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    • 2. 发明申请
    • MOTION INTENSITY MEASURING APPARATUS AND MOMENTUM MEASURING APPARATUS
    • 运动强度测量装置和动物测量装置
    • WO1997035514A1
    • 1997-10-02
    • PCT/JP1997000928
    • 1997-03-21
    • SEIKO EPSON CORPORATIONAMANO, KazuhikoUEBABA, KazuoISHIYAMA, Hitoshi
    • SEIKO EPSON CORPORATION
    • A61B05/02
    • A61B5/4854A61B5/02438A61B5/1118A61B5/222A61B5/7257A61B5/726A61B5/742A61B5/744
    • A motion intensity/momentum measuring apparatus capable of measuring a motion intensity of a motion irrespective of a kind of the motion and irrespective of whatever motion being performed, and measuring a momentum for only a motion having a suitable intensity for a user. The user estimates VO2max of his own by a known "indirect method" and inputs the value to the apparatus. The apparatus determines upper and lower limit values with a pulse rate corresponding to this VO2max as a center value. While the pulse rate exists between the upper and lower limit values during motion, CPU (308) increments the accumulation time stored in an RAM (309) at an interval based on a clock pulse supplied from an oscillation circuit (311) and a frequency division circuit (312). At the same time, the waveform of a pulse wave at the time of motion is compared with that at the time of rest and the motion intensity is estimated.
    • 一种运动强度/动量测量装置,其能够测量运动的运动强度,而不考虑运动的种类,而不考虑执行的任何运动,以及仅测量用户具有合适强度的运动的动量。 用户通过已知的“间接方法”估计他自己的VO2max,并将该值输入到装置中。 该装置以对应于该VO2max的脉率作为中心值来确定上限值和下限值。 当在运动期间脉冲率存在于上限值和下限值之间时,CPU(308)基于从振荡电路(311)提供的时钟脉冲和频率分割以一定间隔增加存储在RAM(309)中的累积时间 电路(312)。 同时,将运动时的脉搏波的波形与静止时的波形进行比较,估计运动强度。
    • 3. 发明申请
    • APPARATUS FOR DIAGNOSING CONDITION OF LIVING ORGANISM AND CONTROL UNIT
    • 用于诊断生活有机体和控制单元条件的装置
    • WO1996035368A1
    • 1996-11-14
    • PCT/JP1996001254
    • 1996-05-13
    • SEIKO EPSON CORPORATIONAMANO, KazuhikoUEBABA, KazuoISHIYAMA, Hitoshi
    • SEIKO EPSON CORPORATION
    • A61B05/00
    • A61B5/02416A61B5/02A61B5/02007A61B5/024A61B5/02438A61B5/18A61B5/4854A61B5/6806A61B5/681A61B5/6821A61B5/6822A61B5/7257A61M5/1723G06F19/00
    • An apparatus for diagnosing the condition of a living organism based on the pulse waves detected therefrom, and more specifically an apparatus for diagnosing accurately the present condition of a living organism based on the changes of the condition determined for a given period of time in the past with attention being paid to the periodic variation of the condition. The principal part of the apparatus comprises a waveform detection section (381) and a stroke output measurement section (382) for detecting respectively the waveform and stroke output of the living organism, a waveform extraction/storage section (386) for extracting characteristic information from the detected waveform, a memory (383) for storing the condition of the living organism calculated from the characteristic information and stroke output, an output section (385) for alarms, and a microcomputer (387) for generalizing all the sections of the apparatus. The microcomputer calculates circulation dynamics parameters based on the characteristic information obtained from the waveform extraction/storage section and stores the parameters in the memory at given time intervals. More specifically, the microcomputer (387) calculates the circulation dynamics parameters based on the characteristic information and stroke output at given time intervals and stores the parameters in the memory. Also the microcomputer (387) reads out the circulation dynamics parameters for a given period of time in the past from the memory (383) to calculate the average value and standard deviation, judges whether or not the circulation dynamics parameters calculated at the present fall within the definite range determined by the average value and standard deviation, and controls the output section (385) to output the alarm.
    • 一种用于基于从其检测到的脉搏波来诊断活体的状况的装置,更具体地说,用于根据过去所确定的条件的变化准确地诊断活体的现状的装置 注意条件的周期性变化。 该装置的主要部分包括波形检测部分(381)和用于分别检测生物体的波形和行程输出的行程输出测量部分(382),用于从生物体中提取特征信息的波形提取/存储部分(386) 所检测的波形,用于存储从特征信息和行程输出计算出的生物体状况的存储器(383),用于报警的输出部分(385)和用于对装置的所有部分进行泛化的微计算机(387)。 微型计算机基于从波形提取/存储部分获得的特征信息来计算循环动力学参数,并以给定的时间间隔将参数存储在存储器中。 更具体地,微型计算机(387)基于特定信息和给定时间间隔的行程输出计算循环动力学参数,并将参数存储在存储器中。 此外,微型计算机(387)从存储器(383)读出过去一段给定时间段的循环动力学参数,以计算平均值和标准偏差,判断当前计算的循环动力学参数是否在 由平均值和标准偏差确定的确定范围,并控制输出部分(385)输出报警。
    • 4. 发明申请
    • DIAL OF TIMEPIECE AND TIMEPIECE
    • TIMEPIECE和TIMEPIECE的拨号
    • WO1994028468A1
    • 1994-12-08
    • PCT/JP1994000818
    • 1994-05-20
    • SEIKO EPSON CORPORATIONAMANO, Kazuhiko
    • SEIKO EPSON CORPORATION
    • G04B19/06
    • G04B19/264
    • In various kinds of orally transmitted medical sciences, it is known that men have a biorhythm in accordance with the time. There is as an example in Indian orally transmitted medical science "Ayurveda". According to the present invention, a dial of a timepiece is divided into three fan-shaped regions of different colors in order to indicate which time zone according to Ayurveda the actual time belongs to. The regions of different colors correspond to Vata V, Kapha K and Pitta P of Ayurveda. One of these regions is indicated by an hour hand, whereby the indicating of Ayurveda time is done.
    • 在各种口头传播的医学中,人们知道男人根据时间具有生物节律。 印度口头传播医学“阿育吠陀”的例子就是这样。 根据本发明,将钟表的刻度盘划分为不同颜色的三个扇形区域,以便指示根据实际时间属于阿育吠亚的时区。 不同颜色的区域对应于Ayurveda的Vata V,Kapha K和Pitta P。 其中一个区域由小时指示,从而完成了阿育吠陀时间的指示。
    • 5. 发明申请
    • ORGANISM STATE MEASURING DEVICE AND RELAXATION INSTRUCTING DEVICE
    • 有机状态测量装置和放松指示装置
    • WO1998010699A1
    • 1998-03-19
    • PCT/JP1997003108
    • 1997-09-04
    • SEIKO EPSON CORPORATIONAMANO, KazuhikoUEBABA, KazuoISHIYAMA, Hitoshi
    • SEIKO EPSON CORPORATION
    • A61B05/02
    • A61B5/721A61B5/0205A61B5/022A61B5/024A61B5/0816A61B5/7232A61B5/7239A61B5/7257A61B5/726
    • A device is known for measuring the respiration rate of a subject based on his/her electrocardiographic complex or pulse wave. However, when or if the subject is doing exercising or acting normally, an electromyographic complex is superposed on the electrocardiographic complex, and the body movement component is superposed on the pulse wave, this leading to an error in measurement. An improvement is needed to cope with this problem. A personal computer is provided which comprises a watch-type portable portion adapted to be worn by the subject and a device main body (330). Connected to the portable portion is a photo-electric type pulse sensor adapted to be mounted at the base portion of a finger to measure the pulse wave pattern. In addition, an acceleration sensor is also provided on the portable portion to detect the body movement spectrum of the subject. The device main body (330) applies a window function to the pulse wave and removes the body movement spectrum from the frequency spectrum of the pulse wave by removing the acceleration component. It is possible to generate the respiration rate and variation rate thereof.
    • 已知一种基于他/她的心电图复合物或脉搏波来测量受试者的呼吸速率的装置。 然而,当或者如果受试者正在锻炼或正常行动时,肌电复合体叠加在心电图复合体上,并且身体运动分量叠加在脉搏波上,这导致测量误差。 需要改进来应对这个问题。 提供一种个人计算机,其包括适于由被摄体佩戴的表型便携式部件和装置主体(330)。 连接到便携部分的是光电式脉冲传感器,其适于安装在手指的基部以测量脉搏波形。 此外,还在便携式部分上设置加速度传感器,以检测被检体的身体运动光谱。 装置主体(330)对脉搏波施加窗口功能,并通过去除加速度分量从脉搏波的频谱中去除身体移动频谱。 可以产生呼吸速率及其变化率。
    • 6. 发明申请
    • HEALTH CARE DEVICE AND EXERCISE SUPPORTING DEVICE
    • 健康护理设备和锻炼支持设备
    • WO1997022295A1
    • 1997-06-26
    • PCT/JP1996003674
    • 1996-12-18
    • SEIKO EPSON CORPORATIONAMANO, KazuhikoUEBABA, KazuoISHIYAMA, Hitoshi
    • SEIKO EPSON CORPORATION
    • A61B05/02
    • A61B5/6822A61B5/024A61B5/02416A61B5/02438A61B5/0255A61B5/11A61B5/222A61B5/4035A61B5/7239G06F19/00
    • A health care device with which the user of the device knows the user's own health condition without being attended by any doctor or nurse. Of course, a third person can give an instruction to the user to measure the health condition or a third person can inform the user of the health condition. A pulse sensor (4) measures the plethysmogram at the finger tip of the user and an acceleration sensor (5) calculates the acceleration from the motion of the user's body. The outputs of the sensors (4 and 5) are converted into digital signals by means of a sensor interface (6). A CPU (1) judges whether or not the user is exercising based on the acceleration read from the interface (6). Then the CPU (1) finds the acceleration pulse of the user by capturing the pulse wave before and after the exercise. Thereafter, the CPU (1) calculates the ratio of amplitude at the inflection points included in the waveform of the acceleration pulse wave before and after the exercise, evaluates the exercise of the user from the amplitude ratio, and displays the results of evaluation on a display.
    • 一种医疗设备,该设备的用户在没有任何医生或护士参与的情况下知道用户自己的健康状况。 当然,第三个人可以向用户发出指示来测量健康状况,或者第三人可以通知用户健康状况。 脉搏传感器(4)测量用户指尖的体积描记图,加速度传感器(5)根据用户身体的运动计算加速度。 传感器(4和5)的输出通过传感器接口(6)转换成数字信号。 CPU(1)基于从接口(6)读取的加速度来判断用户是否正在锻炼。 然后,CPU(1)通过捕获运动前后的脉搏波来找到用户的加速度脉冲。 此后,CPU(1)计算运动前后加速度脉搏波波形中包含的拐点处的振幅比,根据振幅比来评价使用者的运动,并将评价结果显示在 显示。
    • 7. 发明申请
    • PRESSURE SENSOR, PRESSURE VIBRATION DETECTION APPARATUS USING THE SENSOR, AND PULSE WAVE DETECTION APPARATUS
    • 压力传感器,使用传感器的压力检测装置和脉波检测装置
    • WO1995004919A1
    • 1995-02-16
    • PCT/JP1994001328
    • 1994-08-11
    • SEIKO EPSON CORPORATIONAMANO, Kazuhiko
    • SEIKO EPSON CORPORATION
    • G01L07/00
    • A61B5/6822A61B5/021A61B5/02125A61B5/02438A61B5/0285A61B5/681A61B2562/0261
    • This invention aims at providing a pressure sensor which can be easily made compact and can detect a pulse wave. The pressure sensor (10) comprises pressure-sensitive devices S1 to S4 and a flexible rubber (1). Each of pressure detection positions Q1 to Q4 of each of pressure-sensitive devices S1 to S4 exists on the bottom surface L of the protrusive flexible rubber (1) and on x or y axis which is equidistantly spaced apart by a distance a &cir& _ from the origin. When the flexible rubber (1) is pressed to a portion near an artery, vibration occurs on the exposed surface of the flexible rubber (1) due to blood fluctuation by the artery, that is, by the pulse wave, and this vibration propagates across the elastic rubber (1) as an elastic wave and is detected as a pressure wave by the pressure-sensitive devices S1 to S4. Since the magnitude of the pressure wave is inversely proportional to the square of the propagation distance of the elastic wave inside the flexible rubber (1), the coordinates formed by projecting the pressure wave generation point on the bottom surface L can be calculated from the voltages V1 to V4 by the pressure-sensitive devices S1 to S4 and each distance between the pressure pulse wave generation point and each of detection positions Q1 to Q4. A propagation speed of the pulse wave and the artery position can be determined by calculating coordinates at predetermined time intervals.
    • 本发明的目的在于提供一种压力传感器,该压力传感器可以容易地紧凑化并且可以检测脉搏波。 压力传感器(10)包括压敏装置S1至S4和柔性橡胶(1)。 各压敏敏感元件S1〜S4的压力检测位置Q1〜Q4分别存在于凸出的柔性橡胶(1)的底面L上,x和y轴等间隔距离a&cir& 起源。 当柔性橡胶(1)被按压到靠近动脉的部分时,由于动脉的血液波动,即脉动波,在柔性橡胶(1)的暴露表面上产生振动,并且该振动传播到 弹性橡胶(1)作为弹性波,并被压敏装置S1至S4检测为压力波。 由于压力波的大小与柔性橡胶(1)内部的弹性波的传播距离的平方成反比,所以可以根据电压的电压来计算通过将压力波产生点投影在底面L上而形成的坐标 压力敏感元件S1〜S4的V1〜V4以及压力脉搏波生成点与检测位置Q1〜Q4各自的距离。 可以通过以预定时间间隔计算坐标来确定脉搏波和动脉位置的传播速度。
    • 8. 发明申请
    • PULSE WAVE PROCESSOR
    • 脉冲波处理器
    • WO1994015525A1
    • 1994-07-21
    • PCT/JP1993001895
    • 1993-12-27
    • SEIKO EPSON CORPORATIONBABA, NorimitsuAMANO, Kazuhiko
    • SEIKO EPSON CORPORATION
    • A61B05/024
    • A61B5/681A61B5/021A61B5/02108A61B5/024A61B5/02416A61B5/02438A61B5/742
    • A pulse wave processor provided with a pulse wave detecting means, a pressing force detecting means, a pulse wave processing means, a means for displaying pulse wave-processing data and a pressing force, a means for judging from the pressing force whether a pulse wave can be detected or not, a means for informing an operator of whether a pulse wave can be detected or not, a memory means for temporarily storing the data on a pulse wave and a pressing force, and a means for comparing past data consisting of temporarily stored data on a pulse wave and a pressing force with the present corresponding data. Owing to these parts, an operator can find easily an optimum pressing force for the detection of a pulse wave, and a pulse wave measuring efficiency is improved. An operator can obtain information on his body by storing an optimum value of pressing force and actual pulse wave information and comparing them with the past corresponding data.
    • 设置有脉波检测装置,按压力检测装置,脉波处理装置,显示脉波处理数据和按压力的装置的脉波处理装置,用于根据按压力判断脉搏波 是否可以检测,用于通知操作者是否可以检测到脉搏波的装置,用于临时存储脉搏波和压力的数据的存储装置,以及用于比较过去数据由暂时存储的装置 存储脉冲波数据和与当前对应数据的按压力。 由于这些部件,操作者可以容易地找到用于检测脉搏波的最佳按压力,并且提高脉搏波测量效率。 操作员可以通过存储最佳的按压力值和实际的脉搏波信息,并将其与过去的相应数据进行比较,从而获取身体的信息。
    • 10. 发明申请
    • ARRHYTHMIA DETECTOR
    • ARRHYTHMIA检测器
    • WO1997038626A1
    • 1997-10-23
    • PCT/JP1997001322
    • 1997-04-17
    • SEIKO EPSON CORPORATIONAMANO, KazuhikoUEBABA, KazuoISHIYAMA, Hitoshi
    • SEIKO EPSON CORPORATION
    • A61B05/02
    • A61B5/721A61B5/02438A61B5/7225A61B5/7253A61B5/7257A61B5/726
    • An arrhythmia detector includes pulse wave detection means for non-invasively detecting the waveform of a pulse wave and arrhythmia detection means for monitoring the change of waveform and detecting arrhythmia. The arrhythmia detection means includes judgement means for judging the occurrence of arrhythmia when the continuity of change is interrupted. Means for examining the continuity includes means of time domain which uses the intervals of pulse waves and means of frequency domain which makes a frequency analysis (FET or wavelet conversion) and examines the continuity on the basis of the analysis results. Arrhythmia is detected by a simpler construction and an easier operation than electrocardiographs. It is also possible to use body motion detection means for detecting body motion and outputting a body motion waveform, and to determine the continuity of change for the pulse wave component obtained by eliminating the body motion component from the waveform of the pulse wave detected by the pulse wave detection means. Therefore, arrhythmia is detected more accurately in daily life.
    • 心律失常检测器包括用于非侵入性地检测脉波波形的脉波检测装置和用于监视波形变化和检测心律失常的心律失常检测装置。 心律失常检测装置包括判断装置,用于当变化的连续性中断时判断心律不齐的发生。 用于检查连续性的手段包括使用脉冲波的间隔和频域的方式进行频域分析(FET或小波转换)并根据分析结果检查连续性的时域手段。 通过比心电图仪更简单的结构和更容易的手术来检测心律失常。 还可以使用身体运动检测装置来检测身体运动并输出人体运动波形,并且确定通过从由所述运动波形检测到的脉搏波的波形中消除体动成分而获得的脉搏波分量的变化的连续性 脉波检测手段。 因此,在日常生活中更准确地检测到心律失常。