[Herring-Breuer reflex during artificial respiration in the rabbit. I. Reflex inpsirations elicited by the respirator].
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In a clinical trial, the efficacy of a Pseudomonas immunoglobulin was studied in ten ventilated patients suffering from Pseudomonas pneumonia. Compared to ten patients of a previous study who had received a polyvalent immunoglobulin (control group), patients treated with Pseudomonas immunoglobulin fared better with respect to clinical success and duration of treatment, the period of antibiotic treatment being significantly shorter than in the control group.
The clinical efficacy and safety of a new pseudomonas hyperimmune globulin for intravenous administration were examined in 30 patients in a prospective randomized study. Although the statistical evaluation of the measurable parameters did not show relevant differences between the therapy group (n = 15) and the controls (n = 15), the clinical course of the disease was markedly better in patients treated with hyperimmune globulin. In the control group, three patients died from Pseudomonas aeruginosa infections, but none in the therapy group. The preparation was very well tolerated.
An indication for respiratory treatment is given in manifest and for prophylactic mechanical ventilation in expected pulmonal insufficiency. The mortality rate can be reduced by an early respiratory treatment, therefore prophylactic mechanical ventilation should be performed liberally. Mainly patients after abdomino-thoracal operations and major vascular or upper abdominal surgery are at risk for lethal postoperative pulmonary complications.
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Electroventilation is the term used to describe the production of inspiration by applying a train of short-duration pulses to chest-surface electrodes. Studies were conducted in the dog to determine the optimum frequency to produce a smooth air flow in the trachea. It was found that a stimulus frequency of 25/sec or slightly higher meets this criterion. To illustrate that electroventilation can be carried out for a prolonged period using these parameters, electroventilation was applied continuously for 5 hours in a dog without a noticeable change in blood pressure.
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We report two cases of compartment syndrome of the lower leg that occurred in male patients aged 62 and 57 years, respectively, after 10 and 12-h urological surgery in the lithotomy position. During sedation and mechanical ventilation creatine kinase (CK) activity of more than 8,000 U/l was found in both patients. After extubation, clinical symptoms of the compartment syndrome were found. On the 1st day after surgery patient 2 underwent fasciotomy of both lower legs (Fig. 2). No lasting neurologic defects were observed. Patient 1 was treated by fasciotomy on the 4th postoperative day after paresis of the peroneal nerve had developed in the left lower leg. This paresis had shown no tendency to regression when the patient left hospital. On phlebography, both patients showed blockage of the deep lower leg veins up to the knee. DISCUSSION. The compartment syndrome is a rare but serious complication resulting from prolonged surgery in the lithotomy position. Symptoms are neuromuscular lesions of the affected limb. Severe complications of the compartment syndrome are acute renal failure resulting from myoglobin residues in the tubules, electrolyte disturbances, and disorders of acid-base balance. A decrease in perfusion due to the elevated position of the legs, on the one hand, and the impeded venous back-flow due to the positioning on the other are discussed. While positioning the legs, it is important to ensure that the lower legs are lifted only slightly above left atrial level. When rehabdomyolysis occurs, serum CK activity increases. CK values of over 2,000 U/l after surgery may be considered a warning sign in ventilated and sedated patients, in whom early clinical symptoms of the compartment syndrome such as pain and paresthesias cannot be ascertained. Frequent and regular checks of these parameters starting shortly after surgery are recommended. A thorough examination of the lower legs and, if necessary, measurement of the tissue pressure in the compartment should follow. The deep veins of the legs should be checked by phlebography. In cases of verified compartment syndrome, early fasciotomy is the best choice of therapy, because neuromuscular defects are known to be irreversible after 12 to 24 h. Enforced diuresis is recommended in order to avoid renal complications.
UNLABELLED: Left ventricular afterload is most accurately represented by left ventricular end-systolic wall stress, but in clinical practice is commonly estimated by the systemic vascular resistance (SVR). End-systolic wall stress can be derived from M-mode and two-dimensional (2D) echocardiograms in combination with systolic arterial pressure (SAP). We tested transoesophageal echocardiography for the assessment of acute left ventricular afterload alterations in ventilated patients requiring cardiovascular support with noradrenaline or nitroglycerine. METHOD. With approval from the local ethics committee, we studied afterload alterations in 11 hypotensive patients who were treated by increasing the dosage of i.v. noradrenaline by 2-5 micrograms/min in order to raise mean arterial pressure (MAP) by 20 mmHg. In another 10 patients with MAP over 95 mmHg, nitroglycerine was raised from 2 to 4 mg/h, aiming at a 20 mmHg MAP reduction. MAP and SAP were monitored via a radial artery cannula, cardiac output (CO) was measured with the thermodilution technique using a Swan-Ganz catheter, and SVR was calculated from CO, MAP, and right atrial pressure. M-mode and 2D echocardiograms were obtained from the cross-sectional short-axis view of the left ventricle and recorded shortly before and during treatment when MAP had changed by 20 mmHg. Left ventricular total area (TA) and cavity area (A) including the papillary muscles were obtained from end-systolic 2D echocardiograms, while end-systolic internal diameter (ID) and posterior wall thickness (HW) were measured in the M-mode. Wall stress was calculated in the M-mode as: WSM = 0.33 x SAP x ID/(HW x (1+HW/ID)), and in the 2D mode as: WS2D = 1.33 x SAP x A/(TA-A). STATISTICS: paired t-test (P < 0.05), regression analysis. RESULTS. Afterload alterations were reflected by significant changes of WS2D (-41%, +68%), WSM (-26%, +38%), and SVR (-15%, +50%). WSM and SVR underestimated changes of WS2D by 15%-30%. WSM changes due to SAP rather than to left-ventricular dimensional changes. No correlation was found between WS2D or WSM and SVR. Inter-observer variability for echocardiographic wall stress was reasonable (WS2D 4%, WSM 10%). CONCLUSIONS. Acute changes of left ventricular afterload and dimensions were clearly indicated by 2D measurements. As M-mode measures were not conclusive for left ventricular dimensional changes, WSM was not an appropriate parameter for acute afterload alterations. WS2D is an afterload index superior to WSM that cannot be estimated by SVR.
Oesophageal malposition of an endotracheal tube is among the leading causes of anaesthesia incidents. While clinical manoeuvres for detection of tube malposition are unreliable, monitoring (i.e. capnography) can prevent such incidents. The problem is particularly important in prehospital care, where capnography is not (yet) widely available. We tested three devices used for differentiating oesophageal from endotracheal intubation: 1. Non-CO2-dependent Oesophageal Detector Device (ODD) as described by Pollard and Wee, 2. Semi-quantitative chemical disposable capnometer EasyCAP (Nellcor), 3. Non-quantitative infrared miniaturised capnometer MiniCAP (MSA). METHODS. 50 anaesthetised minipigs were intubated with a Magill tube. An identical additional tube was placed in the oesophagus. The cuffs of both tubes were inflated. Unexperienced personnel (students, laboratory technicians) were asked to determine the position of one of the tubes by using one of the devices according to the randomisation plan. The decision had to be taken within 30 s. Using the ODD, the proband first injected 100 ml air into the lung (or stomach) and then tried to aspirate the same volume. EasyCAP and MiniCAP were used according to manuals. RESULTS. Each device was used 25 times with a tracheal tube and 25 times with an oesophageal tube. All tube position identifications were correct. When ventilating the oesophagus/stomach for capnometric control, regurgitation into the tube occurred six times (five times with the EasyCAP and once with the MiniCAP). In these cases, the decision was based on this occurrence and not on the display of the device. While using the ODD no regurgitation occurred. CONCLUSION. These devices are useful for preclinical practice. According to the literature and our experience, the ODD is superior for the initial control of tube position, especially in cardiac arrest. Capnometry is needed, however, for continuous control of ventilation.
Performed at the end of the mummification process, the "mouth-opening" ritual was a ceremony for the spiritual resurrection of the dead Pharaoh. The techniques used are astonishingly similar to modern emergency-room procedures. For example, the mouth-opening device was made of meteoric iron. In the Egypt of that time, the use of iron was very unusual and the higher levels of nickel in meteoric iron contributed to the stability of the instrument. There are other signs of medically sound methods in the mouth-opening ritual. Symbolically, the mummy's teeth were extracted, the eyes opened with a special device, and gold capsules inserted, perhaps in the sense of a breathing tube. There is a possibility that this ritual contains a forgotten synopsis of knowledge gained empirically in connection with the Egyptian cult of royal resurrection.
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