Ear-type thermometer and a control method thereof
    1.
    发明授权
    Ear-type thermometer and a control method thereof 失效
    耳式温度计及其控制方法

    公开(公告)号:US08126672B2

    公开(公告)日:2012-02-28

    申请号:US12567354

    申请日:2009-09-25

    IPC分类号: G01K15/00

    摘要: An ear-type thermometer which measures body temperature using a temperature detection element 21 that detects ambient temperature and an infrared detection element 22 that detects infrared radiation from a measurement site within the aural cavity, the 2 elements housed in a probe 3, wherein the ear-type thermometer comprises a probe cover 10 which can be detachably provided with the probe, a detection switch 60 which detects that the probe cover is attached or detached to the probe, and two temperature conversion coefficients 52a and 52b which corrects body temperature based on the detection result from the two detection elements. Further, the thermometer comprises a detection switch 60 which detects that the probe cover is attached or detached to and from the probe, a temperature conversion coefficient 52a which corrects body temperature based on detection results from the two detection elements, a control unit 50 which determines whether the probe cover has exceeded the usage count limit or not using an actual usage count, a speaker 12 or a liquid crystal display unit which alerts need to replace the probe cover when the usage count limit has been exceeded.

    摘要翻译: 使用检测环境温度的温度检测元件21测量体温的耳式温度计和检测来自耳廓腔内的测量部位的红外线辐射的红外线检测元件22,容纳在探头3中的2个元件,其中耳朵 型温度计包括可拆卸地设置有探针的探针盖10,检测探头盖附接或分离到探针的检测开关60以及基于该温度校正校正体温的两个温度转换系数52a和52b 来自两个检测元件的检测结果。 此外,温度计包括检测开关60,该检测开关60检测探头盖是否附接或离开探头,温度转换系数52a根据来自两个检测元件的检测结果来校正体温;控制单元50,其确定 探头盖是否超过了实际使用次数的使用次数限制,扬声器12或液晶显示单元,当超过使用次数限制时,警报需要更换探头盖。

    EAR-TYPE THERMOMETER AND A CONTROL METHOD THEREOF
    2.
    发明申请
    EAR-TYPE THERMOMETER AND A CONTROL METHOD THEREOF 失效
    EAR型温度计及其控制方法

    公开(公告)号:US20100017163A1

    公开(公告)日:2010-01-21

    申请号:US12567354

    申请日:2009-09-25

    IPC分类号: G01K15/00 G01K1/08

    摘要: An ear-type thermometer which measures body temperature using a temperature detection element 21 that detects ambient temperature and an infrared detection element 22 that detects infrared radiation from a measurement site within the aural cavity, the 2 elements housed in a probe 3, wherein the ear-type thermometer comprises a probe cover 10 which can be detachably provided with the probe, a detection switch 60 which detects that the probe cover is attached or detached to the probe, and two temperature conversion coefficients 52a and 52b which corrects body temperature based on the detection result from the two detection elements. Further, the thermometer comprises a detection switch 60 which detects that the probe cover is attached or detached to and from the probe, a temperature conversion coefficient 52a which corrects body temperature based on detection results from the two detection elements, a control unit 50 which determines whether the probe cover has exceeded the usage count limit or not using an actual usage count, a speaker 12 or a liquid crystal display unit which alerts need to replace the probe cover when the usage count limit has been exceeded.

    摘要翻译: 使用检测环境温度的温度检测元件21测量体温的耳式温度计和检测来自耳廓腔内的测量部位的红外线辐射的红外线检测元件22,容纳在探头3中的2个元件,其中耳朵 型温度计包括可拆卸地设置有探针的探针盖10,检测探头盖附接或分离到探针的检测开关60以及基于该温度校正校正体温的两个温度转换系数52a和52b 来自两个检测元件的检测结果。 此外,温度计包括检测开关60,该检测开关60检测探头盖是否附接或离开探头,温度转换系数52a根据来自两个检测元件的检测结果来校正体温;控制单元50,其确定 探头盖是否超过了实际使用次数的使用次数限制,扬声器12或液晶显示单元,当超过使用次数限制时,警报需要更换探头盖。

    Organism signal measuring apparatus
    3.
    发明授权
    Organism signal measuring apparatus 失效
    有机信号测量装置

    公开(公告)号:US5092340A

    公开(公告)日:1992-03-03

    申请号:US347893

    申请日:1989-04-12

    摘要: An apparatus for achieving a long-term organism signal measurement, for example, an ECG waveform measurement includes measuring means (1) and input means (2) for setting and inputting organism signal analysis data in the measuring means (1). By supplying via the input means (2) organism signal analysis data unique to an organism to be measured into the measuring means (1), there is conducted a learning operation of the characteristics of the organism signals of the subject. Thereafter, the measurement and analysis of the organism signals are achieved for a long period of time by use of the measuring means (1). The measurement is accomplished after the characteristics of the organism signals of the subject are learned, and hence the reliability is increased. In addition, the realtime measurement and analysis are conducted by the measuring means (1) so as to store only abnormal waveforms, which facilitates the judgement thereof to be conducted by a doctor.

    Method and apparatus for measuring temperature of a living body
    4.
    发明授权
    Method and apparatus for measuring temperature of a living body 失效
    用于测量生物体温度的方法和装置

    公开(公告)号:US5015102A

    公开(公告)日:1991-05-14

    申请号:US378186

    申请日:1989-08-09

    申请人: Keiji Yamaguchi

    发明人: Keiji Yamaguchi

    IPC分类号: G01K7/00 G01K7/42 G01K13/00

    CPC分类号: G01K13/002 G01K7/42

    摘要: A method and apparatus for measuring the temperature of a living body, providing a predetermined predictive functional formula in which the value of a shape parameter for reflecting the shape of a sensed temperature curve and the value of coefficient parameters for superimposing said prediction function on said sensed temperature curve are unknown. The temperature of a living body is sensed to obtain temperature data for subsequent processing, and elapsed time from start of temperature measurement is measured to obtain elapsed time data. The value of shape parameter is set on the basis of prescribed temperature data, and the value of coefficient parameters are set by solving simultaneous equations composed of a plurality of said predictive functional formula which includes said set value of shape parameter, and in which temperature data at a plurality of different points in time serve as purposive variables and functions of time data at the plurality of points in time serve as explicative variables. Sensed temperature that will prevail at a future time is calculated through prediction processing in accordance with the functional formula specified by said set value of shape parameter and coefficient parameters.

    摘要翻译: PCT No.PCT / JP87 / 00816 Sec。 371日期1989年8月9日 102(e)日期1989年8月9日PCT提交1987年10月23日PCT公布。 出版物WO88 / 05161 日期:1988年7月14日。一种用于测量生物体温度的方法和装置,提供预定的预测功能公式,其中用于反映感测温度曲线的形状的形状参数的值和系数参数的值 将所述预测函数叠加在所述感测温度曲线上是未知的。 感测生物体的温度以获得用于后续处理的温度数据,并且测量从开始温度测量开始的经过时间以获得经过的时间数据。 基于规定的温度数据设定形状参数的值,并且通过求解由包括形状参数的所述设定值的多个所述预测功能公式组成的联立方程来设定系数参数的值,其中温度数据 在多个不同的时间点,作为时间数据的有目的的变量和时间的功能作为说明变量。 根据由形状参数和系数参数的设定值指定的功能公式,通过预测处理来计算未来时间将达到的感测温度。

    Sphygmomanometer adopting recognition of korotkoff sounds
    5.
    发明授权
    Sphygmomanometer adopting recognition of korotkoff sounds 失效
    血压计采用korotkoff声音识别

    公开(公告)号:US4840181A

    公开(公告)日:1989-06-20

    申请号:US32555

    申请日:1987-04-01

    申请人: Keiji Yamaguchi

    发明人: Keiji Yamaguchi

    IPC分类号: A61B5/02 A61B5/022 G06F17/00

    CPC分类号: A61B5/02208

    摘要: A sphygmomanometer includes a pump for applying variable pressure to a blood vessel, a microphone for sensing oscillation which is produced from the blood vessel being pressurized by the pump, a pressure detecting section for sensing the pressure being applied to the blood vessel, and a Korotkoff sound recognizing section for recognizing Korotkoff sounds out of the oscillation detected by the microphone. When the recognizing section has recognized a Korotkoff sound, the instantaneous pressure on the blood vessel is detected by the pressure detecting section to measure blood pressure. Recognition of Korotkoff sounds by the recognizing section is inhibited until a predetermined period of time expires since the recognition of a Korotkoff sound, to prevent the tailing of a Korotkoff sound from being recognized erroneously.

    摘要翻译: 血压计包括用于向血管施加可变压力的泵,用于感测由泵加压的血管产生的振动的麦克风,用于感测施加到血管的压力的压力检测部,以及Korotkoff 用于识别Korotkoff声音的声音识别部分不是由麦克风检测到的振荡。 当识别部分识别到Korotkoff声音时,由压力检测部分检测血管上的瞬时压力以测量血压。 识别部分对Korotkoff声音的识别被禁止,直到从Korotkoff声音的识别开始到预定时间段,以防止Korotkoff声音的拖尾被错误地识别。

    Method and apparatus for measuring circulatory function
    6.
    发明授权
    Method and apparatus for measuring circulatory function 失效
    测量循环功能的方法和装置

    公开(公告)号:US4677983A

    公开(公告)日:1987-07-07

    申请号:US838604

    申请日:1986-03-11

    CPC分类号: A61B5/02208

    摘要: A method and apparatus for measuring the circulatory function of a living body in which a systolic blood pressure value is measured based on recognition of an initial Korotkoff sound made at the start of a reduction in pressure of a pressurized cuff affixed to a patient's arm. After the recognition of the initial Korotkoff sound, conditions are relaxed to enable measurement of pulse rate, judgment of the correctness of the systolic blood pressure value and a dicision as to whether applied pressure is adequate, all on the basis of sounds from the patient's blood vessel. Finally, diastolic blood pressure is measured based again on recognition of the Korotkoff sound.

    摘要翻译: 一种用于测量生物体的循环功能的方法和装置,其中,根据对固定在患者的手臂上的加压袖带的压力降低开始时的初始Korotkoff声音的识别来测量收缩压值。 在识别初始Korotkoff声音之后,放宽条件以使得能够测量脉率,判断收缩压值的正确性以及关于施加的压力是否足够的判断,这一切都是基于来自患者血液的声音 船只。 最后,再次通过Korotkoff声音的识别来测量舒张压。

    Braking structure for handle body
    7.
    发明授权
    Braking structure for handle body 有权
    手柄车身制动结构

    公开(公告)号:US08875352B2

    公开(公告)日:2014-11-04

    申请号:US13510474

    申请日:2010-11-12

    IPC分类号: A45C13/22 F16F9/12 B60N3/02

    摘要: A braking structure for a turning body includes an engagement device rotatably engaging a movable-side portion of a rotation damper with a base at a rotation center of the movable-side portion; a first fixing device fixing the movable-side portion relative to the turning body; and a second fixing device fixing a stationary-side portion of the rotation damper relative to the base. The engagement device includes an axis protrusion provided on one side of either the movable-side portion or the base, and a receiving portion provided on the other side of either the movable-side portion or the base, and receiving the axis protrusion from a direction perpendicular to a rotation axis of the rotation. Also, an inserting path for the axis protrusion continuing to the receiving portion is adapted to expand in the direction perpendicular to the rotation axis by an elastic deformation when the inserting path receives the axis protrusion.

    摘要翻译: 用于转动体的制动结构包括:接合装置,其可旋转地接合旋转阻尼器的可动侧部分与基座在可动侧部分的旋转中心; 第一固定装置,其相对于所述转动体固定所述可动侧部分; 以及固定所述旋转阻尼器的静止侧部分相对于所述基座的第二固定装置。 接合装置包括设置在可动侧部分或底座的一侧上的轴突起和设置在可动侧部分或基部的另一侧上的接收部分,并且将轴突起从方向 垂直于旋转的旋转轴线。 此外,当插入路径接收轴突起时,用于连续接收部分的轴突起的插入路径适于在垂直于旋转轴线的方向上通过弹性变形而膨胀。

    Ear thermometer and method of manufacturing ear thermometer
    8.
    发明授权
    Ear thermometer and method of manufacturing ear thermometer 失效
    耳温度计和制造耳温度计的方法

    公开(公告)号:US08308353B2

    公开(公告)日:2012-11-13

    申请号:US12538414

    申请日:2009-08-10

    申请人: Keiji Yamaguchi

    发明人: Keiji Yamaguchi

    IPC分类号: G01J5/02

    摘要: An ear thermometer which includes a temperature detection element and infrared detection element arranged near the opening portion of a probe achieves a reduction in manufacturing cost while reducing the influence of thermal shock. This invention provides an ear thermometer incorporating, in a probe, a temperature detection element to detect an environmental temperature and an infrared detection element to detect infrared radiation emitted from a temperature measurement region in an earhole. The probe includes an end face portion having an opening in its distal end, an inner surface portion of a hollow cylindrical member, and an inwardly protruding engaging portion. A detection element housing is fixed to close the opening of the probe and to form an air layer between the detection element housing and the probe.

    摘要翻译: 包括设置在探头的开口部附近的温度检测元件和红外线检测元件的耳温度计,能够降低制造成本,同时降低热冲击的影响。 本发明提供了一种耳探温度计,其在探测器中结合有检测环境温度的温度检测元件和红外线检测元件,以检测从耳孔中的温度测量区域发射的红外辐射。 探头包括在其远端具有开口的端面部分,中空圆柱形部件的内表面部分和向内突出的接合部分。 固定检测元件壳体以封闭探针的开口并在检测元件壳体和探针之间形成空气层。

    Apparatus with a rotating body
    9.
    发明申请
    Apparatus with a rotating body 有权
    具有旋转体的装置

    公开(公告)号:US20090250579A1

    公开(公告)日:2009-10-08

    申请号:US12285385

    申请日:2008-10-03

    IPC分类号: B60R7/10 F16B45/02

    CPC分类号: B60R7/10 B60R7/08

    摘要: An apparatus includes a supporting body, a rotating body assembled with the supporting body and rotating at least between a standard position and a deployed position through an intermediate position, and a biasing device for applying a biasing force to the rotating device in a direction of returning the rotating body to the standard position. A speed switching device changes a rotational speed of the rotating body from the deployed position to the intermediate position different from that from the intermediate position to the standard position in a return rotational movement of the rotating body.

    摘要翻译: 一种装置,包括支撑体,与支撑体组装并经由中间位置至少在标准位置和展开位置之间旋转的旋转体,以及用于在返回方向上向旋转装置施加偏置力的偏置装置 旋转体到标准位置。 速度切换装置在旋转体的返回旋转运动中将旋转体的旋转速度从展开位置改变到与从中间位置到标准位置不同的中间位置。

    Electronic clinical thermometer
    10.
    发明授权
    Electronic clinical thermometer 失效
    电子体温计

    公开(公告)号:US5011294A

    公开(公告)日:1991-04-30

    申请号:US584344

    申请日:1990-09-18

    申请人: Keiji Yamaguchi

    发明人: Keiji Yamaguchi

    IPC分类号: G01K7/42

    CPC分类号: G01K7/42

    摘要: An electronic clinical thermometer for predicting a sensed temperature that will prevail at a future time is equipped with a predetermined predictive functional formula in which values of predetermined coefficient parameters for superimposing the prediction function on a sensed temperature curve are undetermined. Temperature data indicative of sensed body temperature are stored in correlation with elapsed time from the start of measurement, and plural items of the temperature data are read out by a predetermined method as measurement proceeds. By performing regression analysis based on a plurality of the predictive functional formulae, or by solving simultaneous equations constituted by the plurality of predicitve functional formulae, in which the sensed temperature data that have been read serve as purposive variables and functions of time data related to the temperature data serve as explicative variables, the values of the coefficient parameters are set. Prediction processing is executed to calculate sensed temperature that will prevail at a future time in accordance with the predictive functional formula specified by the set values of the coefficient parameters.