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    • 4. 发明申请
    • Use of corticosteroids alone or in conjunction with nutritional therapy to reduce stress in animals
    • 单独或与营养治疗联合使用皮质类固醇可减少动物的压力
    • US20050277624A1
    • 2005-12-15
    • US10865671
    • 2004-06-09
    • Nigel CookAllan SchaeferJohn Church
    • Nigel CookAllan SchaeferJohn Church
    • A61K31/573
    • A61K31/573
    • The invention provides a method of alleviating the effects of stress in a non-human animal comprising administering a therapeutically effective amount of a corticosteroid, such as dexamethasone, alone or in conjunction with a nutritional supplement, to the animal in need thereof. The corticosteroid can be administered prior to exposure to the stress, during the stress, and/or following exposure to the stress. The administration of the corticosteroid in conjunction with a nutritional supplement provides synergistic effects in alleviating the effects of stress, particularly weight loss. The nutrient therapy comprises one or more sources of electrolytes providing each of sodium, potassium and magnesium; one or more sources of amino acids providing each of alanine, lysine, phenylalanine, methionine, threonine, leucine, isoleucine, valine, and glutamate; and a source of tryptophan. The combined administration appears to have a restorative effect.
    • 本发明提供一种减轻非人动物的应激作用的方法,其包括将单独或与营养补充剂结合的治疗有效量的皮质类固醇(如地塞米松)施用于有需要的动物。 皮质类固醇可以在暴露于应激之前,在应激期间和/或暴露于压力之后施用。 皮质类固醇与营养补充剂的给药在减轻压力的影响,特别是体重减轻方面提供协同效应。 营养治疗包括提供钠,钾和镁各自的一种或多种电解质来源; 提供丙氨酸,赖氨酸,苯丙氨酸,甲硫氨酸,苏氨酸,亮氨酸,异亮氨酸,缬氨酸和谷氨酸各自的一种或多种氨基酸来源; 和色氨酸的来源。 联合管理似乎具有恢复性作用。
    • 6. 发明授权
    • Microprocessor controlled system for unsupervised EMG feedback and
exercise training
    • 用于无监督EMG反馈和运动训练的微处理器控制系统
    • US5277197A
    • 1994-01-11
    • US917683
    • 1992-07-22
    • John ChurchWilliam Hassel
    • John ChurchWilliam Hassel
    • A61B5/00A61B5/0488A61B5/04
    • A61B5/486A61B5/0488
    • An exercise training system for prompting a user for stereo typed exercise and recording the intensity of the exercise, the training system consisting of an electromyographic sensor member which produces a rectified and time averaged signal forming a muscle force signal, the sensor member being provided with at least one electrode that is positioned adjacent to the user's muscle group for indicating muscle force of that muscle group, and a control member having a clock for measuring time intervals, and an alerting member for alerting the user that an exercise period has started as determined by the clock for a predetermined time interval loaded into the control means, whereby the user in response to the alerting member contracts and relaxes a predetermined muscle group and the muscle force used in the exercise is sensed by the electromyographic sensor.
    • 一种运动训练系统,用于提示用户进行立体声类型运动并记录运动的强度,所述训练系统由产生形成肌肉力信号的整流和时间平均信号的肌电图传感器构件组成,所述传感器构件设置在 位于与使用者的肌肉群相邻的用于指示该肌肉群的肌肉力的至少一个电极,以及具有用于测量时间间隔的时钟的控制构件,以及用于向使用者提醒运动时间已经开始的警报器, 所述时钟预定时间间隔被加载到所述控制装置中,由此所述用户响应于所述警报部件收缩并放松预定肌群,并且所述肌电图传感器感测到所述运动中使用的肌肉力。
    • 7. 发明授权
    • Universal self-venting drain valve
    • 通用自动排气阀
    • US4976285A
    • 1990-12-11
    • US530773
    • 1990-05-30
    • John ChurchVictor R. OelschlaegelJ. Donald Emery
    • John ChurchVictor R. OelschlaegelJ. Donald Emery
    • F16K24/02F16K51/00
    • F16K24/02F16K51/00Y10T137/86332Y10T137/86558
    • A self-venting drain valve (10) is mounted on a wall (30) of a fluid container having a fluid hole (32) and a vent hole (34). The valve has a body (20) with a bore (38) therein. A first hole (44) and a second hole (46) extend into said bore coaxial with the fluid and vent holes respectively. A drain port (48) extends through the valve body opposite the first hole. An air vent opening (54) extends through the valve body, generally opposite, but slightly offset from the second hole. A rotatable spool (60) is mounted in the bore. The spool has a first ball portion (62) adjacent the fluid hole and a second ball portion (64) adjacent the vent hole. The first and second ball portions of the spool have fluid passages therethrough. In a first position, the fluid passages in the ball portions are disposed from the fluid and vent openings and the valve is closed. Movement of the spool to a second position, enables the fluid passage in the first ball portion of the spool to receive fluid, placing the container under slight negative pressure. Further movement of the spool to a third position, opens the fluid passage through the second ball portion of the spool and enables air to enter the container so it may readily drain.
    • 自排气排水阀(10)安装在具有流体孔(32)和通气孔(34)的流体容器的壁(30)上。 该阀具有其中具有孔(38)的主体(20)。 第一孔(44)和第二孔(46)分别延伸到与流体和通气孔同轴的所述孔中。 排水口(48)延伸穿过与第一孔相对的阀体。 通气口(54)大致相对地延伸穿过阀体,但是稍微偏离第二孔。 可旋转的卷轴(60)安装在孔中。 阀芯具有邻近流体孔的第一球部分(62)和邻近通气孔的第二球部分(64)。 阀芯的第一和第二球部分具有通过其的流体通道。 在第一位置,球形部分中的流体通道从流体和排气开口设置并且阀关闭。 阀芯移动到第二位置使得阀芯的第一球部中的流体通道能够接收流体,将容器置于轻微的负压下。 阀芯进一步移动到第三位置,打开通过阀芯的第二球部的流体通道,并使空气进入容器,从而容易排出。
    • 8. 发明授权
    • Lifting monitoring and exercise training system
    • 起重监控和运动训练系统
    • US5474083A
    • 1995-12-12
    • US152082
    • 1993-11-15
    • John ChurchWilliam R. HasselFred Naghdi
    • John ChurchWilliam R. HasselFred Naghdi
    • A61B5/00A61B5/0488A61B5/04
    • A61B5/486A61B5/0488
    • The invention is directed to a microprocessor based system utilizing electromyographic sensor to monitor muscle force for lift training and exercise training. In the lift training embodiment the electrodes of the electromyographic sensor are secured to a belt so that they are located adjacent to the lower back of the user when wearing the belt. The lift training embodiment is also provided with a goniometer to measure lifting angle during training, which together with muscle force generated by the lower back is compared in the microprocessor to a programmed lifting parameters and if these parameters are exceeded the user is warned by and audible indicator. The lift trainer embodiment also periodically measures interelectrode impedance to insure actual usage. The exercise training embodiment has a bar graph display displaying muscle intensity and two light emitting diodes alerting a user when to contract or relax a monitored muscle group. The microprocessor is programmed with a exercise routine and alerts a user when the routine is to begin, the duration of muscle contraction and relaxation, and the repetitions required. During exercise the user can monitor muscle intensity from the bar graph display and or auditory feedback element. An alternate lift training systems comprises a belt mounted goniometer which is operatively coupled to a microprocessor having an electronic memory for time logging a lifting session. To insure actual usage the belt is also provided with temperature and/or motion sensors.
    • 本发明涉及一种基于微处理器的系统,其利用肌电图传感器监测升力训练和运动训练的肌力。 在电梯训练实施例中,肌电图传感器的电极固定到皮带上,使得它们在穿着皮带时位于使用者的下背部附近。 电梯训练实施例还设置有测角器,用于测量训练期间的提升角度,其中与下背部产生的肌力一起在微处理器中与编程的提升参数进行比较,并且如果超过了这些参数,则警告并听见用户 指示符。 电梯教练实施例还周期性地测量电极间阻抗以确保实际使用。 运动训练实施例具有显示肌肉强度的条形图显示和两个发光二极管,用于在何时收缩或放松所监视的肌肉群。 微处理器用锻炼程序进行编程,并且在开始例行程序,肌肉收缩和放松的持续时间以及所需的重复时提醒用户。 在运动过程中,用户可以从条形图显示和听觉反馈元素监测肌肉强度。 一种替代升降训练系统包括带式安装的角度计,其可操作地耦合到具有用于时间记录提升会话的电子存储器的微处理器。 为确保实际使用,皮带还配有温度和/或运动传感器。