended as a standard treatment it provides an additional option in individual cases of life threatening vasoplegia.

ATP-Binding Cassette Transporters↗

Association between early postoperative coagulation activation and peri-operative myocardial ischaemia in patients undergoing vascular surgery.

We investigated the association of peri-operative myocardial ischaemia with activation of coagulation and endogenous fibrinolysis in patients undergoing vascular surgery. In 50 patients, continuous Holter monitoring was performed to assess peri-operative myocardial ischaemia and 12-lead electrocardiography was recorded preoperatively and 72 h postoperatively to assess myocardial infarction. Serial blood samples were drawn peri-operatively to determine the concentrations of fibrin monomers (for activation of coagulation), D-dimer (for endogenous fibrinolysis) and cardiac troponin T and I. Patients with myocardial ischaemia showed higher concentrations of fibrin monomers at 48 h, and higher concentrations of d-dimer preoperatively and at 24 and 48 h postoperatively. In patients with peri-operative myocardial ischaemia, strong positive correlations were observed between fibrin monomer and D-dimer concentrations at 15 min and 4 h postoperatively, and cardiac troponins at 15 min and at 4, 24, 48 and 72 h postoperatively. Early postoperative activation of coagulation and fibrinolysis is associated with peri-operative myocardial cell damage among patients who are at risk for, or have a history of, coronary artery disease plus peri-operative myocardial ischaemia.

Aged↗

International multicentre trial protocol to assess the efficacy and safety of tenecteplase during cardiopulmonary resuscitation in patients with out-of-hospital cardiac arrest: the Thrombolysis in Cardiac Arrest (TROICA) Study.

Prehospital cardiac arrest has been associated with a very poor prognosis. Acute myocardial infarction and massive pulmonary embolism are the underlying causes of out-of-hospital cardiac arrest in 50-70% of patients. Although fibrinolysis is an effective treatment strategy for both myocardial infarction and pulmonary embolism, clinical experience for this therapy performed during resuscitation has been limited owing to the anticipated risk of severe bleeding complications. The TROICA study is planned as one of the largest randomized, double-blind, placebo-controlled trials to assess the efficacy and safety of prehospital thrombolytic therapy in cardiac arrest of presumed cardiac origin. Approximately 1000 patients with cardiac arrest will be randomized at approximately 60 international study centres to receive either a weight-adjusted dose of tenecteplase or placebo after the first dose of a vasopressor. Patients can be included if they are at least 18 years, presenting with a witnessed cardiac arrest of presumed cardiac origin, and if either basic life support had started within 10 min of onset and had been performed up to 10 min or advanced life support is started within 10 min of onset of cardiac arrest. Primary endpoint of the study is the 30-day survival rate, and the coprimary endpoint is hospital admission. Secondary endpoints are the return of spontaneous circulation (ROSC), survival after 24 h, survival to hospital discharge, and neurological performance. Safety endpoints include major bleeding complications and symptomatic intracranial haemorrhage.

Adolescent↗

[Prehospital thrombolysis during cardiopulmonary resuscitation].

Although prehospital cardiac arrest has an incidence of 40-90/100,000 inhabitants per year, there has been a lack of therapeutic options to improve the outcome of these patients. Of all cardiac arrests, 50-70% are caused by acute myocardial infarction (AMI) or massive pulmonary embolism (PE). Thrombolysis has been shown to be a causal and effective therapy in patients with AMI or PE who do not suffer cardiac arrest. In contrast, experience with the use of thrombolysis during cardiac arrest has been limited. Thrombolysis during cardiopulmonary resuscitation (CPR) acts directly on thrombi or emboli causing AMI or PE. In addition, experimental studies suggest that thrombolysis causes an improvement in microcirculatory reperfusion after cardiac arrest. In-hospital and prehospital case series and clinical studies suggest that thrombolysis during CPR may cause a restoration of spontaneous circulation and survival even in patients that have been resuscitated conventionally without success. In addition, there is evidence for an improved neurological outcome in patients receiving a thrombolytic therapy during during CPR. A large randomized, double-blind multicenter trial that has started recently is expected to show if this new therapeutic option can generally improve the prognosis of patients with cardiac arrest.

Cardiopulmonary Resuscitation↗

Thrombolytics in CPR. Current advantages in cardiopulmonary resuscitation.

Cardiac arrest carries a very poor prognosis. More than 70% of cardiac arrests are caused by acute myocardial infarction (AMI) or massive pulmonary embolism (PE). Thrombolysis during CPR has two major effects: first, it causally treats the condition that caused cardiac arrest and second, it has been shown to have beneficial effects on the microcirculatory cerebral reperfusion after cardiac arrest. However, this treatment has been widely withheld mainly because of the fear of severe bleeding complications. We reviewed the currently available in- and out-of-hospital studies on thrombolysis during CPR. Most studies found that thrombolytic therapy during CPR improves the chance for a restoration of spontaneous circulation in patients suffering from cardiac arrest and may even result in a better outcome. In addition, the neurological condition of surviving patients may be markedly improved by thrombolysis. Although thrombolytic therapy is associated with a risk of bleeding complications, currently available data do not suggest an increase of bleeding complications if thrombolysis is administered during CPR. Recently, a large randomized multicentre study has started to assess the efficacy and safety of thrombolysis during prehospital CPR.

Cardiopulmonary Resuscitation↗

["Alternative" effects of local anesthetic agents].

The following article summarizes different aspects of local anesthetic effects that cannot be explained purely by a sodium channel blockade. Particularly remarkable is hereby their antiinflammatory activity, e.g. the inhibition of pathological changes such as excessive stimulation of the inflammatory system, without compromising the host defense system. In contrast to other immunosuppressive drugs commonly used for treating such conditions, local anesthetics look promising for the future as a new therapeutic option. Besides general anesthetic activity, local anesthetics exert cerebroprotective effects and are furthermore, in consideration of their cardiovascular stability, of interest during neuroanesthetic procedures. In addition, local anesthetics are known for their potency to minimize bronchial hyperreactivity, although details of the underlying mechanisms are not yet elucidated. These effects of local anesthetics may represent interesting prospects for which their relevance has to be determined.

Anesthetics, Local↗

[Out-of-Hospital treatment of anaphylactoid reactions].

The term anaphylactoid reaction is a generic term used for allergic reactions with symptoms of anaphylaxis. Anaphylaxis is a severe systemic allergic reaction that is potentially fatal. It requires prompt recognition and immediate management. The syndrome can affect virtually any organ in the body, although reactions involving the respiratory, the cardiovascular, the cutaneous and the gastrointestinal systems are most common. Anaphylaxis is caused by the release of mediators from mast cells and basophiles. Reactions typically follow a uniphasic course; however, 20% will be biphasic in nature. The second phase usually occurs after an asymptomatic period of 10 hours in the mean. Adrenaline is the pharmacological treatment of choice and should be used in all patients showing signs of beginning blood pressure decrease or upper airway oedema. Further therapy in the treatment of anaphylaxis includes circulatory support, volume therapy, antihistamines and corticosteroids. Post-treatment observation of these patients is absolutely necessary. Once recovered, patients should be hospitalized and monitored for the following 24-48 hours.

Anaphylaxis↗

Cost-effectiveness and high patient satisfaction in the elderly: sevoflurane versus propofol anaesthesia.

BACKGROUND AND OBJECTIVE: The use of propofol compared with isoflurane is associated with improved patient comfort and decreased costs. However, as the cost saving, the quicker recovery time and patient comfort may not be evident if sevoflurane is substituted for isoflurane; these two anaesthetic agents were analysed in elderly patients. METHODS: In a prospective randomized study, 96 patients undergoing elective ophthalmic surgery received either total intravenous anaesthesia with propofol (Group P), propofol for induction and sevoflurane for maintenance (Group P/S) or sevoflurane for inhalation induction and maintenance (Group S). Analyses focussed on haemodynamics, the quality of recovery, and the costs for the anaesthetic and the entire procedure. RESULTS: Bradycardia or hypotension, mainly registered in Groups P and P/S, did not influence patients' recovery. In Group S, postoperative nausea and vomiting occurred frequently, and 50% of patients complained of discomfort during induction. In Group P/S, the costs for anaesthetics and total costs were lower than those in Groups P and S. CONCLUSIONS: Propofol- and sevoflurane-based maintenance of anaesthesia were similar with regard to patient comfort and recovery in the elderly. Cost analysis revealed that it was less expensive to use propofol for induction and sevoflurane for maintenance than to use either propofol or sevoflurane as sole agents for anaesthesia.

Aged↗