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E Reinecke

Publications and source records attributed to E Reinecke.

4 recordsLinked to original sources

Evaluation of reflux oesophagitis with technetium-99m-labelled sucralfate.

UNLABELLED: Sucralfate binds with denuded protein to form a stable complex to protect the damaged mucosa. By utilising this property, technetium-99m-labelled sucralfate can be used to demonstrate ulceration in the upper gastro-intestinal tract. AIM: The aim of this study was to evaluate 99mTc-labelled sucralfate in the diagnosis of grade II-III reflux oesophagitis. METHODS: Ten patients with endoscopic proof of grade II-III reflux oesophagitis and 10 patients with normal findings on oesophagoscopy were evaluated after they had swallowed 5 ml 99mTc sucralfate. Radionuclide imaging was done until activity in the oesophagus had ceased. RESULTS: Retention of activity from 10 minutes up to 1 1/2 hours could be demonstrated in 9 patients with endoscopically proven oesophagitis. In the control group complete clearance of activity was seen in 7 patients. Gastro-oesophageal reflux could be demonstrated in 4 patients. CONCLUSION: In conclusion we found 99mTc sucralfate to be a sensitive and specific method for the non-invasive diagnosis of grade II or grade III oesophagitis when compared with endoscopy [corrected].

Adult↗

Responses of the photosynthetic flagellate, Euglena gracilis, to hypergravity.

Motility and orientation has been studied in the unicellular photosynthetic flagellate, Euglena gracilis, using real time image analysis capable of tracking up to 200 cells simultaneously in the slow rotating centrifuge microscope (NIZEMI) which allows one to observe the cells' swimming behavior during centrifugation accelerations between 1 g and 5 g. At 1 g the cells show a weak negative gravitaxis, which increases significantly at higher accelerations up to about 3 g. Though most cells were capable of swimming even against an acceleration of 4.5 g, the degree of gravitaxis decreased and some of the cells were passively moved downward by the acceleration force; this is true for most cells at 5 g. The velocity of cells swimming against 1 g is about 10% lower than that of cells swimming in other directions. The velocity decreases even more drastically in cells swimming against higher acceleration forces than those at 1 g. The degree of gravitactic orientation drastically decreases after short exposure to artificial UV radiation which indicates that gravitaxis may be due to an active physiological perception rather than a physical effect such as an asymmetry of the center of gravity within the cell.

Acceleration↗