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    • 9. 发明授权
    • Water monitoring system using bivalve mollusks
    • 使用双壳软体动物的水监测系统
    • US07330794B2
    • 2008-02-12
    • US10343660
    • 2001-07-30
    • Jason EzrattyRobert MorganDavid EddyDonald Morgan
    • Jason EzrattyRobert MorganDavid EddyDonald Morgan
    • G06F19/00C12Q1/00C12N5/02G01F1/12
    • G01N33/186G01N2520/00
    • A toxicant detection system comprises at least one watertight chamber containing a mollusk. Water to be screened is introduced into the chamber. The mollusk is preferably supported on a mounting structure which facilitates quick mounting of the mollusk in the device, comprising a releasable element affixed to the shell of the mollusk, e.g., a bolt which is screwed into a nut affixed to the mollusk's shell. A sensing apparatus is provided which includes a movable member supported in the chamber so that it engages the shell of the mollusk, and moves when the shell opens and closes. The sensing apparatus detects the position of the mollusk shell based on the position of the movable member. The sensing apparatus preferably includes a Hall effect transducer which co-acts with a magnet carried on the movable member. The system allows for accurate readings of the small movements of the mollusk shell which aid in detecting toxicants, and also provides for installation of mollusks of varying sizes, without the need to move components of the standard configuration of the chamber. Methods and systems for detecting or identifying a toxicant in water being screened are also described.
    • 毒物检测系统包括至少一个包含软体动物的水密室。 要被筛选的水被引入室内。 软体动物优选地支撑在便于将软体动物快速安装在装置中的安装结构上,该安装结构包括固定在软体动物的壳体上的可释放元件,例如拧入固定在软体动物壳上的螺母的螺栓。 提供了一种感测装置,其包括支撑在室中的可动构件,使得其接合软体动物的壳体,并且当壳体打开和关闭时移动。 感测装置基于可动构件的位置来检测软体动物壳的位置。 感测装置优选地包括霍尔效应传感器,其与携带在可动构件上的磁体共同作用。 该系统允许准确读取软体动物壳的小的运动,其有助于检测毒物,并且还提供安装不同尺寸的软体动物,而不需要移动腔室的标准构造的部件。 还描述了用于检测或鉴定被筛选的水中的毒物的方法和系统。
    • 10. 发明授权
    • Generation of continuous mathematical model for common features of a subject group
    • 生成一个主题组的共同特征的连续数学模型
    • US07136787B2
    • 2006-11-14
    • US10025964
    • 2001-12-19
    • Leonard SchlessingerDavid Eddy
    • Leonard SchlessingerDavid Eddy
    • G06F17/10
    • G06F17/18G06F17/10G06F19/00G16H50/50Y10S707/99931Y10S707/99936Y10S707/99937
    • A method for generating a continuous mathematical model of a feature common to subjects in a subject group includes selecting a sample data set from each subject in the subject group, selecting a set of expansion functions to be used in the representation of the sample data set, mathematically expanding each member of the sample data set in the form of a summation of results of multiplying each the expansion function in the set of expansion functions by a different mathematical parameter wherein the expanding determines a value for each of the different mathematical parameters, deriving a corresponding distribution function for each of the mathematical parameters, and generating the continuous mathematical model of the feature from the derived distribution functions and the expansion functions. In this way, the model is continuous in time, incorporates dependencies between various parameters, and allows for creation of simulated subjects having pertinent features occurring in real subjects.
    • 一种用于产生对象群体中的受试者共同的特征的连续数学模型的方法,包括从所述对象组中的每个对象选择样本数据集,选择要用于所述样本数据集的表示中的一组扩展函数, 在数学上扩展样本数据集的每个成员,其形式是将扩展函数集合中的每个扩展函数乘以不同的数学参数的结果的总和,其中扩展确定每个不同数学参数的值,导出 对于每个数学参数的相应分布函数,以及从导出的分布函数和扩展函数生成特征的连续数学模型。 以这种方式,该模型是时间上连续的,并入各种参数之间的依赖关系,并且允许创建具有在真实主题中出现的相关特征的模拟对象。