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S Diehm

Publications and source records attributed to S Diehm.

4 recordsLinked to original sources

High frequency jet ventilation in interventional fiberoptic bronchoscopy.

UNLABELLED: High frequency jet ventilation (HFJV) is a well accepted method for securing ventilation in rigid and interventional bronchoscopy. We describe a technique of HFJV using a 14F nylon insufflation catheter placed in the trachea to support stent implantation or endobronchial balloon dilation in endobronchial stenoses with the flexible fiberscope. One hundred sixty-one cases were treated with either a metal wire stent (n = 105) or with balloon dilation (n = 56). In addition to HFJV, IV anesthesia was applied in 132 cases. Driving pressure was 1125-1275 mm Hg, frequency 80-100/min, and inspiratory:expiratory ratio of 1:2. Fraction of inspired oxygen ranged from 0.3-1.0. The effects on alveolar ventilation were assessed by using blood-gas analysis and continuous monitoring of transcutaneous oxygen and carbon dioxide tension (P(tc)CO(2)). Complications consisted of hypertension (n = 8), hypotension (n = 6), bronchospasm (n = 5), and hypoxia (n = 6). In 52% of the cases, mild hypercarbia (P(tc)CO2 50-60mm Hg) was observed. In two cases, a P(tc)CO(2) > 80 mm Hg resolved spontaneously when the patients returned to normal breathing after intermittent superimposed ventilation with a face mask. During placement of stents in the proximal trachea, the jet catheter had to be withdrawn, resulting in displacement of the catheter into the pharynx in one case, which was managed safely with the bronchoscope. In conclusion, HFJV achieves satisfactory operating conditions and provides adequate gas exchange for interventional bronchoscopic procedures with the fiberscope. IMPLICATIONS: Safe ventilation is desired when performing tracheobronchial stent implantation and balloon dilation with the fiberscope. High frequency jet ventilation, applied with a 14F insufflation catheter through the nasotracheal route, offers safe ventilatory support with minimal complications. This was evaluated in 161 procedures treating benign and malignant airway stenoses.

Adult↗

Continuous light increment perimetry compared to full threshold strategy in glaucoma.

PURPOSE: Continuous light increment perimetry (CLIP) is an improved testing strategy for automated static perimetry designed to save test time and enhance patient compliance. CLIP uses a modified ramp stimulus where stimulus intensity is continuously increased according to patient reaction time, starting from a subthreshold intensity until recognition. The test is constantly modified according to patient performance. As CLIP showed good results in normal subjects in previous studies, the authors now compared CLIP to the standard 4/2-full threshold (4/2) strategy in glaucoma patients. METHODS: Fifty-two patients with glaucomatous visual field defects (mean sensitivities 2.9 to 18.4 dB), all with perimetric experience, were tested with CLIP (three times) and 4/2 in a randomized fashion. Tests were performed at 55 test locations within the central 30 degree visual field (24-2 area) using the Twinfield perimeter. RESULTS: Average mean sensitivity was significantly higher for CLIP than for 4/2 (t test, p<0.0001). Absolute scotomas and extension of scotomas were comparable for both strategies, whereas CLIP found less deep relative scotomas in some cases. Mean test time was significantly shorter for CLIP (5.6 min) compared to 4/2 (8.9 min) (Wilcoxon signed rank test, p<0.0001). Patient acceptance was better for CLIP than for 4/2. CONCLUSIONS: CLIP showed comparable results to 4/2 with excellent patient acceptance. Mean sensitivities are 1.8 dB higher than for 4/2; similar results were found previously in normal subjects. CLIP was able to save a mean 38% of test time compared to full threshold strategy with good reproducibility.

Adult↗