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US Patent 7294513 Method and apparatus for characterizing solutions of small particles

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Is a
Patent
Patent

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
7294513
Date of Patent
November 13, 2007
Patent Application Number
11707835
Date Filed
February 16, 2007
Patent Citations Received
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US Patent 12071456 Extended recombinant polypeptides and compositions comprising same
0
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US Patent 11957828 Dynamic adjustment of algorithms for separation and collection of blood components
0
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US Patent 11969536 Systems enabling alternative approaches to therapeutic red blood cell exchange and/or therapeutic plasma exchange
0
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US Patent 11981744 Chimeric polypeptide assembly and methods of making and using the same
0
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US Patent 11713358 Chimeric polypeptide assembly and methods of making and using the same
0
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US Patent 11850604 Adjustment of target interface location between separated fluid components in a centrifuge
0
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US Patent 11890399 Centrifugal separation and collection of red blood cells, plasma, or both red blood cells and plasma
0
Patent Primary Examiner
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Arlen Soderquist
Patent abstract

A method and apparatus is described by which means molecules in suspension may be characterized in terms of the size and mass distributions present. As a sample solution is separated by centrifugal means, it is illuminated at a particular radial distance from the axis of rotation by a fine, preferably monochromatic, light beam. Despite the high resolution of such devices, a key problem associated with most separators based upon use of centrifugal forces is the difficulty in deriving the absolute size and/or molar mass of the separating molecules. By integrating means to detect light scattered, over a range of scattering angles, from samples undergoing centrifugal separation, molecular sizes in the sub-micrometer range may be derived, even in the presence of diffusion. Adding a second light beam at a displaced rotational angle, preferably of an ultraviolet wavelength, that intersects the sample at the same radial region as the first beam permits determination of the molecular concentration at that region. Combining the light scattering data with the associated concentration permits the determination of the associated molar mass. In a preferred embodiment, the light beam and detectors may be controlled to scan synchronously the sample radially during separation.

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