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    • 34. 发明申请
    • METHOD AND SYSTEM FOR DETERMINING A PHYSIOLOGICAL CONDITION
    • 用于确定生理条件的方法和系统
    • US20110060235A1
    • 2011-03-10
    • US12990977
    • 2009-04-24
    • Floris Maria Hermansz CrompvoetsMartin OuwerkerkHenk Albert HesselMartijn KransJoanne Henriette Desiree Monique Westerink
    • Floris Maria Hermansz CrompvoetsMartin OuwerkerkHenk Albert HesselMartijn KransJoanne Henriette Desiree Monique Westerink
    • A61B5/04
    • A61B5/02438A61B5/02405A61B5/0456A61B5/16A61B5/486
    • The present invention relates to a method for determining a physiological condition of a person, comprising sampling a plurality of heart beats of the person, extracting a series of cardiac R-R intervals from the heart beat samples, and providing a two-dimensional representation of subsequent R-R intervals, wherein two subsequent R-R interval forms an entry in the two-dimensional representation, wherein the method further comprises the steps of determining a centroid, an average radius and an average rotation frequency for the plurality of entries in the two-dimensional representation, determining a plurality of distances between the radius and each of the entries in the two-dimensional representation, and determining the physiological condition of the person using the radius in combination with the plurality of distances. An advantage with the present invention following from this solution is that the time it take for determining the coherent state of the person is minimized at the same time as it is possible to quickly detect a change in state as each of the entries are directly related to the radius of the ellipse. The present invention also relates to a corresponding system making use of such a determination method.
    • 本发明涉及一种用于确定人的生理状况的方法,包括对所述人的多个心跳进行采样,从所述心跳样本中提取一系列心脏RR间期,以及提供后续RR的二维表示 间隔,其中两个后续RR间隔形成二维表示中的条目,其中该方法还包括以下步骤:确定二维表示中的多个条目的质心,平均半径和平均旋转频率,确定 所述半径与所述二维表示中的每个条目之间的多个距离,以及使用与所述多个距离相结合的所述半径来确定所述人的生理状态。 本解决方案的本发明的优点在于,确定人的相干状态所需的时间在同时被最小化,因为可以快速检测状态的变化,因为每个条目都直接与 椭圆的半径。 本发明还涉及使用这种确定方法的相应系统。
    • 39. 发明申请
    • Method of manufacturing a thermoelectric device and thermoelectric device obtained by means of such a method
    • 通过这种方法获得的制造热电装置和热电装置的方法
    • US20060278265A1
    • 2006-12-14
    • US10557621
    • 2004-05-17
    • Martin OuwerkerkRonald DekkerMaxime MellierSebastian EgnerClemens Lasance
    • Martin OuwerkerkRonald DekkerMaxime MellierSebastian EgnerClemens Lasance
    • H01L35/02H01L35/34
    • H01L35/34
    • The invention relates to a method of manufacturing a thermoelectric device (10), in particular a thermoelectric generator (10), comprising a flexible foil (1) on which two groups (2, 3) of series-connected strip-shaped parts (2A, 3A) are formed, where the materials chosen for the two groups of parts (2A, 3A) are materials with a different thermoelectric coefficient and said two groups of parts are formed in a pattern (100) such that the connections (4) between one part (2A) of one group (2) and another part (3A) of the other group (3) are alternately positioned in two spaced apart areas (G1, G2) of the foil (1), and after the formation of the parts (2A, 3A) on a substrate (5), the foil (1) is attached to the stripshaped parts (2A, 3A), after which the substrate (5) is removed. According to the invention, for the substrate (5) use is made of a rigid (=relatively thick) substrate (5), and before the substrate (5) is removed a rigid (=relatively thick) carrier plate (6) is attached to the foil (1) that is removed again from the foil (1) after removal of the rigid substrate (5). In this way, the method is particularly suitable for the use of semiconductor substrates (5) which can be rapidly removed by chemical-mechanical polishing. Preferably, the foil (1) with the device (10) is folded or coiled before use.
    • 本发明涉及一种制造热电装置(10)的方法,特别是一种热电发生器(10),其包括柔性箔(1),两组(2,3)串联连接的带状部件(2 A,3A),其中为两组部件(2A,3A)选择的材料是具有不同热电系数的材料,并且所述两组部件以图案(100)形成,使得连接 在另一组(3)的一组(2)的一部分(2A)和另一组(3)的另一部分(3A)之间的(4)交替地位于箔(1)的两个间隔开的区域(G 1,G 2) ),并且在基板(5)上形成部件(2A,3A)之后,将箔(1)附接到条状部件(2A,3A),然后将基板(5) 删除。 根据本发明,对于基底(5),使用刚性(=相对较厚)的基底(5),并且在移除基底(5)之前,附接刚性(=较厚)的载体板(6) 涉及在去除刚性基材(5)之后再次从箔(1)上除去的箔(1)。 以这种方式,该方法特别适用于可通过化学机械抛光快速去除的半导体衬底(5)。 优选地,具有装置(10)的箔(1)在使用之前被折叠或盘绕。