Abstract:
A percutaneous implant serves for implantation into an animal or a human body. The implant is of the kind that has an axial interior section for fixation inside the body, an axial exterior section in communication with the interior section and extending outwards from the body with a free end. The free end of the exterior section serves for mounting of a detachable device. A distal end of the interior section opposite the exterior section is provided with an anchoring section, extending radially from the distal end of the interior section. The anchoring section comprises an inner anchoring ring extending from or integral with the interior section, an outer anchoring ring, and at least one connection member for connecting the inner anchoring ring with the outer anchoring ring. Since a first connection point between a first end of the at least one connection member and the inner anchoring ring is angularly offset from a second connection point between a second end of the connection member and the outer anchoring ring, the anchoring section constitutes a resilient spring means, which adapts to the movements of the body. The implant is especially designed for use without externalization of the vessel to be brought into communication with the exterior.
Abstract:
The present invention relates to cell plans and cell plan changes in point to multipoint systems (PMP). A cell plan arrangement is provided comprising cells having four 90° sectors to which individual sector at least one of four orthogonal channels, such as channels distinguished by two frequencies and two polarisations, are allocated. A method is furthermore provided allowing gradual sector-by-sector migration into a 45° sector cell plan. The cell plan offers advantageous carrier to interference ration (C/I) improvements.
Abstract:
The present invention relates to new compounds of formula I, to pharmaceutical formulations containing the compounds, and to the use of the compounds in the prevention and/or treatment of mGluR5 receptor-mediated disorders.
Abstract:
A stacked patch antenna comprising two metallic patches (210, 240) stacked on top of each other. The middle patch (210) comprises at least two conductors (224, 234) at or close to its edge (212), which conductors are intended to be connected to a ground plane (200) to thereby ground the patch in two places. The top patch (240) comprises at least two conductors (254, 264) at or close to its edge (242) which electrically interconnect the two patches. The middle patch is fed at a feed area (219) which is at least proximate its geometric center. The middle patch further comprises at least two apertures (220, 230) completely within its circumference (212), i.e. each aperture having a respective unbroken circumference (232, 242). Thereby enabling radiation from slots (214, 216, 244, 246) defined by the edge of the top patch and the edge of the middle patch and defined by the edge of the middle patch and the ground plane.
Abstract:
A syntactic analysis unit 104 performs a syntactic analysis for linguistic information on acquired user speech. A non-linguistic information analysis unit 106 analyzes non-linguistic information for the acquired user speech, the non-linguistic information being different from the linguistic information. A filler length determination unit 120 determines a length of a filler according to a non-linguistic information analysis result. A filler generation unit 130 generates a filler having a length corresponding to a result of a determination by the filler length determination unit 120. The filler length determination unit 120 determines that a long filler should be generated when a syntactic analysis result needs to be used to generate a response and, otherwise, determines that a short filler should be generated. The voice output unit 150 outputs the response generated by the response generation unit 140 after outputting the filler.
Abstract:
The present invention relates to an antenna arrangement (100) comprising an antenna part comprising at least two antenna means, each with a number of first antenna elements having a first polarization and a number of second antenna elements having a second polarization different from said first polarization, said antenna part further comprising antenna part ports. There are two antenna part ports for each antenna means, one antenna part port for each polarization, and the antenna arrangement (100) further comprises polarization controlling means (30), comprising a distribution network, to which the antenna part ports are connected, and which includes at least a main forming network with external interface antenna ports (301,302,303,304). The polarization controlling means (30) is configured to connect antenna part ports and external interface antenna ports (301, 302, 303, 304).
Abstract:
The present invention relates to a node in a wireless communication system, the node comprising at least a first, a second and a third antenna function. A first and second downlink signal, and a first and second uplink signal are transferred via said antenna functions, which together form a first total antenna function and a second total antenna function. The first and second downlink signals are transferred via the first total antenna function, and the first and second uplink signal are transferred via the second total antenna function. The second downlink signal and the second uplink signal are transferred via a common connection connected to a filter means which is arranged for separating these signals to connect them to different antenna functions. The present invention also relates to a corresponding method.
Abstract:
The present invention discloses novel compounds useful for the inhibition of IL-6/STAT signaling and/or PI3K/NF-κB signaling in the treatment of associated diseases or conditions, e.g. cancer. A pharmaceutical composition comprising such novel compounds, its use and a method thereof, is also disclosed.
Abstract:
The present invention relates to a node (1) in a wireless communication system comprising at least one antenna arrangement (2). The antenna arrangement (2) comprises at least a first antenna part (3) and a second antenna part (4), each antenna part (3, 4, 5) having a longitudinal extension along which extension a corresponding column axis (6, 7, 8) runs. The column axis divides each antenna part in two longitudinal sub-parts. Each antenna part (3, 4, 5) further comprises at least three antenna elements (9, 10, 11, 12, 13, 14) distributed along said column axis (6, 7, 8) and being connected to a corresponding antenna port arrangement (15, 16, 17). For each antenna part (3, 4, 5), at least one (10, 12, 14) of said antenna elements is positioned on said column axis (6, 7, 8), and at least one (9, 11, 13) of said antenna elements is positioned separate from said column axis (6, 7, 8).
Abstract:
The present invention relates to an antenna comprising multiple array elements with a first and second feeding point, each associated with orthogonal polarizations, each array element has a first and second phase centre each associated with the orthogonal polarizations, the first and second phase centres of said array elements are arranged in at least two columns, and one antenna port connected to the first and second feeding points of at least two array elements with first phase centre and second phase centre arranged in the at least two columns via a respective feeding network. The feeding network comprises a beam forming network having a primary connection, connected to the antenna port, and at least four secondary connections. The beam forming network divides power between the first feeding point and the second feeding point and controls phase shift differences between the respective feeding points with phase centre arranged in different columns.