8 results match your criteria: "Technische Universitt Dresden[Affiliation]"

Axis convergence in C. elegans embryos.

Curr Biol

December 2023

Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrase 108, Dresden 01037, Germany; Cluster of Excellence Physics of Life, Technische Universitӓt Dresden, Arnoldstrase 18, Dresden 01307, Germany; Center for Systems Biology Dresden, Pfotenhauerstrase 108, Dresden 01037, Germany. Electronic address:

Embryos develop in a surrounding that guides key aspects of their development. For example, the anteroposterior (AP) body axis is always aligned with the geometric long axis of the surrounding eggshell in fruit flies and worms. The mechanisms that ensure convergence of the AP axis with the long axis of the eggshell remain unresolved.

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Antimicrobial resistance (AMR) genes are widely disseminated on plasmids. Therefore, interventions aimed at blocking plasmid uptake and transfer may curb the spread of AMR. Previous studies have used CRISPR-Cas-based technology to remove plasmids encoding AMR genes from target bacteria, using either phage- or plasmid-based delivery vehicles that typically have narrow host ranges.

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The environment plays a critical role in the development, dissemination, and transmission of antimicrobial resistance (AMR). Pharmaceuticals and personal care products (PPCPs) enter the environment through direct application to the environment and through anthropogenic pollution. Although there is a growing body of evidence defining minimal selective concentrations (MSCs) of antibiotics and the role antibiotics play in horizontal gene transfer (HGT), there is limited evidence on the role of non-antibiotic PPCPs.

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Purpose: To report on experimental results of a high spatial resolution silicon-based detector exposed to therapeutic quality proton beams in a 0.95 T transverse magnetic field. These experimental results are important for the development of accurate and novel dosimetry methods in future potential real-time MRI-guided proton therapy systems.

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(HO)SbBr: the first member of the MEX structure family with oxonium cations.

Acta Crystallogr C Struct Chem

December 2016

Department of Chemistry and Food Chemistry, Technische Universitt Dresden, Helmholtzstrasse 10, Dresden, Sachsen 01069, Germany.

(HO)SbBr [trihydroxonium enneabromidodiantimonate(III)] is the first representative of the MEX family (M = cation, E = Sb and Bi, and X = Br and I) with oxonium cations. The metastable compound was obtained in trace amounts from a solution of CsBr and SbBr in concentrated aqueous HBr. Single crystals were isolated from the mother liquor and investigated by single-crystal X-ray diffraction at 100 K.

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Motivation: It has been recognized that the topology of molecular networks provides information about the certainty and nature of individual interactions. Thus, network motifs have been used for predicting missing links in biological networks and for removing false positives. However, various different measures can be inferred from the structure of a given network and their predictive power varies depending on the task at hand.

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Cancer stem cells and radiotherapy.

Int J Radiat Biol

May 2009

Department of Radiation Oncology, Medical Faculty and University Hospital Carl Gustav Carus, Technische Universitt Dresden, Germany.

Purpose: The present work summarises the history and current status of research into the importance of cancer stem cells for radiobiological research and for clinical radiation oncology. An effort is made to differentiate clonogenicity from stemness of cancer cells.

Conclusion: In radiooncology, cancer stem cells have been an important research field for five decades.

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[Miniature assistance module for robot-assisted heart surgery].

Biomed Tech (Berl)

March 2003

Institut für Feinwerktechnik, Technische Universitt Dresden, 01062 Dresden, Deutschland.

During the robotic enhanced minimally invasive cardiac surgery the approach to and the space for handling instruments in the operating field are usually reduced, compared to the conventional surgery. Additional well knewn problems are the restricted capability available for accessories into and out of the closed chest and the limited assistance during the cardiac procedure. This paper is presenting two solutions of Miniature Modules for supporting the surgeon inside the closed chest.

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