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T Welzel

Publications and source records attributed to T Welzel.

3 recordsLinked to original sources

[Does the result of thrombolysis with recombinant tissue-type plasminogen activator (rt-PA) in rabbits depend on the erythrocyte- and fibrin-content of a thrombus?].

PURPOSE: It is known from autopsy studies that thromboembolic stroke can be caused by red, white and mixed clots. We therefore examined whether the efficacy of thrombolysis with recombinant tissue-type plasminogen activator (rt-PA) depends on the proportions of fibrin and erythrocytes within thromboembolic material. METHODS: In 23 rabbits intraarterial thrombolysis with 3 mg rt-PA/kg body weight was started 30 minutes after middle cerebral artery occlusion with either red or white autologous emboli 20 hours old. 20 rabbits served as control. Cerebral perfusion was monitored by MRI. RESULTS: rt-PA enhanced lysis of red but not of white emboli and decreased the infarct volume only if vascular occlusion was due to red emboli (p <.01). Cerebral perfusion improved only in the red treatment group where the normalized first moment (NFM) decreased (p <.05) and the relative regional cerebral blood volume (rrCBV) reached normal values (p <.05). CONCLUSION: We suggest that in our animal model the efficacy of thrombolysis increases with the proportion of erythrocytes within thromboembolic material and decreases with its content of fibrin. lf these findings would also be applicable to patients, pretherapeutic estimation of the efficacy of thrombolysis might become feasible because the CT values of red and white thrombi differ.

Animals↗

[Processing medical image data for head surgery].

Three-dimensional models of the patient's anatomy are the basis for modern applications in computer-assisted surgery or radiology. To create these models the data is processed in a series of steps that transforms the initial raw data (generally CT/MRT volume images) into the three-dimensional models (e.g. triangle meshes). In doing so, a multitude of parameters adjustments, interactions and decisions are necessary to be made by the physician in order to create the models adapted to the specific needs of the patient and to the surgery. The quality of the models therefore strongly depends on that process chain. As a result of the high requirements on the quality and security of a clinical application the quality of the models itself and the capability to use them flexibly are essential. This work present a method to adjust and optimise the creation of the models and to asses their quality afterwards.

Artifacts↗