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Joachim Böttger

Publications and source records attributed to Joachim Böttger.

2 recordsLinked to original sources

Thoracoscopic thymectomy in the treatment concept for myasthenia gravis.

Myasthenia gravis (MG) is a chronic autoimmune disease that usually responds positively to treatment with thymectomy. Standard surgical procedures have been shown to result in a beneficial outcome. This Chapter includes discussions regarding what are controversial, and opinions as to what constitutes the optimal access to be used for thymectomy. In a prospective study conducted between 8/97 and 12/03, 137 patients with MG underwent thoracoscopic thymectomy, for which a left-sided approach was generally applied. An analysis of the intraoperative and postoperative course was performed, as well as of the impact of the surgical procedure on further development of the disease. The results obtained were compared with those published in the literature, with particular reference to results obtained with open surgery. The patients in this study were 96 females and 41 males, with a mean age of 35.8 (range: 9-83) years. The mean preoperative duration of the disease was 22.9 (range: 1-140) months. In 8 (5.8%) patients, the procedure was converted to an anterolateral thoracotomy or sternotomy. The postoperative morbidity rate was 5.8%, one (0.7) patient died and the mean follow up was 24.7 (range: 1-57) months. Complete remission was noted in 19.4%, and improvements reflected either in a reduction in the medication required or a decrease in symptom severity, in a total of 76.8%. Complete thoracoscopic thymectomy is a technically feasible operation, equally as effective as conventional open surgery. Remissions or symptomatic improvements were observed in more than 70% of the patients. The low morbidity rate, coupled with excellent cosmetic results, have led to increasing acceptance of the operation both by patients and Neurologists. Therefore, thoracoscopic thymectomy represents a new, alternative method for use in patients with MG.

Adolescent↗

Complex logarithmic views for small details in large contexts.

Commonly known detail in context techniques for the two-dimensional Euclidean space enlarge details and shrink their context using mapping functions that introduce geometrical compression. This makes it difficult or even impossible to recognize shapes for large differences in magnification factors. In this paper we propose to use the complex logarithm and the complex root functions to show very small details even in very large contexts. These mappings are conformal, which means they only locally rotate and scale, thus keeping shapes intact and recognizable. They allow showing details that are orders of magnitude smaller than their surroundings in combination with their context in one seamless visualization. We address the utilization of this universal technique for the interaction with complex two-dimensional data considering the exploration of large graphs and other examples.

Journal Article↗