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M Tomaske

Publications and source records attributed to M Tomaske.

5 recordsLinked to original sources

Tracheal tube-tip displacement in children during head-neck movement--a radiological assessment.

BACKGROUND: Aims of this study were to assess the maximum displacement of tracheal tube tip during head-neck movement in children, and to evaluate the appropriateness of the intubation depth marks on the Microcuff Paediatric Endotracheal Tube regarding the risk of inadvertent extubation and endobronchial intubation. METHODS: We studied children, aged from birth to adolescence, undergoing cardiac catheterization. The patients' tracheas were orally intubated and the tracheal tubes positioned with the intubation depth mark at the level of the vocal cords. The tracheal tube tip-to-carina distances were fluoroscopically assessed with the patient supine and the head-neck in 30 degrees flexion, 0 degrees neutral position and 30 degrees extension. RESULTS: One hundred children aged between 0.02 and 16.4 yr (median 5.1 yr) were studied. Maximum tracheal tube-tip displacement after head-neck 30 degrees extension and 30 degrees flexion demonstrated a linear relationship to age [maximal upward tube movement (mm)=0 0.71 x age (yr)+9.9 (R(2)=0.893); maximal downward tube movement (mm)=0.83 x age (yr)+9.3 (R(2)=0.949)]. Maximal tracheal tube-tip downward displacement because of head-neck flexion was more pronounced than upward displacement because of head-neck extension. CONCLUSIONS: The intubation depth marks were appropriate to avoid inadvertent tracheal extubation and endobronchial intubation during head-neck movement in all patients. However, during head-neck extension the tracheal tube cuff may become positioned in the subglottic region and should be re-adjusted when the patient remains in this position for a longer time.

Adolescent↗

[Intravenous midazolam-ketamine anaesthesia for closed reduction of forearm fractures in children: impact of additional axillary plexus anaesthesia].

BACKGROUND: The aim of this study was to compare ketamine requirements in children undergoing closed reduction of forearm fractures under midazolam-ketamine anaesthesia with or without axillary plexus anaesthesia. METHODS: With hospital ethical committee approval, we retrospectively analyzed the records of children who received midazolam-ketamine anaesthesia in the years 2000-2001 (group A) and midazolam-ketamine anaesthesia combined with axillary plexus anaesthesia in the years 2002-2004 (group B) for closed reduction of forearm fractures. Requirements for ketamine and postoperative analgesics were noted. Groups were compared with the Mann-Whitney U-test or T-test and the chi2-test (p<0.05). RESULTS: A total of 455 children (group A 225/group B 230) were included in this study. The total amounts of ketamine were not statistically different between the two groups (p=0.154). However, ketamine requirements became less if the time interval between start of axillary plexus anaesthesia and start of intervention became more than 15 min (p<0.05). Patients in group B requested fewer analgesics in the postoperative period (p<0.01). CONCLUSIONS: In the clinical routine of an emergency department the combination of midazolam-ketamine anaesthesia with axillary plexus anesthesia for closed reduction of forearm fractures in children did not result in lower requirements of ketamine.

Adolescent↗

Comparison of tracheal tube cuff diameters with internal transverse diameters of the trachea in children.

BACKGROUND: In this study, we evaluated the ratio of the cuff diameters of the Microcuff paediatric tracheal tube (Microcuff PET, Weinheim, Germany) to fluoroscopically measured internal transverse tracheal diameters in children from birth to adolescence. METHODS: With Institutional Ethics Committee approval and parental consent, we measured the internal transverse tracheal diameters from fluoroscopy images in children undergoing cardiac catheterization requiring general anaesthesia with oro-tracheal intubation. Minimal tracheal sealing pressures were assessed at standardized respirator settings. Internal transverse tracheal diameters were compared with cuff diameters at 20 cmH2O cuff pressure. Linear regression analysis was employed to assess the correlation of tracheal diameters with age, height and weight, and to assess the correlation of the cuff/tracheal diameter ratio with sealing pressures. For all tests, P < 0.05 was considered to be statistically significant. RESULTS: One hundred and forty-five patients were studied (62 girls; 83 boys). Transverse tracheal diameters correlated well with age (r = 0.890; P < 0.0001), height (r = 0.900; P < 0.0001) and weight (r = 0.882; P < 0.0001). Tracheal sealing pressures ranged from 4 to 18 cmH2O. The ratio of the tracheal tube cuff diameter to the internal transverse tracheal diameter ranged from 1.06 in tubes with internal diameters of 6.0 and 4.5 mm to 2.01 in a tube with an internal diameter of 3.5 mm (median, 1.43), and did not correlate with tracheal sealing pressures (r = 0.021, P = 0.7999). CONCLUSIONS: The residual diameters of the Microcuff paediatric tracheal tube cuffs were sufficient to cover the measured internal transverse tracheal diameters of children from birth to adolescence. This allowed the internal tracheal mucosal surface to be draped and the trachea to be sealed at very low cuff pressures.

Adolescent↗

Ventricular septal defect closure in a neonate with combined methylmalonic aciduria/homocystinuria.

Methylmalonic acidemia with associated homocystinuria is a rare inborn error of amino acid metabolism affecting energy supply on the cellular level. Its effects on recovery from surgically induced organ ischemia are largely unknown. We report the successful closure of a nonrestrictive ventricular septal defect by following a normothermic strategy combined with ample metabolic substrate supply.

Amino Acid Metabolism, Inborn Errors↗