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Biomedical subjects

U Grossmann

Publications and source records attributed to U Grossmann.

15 recordsLinked to original sources

Application of ubiquitous computing in personal health monitoring systems.

A possibility to significantly reduce the costs of public health systems is to increasingly use information technology. The Laboratory for Information Processing Technology (ITIV) at the University of Karlsruhe is developing a personal health monitoring system, which should improve health care and at the same time reduce costs by combining micro-technological smart sensors with personalized, mobile computing systems. In this paper we present how ubiquitous computing theory can be applied in the health-care domain.

Computer Communication Networks↗

The nuclear membrane-associated honeycomb structure of the unicellular organism Amoeba proteus: on the search for homologies with the nuclear lamina of metazoa.

In the protozoon Amoeba proteus, a complex and highly organized structure with the morphology of a honeycomb is associated with the nucleoplasmic surface of the nuclear membrane. We have tested whether this structure exhibits similarity to the nuclear lamina of metazoic organisms. First, we have shown that the honeycomb layer is composed of 3 to 5 nm thick protein fibrils resistant to treatment with detergent, high salt, and digestion with nucleases, thus possessing properties typical for karyoskeletal elements. However, in contrast to the meshwork of lamin filaments in somatic cells of metazoic organisms, the honeycomb layer is not tightly anchored to the nucleoplasmic side of pore complexes, or to the inner nuclear membrane. Second, in microinjection experiments we investigated whether fluorescently labeled lamins of Xenopus laevis (lamins A and LI) and Drosophila melanogaster (lamin Dmo) were able to associate in vivo with the Amoeba proteus honeycomb structure. In microinjected amoeba these three lamins were efficiently transported into the nucleus, but did not associate with the nuclear envelope. Our results suggest that the Amoeba proteus nuclear envelope, including the honeycomb layer, does not contain proteins exhibiting high homologies to lamins of metazoan species thus preventing the localized assembly of microinjected lamins along the nuclear periphery.

3T3 Cells↗

[Plate osteosynthesis in femoral shaft fractures].

Between 1979 and 1988, 119 children with 123 femur shaft fractures were treated in the Department of Traumatology of the university-hospital of Freiburg. Traffic accidents were the reason in half of the cases. 19 children had multiple trauma and serious cranio-cervical traumata. In the case of 14 further children, additional limb fractures could be diagnosed, four of which were contralateral femur shaft fractures. More than half of the children with femur shaft fractures were treated by internal fixation. Only internal fixation by plate was employed. 32 children were operated upon at the day of the accident (49%). Children with solitary injuries could be treated as outpatients after 13 days. The implanted material could be removed after an average of 8.4 months. At the moment a reexamination of 31 operated cases (altogether 65 children with 69 fractures are operated) is performed. 30 children have excellent (18 patients) or good (12 patients) results. The healing process was complicated by delayed healing of the fracture (1 patient), plate fracture after 2 months (1 patient) and subcutaneous haematoma (2 patients). Osteitis did not occur.

Bone Plates↗