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    • 5. 发明授权
    • Ultra-miniature in-vivo electrode used for measuring bioelectrical neural activity
    • 用于测量生物电神经活动的超微型体内电极
    • US07113816B2
    • 2006-09-26
    • US10431508
    • 2003-05-08
    • Kanji MatsukawaTakako ItoKazuhiko KondohYasuo Seki
    • Kanji MatsukawaTakako ItoKazuhiko KondohYasuo Seki
    • A61B5/04
    • A61B5/04001A61B5/4041
    • An ultra-miniature in-vivo electrode used for measuring the bioelectrical neural activity etc. in a living body with small cubic volume, slight burden to the living body, and high insulation performance, thereby facilitating long term stable measurements. Structurally the in-vivo electrode comprises conductors 13, 14 made of polymeric material having a through-hole 19 in each center so as to lead a measuring object 18; a intervening member 15 made of non-conductive polymeric material provided in between the conductors so as to insulate the periphery of the conductors; edge members 16, 17 provided in the outer edge of the conductors; a clad body 12 made of cylindrical insulant enclosing the periphery of them; measuring wires 21,22 to lead electricity to outside from each conductor 21, 22; a slit 26 which reaches the through-hole 19 from the outside surface being formed in all of the conductors, the intervening member, the edge members, and the clad body.
    • 用于测量生物电学神经活动等的超微型体内电极,其具有小立方体积,对生物体的轻微负担和高绝缘性能,从而促进长期稳定的测量。 结构上,体内电极包括由聚合物材料制成的导体13,14,每个中心具有通孔19,以引导测量对象18; 设置在导体之间的非导电聚合材料制成的中间构件15,以使导体的周边绝缘; 设置在导体的外缘的边缘部件16,17; 由围绕其外围的圆柱形绝缘体制成的包层体12; 测量导线21,22将电力从每个导体21,22导向外部; 从形成在所有导体,中间构件,边缘构件和包层体的外表面到达通孔19的狭缝26。
    • 6. 发明授权
    • Method for transmitting digital data
    • 数字数据传输方法
    • US5355132A
    • 1994-10-11
    • US960260
    • 1992-10-13
    • Tetsuo KaniYasuo Seki
    • Tetsuo KaniYasuo Seki
    • G11B20/18G11B27/032H03M13/35H04N5/92H04N5/926H04N9/802H03M7/00
    • H04N9/802G11B20/1809G11B27/032H03M13/35H04N5/92H04N5/926
    • In a method for recording and/or reproducing digital data, such as digital audio signals recorded simultaneously with video signals, dividing sampling data composed of a plurality of bits into higher order bits and lower order bits, constituting error correction coding blocks by only the higher and lower order bits of the sampling data of a plurality of samples respectively, thereby making it possible to easily realize adaptive error checking in the course of the block-by-block error checking in association with, for example, data criticality.A sync word and a block address are affixed to the error correction coding block constituted in that manner. Since one block address is formed using the address data of two or more blocks, a broader address space can be obtained even when the bit number of the address area of each block is few. At least one flag bit(s) are provided in each sync word to use said flag bits in the blocks bearing specified block addresses as edit flags to set the edit flags in association with each edit point of digital signals, thereby facilitating discrimination of the editing points to reduce the rate of data discarding.
    • 在用于记录和/或再现与视频信号同时记录的数字音频信号的数字数据的方法中,将由多个比特构成的采样数据分成高阶比特和低阶比特,仅构成纠错编码块 和多个样本的采样数据的低位比特,从而使得可以在与例如数据临界性相关联的逐块错误检查的过程中容易地实现自适应错误检查。 同步字和块地址被附加到以这种方式构成的纠错编码块。 由于使用两个或更多个块的地址数据形成一个块地址,所以即使当每个块的地址区的位数很少时,也可以获得更宽的地址空间。 在每个同步字中提供至少一个标志位以使用具有指定块地址的块中的所述标志位作为编辑标记来设置与数字信号的每个编辑点相关联的编辑标志,从而便于识别编辑 指向降低数据丢弃率。