СВЕТОДИОД БЕЛОГО СВЕЧЕНИЯ НА ОСНОВЕ НИТРИДА ЭЛЕМЕНТОВ III ГРУППЫ

    公开(公告)号:RU2392695C1

    公开(公告)日:2010-06-20

    申请号:RU2009115181

    申请日:2006-09-22

    Abstract: Изобретениеотноситсяк оптоэлектронике. Светодиодбелогосвечениясодержитслойполупроводника n-типа, однуилиболееструктурс квантовымиямами, сформированныхповерхслояполупроводника n-типа, слойполупроводника p-типа, сформированныйнаструктурес квартовымиямами, первыйэлектрод, сформированныйнаполупроводнике p-типа, ивторойэлектрод, сформированныйнапоменьшеймеречастислояполупроводника n-типа. Каждаяструктурас квантовымиямамивключаетв себяслойквантовойямы InxGa1-xN, слойбарьера InyGa1-yN (x>0,3 илих=0,3) иквантовыеточки InzGa1-zN, где x

    Vascular access device and guiding portion

    公开(公告)号:AU2013293613B2

    公开(公告)日:2017-10-12

    申请号:AU2013293613

    申请日:2013-07-26

    Abstract: According to various embodiments, a method and system to obtain access to a blood vessel underneath a skin layer that may preserve lifespan of the blood vessel and reduce executional skill variability may be provided. The method includes placing a guiding portion between the blood vessel and the skin layer; and configuring the guiding portion to receive and guide a needle to reach the same location of the blood vessel repeatedly and consistently; and forming a resultant scarred track between the blood vessel and the skin layer as the guiding portion is resorbed over time. The system includes a vascular access device configurable to first possess strength to penetrate through a tissue layer, subsequently possess flexibility to conform to the surrounding tissue beneath the tissue layer; and a guiding portion which may be resorbable, wherein the inlet includes a larger diameter compared to the outlet.

    Mesenchymal stem cell particles
    104.
    发明专利

    公开(公告)号:AU2014200380A1

    公开(公告)日:2014-02-06

    申请号:AU2014200380

    申请日:2014-01-22

    Inventor: LIM SAI KIANG

    Abstract: We describe a particle secreted by a mesenchymal stem cell and comprising at least one biological property of a mesenchymal stem cell. The biological property may comprise a biological activity of a mesenchymal stem cell conditioned medium (MSC-CM) such as cardioprotection or reduction of infarct size. The particle may comprise a vesicle or an exosome.

    Method of communication between functional blocks in a system-on-chip and system-on-chip thereof

    公开(公告)号:US12255997B2

    公开(公告)日:2025-03-18

    申请号:US17799898

    申请日:2020-02-26

    Abstract: There is provided a method of communication between functional blocks in a system-on-chip. The method includes: exchanging a respective public key between a first functional block and a second functional block in the system-on-chip (SoC) for a communication therebetween, the first functional block being a transmitter of the communication and the second function block being a receiver of the communication; generating, at the first functional block, a first code based on the public key of the second functional block; generating, at the second functional block, a second code based on the public key of the first functional block; obfuscating, at the first functional block, an address associated with the communication based on the first code to produce an obfuscated address; transmitting, at the first functional block, the obfuscated address to the second functional block via an interconnect communication infrastructure in the system-on-chip; receiving, at the second functional block, the obfuscated address from the first functional block via the interconnect communication infrastructure; and deobfuscating, at the second functional block, the obfuscated address received based on the second code to produce a deobfuscated address associated with the communication. There is also provided a corresponding system-on-chip.

    Post polymerization modification in flow

    公开(公告)号:US12227615B2

    公开(公告)日:2025-02-18

    申请号:US17934964

    申请日:2022-09-23

    Abstract: Techniques regarding post polymerization modifications to polycarbonate polymers via a flow reactor are provided. For example, one or more embodiments described herein can comprise a cyclic carbonate monomer that can be employed to facilitate polymerization of one or more polycarbonate platforms susceptible to post polymerization modification. For instance, one or more embodiments can regard a cyclic carbonate molecular backbone covalently bonded to an aryl halide functional group via in accordance with a chemical structure selected from the group consisting of: In the chemical structures, “R1” can be selected from the group consisting of a hydrogen atom and a functional group comprising a first alkyl group; “L” can represent a linkage group, comprising: a second alkyl group and an end group having at least one member selected from the group consisting of an oxygen atom and a nitrogen atom; and “A” can represent the aryl halide functional group.

    A METHOD OF TREATING ACUTE MYELOID LEUKEMIA

    公开(公告)号:US20250043270A1

    公开(公告)日:2025-02-06

    申请号:US18715366

    申请日:2022-11-30

    Abstract: There is provided a genetically modified cell wherein at least one gene has been deleted from the cell and the gene is selected from the group consisting of p50, p52, p65, c-Rel, and RelB. Also disclosed are methods of identifying a target for treating acute myeloid leukemia (AML) in a subject, methods of treating acute myeloid leukemia (AML) in a subject in need thereof, comprising inhibiting the activity of an NF-KB pathway. Also provided is an ATP13A2 inhibiting agent for use in therapy or medicine, for use in treating AML, and in the manufacture of a medicament for treating AML.

    MULTIMODAL MICROSCOPY SYSTEM
    108.
    发明申请

    公开(公告)号:US20250028159A1

    公开(公告)日:2025-01-23

    申请号:US18712553

    申请日:2022-11-23

    Abstract: Embodiments of the invention provide for a multimodal microscopy system. The multimodal microscopy system may include an illumination module configured to provide a light beam to a sample under test via a delivery path; and an optical arrangement configured to receive the light beam from the sample through a detection path to generate a microscopy image of the sample. The optical arrangement may be operable to switch among a plurality of imaging modalities using the detection path shared by the plurality of imaging modalities. The plurality of imaging modalities may include brightfield microscopy, fluorescent microscopy, and endoscopic microscopy. The multimodal microscopy system may be a multimodal hyperspectral microscopy system.

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