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T Fösel

Publications and source records attributed to T Fösel.

At least 19 recordsLinked to original sources

[Postoperative pain therapy after tonsillectomy in children. An observational study for 7 days].

OBJECTIVE: We investigated the efficacy and side-effects of a concept for pain therapy after tonsillectomy in children. PATIENTS AND METHODS: A total of 100 children aged between 6 and 14 years were treated according to the following protocol for pain therapy after tonsillectomy: after induction of anaesthesia the children received 35-40 mg/kg acetaminophen rectally and 0.1 mg/kg piritramide i.v.. Additionally, boluses of 0.05 mg/kg pitritramide i.v. were allowed in the recovery room and 2 doses of 20 mg/kg acetaminophen were given rectally every 6 h on the day of surgery. On the following day the children received 30 mg/kg acetaminophen 3 times per day and from the second postoperative day onwards 1 mg/kg diclofenac was given 3 times a day. The rescue therapy was 5 mg/kg metamizol orally. The severity of the postoperative pain was evaluated by a visual pain scale (VAS) (0-100), side-effects such as vomiting and postoperative haemorrhage were documented. The Friedman test was used for testing the time course of pain intensity. RESULTS: The median of the VAS was 42 on the day of surgery, 35 on the first postoperative day and fell continuously to 10 by the 6th postoperative day. The decrease of pain severity was statistically significant (p <0.05). A rescue therapy was necessary in 6 patients on the day of surgery and in 9 patients on the first postoperative day. 7 patients suffered a postoperative haemorrhage, 4 out of the 7 needed a surgical revision and 2 out of 100 patients vomited. CONCLUSION: We conclude that this protocol for pain therapy after tonsillectomy was effective. The incidence of postoperative haemorrhage and vomiting was low.

Acetaminophen↗

[Acute myocardial infarction after blunt polytrauma -- successful coronary intervention].

Acute myocardial infarction following blunt chest trauma is a well reported but rare finding. Especially in severely injured patients the optimal therapy of the myocardial infarction is not well established, since anticoagulants, platelet aggregation inhibitors or thrombolytics are frequently contraindicated under these conditions. We report a case of a 41-year-old man, who presented with an acute myocardial infarction in combination with a severe polytrauma (multiple rib fractures, hematothorax, pelvic bone fractures, multiple injuries of intestinal organs) after a motorcycle accident with a blunt chest and abdominal trauma. After surgical treatment of the injuries of the bones and the intestinal organs a coronary angiography was immediately performed. The left anterior descending and the circumflex coronary artery were occluded in the mid-portion of the vessels. Coronary recanalization by PTCA and the implantation of coronary stents were successful in both vessels. Despite of a non-optimal blood flow after recanalization and stenting in one vessel (LAD TIMI II flow after recanalization), and a non-optimal accompanying medical therapy, during and after intervention (intravenous heparin starting 8 hours after the coronary intervention and platelet inhibitors starting 4 days after the intervention) the coronary angiogram after 2 months documented both vessels patent without a reocclusion or a restenosis. The case report documents, that in traumatic myocardial infarctions the treating of both, the attending injuries and the myocardial ischemia, is feasible. Early coronary angiography and coronary interventions, with or without stent-implantation, are indicated, even in cases in which an adequate accompanying medical therapy with heparin and platelet inhibitors is contraindicated.

Accidents, Traffic↗

[Conversion from peridural to transdermal opiate analgesia in abdominal tumor pain syndrome].

In a 32 years old patient with advanced gastric cancer epidural analgesia with local anaesthetic and morphine via a thoracic epidural catheter was required because of intractable pain and intolerable side effects of intravenous morphine. In spite of good efficacy it was decided to remove the catheter because of technical problems and the risk of infection during chemotherapy. Analgesic therapy proceeded to non-invasive transdermal fentanyl, using an intravenous fentanyl pca-pump during transition. The equipotent daily dose ratio of epidural morphine to transdermal fentanyl was calculated as 2.25:1.

Adult↗

[The effect of midazolam after intranasal administration on spontaneous respiration and respiratory control in young children].

AIM: The aim of this study was to investigate the influence of intranasally administered midazolam in different doses on spontaneous respiration in children. METHODS: 40 children received in randomised order 0.2, 0.4 or 0.6 mg/kg b.w. midazolam intranasally or NaCl 0.9% as control. 10 minutes later, anaesthesia was induced by inhalation of halothane, nitrous oxide and oxygen. The children were breathing spontaneously at a PEEP of 5 cm H2O on a circle system with a fresh gas flow of 61/min (FIO2 = 0.33). Intubation was performed in deep anaesthesia without muscle relaxant. Halothane concentration was reduced to an endtidal concentration of 0.4 Vol%. With a baby pneumotachograph, minute ventilation, tidal volume, peak inspiratory and expiratory flow and respiratory rate were recorded during quiet breathing. Endtidal pCO2 was measured. Ventilation was then stimulated with 0.2 and 0.41/min CO2 and the same parameters were recorded. Regression analysis was performed for minute ventilation and endtidal pCO2 to obtain the slope which is a parameter for the sensitivity of the chemoreceptor mediated control of ventilation. RESULTS: The tidal volume and peak inspiratory flow were significantly reduced for a dose of 0.6 mg/kg compared to the control group. No statistical difference could be found for any other parameter between the control and study groups. CONCLUSION: We conclude that nasally administered midazolam reduces tidal volume and inspiratory peak flow in spontaneously breathing children at a dose of 0.6 mg/kg b.w. compared to control during halothane--nitrous oxide--oxygen anaesthesia. The CO2 mediated control of respiration under this condition is preserved.

Administration, Intranasal↗

Nasal midazolam in children, plasma concentrations and the effect on respiration.

Twenty ASA 1 children, one to six years old, weighing 10-20 kg, scheduled for a combination of general and caudal anaesthesia received at random midazolam 0.2, 0.4, or 0.6 mg.kg-1 or NaCl 0.9% (control group) intranasally. Drug or NaCl 0.9% were administered in one nostril, after inhalation induction of anaesthesia, intubation without relaxant and caudal anaesthesia. Spontaneous respiration was via a circle system and fresh gas flow of 6 l.min-1 (N2O/O2 = 2:1), PEEP 5 cm H2O, endtidal halothane 0.4%. Immediately before and 2, 5, 8, 12, 16, 20, 30, 60 and 120 min after application of the drug 2.5 ml blood was sampled for plasma levels of midazolam. Endtidal CO2, respiratory rate, and oxygen saturation were recorded as long as the children were intubated. Endtidal CO2 and respiratory rate showed no statistical difference between the groups at any time, however, in the group receiving 0.6 mg.kg-1, endtidal CO2 increased significantly from 5.3 kPa (41 mm Hg) at the start to 5.9 kPa (45.5 mm Hg) after 30 min. Plasma levels of midazolam were detected 2 min after application in 10 of 15 patients. Median peak levels were found between 12 and 16 min. Medians of peak plasma levels showed no statistical difference between the three groups (0.2 mg.kg-1:111 ng.ml-1, 0.4 mg.kg-1:136 ng.ml-1, 0.6 mg.kg-1:277 ng.ml-1). After 30, 60 and 120 min medians of midazolam plasma concentration were significantly higher in the group 0.6 mg.kg-1.

Adjuvants, Anesthesia↗

[Spinal anesthesia in infancy using bupivacaine 0.5%. The effect of an adrenaline addition on duration and hemodynamics].

The duration of spinal anaesthesia in infants is short compared to adult patients. When tetracaine is used, the addition of epinephrine significantly prolongs the duration. For bupivacaine, however, the influence of epinephrine on the duration is not clear. We investigated the effects of epinephrine 1:200,000 added to bupivacaine 0.5% on duration and haemodynamics. PATIENTS AND METHODS. Ten former pre-term infants with postnatal respiratory problems, scheduled for bilateral inguinal hernia repair, were enrolled in the study after informed parental consent had been obtained. The infants were fasted at least 4 h prior to surgery. If they did not receive i.v. infusions before surgery, a bolus of 10 ml/kg Ringer's acetate was injected after inserting the i.v. cannula, followed by a continuous infusion of 8 ml/kg 2/3 N NaCl with 5% dextrose. Spinal anaesthesia was performed in a sitting position with 0.6 ml bupivacaine 0.5%. Five patients received plain bupivacaine (group I) and five bupivacaine with epinephrine 1:200,000 (group II). Heart rate registered by ECG and non-invasive blood pressure were recorded prior to positioning the baby for lumbar puncture and 2, 5, 10, and 20 min after injection of bupivacaine. The duration of spinal anaesthesia was defined as the time from injection to the time when the first movements of the legs were observed after stimulation. For testing statistical differences the U test was used between the groups and the Wilcoxon and Wilcox test within the groups. RESULTS. (expressed as median and range). Additional epinephrine significantly prolonged the duration of spinal anaesthesia (group II: 95 min [60-120] vs group I: 50 min [37-85]). Haemodynamic parameters did not differ at any time between or within the groups. In group I, one infant had high spinal anaesthesia with impaired respiration but without cardiovascular effects; after 10 min of assisted ventilation by mask, sufficient respiration as judged by pulse oximetry and clinical observation had returned. The duration of spinal anaesthesia in this child was 60 min. CONCLUSIONS. Epinephrine 1:200,000 significantly prolongs the duration of spinal anaesthesia in former preterm infants. Haemodynamic parameters in this age group remain unchanged during spinal anaesthesia and are not influenced by the addition of epinephrine.

Anesthesia, Spinal↗

[Spinal anesthesia for surgery of inguinal hernia in infants at risk for respiratory complications. Initial experiences with 12 patients].

11 former premature babies born at a mean gestational age of 32 weeks (range 27-34 weeks) and one baby born at term with congenital diaphragmatic hernia scheduled for inguinal hernia repair were selected to receive a spinal anaesthesia after informed written consent was obtained from one of the parents. At birth, 10 infants were intubated and received assisted ventilation; the remaining two were on nasal CPAP for 24 hours after birth. The mean post-conceptual age of the former premature infants on the day of surgery was 39 weeks (range 36-43 weeks), the mean weight was 2.2 kg (range 1.8 to 3.6 kg). One boy with congenital diaphragmatic hernia who was intubated for 19 days after birth aged 4 months on the day of operation and weighed 5.3 kg. None of the children was oxygen-dependent on the day of surgery. Spinal anaesthesia was performed in 3 children in the lateral decubitus and in 9 children in the sitting position. In each group, there was one case when spinal anaesthesia could not be performed due to a bloody spinal tap. These children received general anaesthesia, one of them in combination with a caudal block. The 9 former premature received 0.6 ml isobaric bupivacaine 0.5%, and the child born on term with diaphragmatic hernia 0.8 ml isobaric bupivacaine 0.5%. The onset of the motor blockade in the former preterm infants was within 60-90 seconds, while in the older child the onset was 10 minutes. With the given dose, the operation could be performed without any problems.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthesia, Spinal↗

[A study of the parameters of the delivered tidal volume. Ventilation on a lung model using the CICERO anesthetic ventilator].

In many anaesthesia ventilators in common use, the tidal volume delivered is different from the tidal volume preset on the respirator. Tidal volume delivered by mechanical ventilation during anaesthesia may be influenced by fresh gas flow (FGF), the respiratory rate (RR) or the inspiratory: expiratory ratio (I:E). This may cause inadequate hypo- or hyperventilation in small children, especially in newborns and neonates. Using small tidal volumes from 20 to 100 ml preset on the respirator, we investigated in a lung model the tidal volumes delivered by the anaesthesia ventilator CICERO (Dräger, FRG) with variations of FGF, RR and I:E. MATERIAL AND METHODS. The anaesthesia ventilator CICERO (software version 4.16) was equipped with the low-compliance tubes of the "Ulmer Kinder-Set" (Rüsch Co.) and the regular CO2 canister (1500 ml) of the machine. The circuit was connected to a lung model consisting of a glass clyinder filled with copper wool with a compliance of 3.3 ml/mbar. To create a pressure-volume correlation of the entire system, i.e. the lung model, the anaesthesia circuit and the ventilator, calibrated glass syringes were used and the pressure increase in the test lung was measured. This pressure-volume correlation was linear. The pressure increase in the lung model caused by the tidal volume during ventilation therefore reflected the actual tidal volume delivered. The study was performed with small tidal volumes from 20 to 100 ml that could be adjusted exactly on the ventilator. Delivered tidal volumes were studied by varying the FGF from 1 to 6 l/min and the RR from 20 to 60/min (with I:E = 1:1.5) and by varying the RR from 20 to 60/min and the I:E from 2:1 to 1:3 (with FGF = 21/min). RESULTS. By varying FGF, RR and I:E no changes in delivered tidal volumes were noted. In all settings of the ventilator studied, the delivered tidal volume was similar to the desired tidal volume preset on the ventilator. The highest deviation from the delivered tidal volume to the tidal volume preset was 17.5% with a tidal volume of 20 ml. In preset tidal volumes 30-100 ml this deviation was lower than 10%. An intermittent "auto-PEEP" up to 5 mbar was noted during high respiratory rates (50 and 60/min) combined with an I:E at 2:1 and 1:1 or with a FGF at 4 or 6 l/min. The compliance of the ventilator equipped with the circuit was 4.2 ml/mbar. CONCLUSION. The findings in this study prove that with tidal volumes ranging from 20 to 100 ml the actual tidal volume delivered by the anaesthesia ventilator CICERO is equivalent to the tidal volume set on the machine regardless of the variation of FGF, RR and I:E. These findings are mainly based on two circumstances. Firstly, fresh gas flow is fed into a reservoir and not added to the volume delivered by the bellow during inspiration as in many other respirators. Secondly, the CICERO works with a compliance correction function integrated into the machine. Computed compressible volume from the circuit and the ventilator is added to the tidal volume preset on the ventilator; therefore, the volume delivered by the bellow consists of the volume set on the ventilator plus the compressible volume. With these characteristics the anaesthesia ventilator CICERO meets important requirements for a ventilator in paediatric anaesthesia. However, for final assessment further clinical studies are required.

Anesthesiology↗

[Carbomonoxyhemoglobin and methemoglobin in patients with and without a smoking history during ambulatory anesthesia. Consequences for the use of pulse oximetry].

Carboxyhemoglobin (COHb) and methemoglobin (MetHb) in venous blood were determined by oximetry in 1000 non-hospitalised preoperative patients. 370 of them were smokers (S), 630 non-smokers (NS). In addition, in five S we compared the oxygen saturation measured by pulse oximetry (SaO2, p) with that measured by in vitro oximetry (SaO2) and that calculated with reference to COHb (SaO2,korr). MetHb (0.66 +/- 0.21%, mean +/- standard deviation) was found to be of no relevance. COHb in S (5.12 +/- 2.25%, maximum 12.4%) was significantly higher than in NS (1.82 +/- 0.3%, range 0.9%-4.0%) and is therefore of importance in S for the oxygen transport and for the interpretation of SaO2, p, which overestimated SaO2 at a COHb level of 4.4 +/- 0.7% by 4.5 +/- 0.9%. The difference between SaO2, korr (calculated according to Forstner) differed from SaO2 by 0.66 +/- 0.5% only. We conclude that there is an indication for in vitro oximetry in non hospitalised smokers or cases of unknown smoking history. If oximetry is not available, both a reduction of O2-binding hemoglobin and an overestimation of SaO2 by pulse oximetry in an order of ten per cent should be taken into account. To compensate for dyshemoglobin fractions, pulse oximetry using more than two wavelengths is desirable.

Ambulatory Care↗

[Mechanical ventilation in an anesthetic circle system using the lowest tidal volume--studies of 3 anesthesia ventilators in a lung model and an animal experiment].

No anesthesia ventilator attached to a circle system is manufactured for use in neonates. However, a small bellows can be supplied for the following anesthesia ventilators: Spiromat NS 656 (NS), Ventilog 2 (V2) and AV1 (Draeger Co.) We investigated the minimal tidal volume delivered by each of the three ventilators. In addition, we tested the performance of the AV1 in neonatal piglets for manual and controlled ventilation, and in decreased lung compliance. MATERIALS AND METHODS. All circuits were equipped with one CO2 canister (750 ml) and the low-compliance tubes of the "Ulmer Kinder Set" (Ruesch Co.) The circuits were connected to a lung model consisting of a glass cylinder filled with copper wool with a compliance of 3.0 ml/mbar. By using calibrated glass syringes we created a pressure-volume correlation for the entire system, i.e., the lung model, the anesthesia circuit and the ventilator, which was linear for each of the three ventilators. The pressure was measured in the test lung. The pressure increase caused by the tidal volume therefore reflected the actual tidal volume delivered, which was calculated using the pressure-volume correlation. Tidal volumes were determined for varying the fresh gas flow (FGF), the respiratory rate (RR), which was varied between 20 and 60/min and the I:E ratio (IE), which was varied between 1:1 and 1:2. Six newborn piglets aged 2-12 h and with body weight 1000-1300 g were anesthetized, tracheotomized and ventilated with an oxygen-nitrous oxide mixture (FIO2 0.25). The manual ventilation lasted 30 min (period 1) and was followed by mechanical ventilation for 60 min (period 2). Thereafter, a left pneumothorax with constant pressure of 20 mbar and then 40 mbar for 15 min each was created (period 3). A fall in blood pressure was treated with 10 ml colloids in five of the six animals. During the experiment arterial blood pressure in the carotid artery, mean airway pressure at the distal end of the tracheal tube and end-tidal CO2 were continuously recorded. Arterial blood gases were analyzed at the end of each period. RESULTS. The tidal volumes delivered with an identical position of the bellows varied in ventilators NS and V2 with changes in FGF, RR and IE. Decrease in FGF, higher RR and longer expiration resulted in a decrease in the tidal volume. The "smallest" tidal volume delivered by NS varied from 50 ml (FGF 2 l/min, RR 60, IE 1:2) to 188 ml (FGF 4 l/min, RR 20, IE 1:1) and from 11 ml (FGF 2 l/min, RR 60, IE 1:2) to 110 (FGF 4 l/min, RR 20, IE 1:1) in the V2. The AV1 showed a minimal tidal volume of about 5 ml, and no changes in tidal volume attributable to alterations in FGF, RR or IE could be observed. No problems occurred during manual or mechanical ventilation in the piglets. With the experimental decrease in lung compliance no increase in airway pressure was noted, but an increase in arterial pCO2 by 8 mmHg (mean) reflects hypoventilation that was not corrected by the ventilator. DISCUSSION. We believe that the changes in tidal volume in ventilators NS and V2 are caused by adding FGF to the volume delivered by the below during inspiration. Because of the unpredictability of the tidal volumes, these ventilators are not suitable for the use in neonates. The AV1 has a very low systemic compliance which makes it suitable for use in neonatal anesthesia. However, a decrease in lung compliance is not compensated by an increase in airway pressure and leads to hypoventilation. When small tidal volumes are used in patients with low lung compliance, it does not act as expected of a volume-cycled ventilator.

Anesthesiology↗

Assessment of contractility changes in humans by transoesophageal echocardiography: the peak-systolic pressure end-systolic diameter relationship (PSPESDRS).

The peak-systolic pressure end-systolic diameter relationship (PSPESDRS) was determined in ten healthy subjects under general anaesthesia by using the radial artery pressure tracing (peak-systolic pressure) and transoesophageal 2d-and m-mode echocardiography (left ventricular diameters) without blocking of autonomic reflexes. Left ventricular load was changed by injection of a single intravenous dose of 0.2 mg nitroglycerin (NTG). Linear regression analysis showed a close linear relationship during the pressure decrease between peak-systolic pressures and end-systolic diameters. During infusion of dobutamine 5 micrograms/kg/min there was also a close linear relationship during pressure decrease with increased slope and unchanged Do (D0 = diameter at theoretical pressure zero). Values taken during pressure returning to control level were shifted leftward indicating transient increased contractility. We conclude, that the PSPESDRS can reliably be measured in humans without autonomic blockade during the decrease of arterial pressure after NTG, where reflex changes in inotropy are not yet present. This relationship increases in slope with dobutamine, reflecting the increased contractile state.

Blood Pressure↗

[Pharmacodynamics of vecuronium in infants during intravenous induction of anesthesia with ketamine].

The pharmacodynamic effects of vecuronium in children aged 1 to 6 years were investigated after intravenous induction of anaesthesia with ketamine, using an initial dose of vecuronium of 0.08 mg/kg body wt. 0.1 mg/kg body wt. The degree of neuromuscular blockade was determined by measuring the contraction force of the m. adductor pollicis after supramaximal stimulation of the ulnar nerve using an electromechanical device. The results (median, chi min and chi max) were as follows. For the initial dose 0.08 mg/kg body wt., the onset time was 150 s (110-360 s); total blockade: 5 of 9 children, D25 (duration of 25% recovery) 13 min (10-31); RI (recovery index): 8.5 min (6.0-14.5); D90 (duration of 90% recovery): 27 min (20-44). For the initial dose of 0.1 mg/kg body wt., the onset time was 135 s (80-300); total blockade: all children, D25: 19.5 min (12-32.5); RI: 8.75 min (6.5-13.5); D90 35 min (22-45). Only the D25 was significantly shorter using an initial dose of 0.08 mg/kg body wt. For a total blockade, a higher dose of vecuronium is necessary using intravenous induction of anaesthesia compared with previously described inhalation techniques. Even with the high dosage, recovery from neuromuscular blockade is so rapid in this age group that it can be used even for short operations without reversal.

Anesthesia, Intravenous↗

[Comparative echocardiographic studies on the negative inotropic effect of halothane, enflurane and isoflurane].

Using the afterload-independent end-systolic pressure-dimension-relationship a study was performed in order to investigate whether there are differences in the negative inotropic effects of halothane, enflurane and isoflurane at 1 MAC in 70% N2O. 30 patients of ASA-groups I and II were studied. Using transoesophageal 2d- and m-mode echocardiography the end-systolic-pressure-dimension-relationship was established and the slope (parameter of contractility) determined. The slope decreased significantly (paired Wilcoxon-test 2 alpha less than 0.01) with halothane (68.5/46.5 mmHg/cm), enflurane (56/48 mm Hg/cm) and isoflurane (63/35 mmHg/cm). There is no difference between the three groups (Kruskal-Wallis-test 2 alpha greater than 0.05). The negative inotropic effects of halothane, enflurane and isoflurane at 1 MAC in 70% N2O are the same. The vasodilation caused by isoflurane enables better pump function compared to halothane and enflurane, but may cause severe hypotension. We conclude that for cardiac risk patients isoflurane has no outstanding advantages in comparison to halothane and enflurane.

Adult↗

[Pulse oximetry as a continuous, noninvasive monitoring procedure. Comparison of 2 instruments].

Pulse oximetry allows continuous registration of the arterial oxygen saturation by using the light absorption in a wave range between 600 and 1,000 nm. In addition the peripheral pulse is determined by a plethysmographic method. Two new devices, the Biox III pulse oximeter and the Nellcor pulse oximeter were compared for the following three items: 1. The accuracy in comparison with a simultaneously determined arterial oxygen saturation. Concerning the Biox III instrument, the correlation coefficient resulted in r = 0.90, for the Nellcor device in r = 0.92. 2. The onset time for registering a suddenly appearing hypoxia: For the Biox III oximeter we found a time lag between 6 and 42 s (median 21 s), for the Nellcor Oximeter between 12-39 s (median 21 s). 3. The pulse frequency corresponded very well with the simultaneously registered heart rate of the ECG. Our results indicate that pulse oximetry--a continuous and noninvasive method--is a reliable monitor for oxygen saturation, and provides trend informations about circulation, both of which are particularly appropriate for patients breathing spontaneously.

Adult↗

[The semi-closed filter circuit].

In a semi-closed circle system, the inspiratory and expiratory limbs are completely separated and part of the patient's expired air recirculates. CO2 rebreathing is prevented by CO2- absorption with soda lime, which is always incorporated in such a circle. The inspiratory and expiratory valves ensure that gas flow is unidirectional and also prevent rebreathing, even at tidal volumes of 10 ml and ventilation frequencies of 60 c . min-1. This circuit can be used as an universal anaesthetic system for all age groups, simply by changing the hoses and connecting pieces. The values of expiratory resistance are within the recommended limits of the ISO; prewarming and humidification of the inspiratory gas mixture are sufficient without additional equipment. Standard monitoring of the circuit such as measurement of inspiratory O2 concentration and ventilation pressure, including a disconnection alarm, can be used for all age groups; spirometry or end-tidal CO2 measurements ensure normoventilation. The fresh gas flow required in a semi-closed circle system is about 2-4 1 . min-1, so that costs and environmental contamination with anaesthetic gases are relatively low in comparison with a semi-open system.

Airway Resistance↗

[Massive intraoperative lung embolism caused by the introduction of a telescope pin (Bailey-Dubow pin) in a child with osteogenesis imperfecta].

We report the case of a massive pulmonary embolism in a three year old boy with osteogenesis imperfecta during a closed insertion of a Bailey-Dubow-rod. An increased intramedullary pressure with consecutive entering of medullary particles or air into the blood stream due to the insertion of the Bailey-Dubow-rod is discussed as the cause of the pulmonary embolus.

Brain Edema↗