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    • 2. 发明授权
    • Multi-well system
    • 多井系统
    • US08309035B2
    • 2012-11-13
    • US12418520
    • 2009-04-03
    • Chun-Nan ChenJames O. Bowlby, Jr.Richard Aleck Jorgensen
    • Chun-Nan ChenJames O. Bowlby, Jr.Richard Aleck Jorgensen
    • G01N21/75
    • C12N15/1065C07K16/2896C07K16/40C07K2317/56G06F19/00Y02A90/26
    • A multi-well system is described which is comprised of a tray comprising a plurality of wells which may include thousands, tens of thousands or even hundreds of thousands of wells or more. Each of the wells has a unique address. The system includes a tray top comprised of a plurality of areas wherein each of the areas corresponds uniquely to each of the wells and includes a unique address. The system may include a second tray top also comprised of a plurality of areas with unique addresses which uniquely correspond to each of the wells. The areas on the tops have compounds bound to those areas which compounds bind to components present in the wells and are used to obtain specific material in each well for analysis.
    • 描述了一种多孔系统,其由包括多个井的托盘组成,所述多个井可以包括数千,甚至几十万个井或更多井。 每个井都有一个独特的地址。 该系统包括由多个区域组成的托盘顶板,其中每个区域对应于每个井的唯一地址并且包括唯一的地址。 该系统可以包括第二托盘顶部,其也由具有唯一地址的多个区域组成,其唯一地对应于每个井。 顶部上的区域具有与化合物结合存在于孔中的组分的那些区域结合的化合物,并且用于在每个孔中获得特定材料用于分析。
    • 4. 发明授权
    • Deconvolution method for the analysis of data resulting from analytical
separation processes
    • 解卷积方法用于分析分析过程中产生的数据
    • US5748491A
    • 1998-05-05
    • US579204
    • 1995-12-20
    • Daniel B. AllisonJames O. Bowlby, Jr.
    • Daniel B. AllisonJames O. Bowlby, Jr.
    • G01N33/50G01N27/447G01N30/86G06F17/00G06F17/14G06F17/15H03H17/02G06F17/11
    • G06K9/00503G01N30/8617
    • An improved signal processing method in a signal processor for performing the deconvolution of a signal resulting from an analytical separation process is disclosed. In a first aspect, a signal representing a plurality of partially separated sample zones is measured, a point-spread-function of the signal is determined, and the Fourier transform of the signal and the point-spread-function is taken. Next, a noise component n of the signal is determined and the value of a result signal A(f) is calculated using the following filter ##EQU1## where D(f) is the Fourier transform of the signal, P(f) is the Fourier transform of the point-spread-function, and P*(f) is the complex conjugate of P(i). Finally, the inverse Fourier transform of the result A(f) is taken and reported as A(t). Preferably, the point-spread function is a Gaussian function having a standard deviation .sigma., where .sigma. is determined using either an .alpha..beta. tracker or the function .sigma.=(a+bt.sup.2).sup.1/2, where a and b are constants. In a second aspect of the invention, a plurality of possible point-spread-functions of the signal are determined and the above-described method is applied using each PSF. The value of the largest point-spread-function which provides a nonnegative result is determined, and the associated value of A(t) is reported. In a third aspect of the invention, a program storage device readable by a machine, tangibly embodying a program of instructions executable by a machine to perform the method steps of the first or the second aspects of the invention is provided.
    • 公开了一种用于执行由分析分离过程产生的信号的去卷积的信号处理器中的改进的信号处理方法。 在第一方面,测量表示多个部分分离的采样区域的信号,确定信号的点扩展函数,并且采用信号的傅立叶变换和点扩展函数。 接下来,确定信号的噪声分量n,并且使用以下滤波器计算结果信号A(f)的值,其中D(f)是信号的傅立叶变换,P(f)是 点扩展函数的傅里叶变换,P *(f)是P(i)的复共轭。 最后,得到结果A(f)的傅里叶逆变换并报告为A(t)。 优选地,点扩散函数是具有标准偏差σ的高斯函数,其中使用αβ跟踪器或函数sigma =(a + bt2)+ E,fra 1/2 + EE确定sigma,其中a和 b是常数。 在本发明的第二方面中,确定信号的多个可能的点扩展函数,并且使用每个PSF应用上述方法。 确定提供非负结果的最大点扩展函数的值,并报告相关值A(t)。 在本发明的第三方面中,提供了一种由机器可读的程序存储装置,其有形地体现了可由机器执行的指令程序,以执行本发明的第一或第二方面的方法步骤。