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    • 2. 发明申请
    • RECEIVER AND RECEPTION METHOD
    • 接收和接收方法
    • US20150155951A1
    • 2015-06-04
    • US14402203
    • 2012-09-27
    • Masaki Noda
    • Masaki Noda
    • H04B10/61
    • H04B10/616H03G3/3084H04B10/6931
    • A photodiode (11) of a receiver (10) outputs a current signal having a value that corresponds to the optical power of a received optical signal. A transimpedance amplifier (12) amplifies the current signal output from the photodiode (11), converts the current signal to a voltage signal, and further outputs the voltage signal that is converted from the current signal. A current detection circuit (17) generates a current having a value larger than that of the current signal output from the photodiode (11). A feedback resistor (16) changes a gain of the transimpedance amplifier (12) based on magnitude of the current generated by the current detection circuit (17).
    • 接收器(10)的光电二极管(11)输出具有对应于所接收的光信号的光功率的值的电流信号。 跨阻放大器(12)放大从光电二极管(11)输出的电流信号,将电流信号转换为电压信号,并输出从电流信号转换的电压信号。 电流检测电路(17)产生具有比从光电二极管(11)输出的电流信号大的值的电流。 反馈电阻器(16)基于由电流检测电路(17)产生的电流的大小来改变跨阻抗放大器(12)的增益。
    • 4. 发明申请
    • OSTEOGENIC BIOMATERIAL CONTAINING OSTEOGENESIS PROMOTING SUBSTANCE AND NANOGEL
    • 含有生物体的生物体发生促进物质和纳米酮
    • US20100221345A1
    • 2010-09-02
    • US12161322
    • 2007-01-17
    • Kazunari AkiyoshiMasaki Noda
    • Kazunari AkiyoshiMasaki Noda
    • A61K9/14A61K31/5575A61K38/18A61P19/08
    • A61L27/52A61L27/227A61L2400/12A61L2430/02
    • An object of the present invention is to provide an osteogenic biomaterial which achieves long-term sustained release and localized functional expression of a substance which promotes the formation of bone tissue. The present inventors have found out that a nanogel efficiently encloses an osteogenesis promoting substance to suppress the substance from diffusion into blood, and that the nanogel functions as a carrier for local administration of the osteogenesis promoting substance. Furthermore, they have found out that the osteogenesis promoting substance-containing nanogel can be cross-linked with a water-soluble polymer to allow sustained release of the osteogenesis promoting substance at a local area over a long period of time. Based on these findings, the present invention was completed. The osteogenic biomaterial of the present invention which contains the osteogenesis promoting substance and the nanogel shows osteogenesis promoting activity over a long period of time, and can be used as a preventive and therapeutic agent against bone diseases.
    • 本发明的目的是提供一种能促进骨组织形成的物质的长期持续释放和局部功能表达的成骨生物材料。 本发明人已经发现,纳米凝胶有效地包围成骨促进物质以抑制物质扩散到血液中,并且纳米凝胶用作局部施用成骨促进物质的载体。 此外,他们发现含骨促进物质的纳米凝胶可以与水溶性聚合物交联,以允许长时间在局部区域持续释放成骨促进物质。 基于这些发现,完成了本发明。 含有成骨促进物质和纳米凝胶的本发明的成骨生物材料在长时间内显示成骨促进活性,并且可以用作抗骨骼疾病的预防和治疗剂。
    • 9. 发明授权
    • Multimode wireless terminal and wireless transmitter-receiver unit
    • 多模无线终端和无线收发单元
    • US07280811B2
    • 2007-10-09
    • US10874459
    • 2004-06-22
    • Yoshikazu SugiyamaMasaki NodaMakoto KatagishiYutaka Igarashi
    • Yoshikazu SugiyamaMasaki NodaMakoto KatagishiYutaka Igarashi
    • H04B1/18
    • H04B1/406H04B1/109
    • A multimode wireless terminal suitable for received level monitoring for a base station serving as an intersystem handover destination includes a first wireless transmitter-receiver unit for GSM, a second wireless transmitter-receiver unit for WCDMA, and a communication processor unit and an antenna switch unit connected to these wireless transmitter-receiver units. While conducting communication with a WCDMA network system via the second wireless transmitter-receiver unit, a level of a signal received from a GSM base station is monitored via the first wireless transmitter-receiver unit. A communication processor unit determines whether the level monitoring is interfered with by a WCDMA transmission signal, on the basis of a relation between a WCDMA transmission frequency and a reception frequency supplied from the GSM base station. If interference occurs, then the communication processor unit changes circuit characteristics of the first or second wireless transmitter-receiver unit, and thereby suppresses the interference.
    • 适用于作为系统间切换目的地的基站的接收电平监视的多模无线终端包括用于GSM的第一无线发射机 - 接收机单元,用于WCDMA的第二无线发射机 - 接收机单元,以及通信处理器单元和天线切换单元 连接到这些无线发射机 - 接收机单元。 在经由第二无线发射机 - 接收机单元与WCDMA网络系统进行通信时,经由第一无线发射机 - 接收机单元监测从GSM基站接收的信号的电平。 通信处理器单元基于WCDMA发送频率与从GSM基站提供的接收频率之间的关系来确定电平监视是否被WCDMA发送信号干扰。 如果发生干扰,则通信处理器单元改变第一或第二无线发射机 - 接收机单元的电路特性,从而抑制干扰。
    • 10. 发明授权
    • Preamplifier
    • 前置放大器
    • US07268628B2
    • 2007-09-11
    • US10543390
    • 2004-03-25
    • Masaki Noda
    • Masaki Noda
    • H03F3/08
    • H03F3/08H03F1/34H03F3/082
    • A preamplifier includes a negative-feedback amplifier circuit that converts a current signal from a photodetector into a voltage signal; and a conversion-gain control circuit that simultaneously controls a resistance value of a feedback resistor portion of the negative-feedback amplifier circuit and a resistance value of a load resistor portion of the negative-feedback amplifier circuit, based on the voltage signal from the negative-feedback amplifier circuit. Each of the feedback resistor portion and the load resistor portion includes a fixed resistor element, a MOSFET element, and a diode-connected transistor, connected in parallel.
    • 前置放大器包括将来自光电检测器的电流信号转换为电压信号的负反馈放大器电路; 以及转换增益控制电路,其基于来自负的反馈放大器电路的电压信号同时控制负反馈放大器电路的反馈电阻部分的电阻值和负反馈放大器电路的负载电阻器部分的电阻值 反馈放大器电路。 反馈电阻器部分和负载电阻器部分中的每一个包括并联连接的固定电阻器元件,MOSFET元件和二极管连接的晶体管。