Self-setting absorbable polymeric cyanoacrylate composites and applications thereof
    1.
    发明申请
    Self-setting absorbable polymeric cyanoacrylate composites and applications thereof 有权
    自凝可吸收聚合氰基丙烯酸酯复合材料及其应用

    公开(公告)号:US20070123603A1

    公开(公告)日:2007-05-31

    申请号:US11601994

    申请日:2006-11-20

    IPC分类号: A61K6/083

    摘要: Self-setting, bioactive, absorbable, polymeric cyanoacrylate composites include at least 20 percent weight/volume of inorganic phosphate microparticulate fillers and are capable of the controlled release of bone mineralizing ions, antimicrobials, and bone growth promoters. Such composites are useful as bone cements, fillers, and/or substitutes.

    摘要翻译: 自制,生物活性,可吸收的聚合氰基丙烯酸酯复合材料包括至少20%重量/体积的无机磷酸盐微粒填料,并且能够控制骨矿化离子,抗微生物剂和骨生长促进剂的释放。 这样的复合材料可用作骨水泥,填料和/或替代物。

    Semi-transparent time division multiplexer/demultiplexer
    3.
    发明授权
    Semi-transparent time division multiplexer/demultiplexer 有权
    半透明时分复用器/解复用器

    公开(公告)号:US07573809B2

    公开(公告)日:2009-08-11

    申请号:US11016840

    申请日:2004-12-21

    IPC分类号: H04J3/14 H04J3/04

    摘要: A semi-transparent time division multiplexer/demultiplexer that transmits low rate tributaries from one location to another using a high rate aggregate connection, while preserving substantially all of the TOH and payload for each tributary signal. Transparency of the tributary TOH is accomplished by interleaving both the TOH and the Payload of each tributary into the high rate aggregate signal. Some TOH bytes may be tunneled or re-mapped into unused/undefined TOH locations in the aggregate signal to allow transparency of the TOH without corrupting the aggregate. Errors may be handled by tunneling BIP bytes into unused/undefined aggregate locations and updating the tunneled bytes with error masks calculated at each network elements. Alternatively errors may be forwarded by using an error mask generated from the tributary BIP locations and inserting the mask into the associated aggregate BIP locations. The mask in the aggregate BIP is updated with error masks calculated at each network elements.

    摘要翻译: 半透明时分多路复用器/解复用器,其使用高速率聚合连接将低速率支路从一个位置发送到另一个位置,同时保留每个支路信号的基本上所有的TOH和有效载荷。 支流TOH的透明度通过将每个支路的TOH和有效载荷两者交织到高速率聚合信号中来实现。 一些TOH字节可以被隧道化或重新映射到聚合信号中的未使用/未定义的TOH位置,以允许TOH的透明度而不破坏聚合。 可以通过将BIP字节隧穿到未使用/未定义的聚合位置并通过在每个网络元素处计算出的错误掩码来更新隧道字节来处理错误。 或者,可以通过使用从支路BIP位置生成的错误掩码并将掩模插入相关联的聚合BIP位置来转发错误。 通过在每个网络元素计算的错误掩码更新聚合BIP中的掩码。

    Semi-transparent time division multiplexer/demultiplexer
    4.
    发明授权
    Semi-transparent time division multiplexer/demultiplexer 有权
    半透明时分复用器/解复用器

    公开(公告)号:US06870860B1

    公开(公告)日:2005-03-22

    申请号:US09552109

    申请日:2000-04-19

    摘要: A semi-transparent time division multiplexer/demultiplexer that transmits low rate tributaries from one location to another using a high rate aggregate connection, while preserving substantially all of the TOH and payload for each tributary signal. Transparency of the tributary TOH is accomplished by interleaving both the TOH and the Payload of each tributary into the high rate aggregate signal. Some TOH bytes may be tunneled or re-mapped into unused/undefined TOH locations in the aggregate signal to allow transparency of the TOH without corrupting the aggregate. Errors may be handled by tunneling BIP bytes into unused/undefined aggregate locations and updating the tunneled bytes with error masks calculated at each network elements. Alternatively errors may be forwarded by using an error mask generated from the tributary BIP locations and inserting the mask into the associated aggregate BIP locations. The mask in the aggregate BIP is updated with error masks calculated at each network elements. Re-timing of TOH to a synchronized clock in the tributary framer circuits can be accomplished using controlled slips of overhead frames, whereby an entire frame is dropped or added depending on the relationship of the received clock and the synchronized clock. DCC bytes may be re-timed by adding or deleting flag bytes occurring between respective DCC packets. Re-timing of the aggregate TOH to a transmit clock may be accomplished in a similar manner.

    摘要翻译: 半透明时分多路复用器/解复用器,其使用高速率聚合连接将低速率支路从一个位置发送到另一个位置,同时保留每个支路信号的基本上所有的TOH和有效载荷。 支流TOH的透明度通过将每个支路的TOH和有效载荷两者交织到高速率聚合信号中来实现。 一些TOH字节可以被隧道化或重新映射到聚合信号中的未使用/未定义的TOH位置,以允许TOH的透明度而不破坏聚合。 可以通过将BIP字节隧穿到未使用/未定义的聚合位置并通过在每个网络元素处计算出的错误掩码来更新隧道字节来处理错误。 或者,可以通过使用从支路BIP位置生成的错误掩码并将掩模插入相关联的聚合BIP位置来转发错误。 通过在每个网络元素计算的错误掩码更新聚合BIP中的掩码。 支路成帧器电路中TOH到同步时钟的重新定时可以使用开销帧的受控滑动来实现,由此根据所接收的时钟和同步时钟的关系,整个帧被丢弃或相加。 可以通过添加或删除在相应DCC分组之间发生的标志字节来重新定时DCC字节。 聚合TOH到发送时钟的重新定时可以以类似的方式实现。

    Band dependent linearization for multiband remotely sensed and aerial imagery
    6.
    发明授权
    Band dependent linearization for multiband remotely sensed and aerial imagery 有权
    多频带遥感和航空影像的带依赖线性化

    公开(公告)号:US08781224B2

    公开(公告)日:2014-07-15

    申请号:US13484056

    申请日:2012-05-30

    摘要: A system for processing a multiband image, including digital computer memory for storing a multiband image having multiple bands of image data; and processing circuitry for processing the multiband image, wherein the processing circuitry (a) determines pixel locations in the bands of the multiband image having values above the band-specific white value threshold for each of the bands of the multiband image, (b) determines a band-specific correction factor for each of plural bands of the multiband image based on the determined pixel locations, and (c) applies the corresponding band-specific correction factor to the respective plural bands of the multiband image to produce a corrected image.

    摘要翻译: 一种用于处理多频带图像的系统,包括用于存储具有多个图像数据带的多频带图像的数字计算机存储器; 以及用于处理所述多频带图像的处理电路,其中所述处理电路(a)确定所述多频带图像的所述频带中的像素位置具有高于所述多频带图像的每个频带的频带特定白值阈值的值,(b)确定 基于所确定的像素位置对所述多频带图像的多个频带中的每一个频带进行频带特定校正因子,以及(c)将相应的频带专用校正因子应用于多频带图像的相应多个频带以产生校正图像。

    Band Dependent Linearization for Multiband Remotely Sensed and Aerial Imagery
    7.
    发明申请
    Band Dependent Linearization for Multiband Remotely Sensed and Aerial Imagery 有权
    多频段遥感和航空影像的带依赖线性化

    公开(公告)号:US20130322751A1

    公开(公告)日:2013-12-05

    申请号:US13484056

    申请日:2012-05-30

    IPC分类号: G06K9/36

    摘要: A system for processing a multiband image, including digital computer memory for storing a multiband image having multiple bands of image data; and processing circuitry for processing the multiband image, wherein the processing circuitry (a) determines pixel locations in the bands of the multiband image having values above the band-specific white value threshold for each of the bands of the multiband image, (b) determines a band-specific correction factor for each of plural bands of the multiband image based on the determined pixel locations, and (c) applies the corresponding band-specific correction factor to the respective plural bands of the multiband image to produce a corrected image.

    摘要翻译: 一种用于处理多频带图像的系统,包括用于存储具有多个图像数据带的多频带图像的数字计算机存储器; 以及用于处理所述多频带图像的处理电路,其中所述处理电路(a)确定所述多频带图像的所述频带中的像素位置具有高于所述多频带图像的每个频带的频带特定白值阈值的值,(b)确定 基于所确定的像素位置对所述多频带图像的多个频带中的每一个频带进行频带特定校正因子,以及(c)将相应的频带专用校正因子应用于多频带图像的相应多个频带以产生校正图像。

    MOWER BLADE WITH HEXAGONAL APERTURE
    9.
    发明公开

    公开(公告)号:US20240049630A1

    公开(公告)日:2024-02-15

    申请号:US17886826

    申请日:2022-08-12

    申请人: Michael Vaughn

    发明人: Michael Vaughn

    IPC分类号: A01D34/73

    CPC分类号: A01D34/733 A01D2101/00

    摘要: Mower blades are provided having a hexagonal central aperture configured such that a variety of retaining plates can pass through the aperture. This allows the mower blade to function with replaceable-blade mower systems having any of a variety of retaining-plate shapes, including both symmetric and asymmetric retaining-plate shapes, including S-shaped retaining plates.

    Semi-transparent time division multiplexer/demultiplexer

    公开(公告)号:US20050141569A1

    公开(公告)日:2005-06-30

    申请号:US11016840

    申请日:2004-12-21

    摘要: A semi-transparent time division multiplexer/demultiplexer that transmits low rate tributaries from one location to another using a high rate aggregate connection, while preserving substantially all of the TOH and payload for each tributary signal. Transparency of the tributary TOH is accomplished by interleaving both the TOH and the Payload of each tributary into the high rate aggregate signal. Some TOH bytes may be tunneled or re-mapped into unused/undefined TOH locations in the aggregate signal to allow transparency of the TOH without corrupting the aggregate. Errors may be handled by tunneling BIP bytes into unused/undefined aggregate locations and updating the tunneled bytes with error masks calculated at each network elements. Alternatively errors may be forwarded by using an error mask generated from the tributary BIP locations and inserting the mask into the associated aggregate BIP locations. The mask in the aggregate BIP is updated with error masks calculated at each network elements. Re-timing of TOH to a synchronized clock in the tributary framer circuits can be accomplished using controlled slips of overhead frames, whereby an entire frame is dropped or added depending on the relationship of the received clock and the synchronized clock. DCC bytes may be re-timed by adding or deleting flag bytes occurring between respective DCC packets. Re-timing of the aggregate TOH to a transmit clock may be accomplished in a similar manner.