System for calibration of pressure transducers
    2.
    发明授权
    System for calibration of pressure transducers 失效
    压力传感器校准系统

    公开(公告)号:US06848292B2

    公开(公告)日:2005-02-01

    申请号:US10104220

    申请日:2002-03-22

    IPC分类号: G01L27/00 G01N31/00

    CPC分类号: G01L27/005

    摘要: The present invention relates to system for calibrating plurality of pressure transducers, said system comprising plurality of pressure transducers (13.1 to 13.n) mounted on a mounting means (12) which receives pressure input from a pressure source (11) via a hollow pipe (14) and distributes the pressure evenly to all the pressure transducers, said plurality of pressure transducers are mounted on the mounting means and placed inside a vessel (15) as to vary the temperature of the pressure transducers, said pressure source is also connected to a standard pressure transducer (17) whose temperature is maintained at the same level as that of pressure transducers (13.1 to 13.n).

    摘要翻译: 本发明涉及用于校准多个压力换能器的系统,所述系统包括安装在安装装置(12)上的多个压力换能器(13.1至13.n),该安装装置(12)承受从压力源(11)经由中空管 (14)并且将压力均匀地分布到所有压力传感器,所述多个压力传感器安装在安装装置上并且放置在容器(15)内以改变压力传感器的温度,所述压力源也连接到 标准压力传感器(17)的温度保持在与压力传感器(13.1至13.n)相同的水平。

    Tide staff system
    3.
    发明授权

    公开(公告)号:US06802219B2

    公开(公告)日:2004-10-12

    申请号:US10300364

    申请日:2002-11-19

    IPC分类号: G01F2300

    CPC分类号: G01C13/008

    摘要: The present invention relates to a segmented cylindrical tide staff system [11] for erection at remote areas for dynamic calibration of electronic tide meters and computer models of tides, said tide staff system consisting of plurality of cylindrical tubes [12], said cylindrical tube being coupled to a flange [13] at its end through a circular orthogonal hole [20] drilled on a flat surface of the flange, said flange being provided with plurality of equally spaced slots [15] drilled on the flat surface of the flange, an outwardly protruding tide indicating arm [14] being mounted on the flange wherein said tide indicating arm consists of two mutually orthogonal planes [22] and [23], wherein plane [22] is perpendicular to the axis of the tide staff and plane [23] is parallel to the axis of the tide staff, said perpendicular plane [22] being provided with a mounting terminal [21] and a circular hole [27] and said parallel plane being partitioned into two compartments [24] and [25] by a separating line [26] thereby permitting indication of tide reading in more than one language, including a vernacular language and two or more cylindrical tubes being coupled to each other through slots [15] using coupling means.

    Molecules for inducing differentiation of dendritic cells
    4.
    发明申请
    Molecules for inducing differentiation of dendritic cells 审中-公开
    用于诱导树突状细胞分化的分子

    公开(公告)号:US20050085547A1

    公开(公告)日:2005-04-21

    申请号:US10748844

    申请日:2003-12-31

    摘要: The present invention is related to compounds having general formula Z-OC(CRn1Rn2)—CO-Z wherein Z=OH or NH2 and n1=n2=1 to 8, for modulation of immune response by differentiation dendritic cells consisting novel class of amino acid derivatives (sulfonic acid/sulfate derivatives of naturally occurring amino acids, and their amides) of the general formula ZOC—CR3R4—CR2(NHR1)—COOH, ZOC—CR5R6—CR3R4—C(NHR2)—COOH, ZOC—CR7R8—CR5R6—CR3R4—CR1(NHR2)—COOH wherein Z=OH or NH2; R1 to R8 denotes H, SO3H, or OSO3H. In addition, the dicarboxylic acids and their amides ZOC—(CH2)n—CR1R2—COOH, where Z=OH or NH2; and n=1, 2, 3. The groups R1/R2=H/SO3H or OSO3H or CH2—SO3H or CH2—OSO3H and vice versa. The factors also contain different divalent metal cations such as Mg, Ca and Zn. The composition consists of varying amounts of the above amino acid/dicarboxylic acid derivatives or their pharmaceutically acceptable alkali/alkaline earth metal salts or their salts, the processes for the preparation of the aforesaid compounds useful for the differentiation and maturation of dendritic cells.

    摘要翻译: 本发明涉及具有通式Z-OC(其中Z = OH或NH 2)的化合物(其中Z = OH或NH 2) 并且n1 = n2 = 1至8,用于通过分化树突状细胞调节免疫应答,所述分化树突细胞由通式ZOC-CR的新一类氨基酸衍生物(天然存在的氨基酸的磺酸/硫酸酯衍生物及其酰胺) (NHR 1) - COOH,ZOC-CR 5 > R 6 -CR 3 R 4 -C(NHR 2)-COOH,ZOC-CR 7 R< 8>< 5>< 6>< 6< 3< 3< 其中Z = OH或NH 2;其中Z = OH或NH 2;其中Z = OH或NH 2。 R 1至R 8表示H,SO 3 H或OSO 3 H。 另外,二羧酸和它们的酰胺ZOC-(CH 2)n -OR 1 R 2 - COOH,其中Z = OH或NH 2; 基团R 1 / R 2 = H / SO 3 H或OSO 3, H或CH 2 -SO 3 H或CH 2 --OSO 3 H,反之亦然。 这些因素还含有不同的二价金属阳离子如Mg,Ca和Zn。 组合物由不同量的上述氨基酸/二羧酸衍生物或其药学上可接受的碱金属/碱土金属盐或其盐组成,用于制备用于树突状细胞分化和成熟的前述化合物的方法。

    METHOD OF DETERMINING THE VOLUME SCATTERING FUNCTION OF OCEAN WATERS IN THE BACKWARD DIRECTION USING A SATELLITE OCEAN COLOR SENSOR
    5.
    发明申请
    METHOD OF DETERMINING THE VOLUME SCATTERING FUNCTION OF OCEAN WATERS IN THE BACKWARD DIRECTION USING A SATELLITE OCEAN COLOR SENSOR 失效
    使用卫星海洋颜色传感器确定后视方向的海洋体积散射函数的方法

    公开(公告)号:US20050027475A1

    公开(公告)日:2005-02-03

    申请号:US10628287

    申请日:2003-07-29

    摘要: A method of determining the Volume Scattering Function of Ocean Waters in the backward direction using a Satellite Ocean Color Sensor the said method made to exploit the geometry of the sun-ocean-satellite detector to function as a backscatter system comprising of the sun [1] as a source of radiation, the ocean as the sampling volume [2], and the satellite ocean color sensor [3] as the detector of the backscattered flux from the ocean emanating from separate ocean pixels arranged on a scan line across the track of the satellite payload and arriving at corresponding pixels on the CCD array detector of the satellite sensor [3]; the output signals from each electronic pixel of the detector is shown to be related to the Volume Scattering Function at a fixed scattering angles (ψ) which bears a direct relation to the cosines of the solar incident angle (θs) and the angle (θp) of the upwelled flux at the ocean surface, the Remotely Sensed Reflectance (Rrs), and the diffuse attenuation coefficient (Kd) thereby resulting in a new product of the Volume Scattering Function at fixed backscattering angles.

    摘要翻译: 使用卫星海洋颜色传感器确定海洋水域在向后方向的体积散射函数的方法,所述方法用于利用太阳 - 海洋 - 卫星探测器的几何形状作为包括太阳的反向散射系统[1] 作为辐射源,海洋作为采样体积[2],卫星海洋颜色传感器[3]作为来自海洋的背散射通量的检测器,其由排列在扫描线上的独立海洋像素发出, 卫星有效载荷并到达卫星传感器的CCD阵列检测器上的相应像素[3]; 来自检测器的每个电子像素的输出信号被示出为与体积散射函数相关,其固定的散射角(psi)与太阳入射角(thetas)和角度(thetap)的余弦直接关系, 的海洋表面的上游通量,遥感反射率(Rrs)和漫反射衰减系数(Kd),从而在固定的后向散射角度产生体积散射函数的新产物。

    Method for enhancing levels of polyunsaturated fatty acids in thraustochytrid fungi
    9.
    发明授权
    Method for enhancing levels of polyunsaturated fatty acids in thraustochytrid fungi 失效
    增强破囊索真菌中多不饱和脂肪酸含量的方法

    公开(公告)号:US06410282B1

    公开(公告)日:2002-06-25

    申请号:US09538984

    申请日:2000-03-30

    IPC分类号: C12P764

    CPC分类号: C12P7/6427 C12P7/6472

    摘要: The invention relates to a method for enhancing levels of polyunsaturated fatty acid levels in thraustochytrid fungi, using media supplemented with polyvinyl pyrrolidone (PVP) to increase viscosity and which comprises: (a) providing a thraustochytrid fungus strain NIO-TH 21, corresponding to the species Ulkenia radiata Gaertner, being the culture with Accession No. AB22115 of the National Institute of Bioscience and Human-Technology, Japan; (b) inoculating the above said strain in a culture medium; (c) growing the culture for 2 days at a temperature ranging from 25 to 30° C.; (d) obtaining the cultures for use as innoculum using the above said medium to inoculate a medium with different concentrations of polyvinyl pyrrolidone (PVP); (e) growing the culture separately for 2 to 5 days at a temperature ranging from 25 to 30° C.; and (f) harvesting the cells from the above culture by centrifugation and extracting the enhanced amounts of docosahexaenoic acid (DHA) and eicosapentaenoic acids (EPA).

    摘要翻译: 本发明涉及使用补充有聚乙烯吡咯烷酮(PVP)的培养基来增加粘度的增强裂解性真菌中多不饱和脂肪酸含量水平的方法,该方法包括:(a)提供一种对应于该菌株的破伤风菌真菌菌株NIO-TH21, 作为日本国立生物科学与人类技术研究所登录号:AB22115的文化物种, (b)将上述菌株接种在培养基中; (c)在25-30℃的温度下培养2天。 (d)使用上述培养基获得用作接种物的培养物以接种具有不同浓度的聚乙烯吡咯烷酮(PVP)的培养基; (e)在25-30℃的温度下分别培养培养2至5天; 和(f)通过离心并提取增加量的二十二碳六烯酸(DHA)和二十碳五烯酸(EPA))从上述培养物中收获细胞。

    Pressure housing for in-water pressure based systems
    10.
    发明授权
    Pressure housing for in-water pressure based systems 失效
    用于基于水压的系统的压力壳体

    公开(公告)号:US06568266B1

    公开(公告)日:2003-05-27

    申请号:US10033220

    申请日:2001-12-27

    IPC分类号: G01L908

    摘要: The present invention relates to a pressure housing for in-water pressure based systems and to a method for improving the life of the transducers and electronics of underwater systems by maintaining a humidity-free and clean environment around them by avoiding the entry of humidity, dust, or any suspended particles in the air during occasional data offloading and battery replacement in a humid and dust-laden field station; improving the ease of closing and opening of the pressure housing by the use of a novel arrangement thereby avoiding the use of conventionally employed cumbersome protruding and corrosion-prone locking devices such as screws, bolts, or clamps; and implementing reliable transmission of water pressure to the pressure port of the transducer, simultaneously minimizing the errors arising from dynamic pressure effects, preventing its chemical corrosion from saline water, and arresting bio-fouling in the vicinity of the pressure inlet.

    摘要翻译: 本发明涉及一种用于基于水中压力的系统的压力壳体以及通过避免湿气,灰尘的进入而保持水下系统的换能器和电子装置的寿命的方法,以保持其周围的无湿度和清洁的环境 或在潮湿和充满灰尘的现场站中的偶尔的数据卸载和电池更换期间的空气中的任何悬浮颗粒; 通过使用新颖的装置提高了压力壳体的闭合和打开的容易性,从而避免使用常规使用的繁琐的突出和易腐蚀的锁定装置,例如螺钉,螺栓或夹具; 并实现可靠传递水压到传感器的压力端口,同时最大限度地减少由动压力影响产生的误差,防止其对盐水的化学腐蚀,并阻止压力入口附近的生物污染。