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    • 61. 发明授权
    • Stimulating task presentation device and stimulating task presentation method for living body optical measurement apparatus
    • 刺激任务呈现装置,激发生物体光学测量装置的任务呈现方法
    • US08600720B2
    • 2013-12-03
    • US12996190
    • 2009-06-03
    • Shingo KawasakiNoriyoshi IchikawaKiyoto KasaiRyu TakizawaYuki KawakuboAyaka TakahashiHitoshi Kuwabara
    • Shingo KawasakiNoriyoshi IchikawaKiyoto KasaiRyu TakizawaYuki KawakuboAyaka TakahashiHitoshi Kuwabara
    • G06G7/58
    • A61B5/16A61B5/165
    • A load of a stimulating task on an examinee with a resting task being unstable is excluded, and an accurate answer of an examinee to presentation of a stimulating task is enabled. A stimulating task presentation device in a living body optical measurement device includes a stimulation presenting unit configured to present a stimulation to an examinee, a brain function measurement device for measuring a brain function of the examinee in parallel to presentation of the stimulation, and a stimulation presentation controller configured to control the stimulation presented by the stimulation presenting unit, and the stimulation presentation controller has a function of setting a resting task and a stimulating task to be presented to the examinee, a function of detecting an answer of the examinee to the resting task and the stimulating task, and a task presentation control function of determining the degree of stability on the basis of the detection result when the resting task is presented, and controlling presentation of the resting task or the stimulating task on the basis of the degree of stability.
    • 在休息任务处于不稳定状态的受试者上的刺激任务的负担被排除在外,并且能够使受检者呈现刺激性任务的准确答案。 生物体光学测量装置中的刺激性任务呈现装置包括被配置为向受检者呈现刺激的刺激呈现单元,用于与呈现刺激并行地测量受检者的脑功能的脑功能测量装置,以及刺激 呈现控制器,被配置为控制由刺激呈现单元呈现的刺激,并且刺激呈现控制器具有将休息任务和刺激任务设置为被呈现给受检者的功能,检测受试者对休息的答案的功能 任务和刺激任务,以及当呈现休息任务时基于检测结果确定稳定程度的任务呈现控制功能,以及基于休息任务或刺激任务的程度来控制休息任务或刺激任务的呈现 稳定性。
    • 62. 发明授权
    • Magnetic resonance imaging apparatus and magnetic resonance imaging method
    • 磁共振成像装置和磁共振成像方法
    • US08594767B2
    • 2013-11-26
    • US12523343
    • 2008-02-01
    • Masahiro TakizawaTetsuhiko Takahashi
    • Masahiro TakizawaTetsuhiko Takahashi
    • A61B5/05
    • A61B5/055A61B5/7285G01R33/5616G01R33/56375G01R33/56383G01R33/5673
    • When multiple types of imaging are performed while moving a table on which a subject to be examined is placed, an imaging efficiency is improved and a high-quality image is obtained within a short time. Therefore, within a predetermined time interval such as an identical period of a periodic living body motion, a predetermined number of echo signals from each of the multiple types of imaging sequences are acquired and the table on which the subject to be examined is placed is moved. Along with the movement of the table, data items within the same range in the Ky-direction as to each of the imaging sequences are acquired, the moving speed of the table is controlled in such a manner that the acquired data items become continuous in the x-direction, and images are reconstructed based on the data items obtained respectively from the imaging sequences.
    • 当在移动要被检查对象的表格的同时执行多种类型的成像时,提高成像效率并且在短时间内获得高质量图像。 因此,在诸如周期性生物体运动的相同周期的预定时间间隔内,获取来自多种类型的成像序列中的每一种的预定数量的回波信号,并且移动放置被检查对象的表 。 随着桌子的移动,获取与每个成像序列相同的Ky方向上的数据项,表格的移动速度被控制成使获取的数据项在 x方向,并且基于从成像序列分别获得的数据项重建图像。
    • 65. 发明授权
    • Image display device, method and program
    • 图像显示装置,方法和程序
    • US08582842B2
    • 2013-11-12
    • US13054997
    • 2009-07-22
    • Yoshihiro Goto
    • Yoshihiro Goto
    • G06K9/00G06K9/48
    • A61B8/5238A61B5/055A61B6/032A61B6/5247A61B8/00G01R33/5608G06T7/12G06T2207/10088G06T2207/20168G06T2207/30004
    • A pair of static magnetic field generating means disposed so as to sandwich a space in which an examination target is disposed, magnetic field generating means that applies high-frequency magnetic field and gradient magnetic field to an examination target disposed in the static magnetic field, and reception means that receives a nuclear magnetic resonance signal generated by the examination target are provided. The reception means has a predetermined coil pattern, and contains a reception coil which can be formed in a cylindrical shape. The reception coil has a flexible portion and a rigid portion which are alternately arranged along the peripheral direction when it is designed in a cylindrical shape, and the flexible portion has a flexible board on which a part of the predetermined coil pattern is mounted, and a bubble-containing organic resin portion covering both the surfaces of the flexible board.
    • 一对静电磁场产生装置,被设置为夹着设置检查对象的空间;磁场产生装置,对设置在静磁场中的检查对象施加高频磁场和梯度磁场;以及 提供接收由检查对象产生的核磁共振信号的接收装置。 接收装置具有预定的线圈图案,并且包含能够形成为圆筒形状的接收线圈。 接收线圈具有柔性部分和刚性部分,当它被设计成圆柱形时沿着圆周方向交替布置,并且柔性部分具有柔性板,其上安装有预定线圈图案的一部分,并且 含气泡的有机树脂部分覆盖柔性板的两个表面。
    • 67. 发明授权
    • Biological light measurement device and position display method of light irradiation position and light detection position or measurement channel
    • 生物光测量装置和位置显示方法的光照射位置和光检测位置或测量通道
    • US08565501B2
    • 2013-10-22
    • US13121309
    • 2009-09-30
    • Hirokazu Asaka
    • Hirokazu Asaka
    • G06K9/00
    • A61B5/0059A61B5/0075A61B5/0476A61B5/14553A61B5/6814
    • There is provided a biological light measurement device capable of simply displaying a light irradiation position and a light detection position or a three-dimensional position of a measurement channel without measuring the light irradiation position and the light detection position or the three-dimensional position of the measurement channel. The biological light measurement device includes a display unit, which displays a two-dimensional head image selected from the data regarding the head shape and a two-dimensional probe, and a control unit that has a coordinate transformation section, which performs coordinate transformation of the positional information regarding the two-dimensional probe set on the displayed two-dimensional head image and calculates the light irradiation position and the light detection position or the position of the measurement channel on a three-dimensional head image.
    • 提供了一种能够简单地显示测量通道的光照射位置和光检测位置或三维位置而不测量光照射位置和光检测位置或三维位置的生物光测量装置 测量通道。 生物体光测量装置包括:显示单元,其显示从关于头部形状的数据和二维探针中选择的二维头部图像;以及控制单元,其具有坐标变换部,其执行坐标变换部 关于设置在所显示的二维头部图像上的二维探针的位置信息,并且在三维头部图像上计算光照射位置和光检测位置或测量通道的位置。
    • 69. 发明授权
    • Magnetic resonance imaging apparatus
    • 磁共振成像装置
    • US08531184B2
    • 2013-09-10
    • US13122593
    • 2009-10-08
    • Kosuke ItoTakayuki AbeMasayoshi Dohata
    • Kosuke ItoTakayuki AbeMasayoshi Dohata
    • G01V3/00
    • A61B5/055G01R33/288
    • A magnetic resonance imaging apparatus comprises: static magnetic field generation means which generates a static magnetic field in an imaging space where an object to be examined is placed; gradient magnetic field generation means which generates a gradient magnetic field in the imaging space; high-frequency magnetic field generation means which generates a high-frequency magnetic field in the imaging space; calculation means which calculates an amount of the electromagnetic wave absorbed by the object when the high-frequency magnetic field is irradiated to the object; and a measurement means which measures a characteristic of the high-frequency magnetic field generation means.The calculation means calculates the amount of the electromagnetic wave absorbed by the object according to the characteristic of the high-frequency magnetic field generation means measured by the measurement means.
    • 磁共振成像装置包括:静电磁场产生装置,其在放置被检体的成像空间中产生静磁场; 梯度磁场产生装置,其在成像空间中产生梯度磁场; 在成像空间中产生高频磁场的高频磁场产生装置; 计算装置,其计算当所述高频磁场照射到所述物体时被所述物体吸收的电磁波的量; 以及测量高频磁场产生装置的特性的测量装置。 计算装置根据由测量装置测量的高频磁场产生装置的特性来计算被物体吸收的电磁波的量。
    • 70. 发明授权
    • Ultrasonic imaging device
    • 超声波成像装置
    • US08506484B2
    • 2013-08-13
    • US12523088
    • 2008-01-16
    • Mariko YamamotoKunio HashibaTakashi Azuma
    • Mariko YamamotoKunio HashibaTakashi Azuma
    • A61B8/00
    • G10K11/345A61B8/4494G01S7/52084G01S15/8922G01S15/8925G01S15/8927G03B9/08G03B42/06
    • An ultrasonic imaging device which narrows the width of annular areas to be established, without increasing the number of channels. The controller establishes the annular areas 421 to 42p the number of which is larger than the number of signal lines, along line intersections between wave surfaces 51 to 54 of reflective waves and a multi-dimensional surface of the probe 1. The controller selects multiple annular areas (0, 0), (0, 1), and (0, 2) with focal depths differing, for example, by an integral multiple of the ultrasonic wavelength λ, out of the multiple annular areas being established, and connects the multiple transducer elements positioned within the selected multiple annular areas with an identical signal line. Accordingly, the received signals from the selected multiple annular areas arrive at multiple time points shifted by the time corresponding to the wavelength, and the signals do not cancel one another out.
    • 一种超声波成像装置,其可以在不增加通道数量的情况下使要建立的环形区域的宽度变窄。 控制器沿着反射波的波面51至54与探头1的多维表面之间的线交叉处建立其数量大于信号线数量的环形区域421至42p。控制器选择多个环形 所建立的多个环形区域中的焦点深度例如与超声波长λ的整数倍不同的区域(0,0),(0,1)和(0,2),并且连接多个 位于所选择的多个环形区域内的换能器元件具有相同的信号线。 因此,来自所选择的多个环形区域的接收信号到达偏移与波长对应的时间的多个时间点,并且信号不相互抵消。