Abstract: Radically polymerizable dental material, which contains at least one compound of Formula I: The material preferably additionally contains a radically polymerizable monomer, an initiator for the radical polymerization and filler. It is characterized by a low polymerization contraction stress.
Type:
Grant
Filed:
July 9, 2015
Date of Patent:
July 9, 2019
Assignees:
Ivoclar Vivadent AG, Technische Universität Wien
Inventors:
Norbert Moszner, Urs-Karl Fischer, Iris Lamparth, Peter Burtscher, Robert Liska, Christian Gorsche, Konstanze Seidler, Paul Gauss
Abstract: Contacting apparatus for contacting an energy storage cell (1) comprising at least one printed circuit board (5) which is provided for discharging the electrical energy stored in the energy storage cell (1), wherein at least one electric pole of the energy storage cell (1) is pressed by a releasable mechanical connection (7) with a specific contact pressing force against an electrically conductive layer (5c) of the at least one printed circuit board (5) which is located on a front side of the at least one printed circuit board (5) facing the energy storage cell (1).
Abstract: The present invention provides compounds binding to neuropathological aggregates of peptides or proteins, including aggregates such as neurofibrillary tangles (NFTs), osynuclein aggregates and other amyloid aggregates. The compounds of the present invention are useful for the detection and/or diagnosis of disorders associated with such neuropathological aggregates. In further aspects, the invention provides diagnostic compositions comprising these compounds, and methods for the preparation of radiolabeled compound from non-radiolabeled precursors.
Abstract: A production device for layer-by-layer manufacture of a three-dimensional object, comprising a feeding device for feeding in of a starting material, and an application device for melting the starting material and for layer-by-layer shaping of the melted starting material into the object, wherein the feeding device comprises a drying device for drying of the starting material, or a drying device is connected upstream of the feeding device.
Type:
Application
Filed:
August 8, 2017
Publication date:
June 13, 2019
Applicant:
Technische Universität München
Inventors:
Stefan FISCHER, Sebastian Tobias PAMMER, Stefan LEONHARDT, Miriam HAERST
Abstract: Method for managing available communication resources in a communication network and node (100, 200) for a communication network The invention concerns a method for managing signaling duties in a communication network and a node for a communication network, the node comprising a resource management. The method comprises using at least one signaling duty concerning a requested service for allocating corresponding communication resource of one of the nodes (200), the signaling duty being assigned to a different, further node (100) and the one node (200) being capable for at least partly providing the service. The method further comprises using the one node and the further node for determining a compensation and providing the compensation to said one node.
Type:
Grant
Filed:
September 7, 2016
Date of Patent:
June 4, 2019
Assignee:
Technische Universität Dresden
Inventors:
Eduard Jorswieck, Siddharth Naik, Janis Nötzel
Abstract: The invention relates to a zeolitic material comprising zeolitic monocrystals, each of which has a pore system encompassing at least one micropore system and at least one macropore system, and to a method for producing a zeolitic material of said type. In said method, porous oxide particles are converted into the zeolitic material in the presence of an organic template and steam.
Type:
Grant
Filed:
August 21, 2015
Date of Patent:
May 28, 2019
Assignees:
Friedrich-Alexander-Universität Erlangen-Nürnberg, Technische Universität Clausthal
Inventors:
Albert Gonche Fortunatus Machoke, Alexandra Inayat, Wilhelm Schwieger, Ana Maria Beltrán Custodio, Erdmann Spiecker, Robert Güttel, Nadine Kruse
Abstract: The disclosure refers to a synthesis filter bank, comprising: a transform module which is configured to receive a plurality of input signals, transform the plurality of input signals, and output a plurality of transformed signals, a plurality of filter modules, which are coupled to the transform module, and wherein each filter module of the plurality of filter modules is configured to receive two transformed signals from the transform module, process the two received transformed signals and output two processed signals, and a parallel-to-serial module which is coupled to the plurality of filter modules and which is configured to receive the processed signals from the plurality of filter modules, combine the received processed signals and output a combined signal. Furthermore, an analysis filter bank, a filter bank and methods for operating a synthesis filter bank and for operating an analysis filter bank are disclosed.
Type:
Application
Filed:
December 16, 2016
Publication date:
February 14, 2019
Applicant:
Technische Universität München
Inventors:
Leonardo Gomes Baltar, Israa Slim, Josef A. Nossek
Abstract: The invention relates to a sample carrier for a sample (70). Said sample carrier comprises a supporting base (10), a carriage (20) having a receiving region (30) for the sample (70), the carriage (20) being supported on the supporting base (10), a guide (40), the carriage (20) being movably arranged along the guide (40), and a disc (60) that is rotationally movable about an axis of rotation (50), said disc being operatively connected to the carriage (20), wherein a center (65) of the disc (60) is located outside of the axis of rotation (50).
Abstract: The invention relates to a method and means for diagnosing tumors, in particular for an early diagnosis (prevention) and for differentiating between benign and malignant tumors using a PCR, in particular in bodily fluids. The method according to the invention is characterized by a combination of a pre-amplification process using a PCR, wherein methylated DNA sequences are amplified more strongly than non-methylated DNA sequences, and a subsequent quantification process using a special digital PCR, in which significantly more DNA is used than normally in the prior art. As comparison data indicates, the invention advantageously allows a clear reliable conclusion as to whether a malignant tumor disease is present or not. The invention is suitable for screening (prevention), monitoring the progress of a tumor disease, in particular to order to exclude a minimal residual disease (MRD), and for a differential diagnosis between malignant carcinoma and benign tumors.
Type:
Application
Filed:
December 22, 2016
Publication date:
January 10, 2019
Applicant:
Technische Universität Dresden
Inventors:
Mario MENSCHIKOWSKI, Albert HAGELGANS, Gabriele SIEGERT
Abstract: The invention is directed to a novel method for measuring contraction characteristics of engineered heart tissue constructs (16) which is based on the mechanical coupling of the construct (16) to a support element (8) which comprises or is mechanically coupled to a piezoelectric element (10). An apparatus (1) for carrying out the method of the invention is also provided.
Type:
Grant
Filed:
March 25, 2014
Date of Patent:
January 8, 2019
Assignees:
Universitätsklinikum Hamburg-Eppendorf, Technische Universität Hamburg-Harburg
Inventors:
Thomas Eschenhagen, Ingra Mannhardt, Jörg Müller, Christoph Warncke, Jördis Weiser
Abstract: A system and method for the evaluation of hearing implant signal processing is described. A cochlear implant signal processor converts a speech signal input into multi-channel stimulation pulse sequences for a cochlear implant electrode array. A temporal feature processing module extracts temporal feature information from the stimulation pulse sequences. A speech recognition engine evaluates the temporal information using automatic speech recognition to produce speech recognition outputs corresponding to the speech signal input.
Type:
Grant
Filed:
October 6, 2014
Date of Patent:
January 1, 2019
Assignees:
MED-EL Elektromedizinische Geraete GmbH, Technische Universität München
Abstract: Radically polymerizable dental material, which contains at least one sulphonic acid ester of Formula 1: in which A is H, CN, an aromatic, cycloaliphatic, linear or branched aliphatic C1-C30-hydrocarbon radical or a combination thereof; X is COO— or —CON(R1)— or is absent; B is an aromatic, cycloaliphatic, linear or branched aliphatic C1-C30-hydrocarbon radical, or a combination thereof; R1 is hydrogen or an aromatic, cycloaliphatic, linear or branched aliphatic C1-C10-hydrocarbon radical; m is an integer from 1 to 6, n is an integer from 1 to 6 and p is an integer from 1 to 6; wherein m and p cannot simultaneously be greater than 1. The compounds of Formula 1 are active as chain transfer agents in radical polymerization.
Type:
Application
Filed:
May 2, 2016
Publication date:
December 27, 2018
Applicant:
Technische Universität Wien
Inventors:
Norbert Moszner, Iris Lamparth, Urs Karl Fischer, Kai Rist, Peter Burtscher, Robert Liska, Christian Gorsche, Konstanze Seidler
Abstract: The present invention relates to a method for preparing an expression vector encoding a well-tolerated and highly specific tailored recombinase, which tailored recombinase is capable of recombining asymmetric target sequences within the long terminal repeat (LTR) of proviral DNA of a plurality of retrovirus strains which may be inserted into the genome of a host cell, as well as to the obtained expression vector, cells transfected with these, expressed recombinase and pharmaceutical compositions comprising the expression vector, cells and/or recombinase. Pharmaceutical compositions are useful, e.g., in treatment and/or prevention of retrovirus infection, in particular, HIV infection. In particular, the invention relates to well-tolerated and highly specific tailored recombinases capable of combining asymmetric target sequences in a more than 90% of HIV-strains, thereby excising the HIV-1 sequences, and expression vectors encoding them.
Type:
Grant
Filed:
September 1, 2015
Date of Patent:
December 11, 2018
Assignees:
Heinrich-Pette-Institut Leibniz-Institut für Experimentelle Virologie-Stiftung bürgerlichen Rechts, Technische Universität Dresden
Inventors:
Joachim Hauber, Jan Chemnitz, Frank Buchholz, Janet Karpinski
Abstract: The invention relates to a device (100; 200; 300; 400) for analyzing biological substances in a test solution, comprising a test substrate (101; 203; 303; 401) which is transparent at least in part, having a test region (107a, 108a, 109a, 110a; 211; 411) for receiving the test solution, a plurality of electrodes (111, 106; 201, 202; 301, 302; 402, 403) which are arranged on the test substrate (101; 203; 303; 401) and extend into the test region (107a, 108a, 109a, 110a; 211; 411), wherein in each case, at least one portion of the electrodes (111, 106; 201, 202; 301, 302; 402, 403) is made of a transparent material.
Type:
Grant
Filed:
September 30, 2016
Date of Patent:
December 4, 2018
Assignee:
Technische Universität München
Inventors:
Paolo Lugli, Vijay Deep Bhatt, Katharina Melzer
Abstract: The invention relates to a method (1) for designing and dimensioning a new part (2) of a motor vehicle (3). All of the motor vehicles (5) of a motor vehicle fleet (6) have a reference part (4) with an identical structure, and the reference parts (4) and the new part (2) are of the same component type. Load spectra and damage levels of the reference parts of all the motor vehicles (5) of the motor vehicle fleet (6) are continuously ascertained on the basis of sensor and vehicle state information available in each motor vehicle (5) using specified algorithms. The load spectra and damage levels are stored in a central database (9). A reference stress on a component of the component type is ascertained regularly on the basis of the load spectra and damage levels provided in the central database (9) at a specific point in time for the reference parts (4) of all of the motor vehicles (5) of the vehicle fleet (6). The new part (2) is designed and dimensioned while taking into consideration the reference stress.
Type:
Application
Filed:
November 11, 2016
Publication date:
November 29, 2018
Applicant:
Technische Universität Darmstadt
Inventors:
Stéphane Foulard, Stephan Rinderknecht, Rafael Fietzek
Abstract: The present invention relates to a hydrophobic cement-based material composition comprising a bacterial biofilm, or at least one hydrophobicity-conveying component of a bacterial biofilm, an additive for a cement-based material composition comprising a bacterial biofilm or at least one hydrophobicity-conveying component of a bacterial biofilm and the use of such biofilm or component therefore for decreasing the wettability of a cement-based material.
Type:
Application
Filed:
October 18, 2016
Publication date:
November 22, 2018
Applicant:
Technische Universität München
Inventors:
Oliver Lieleg, Dionis Minev, Christian Grosse
Abstract: Positioning structures in at least one indentation present on a or in a support, wherein said indentation is an indentation having a diameter in the nanometer range, makes it possible to position the structure in the indentation substantially centrally with defined orientation. A support having at least one indentation, wherein the indentation has a size in the nanometer range, includes a predetermined structure which is arranged substantially centrally within said indentation and which optionally has a functional unit diametrically opposite to the side pointing to the bottom surface. The arrangement is especially suitable for single molecule analysis and, here especially, for single molecule sequencing and other high-throughput methods.
Type:
Grant
Filed:
April 16, 2015
Date of Patent:
October 16, 2018
Assignee:
Technische Universität Braunschweig
Inventors:
Philip Tinnefeld, Guillermo Acuna, Enrico Pibiri
Abstract: The disclosure relates to a manually operable tactile input/output device for a data processing system, in particular a tactile computer mouse, which is configured with a housing and a plurality of actuators in operative connection with the housing and in which the actuators are arranged and jointly controlled in the housing to cause at least temporarily a tactile perception by a user in manual contact with the housing, by which simultaneously at least two and in particular all five tactile perception dimensions of microscopic roughness, macroscopic roughness, friction, hardness and heat are simulated. Furthermore, the disclosure relates to an operating method for a manually operable tactile input/output device and a data processing system.
Type:
Application
Filed:
February 12, 2018
Publication date:
September 20, 2018
Applicant:
Technische Universität München
Inventors:
Matti Strese, Kevin Kuonath, Andreas Noll, Eckehard Steinbach, Martin Piccolrovazzi
Abstract: The present invention relates to a new fusion gene, KIAA0368-ROBO2, and the use thereof in methods for diagnosing cancer, in particular a glioblastoma in a subject, wherein the presence and/or expression of said fusion gene in a sample derived from said subject is determined, and wherein the presence or expression of said fusion gene is attributed to the presence of a glioblastoma in said patient. Also methods for the identification of compounds useful in the medical intervention of glioma, in particular glioblastoma, are provided. Accordingly, the present invention also relates to diagnostic means as well as to the medical intervention in cancer, like glioma and in particular glioblastoma. The invention further relates to the use of the fusion gene for diagnosing and/monitoring of tumor progression, preferably of the progression of brain tumors, as well as for the subclassification of brain tumors and other proliferative diseases.
Type:
Grant
Filed:
January 22, 2015
Date of Patent:
September 18, 2018
Assignee:
Technische Universitat Dresden
Inventors:
Barbara Klink, Khalil Abouelaradat, Evelin Schroeck
Abstract: A method for manufacturing metal structures for the electrical connection of components comprises the following steps: depositing an auxiliary layer on a substrate; structuring the auxiliary layer in a manner such that the substrate is exposed at least one environment which is envisaged for the metal structures; depositing a galvanic starting layer on the structured auxiliary layer; depositing a lithography layer on the galvanic starting layer and structuring the lithography layer in a manner such that the galvanic starting layer is exposed at least one location envisaged for the metal structure; galvanically depositing the at least one metal structure at the at least one exposed location; removing the structured auxiliary layer. An electronic component is also described.
Type:
Grant
Filed:
January 5, 2017
Date of Patent:
September 11, 2018
Assignees:
Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V., Technische Universität Berlin
Inventors:
Martin Wilke, Kai Zoschke, Markus Wöhrmann, Thomas Fritzsch, Hermann Oppermann, Oswin Ehrmann