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    • 32. 发明授权
    • Bone drill and methods of treatment
    • 骨钻和治疗方法
    • US08828001B2
    • 2014-09-09
    • US12064276
    • 2008-02-15
    • Stanley D. StearnsH. Max Loy, Jr.
    • Stanley D. StearnsH. Max Loy, Jr.
    • A61B17/16A61B17/00A61B17/34
    • A61B17/1642A61B17/3472A61B2017/003Y10T408/568Y10T408/665
    • A minimally invasive and particularly small apparatus for drilling into bone and for providing for delivery of medical treatment is provided. The directional drilling apparatus includes a miniature shaft, a bit, first shaft-mounted thrust ring, second shaft-mounted thrust ring, a tubing jacket surrounding the shaft and intermediate the first and second shaft-mounted thrust rings, and a guide tube encapsulating the tubing jacket. As a result, a hole, targeted towards a cancerous lesion within the bone, is possible. After removal of the shaft and the tubing jacket, treatment may be introduced through the particularly small passage created by the directional drilling apparatus or through the passage via a capillary inserted through at least a portion of the guide tube and the passage, which guide tube may include a hypodermic needle.
    • 提供了一种用于钻入骨骼并提供医疗处理的微创特别小的装置。 定向钻井设备包括微型轴,钻头,第一轴安装推力环,第二轴安装的推力环,围绕轴并且在第一和第二轴安装推力环之间的管套,以及封装 管夹套。 因此,可以有一个针对骨内癌变病变的孔。 在移除轴和管套之后,处理可以通过由定向钻井设备产生的特别小的通道引入,或者通过经由插入穿过导管和通道的至少一部分的毛细管的通道引入,该导管可以 包括皮下注射针。
    • 33. 发明授权
    • Syringe for injection through zone of body
    • 注射器通过身体区域注射
    • US08529516B2
    • 2013-09-10
    • US12276637
    • 2008-11-24
    • Stanley D. Stearns
    • Stanley D. Stearns
    • A61M5/00
    • A61M5/28A61M5/204A61M5/283A61M5/315A61M5/32
    • A syringe which disperses medicate across a zone in the body during apparent conventional operation. The improved syringe includes a barrel, a plunger, and an operating cylinder. In operation, the needle of the syringe is inserted into the body at the distal portion of the portion of the body which is to receive the medicate. A single arm is attached to the barrel and passes through an operating cylinder with a thumb rest on its top. As a result, in operation, the user draws the single arm up to the thumb rest, thus causing the syringe to withdraw during injection and leaving a patch of medicate during operation.
    • 注射器,其在常规操作期间将药物分散在体内的区域中。 改进的注射器包括筒,柱塞和操作筒。 在操作中,将注射器的针插入身体中的待接受药物的身体部分的远端部分。 单个臂连接到枪管,并通过一个操作缸,拇指放在其顶部。 结果,在操作中,用户将单臂拉到拇指托架,从而使注射器在注射期间退出并在操作期间留下一片药物。
    • 36. 发明授权
    • Gas detector with modular detection and discharge source calibration
    • 具有模块检测和放电源校准的气体探测器
    • US06842008B2
    • 2005-01-11
    • US10387011
    • 2003-03-11
    • Stanley D. StearnsHuamin Cai
    • Stanley D. StearnsHuamin Cai
    • G01N27/70G01N27/62
    • G01N27/70
    • A pulsed discharge detector includes a device and method for modular measurement of ionization signals from a sample. The pulsed discharge detector includes a discharge source in a chamber, a collector spaced from the discharge source, a monitor connected to a discharge electrode, an electrometer connected to the collector, a calibrator and a sample and hold processor. The discharge electrodes include a source electrode centrally located in relation to the discharge chamber wall. The collector is centrally located in relation to the chamber wall. Discharge signals are monitored for time and intensity. Collected signals are adjusted based on the discharge intensity. Collected signals are collected during a time window based on the discharge occurrence time. Detector output is predicated on collected signals coordinated with pulsed discharges. The calibrator of the present invention adjusts the collected signals to reduce discharge noise. The sample and hold processor accumulates selected adjusted signal values to quantify sample concentrations.
    • 脉冲放电检测器包括用于模块测量来自样品的电离信号的装置和方法。 脉冲放电检测器包括在腔室中的放电源,与放电源间隔开的收集器,连接到放电电极的监视器,连接到收集器的静电计,校准器和采样保持处理器。 放电电极包括相对于放电室壁居中定位的源电极。 收集器相对于室壁居中。 监测放电信号的时间和强度。 收集的信号根据放电强度进行调整。 基于放电发生时间在时间​​窗口收集收集的信号。 检测器输出基于与脉冲放电协调的收集信号。 本发明的校准器调节收集的信号以减少放电噪声。 采样和保持处理器累积选定的调整信号值以量化样品浓度。
    • 38. 发明授权
    • Photoionization detector incorporating a dopant and carrier gas flow
    • 掺入掺杂剂和载气流的光电离检测器
    • US5541519A
    • 1996-07-30
    • US349039
    • 1994-12-02
    • Stanley D. StearnsWayne E. Wentworth
    • Stanley D. StearnsWayne E. Wentworth
    • G01N27/70G01N30/64G01N27/62G01N27/68
    • G01N27/70G01N2030/642
    • A pulsed rare gas photoionization detector apparatus is set forth and incorporates a closed chamber for receiving a carrier gas flowing there through between inlets and outlets, and the carrier gas is exposed to a pair of electrodes forming a spark across the chamber and through the carrier gas. One component of the carrier gas is a dopant which selected from a plurality of rare gases. The sample to be analyzed is injected into the closed chamber where it commingles with the carrier gas. One reaction involves the formation of selected dopant in an excited state, which upon decay, serves as a source of ionizing radiation which reacts with sample compounds producing detectable events. These events are used to identify and quantify unknown compounds contained in the sample. The methods and apparatus are especially useful in selectively ionizing the compounds to be measured while not ionizing other constituents of the sample. This greatly enhances the signal-to-noise ratio for detecting impurity compounds. As an example, when the detection system is used to monitor air quality, the major constituents of air are not ionized.
    • 提出了一种脉冲稀有气体光电离检测装置,并包括一个封闭室,用于接收通过入口和出口之间流过的载气,并且载气暴露于一对电极,该电极在腔室之间形成火花并通过载气 。 载气的一个成分是从多种稀有气体中选出的掺杂剂。 将要分析的样品注入到与载气混合的封闭室中。 一个反应涉及在激发状态下形成所选择的掺杂剂,其在衰变时用作与产生可检测事件的样品化合物反应的电离辐射源。 这些事件用于识别和量化样品中包含的未知化合物。 所述方法和装置在选择性地离子化待测量的化合物而不电离样品的其它组分时特别有用。 这大大提高了检测杂质化合物的信噪比。 例如,当检测系统用于监测空气质量时,空气的主要成分不会电离。
    • 39. 发明授权
    • Method and apparatus for training horn players
    • 训练角球员的方法和装置
    • US4779465A
    • 1988-10-25
    • US12187
    • 1987-02-09
    • Stanley D. StearnsJohn K. McGee
    • Stanley D. StearnsJohn K. McGee
    • G09B15/00G09B15/06G10D9/00G01L5/00G10D9/02
    • G10D9/00G09B15/00G09B15/06
    • The present apparatus in the preferred and illustrated embodiment comprises first and second rings which are respectively affixed to the mouthpiece and mouth pipe. As force is increased by the musician in holding the mouthpiece against his lips, such force is measured by cooperative measuring means fixed to said first and second means. In the preferred embodiment, the force measuring means includes an aligned pin on one of said means positioned relative to a transducer coil to thereby provide an indication of force. The signal indicative of force is delivered to a time based recorder and is recorded as a function of time along with additional data including sound intensity levels and frequency of the music to provide correlation between force, intensity and frequency as a function of time. A method is also taught including the recording of such data to teach the musician to reduce the force applied against his lips.
    • 在优选和示出的实施例中的本装置包括分别固定在接口管和口管上的第一和第二环。 随着音乐家将口舌靠在嘴唇上的力量增加,这种力由固定在所述第一和第二装置上的协同测量装置测量。 在优选实施例中,力测量装置包括在相对于换能器线圈定位的所述装置中的一个上的对准销,从而提供力的指示。 指示力的信号被传送到基于时间的记录器,并且作为时间的函数被记录为与包括声音强度水平和音乐频率的附加数据一起作为时间的函数提供力,强度和频率之间的相关性。 还教导了一种方法,包括记录这些数据以教导音乐家减少施加在他的嘴唇上的力。
    • 40. 发明授权
    • Variable tensioning system for shear seal valves
    • 用于剪切密封阀的可变张紧系统
    • US4550742A
    • 1985-11-05
    • US572746
    • 1984-01-23
    • Stanley D. Stearns
    • Stanley D. Stearns
    • F16K5/16F16K11/074F17D1/16
    • F16K11/0743F16K3/10F16K5/166Y10T137/0396Y10T137/86863
    • This disclosure sets forth a variable tensioning system for use in a valve featuring shear seals. In the preferred and illustrated embodiment, a spring system provides loading on the valve element to force that element into engagement with a valve seat. A sliding sealing surface is accomplished in this contact. The valve element may be a tapered plug, a sphere or a flat face or plate. Typically, it is a hard member working against a seat supporting a seal surface featuring a sliding shear seal. A specific minimum load is applied to the valve element to accomplish sealing against minimum pressure. The present apparatus incorporates a closed chamber enclosing a slideable piston. The piston has a specific cross-sectional area exposed to fluid pressure of the fluid being controlled by the valve. The piston applies pressure dependent force against the valve element. This adds to the force applied to the valve element by a spring means, the two forces controllably adding to assure that the seal is sufficiently loaded to perfect a seal up to a specified maximum pressure.
    • 本公开提出了一种用于具有剪切密封件的阀的可变张紧系统。 在优选和示出的实施例中,弹簧系统提供阀元件上的负载以迫使元件与阀座接合。 在该接触中实现滑动密封表面。 阀元件可以是锥形塞子,球体或平面或板。 典型地,它是一个坚硬的构件,用于抵靠支撑着具有滑动剪切密封的密封表面的座位。 特定的最小负载被施加到阀元件以实现最小压力的密封。 本装置包括封闭的可容纳活塞的封闭室。 活塞具有暴露于由阀控制的流体的流体压力的特定横截面面积。 活塞对阀元件施加压力依赖力。 这增加了通过弹簧装置施加到阀元件的力,这两个力可控地增加以确保密封件被充分地加载以将密封件完美地达到规定的最大压力。