FULL-AUTOMATIC MICROORGANISM DETECTING ENRICHMENT SYSTEM AND ENRICHMENT METHOD THEREOF
    1.
    发明申请
    FULL-AUTOMATIC MICROORGANISM DETECTING ENRICHMENT SYSTEM AND ENRICHMENT METHOD THEREOF 审中-公开
    全自动微生物检测系统及其丰富方法

    公开(公告)号:US20170029760A1

    公开(公告)日:2017-02-02

    申请号:US15106930

    申请日:2014-12-31

    申请人: Gang NIU Huashan WANG

    发明人: Gang NIU

    摘要: A full-automatic microorganism detecting enrichment system and the enrichment method thereof are provided. A transmission apparatus is controlled by a industrial control computer to transmit a to-be-detected sample placed on a preset operating position, a culture medium comprising culture, a pipeline filter specially for collecting bacteria and a filter head sequentially into a sterilization cabin, an middle package removing cabin, an inner package removing cabin, an enrichment operating cabin, a buffer cabin and a positive bacteria filling cabin to perform corresponding operations and enrich the microorganism in the to-be-detected samples. Said system can achieve a fully automated enrichment of the microorganism in the to-be-detected samples, needs no manual operation, and saves time and labor force. Further, it can avoid false positive or false negative result caused by an effect of human factor, and achieve sterile and automatic operation with an accurate detection result.

    摘要翻译: 提供全自动微生物检测浓缩系统及其富集方法。 传输装置由工业控制计算机控制,以将放置在预设操作位置的待检测样品,包含培养物的培养基,专门用于收集细菌的管道过滤器和过滤器头序列地传送到灭菌室, 中间包装拆装室,内包装拆卸室,浓缩操作室,缓冲室和正菌填充室,以执行相应的操作并富集待检测样品中的微生物。 所述系统可以在待检测样品中实现微生物的全自动富集,不需要人工操作,并节省时间和劳动力。 此外,它可以避免由人为因素引起的假阳性或假阴性结果,并以准确的检测结果实现无菌和自动操作。

    Passively mode-locked picosecond laser device
    2.
    发明授权
    Passively mode-locked picosecond laser device 有权
    被动锁模皮秒激光装置

    公开(公告)号:US08340143B2

    公开(公告)日:2012-12-25

    申请号:US12669951

    申请日:2009-08-20

    IPC分类号: H01S3/098

    摘要: A passively mode-locked picosecond laser device comprising a pump source, a laser crystal, a laser cavity, a mode-locked output structure is provided. In the device, the pump source is placed at the side of the incident end surface of the laser crystal; the laser cavity includes a plane reflective mirror and a first plano-concave mirror, the reflective mirror is placed opposite to the concave surface of the plano-concave mirror and located on the position of the focal radius of the plano-concave mirror. The normal direction of the reflective mirror and the axis of the plano-concave mirror form a small angle therebetween; the laser generated from the laser crystal oscillates in the laser cavity, and output through the mode-locked output structure. The device uses a stable cavity design of the equivalent confocal cavity, which can increase the optical path, reduce the repetition frequency, and significantly reduce the cavity length and volume.

    摘要翻译: 提供了包括泵浦源,激光晶体,激光腔,锁模输出结构的被动锁模皮秒激光器件。 在该装置中,泵浦源位于激光晶体入射端面的一侧; 激光腔包括平面反射镜和第一平凹镜,反射镜与平凹镜的凹面相对放置并位于平凹镜的焦点半径的位置上。 反射镜的法线方向和平凹镜的轴线在它们之间形成小的角度; 激光产生的激光在激光腔中振荡,并通过锁模输出结构输出。 该器件使用等效共焦腔的稳定腔设计,可以增加光路,减少重复频率,并显着降低腔体长度和体积。

    PASSIVELY MODE-LOCKED PICOSECOND LASER DEVICE
    3.
    发明申请
    PASSIVELY MODE-LOCKED PICOSECOND LASER DEVICE 有权
    常用模式锁定PICOSECOND激光器件

    公开(公告)号:US20120039345A1

    公开(公告)日:2012-02-16

    申请号:US12669951

    申请日:2009-08-20

    IPC分类号: H01S3/098

    摘要: A passively mode-locked picosecond laser device comprising a pump source, a laser crystal, a laser cavity, a mode-locked output structure is provided. In the device, the pump source is placed at the side of the incident end surface of the laser crystal; the laser cavity includes a plane reflective mirror and a first plano-concave mirror, the reflective mirror is placed opposite to the concave surface of the plano-concave mirror and located on the position of the focal radius of the plano-concave mirror. The normal direction of the reflective mirror and the axis of the plano-concave mirror form a small angle therebetween; the laser generated from the laser crystal oscillates in the laser cavity, and output through the mode-locked output structure. The device uses a stable cavity design of the equivalent confocal cavity, which can increase the optical path, reduce the repetition frequency, and significantly reduce the cavity length and volume.

    摘要翻译: 提供了包括泵浦源,激光晶体,激光腔,锁模输出结构的被动锁模皮秒激光器件。 在该装置中,泵浦源位于激光晶体入射端面的一侧; 激光腔包括平面反射镜和第一平凹镜,反射镜与平凹镜的凹面相对放置并位于平凹镜的焦点半径的位置上。 反射镜的法线方向和平凹镜的轴线在它们之间形成小的角度; 激光产生的激光在激光腔中振荡,并通过锁模输出结构输出。 该器件使用等效共焦腔的稳定腔设计,可以增加光路,减少重复频率,并显着降低腔体长度和体积。

    Terminal Power Control Method
    4.
    发明申请
    Terminal Power Control Method 有权
    端子功率控制方法

    公开(公告)号:US20080212548A1

    公开(公告)日:2008-09-04

    申请号:US11915114

    申请日:2006-05-15

    IPC分类号: H04B7/216

    CPC分类号: H04W52/24 H04W52/343

    摘要: A terminal power control method includes following steps according to the quality of received signal, the terminal obtains quality parameter of received signal, received power of terminal occupying channel, and all the channel power in present cell which have the same carrier frequency and time slot with terminal occupying channel respectively; according to all the channel power in present cell which have the same carrier frequency and time slot with terminal occupying channel, determines the allowable received power minimum of terminal occupying channel; according to the allowable received power minimum of terminal occupying channel, received power of said terminal occupying channel and said received signal quality parameters, generates power control command. Present invention could control powers of signals in different channels, increase the demodulation performance of terminal and the stability of wireless link, and assure the quality of system communication.

    摘要翻译: 终端功率控制方法包括根据接收信号质量的以下步骤,终端获取接收信号的质量参数,终端占用信道的接收功率,以及具有相同载波频率和时隙的当前小区中的所有信道功率, 终端占用通道; 根据具有终端占用信道相同载波频率和时隙的本小区的所有信道功率,确定终端占用信道的允许接收功率最小值; 根据终端占用信道的允许接收功率最小值,所述终端占用信道的接收功率和接收到的信号质量参数,生成功率控制命令。 本发明可以控制不同信道的信号功率,提高终端的解调性能和无线链路的稳定性,保证系统通信的质量。

    Method and device for preventing CSRF attack
    6.
    发明授权
    Method and device for preventing CSRF attack 有权
    防止CSRF攻击的方法和设备

    公开(公告)号:US08997222B2

    公开(公告)日:2015-03-31

    申请号:US13621238

    申请日:2012-09-15

    摘要: The disclosure provides method for preventing CSRF attacks, in which the method provides: intercepting request sent from a client browser to a server; generating a token; generating a response to the request; inserting the token into the response to the request; and sending the response to the request to the client browser with the token inserted into the response. With the method of the disclosure, it is assured that a token is inserted into all the requests made by a user through a client browser for accessing a resource. And it can be assured that the request is issued by the user himself by verifying whether the token in the request is valid, thereby preventing a CSRF attack.

    摘要翻译: 本公开提供了防止CSRF攻击的方法,其中该方法提供:拦截从客户端浏览器发送到服务器的请求; 产生令牌; 产生对请求的响应; 将令牌插入到请求的响应中; 并将令牌的响应发送到客户端浏览器,并将令牌插入到响应中。 利用本公开的方法,可以确保令牌被插入到用户通过用于访问资源的客户端浏览器进行的所有请求中。 并且可以确保请求由用户自己通过验证请求中的令牌是否有效,从而防止CSRF攻击。

    Terminal power control method
    7.
    发明授权
    Terminal power control method 有权
    端子功率控制方式

    公开(公告)号:US07894380B2

    公开(公告)日:2011-02-22

    申请号:US11915114

    申请日:2006-05-15

    IPC分类号: H04B7/216 H04W4/00

    CPC分类号: H04W52/24 H04W52/343

    摘要: A power control method for a terminal, including: obtaining, by the terminal, a quality parameter of a received signal, a receiving power of a code channel occupied by the terminal and a power of code channels in a cell having the same carrier frequency and the same time slot as those of the code channel occupied by the terminal respectively, according to a received signal quality; determining the minimum receiving power which is permitted by the code channel occupied by the terminal according to the power of the code channels in the cell having the same carrier frequency and the same time slot as those of the code channel occupied by the terminal; and generating a power control command according to a determined minimum receiving power, the receiving power of the code channel occupied by the terminal and the quality parameter of the received signal.

    摘要翻译: 一种终端的功率控制方法,包括:由终端获得接收信号的质量参数,终端占用的码信道的接收功率和具有相同载波频率的小区中的码信道的功率,以及 根据接收到的信号质量分别与终端占用的码信道相同的时隙; 根据与所述终端占用的所述码信道相同的载波频率和相同时隙的小区中的码信道的功率,确定由所述终端占用的所述码信道所允许的所述码信道所允许的最小接收功率; 以及根据所确定的最小接收功率,所述终端所占用的码信道的接收功率和接收到的信号的质量参数来产生功率控制命令。

    Method and Device for Preventing CSRF Attack
    8.
    发明申请
    Method and Device for Preventing CSRF Attack 审中-公开
    防止CSRF攻击的方法和装置

    公开(公告)号:US20130019308A1

    公开(公告)日:2013-01-17

    申请号:US13621238

    申请日:2012-09-15

    IPC分类号: G06F21/00

    摘要: The disclosure provides method for preventing CSRF attacks, in which the method provides: intercepting request sent from a client browser to a server; generating a token; generating a response to the request; inserting the token into the response to the request; and sending the response to the request to the client browser with the token inserted into the response. With the method of the disclosure, it is assured that a token is inserted into all the requests made by a user through a client browser for accessing a resource. And it can be assured that the request is issued by the user himself by verifying whether the token in the request is valid, thereby preventing a CSRF attack.

    摘要翻译: 本公开提供了防止CSRF攻击的方法,其中该方法提供:拦截从客户端浏览器发送到服务器的请求; 产生令牌; 产生对请求的响应; 将令牌插入到请求的响应中; 并将令牌的响应发送到客户端浏览器,并将令牌插入到响应中。 利用本公开的方法,可以确保令牌被插入到用户通过用于访问资源的客户端浏览器进行的所有请求中。 并且可以确保请求由用户自己通过验证请求中的令牌是否有效,从而防止CSRF攻击。

    Pipe
    9.
    外观设计
    Pipe 有权

    公开(公告)号:USD944448S1

    公开(公告)日:2022-02-22

    申请号:US29767057

    申请日:2021-01-20

    申请人: Gang Niu

    设计人: Gang Niu

    CONSTRUCTION METHOD OF CELL MODELS FOR DETECTING PYROGENS, CELL MODELS AND PYROGEN DETECTION KITS

    公开(公告)号:US20180313821A1

    公开(公告)日:2018-11-01

    申请号:US15763585

    申请日:2016-10-12

    申请人: Gang NIU

    发明人: Gang NIU Huanran TAN

    摘要: The present invention provides a construction method of cell models for detecting pyrogens, cell models and pyrogen detection kits. By inducing double-bond breakage in the specific positions of genomes using CRISPR/CAS9, performing directed knock-in of TLR4 and CD14-MD2 on two chromosomes in a cell line based on the principle of homologous recombination and repair, and tracing using green fluorescent protein GFP and red fluorescent protein RFP respectively, we successfully construct the TLR4/CD14/MD2 directed knock-in and fluorescence-traceable cell model; upon the exposure to LPS, the release of IL-6 and TNF-a cytokines in the cell model can be detected by ELISA, Western Blot, mass spectrometry and magnetic bead method; and the cell model has good stability and high sensitivity, and the lowest detection limit can reach 0.005 EU/mL, which is far lower than that of the Limulus amebocyte lysate endotoxin test method (0.025 EU/mL).