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    • 3. 发明授权
    • Discretely modifiable imaging in ultrasonic diagnostic equipment
    • 超声波诊断设备中可离散地成像
    • US5322066A
    • 1994-06-21
    • US61255
    • 1993-05-17
    • Mutsumi MiyatakaMasaki Iwasaki
    • Mutsumi MiyatakaMasaki Iwasaki
    • A61B8/14G01N29/06G01S7/60G01S15/89A61B8/00
    • G01S15/899G01N29/0609G01S7/60
    • In ultrasonic diagnostic equipment processing signals echo-reflected from ultrasonic pulses beamed into a patient and providing composite display of patient-related diagnostic information including organic information, the comprehensive diagnostic information is discretely stored as various imaging data into separate display memories, and is furthermore externally storable through VTR recording such that the information can be retrieved for regeneration. A selector selects between either real-time imaging derived from the display memories, or regeneration imaging obtained from a pseudo-video combined signal stored in the VTR, for input to a color palette as an imaging processor which color encodes and combines data for composite imaging. Separate imaging modification processes are post real-time executable upon the discretely regenerated imaging data retrieved from the VTR for altered display on a monitor of the equipment.
    • 在超声波诊断设备处理从超声脉冲回波反射到患者体内的信号,并提供包括有机信息在内的患者相关诊断信息的综合显示,综合诊断信息被离散地存储为各种成像数据到独立的显示存储器中, 可通过VTR记录存储,以便可以检索信息以进行再生。 选择器在从显示存储器获得的实时成像或从存储在VTR中的伪视频合成信号获得的再生成像之间进行选择,以输入到调色板作为成像处理器,其对彩色编码并组合用于复合成像的数据 。 独立的成像修改过程可以在从VTR检索的离散再生的成像数据上实时执行,以在设备的监视器上进行改变显示。
    • 8. 发明授权
    • Cationic group-containing copolymer and thickener
    • 含阳离子基团的共聚物和增稠剂
    • US6069216A
    • 2000-05-30
    • US89358
    • 1998-06-03
    • Masaki IwasakiTadanori YoshimuraTakashi MatsuoKoji Yui
    • Masaki IwasakiTadanori YoshimuraTakashi MatsuoKoji Yui
    • A61K8/81A61Q19/00C08F220/34C08F220/60C08F126/06
    • C08F220/34A61K8/8158A61K8/817A61Q19/00C08F220/60A61K2800/5426
    • A cationic group-containing copolymer is provided which possesses excellent thixotropy and exhibits high adsorbability to the skin, hair, etc. and, when incorporated as a thickener in cosmetic articles, manifests a very satisfactory tactile sensation. The cationic group-containing copolymer is characterized in that the viscosity at 25.degree. C. of the aqueous solution prepared by incorporating the copolymer in deionized water at a concentration of 0.5 wt. % is in the range of 0.3-20 Pa.multidot.sec. at a shear rate of 1 sec.sup.-1 and in the range of 0.01-5 Pa.multidot.sec. at a shear rate of 10 sec.sup.-1 and the viscosity at a shear rate of 1 sec.sup.-1 is higher than the viscosity at a shear rate of 10 sec.sup.-1. This cationic group-containing copolymer is obtained by particularly using a cationic group-containing vinyl monomer, a hydrophilic nonionic group-containing vinyl monomer such as N,N-dimethyl (meth)acrylamide or N,N-diethyl (meth)acrylamide, and a cross-linking vinyl monomer containing at least two vinyl groups in the molecular unit thereof as essential component monomers and radically polymerizing the essential component monomers. A thickener made of the copolymer is also disclosed.
    • 提供了具有优异的触变性并且对皮肤,毛发等具有高吸附性的阳离子基团共聚物,并且当在化妆品中作为增稠剂掺入时,表现出非常令人满意的触觉。 含阳离子基团的共聚物的特征在于,通过将共聚物以0.5重量%的浓度掺入去离子水中制备的水溶液在25℃下的粘度。 %在0.3-20 Paxsec的范围内。 在1秒-1的剪切速率下,在0.01-5帕斯卡的范围内。 剪切速率为10秒-1,剪切速度为1秒-1时的粘度高于剪切速率为10秒-1时的粘度。 这种含阳离子基团的共聚物通过特别使用含阳离子基团的乙烯基单体,含亲水性非离子基团的乙烯基单体如N,N-二甲基(甲基)丙烯酰胺或N,N-二乙基(甲基)丙烯酰胺和 在其分子单元中含有至少两个乙烯基的交联乙烯基单体作为必需组分单体,并使基本组分单体自由基聚合。 还公开了由共聚物制成的增稠剂。
    • 9. 发明授权
    • Distance measuring equipment and distance measuring equipment monitor system
    • 距离测量设备和测距设备监控系统
    • US08102304B2
    • 2012-01-24
    • US12690359
    • 2010-01-20
    • Masaki IwasakiYoshirou Aoki
    • Masaki IwasakiYoshirou Aoki
    • G01S13/08
    • G01S13/785G01S1/024G01S7/4004G01S13/767
    • A transponder (12) transmits a reply in response to an interrogation input thereto, the interrogation including twin pulses, and a monitoring processor (13) transmits to the transponder a pseudo interrogation identical in format to the interrogation, receives from the transponder a reply responding to the pseudo interrogation, and monitors a performance of the transponder, the monitoring processor (13) including a pulse spacing adjuster (131c) operable to adjust a pulse spacing of twin pulses along with generation of the pseudo interrogation, and a monitor (134b) operable to output an alarm in response to a failed reception or a delayed reception of a reply from the transponder after transmission of a pseudo interrogation with a compliant pulse spacing, and further to output an alarm in response to a reception of a reply from the transponder after transmission of a pseudo interrogation with an uncompliant pulse spacing.
    • 应答器(12)响应于询问输入发送答复,询问包括双脉冲,监控处理器(13)向应答器发送格式相同的伪询问询问,从应答器接收响应的应答 并且监视所述应答器的性能,所述监视处理器(13)包括脉冲间隔调节器(131c),所述脉冲间隔调节器可操作以随着所述伪询问的产生来调整双脉冲的脉冲间隔,以及监视器(134b) 可操作地响应于在发送具有顺应性脉冲间隔的伪询问之后从发送应答器的接收失败或延迟接收来输出警报,并且还响应于来自应答器的回复的接收而输出警报 在发送具有不符合脉冲间隔的伪询问之后。
    • 10. 发明申请
    • ULTRASONOGRAPH
    • US20100016720A1
    • 2010-01-21
    • US12373858
    • 2006-09-20
    • Masaki Iwasaki
    • Masaki Iwasaki
    • A61B8/14
    • A61B8/00A61B2560/0276
    • In an ultrasonograph for obtaining information relating to the inside of a subject's body using an ultrasonic wave transmitted and received by the ultrasonic probe 11 and imaging the information, after a normal imaging is finished, the ultrasonic oscillators integrated in the ultrasonic probe 11 are individually driven by the transmitter-receiver 12 to transmit and receive the ultrasonic wave, an ultrasonic image generated based on the echo signal obtained by the transmission and reception of the ultrasonic wave by each ultrasonic oscillator is analyzed by the image analyzer 18. Based on the analysis result, the progression degree of the deterioration of the probe 11 is determined and displayed on the monitor 16. Accordingly, the user can appropriately determine the probe's degree of deterioration in early stages simply by referring to the determination result.
    • 在使用超声波探头11发送和接收的超声波获取关于被检体的内部的信息并对该信息进行成像的超声波诊断仪中,在正常成像结束后,集成在超声波探头11中的超声波振荡器被单独驱动 通过发射机 - 接收机12发送和接收超声波,通过图像分析器18分析基于通过每个超声波振荡器发送和接收超声波而获得的回波信号而生成的超声波图像。根据分析结果 探测器11的劣化的进行程度被确定并显示在监视器16上。因此,用户可以通过参考确定结果来适当地确定探测器的早期恶化程度。