1.
    发明专利
    未知

    公开(公告)号:DE60028665D1

    公开(公告)日:2006-07-27

    申请号:DE60028665

    申请日:2000-08-03

    Abstract: The present invention relates to a micro array manufacturing apparatus, comprising: a working table 11 on which a plurality of substrates are arranged; a first solution storing portion 12 for storing a solution 53 including a living body sample; hold means for taking in said solution from said first solution storing portion 12 to form the spot of said solution on each of said substrates; moving means for supporting said hold means and moving said hold means in directions where said hold means approaches and retreats from said substrates, thereby allowing said hold means to form said solution spot; and delivery means for supporting said moving means and delivering said moving means in an area including said working table and said solution storing portion to provide two-dimensional coordinates; wherein said hold means comprises a second solution storing portion 52 having a pipe shape for storing a quantity of said solution to form the spots successively, the second solution storing portion 52 having an opening on one end thereof, and a needle 51 having a leading end portion stored in said second solution storing portion 52, the leading end portion being projectable from said second storing portion 52 by said moving means through the opening to allow said solution stored in said second solution storing portion to adhere onto each of said substrates by a given quantity.

    2.
    发明专利
    未知

    公开(公告)号:DE60028665T2

    公开(公告)日:2007-06-06

    申请号:DE60028665

    申请日:2000-08-03

    Abstract: The present invention relates to a micro array manufacturing apparatus, comprising: a working table 11 on which a plurality of substrates are arranged; a first solution storing portion 12 for storing a solution 53 including a living body sample; hold means for taking in said solution from said first solution storing portion 12 to form the spot of said solution on each of said substrates; moving means for supporting said hold means and moving said hold means in directions where said hold means approaches and retreats from said substrates, thereby allowing said hold means to form said solution spot; and delivery means for supporting said moving means and delivering said moving means in an area including said working table and said solution storing portion to provide two-dimensional coordinates; wherein said hold means comprises a second solution storing portion 52 having a pipe shape for storing a quantity of said solution to form the spots successively, the second solution storing portion 52 having an opening on one end thereof, and a needle 51 having a leading end portion stored in said second solution storing portion 52, the leading end portion being projectable from said second storing portion 52 by said moving means through the opening to allow said solution stored in said second solution storing portion to adhere onto each of said substrates by a given quantity.

    3.
    发明专利
    未知

    公开(公告)号:DE112005000477T5

    公开(公告)日:2007-01-18

    申请号:DE112005000477

    申请日:2005-02-17

    Abstract: The invention provides a substrate for biopolymer hybridization, a biopolymer hybridization device, and a biopolymer hybridization method capable of: speeding up hybridization of a biopolymer, by means of dielectrophoresis or electrophoresis by applying an alternating voltage or a direct voltage to a planar electrode, so as to generate an electric field; and reading the hybridized biopolymer by means of a laser or the like.

    METHOD FOR COMBINING PARTIALLY MEASURED DATA

    公开(公告)号:CA2309071A1

    公开(公告)日:2000-11-27

    申请号:CA2309071

    申请日:2000-05-19

    Applicant: RIKEN

    Abstract: (A) The surface shape of an object (1) is measured by varying the position and/or direction of measurement, and a plurality of sets of partially measured data (2) including the common parts (2a) are acquired, (B) for all the partially measured data (2), the overlapped ranges (3a) of the adjacent common parts (2a) are determined within the measurement error ranges (3), (C) when there are no superposition ranges (3a), it is decided that a combination is not possible, and (D) when there are overlapped ranges (3a), the common parts of each set of partially measured data are combined within the ranges. Thus, combined data can be created at a high accuracy from a plurality of sets of partially measured data based on a small number of repeated calculations.

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