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    • 6. 发明授权
    • Pressure flow system and method for treating a fluid permeable workpiece
such as a bone
    • 压力流动系统和用于处理流体可渗透的工件(例如骨)的方法
    • US5846484A
    • 1998-12-08
    • US821603
    • 1997-03-20
    • Nelson L. ScarboroughJohn W. MorrisJames L. RussellMichael Dowd
    • Nelson L. ScarboroughJohn W. MorrisJames L. RussellMichael Dowd
    • B08B5/02A61L2/00A61L27/00A61L27/36B08B3/02A61M31/00
    • A61F2/4644A61L2/0088A61L27/3608A61L27/3683A61F2002/4646Y10S623/923
    • A pressure flow system and method for its use are provided for contacting the interior of a fluid permeable, e.g., porous, workpiece. The system includes a fluid pressure chamber having an inlet port and an opening formed in one of the chamber walls. An adjustable seal capable of providing a fluid-tight seal about the exterior of a workpiece having a non-uniform surface is positioned within the opening. Fluid under pressure is supplied to the pressure chamber to force fluid to flow through the internal matrix of the workpiece. In a preferred embodiment, the workpiece is a bone or a section thereof, and the fluid is forced to flow from the endosteal portion of bone to the periosteal portion of bone through the vasculature and porous structure of the bone to remove blood, bone marrow and/or other non-bone constituent(s) from the bone. Alternatively, the fluid can be chosen to decontaminate and/or demineralize the bone, to stain the bone to improve visualization of the bone microvasculature or to impregnate with pharmacological agents (antibiotics, bone growth factors, etc.) so that bone can act as a delivery system.
    • 提供了一种压力流动系统及其使用方法,用于使流体可渗透的例如多孔的工件的内部接触。 该系统包括流体压力室,其具有形成在其中一个室壁中的入口和开口。 能够在具有不均匀表面的工件的外部提供流体密封的可调节密封件定位在开口内。 在压力下的流体被供应到压力室以迫使流体流过工件的内部基体。 在优选实施例中,工件是骨或其部分,并且迫使流体通过骨的脉管系统和多孔结构从骨的内膜部分流动到骨的骨膜部分,以去除血液,骨髓和 /或来自骨的其它非骨组分。 或者,可以选择流体以对骨进行去污和/或去矿物质,染色骨以改善骨微血管的可视化或用药物(抗生素,骨生长因子等)浸渍,使得骨可以作为 输送系统。
    • 8. 发明授权
    • Correlation data communications system
    • 相关数据通信系统
    • US4477912A
    • 1984-10-16
    • US348425
    • 1982-02-12
    • James L. Russell
    • James L. Russell
    • H04L7/04H04L23/02H04K1/04
    • H04L7/042H04L23/02H04L7/043
    • A digital data communications system employing correlation detection is disclosed as comprising an encoding system which encodes successive k-bit data words from a data source into predetermined start-stop phases of either a 2.sup.k -bit repeating pseudorandom binary code or a 2.sup.k -1 bit repeating pseudorandom binary code and a decoding system which receives the stream of ones and zeros in the pseudorandom binary code from the encoder and reproduces therefrom, using a correlation detector and associated circuitry, a replica of the original k-bit data word from the data source. Undesirable signal variations in the output of the correlation detector caused by a frequency translation error introduced in the transmission and reception of the pseudorandom binary code is eliminated by a feedback system which detects the effects of the frequency translation error at the output of the correlation detector and applies a frequency correction signal component to the pseudorandom binary code which offsets the frequency translation error prior to introduction of the pseudorandom binary code to the correlation detector.
    • 公开了一种使用相关检测的数字数据通信系统,其包括编码系统,其将来自数据源的连续k比特数据字编码为2k位重复伪随机二进制码或2k-1比特重复的预定起始停止相位 伪随机二进制码和解码系统,其从编码器接收伪随机二进制码中的1和0的流,并使用相关检测器和相关联的电路从数据源再现原始k位数据字的副本。 通过在相关检测器的输出端检测频率转换误差的影响的反馈系统来消除由在伪随机二进制码的发送和接收中引入的频率转换误差引起的相关检测器的输出中不期望的信号变化, 将频率校正信号分量应用于伪随机二进制码,其在将伪随机二进制码引入相关检测器之前抵消频率转换误差。
    • 9. 发明授权
    • Correlation data communications system
    • 相关数据通信系统
    • US4527275A
    • 1985-07-02
    • US390702
    • 1982-06-21
    • James L. Russell
    • James L. Russell
    • H04B7/01H04L7/04H04L23/02H04L27/20H04L27/227H04K1/04H04L27/10
    • H04L7/042H04B7/01H04L23/02H04L27/2014H04L27/2278H04L7/043
    • A digital data communications system employing correlation detection is disclosed as comprising an encoding system which encodes successive k-bit data words from a data source into predetermined start-stop phases of either a 2.sup.k -bit repeating pseudorandom binary code or a 2.sup.k -l bit repeating pseudorandom binary code and a decoding system which receives the stream of ones and zeros in the pseudorandom binary code from the encoder and reproduces therefrom, using a correlation detector and associated circuitry, a replica of the original k-bit data word from the data source. Undesirable signal variations in the output of the correlation detector caused by a frequency translation error introduced in the transmission and reception of the pseudorandom binary code is eliminated by a feedback system which detects the effects of the frequency translation error at the output of the correlation detector and applies a frequency correction signal component to the pseudorandom binary code which offsets the frequency translation error prior to introduction of the pseudorandom binary code to the correlation detector. In lieu of the feedback system, a frequency translation error can also be minimized through the use of minimum shift keying (MSK) encoding and decoding apparatus respectively provided in the encoding and decoding systems, upstream of the correlation detector.
    • 公开了一种使用相关检测的数字数据通信系统,其包括将来自数据源的连续k位数据字编码为2k位重复伪随机二进制码或2k-1位重复的预定起始停止相位的编码系统 伪随机二进制码和解码系统,其从编码器接收伪随机二进制码中的1和0的流,并使用相关检测器和相关联的电路从数据源再现原始k位数据字的副本。 通过在相关检测器的输出端检测频率转换误差的影响的反馈系统来消除由在伪随机二进制码的发送和接收中引入的频率转换误差引起的相关检测器的输出中不期望的信号变化, 将频率校正信号分量应用于伪随机二进制码,其在将伪随机二进制码引入相关检测器之前抵消频率转换误差。 代替反馈系统,也可以通过使用分别在相关检测器的上游的编码和解码系统中提供的最小移位键控(MSK)编码和解码装置来最小化频率转换误差。
    • 10. 发明授权
    • Method and apparatus for measuring distance between an aircraft and a
ground station
    • 用于测量飞机和地面站之间的距离的方法和装置
    • US4128835A
    • 1978-12-05
    • US874480
    • 1978-02-02
    • James L. Russell
    • James L. Russell
    • G01S13/79G01S13/84G01S9/04G01S9/56
    • G01S13/84G01S13/79
    • A distance measuring system is provided including a ground station transponder continuously transmitting a repeating pseudorandom coded bit pattern, and at least one aircraft interrogator receiving and locking onto the ground station signal. The aircraft interrogator transmits a coded interrogation signal in precise synchronism with an arbitrarily selected any one of the repetitive code words (bit patterns) that comprise the repeating pseudorandom coded bit pattern which are coded identically with the interrogation signal and waits for a reply. If the ground station receives the coded interrogation signal in synchronism with an identically coded word in its continuous transmission, it transmits a reply signal to the aircraft interrogator optionally encoded with synchronism error or interrogation steering information. If no reply is received by the aircraft interrogator, it transmits its next coded interrogation signal shifted by one or more bits relative to the arbitrarily selected received code word from the ground station. Successive interrogation signals are each shifted an additional predetermined number of bits until synchronism is attained and a reply signal is received. The number of bits of shifting performed by the aircraft needed for synchronization when combined with the number of bits representing the whole code word intervals elapsing between transmission of an interrogation and receipt of a reply represents the distance between the ground station and aircraft. The optionally encoded synchronism error and steering information is respectively utilized by the aircraft to more precisely calculate distance and alter its time of interrogation.
    • 提供了一种距离测量系统,包括地面站应答器连续地发送重复的伪随机编码比特模式,以及至少一个飞机询问器,接收并锁定到地面站信号上。 飞机询问器以与询问信号相同的编码重复码元编码比特模式的任意一个重复码字(比特码型)任意一个进行精确同步发送编码询问信号,并等待回复。 如果地面站在其连续传输中与相同编码的字同步地接收到编码的询问信号,则它向飞机询问器发送应答信号,该信号可选地用同步错误或询问指导信息进行编码。 如果飞机询问器没有接收到应答,则它发送其相对于来自地面站的任意选择的接收码字移位一个或多个比特的下一个编码询问信号。 连续询问信号各自移位额外的预定数量的位,直到获得同步并且接收到应答信号。 当与询问的发送和回复的接收之间经过的表示整个码字间隔的位的数量组合时,由同步所需的飞机执行的位移的位数表示地面站和飞行器之间的距离。 航空器分别利用可选地编码的同步误差和驾驶信息来更精确地计算距离并改变其询问时间。