摘要:
Disclosed is a body composition measuring apparatus based on bioelectrical impedance measurement in which a person under test can set the required personal body information with higher visibility for setting operation, while taking easy pose. At first, a no-load weight meter output or zero-point is determined immediately after power up of the apparatus. Then a person under test gets on the weight meter to conduct the weight measurement. The person under test enters or sets the personal body information such as height, sex, and age, while standing on the weight meter Thereafter, the apparatus measures the bioelectrical impedance and calculates the body fat percentage and the fat mass of the person under test, based on the measured impedance and weight as well as the stored personal body information. Finally the apparatus displays the resultant value on a display.
摘要:
Disclosed is a bioelectric impedance measuring apparatus which can prevent such abnormal condition that an excessive current is applied to a human body when elements in said circuit has failed or is damaged, with a simple circuit configuration and without decreasing the measuring accuracy of the bioelectric impedance. The disclosed bioelectric impedance measuring apparatus according to the present invention is configured such that a capacitor or a set of a capacitor and a resistor arranged parallel with each other is installed between an electrode to be brought into contact with a human body and a bioelectric impedance measuring circuit section comprising a generating means for generating an alternating current applied to a human body for measurement, a measuring means for measuring a voltage value between the portions where said current is applied to the human body, a computing means for computing a bioelectric impedance value, and a central processing unit (CPU) for controlling and processing said means.
摘要:
A handheld bioelectric impedance measuring apparatus with a main body (1) with insulating property having a card-shaped outline; four electrodes (A,B,C,D) arranged apart with one another on an upper and a lower side surfaces of said main body respectively; a display section (7) arranged on a front surface of said main body; and an operation section (11) arranged on the front surface of said main body.
摘要:
There is provided a weighing instrument with body fat meter which can compensate for variation in contact impedance between a human body and a measuring electrode due to wearing socks or the like. The weighing instrument comprises a constant-voltage power source as a current power source for measuring a bioelectrical impedance and a current measuring device installed between the constant-voltage power source and a voltage supply terminal to measure an internal influent current and determine an internal impedance on the basis of the measured internal influent current and a potential difference between voltage measurement terminals.
摘要:
A weight measurement device comprises: a housing cover to receive weight of a measurement target; a plurality of load cells to support the housing cover and detect the weight; a housing base comprising, for each of the plurality of load cells, a recessed and projected shape part comprising: a recessed part open upward to at least partially contain each load cell and fix the load cell; and a projected part projected downward corresponding to the recessed part; and an adjustment leg which at least partially contains the recessed and projected shape part, and comprises an adjustment mechanism part for height position adjustment at a position opposed to a side part of the recessed and projected shape part.
摘要:
An information processing device 2 includes a measured information obtaining unit 22, a fatigue element index computing unit 23, and an action improvement processing unit 25. The measured information obtaining unit 22 is configured to obtain life habit information on a life habit of a user. The fatigue element index computing unit 23 is configured to compute an element index regarding fatigue accumulation of the user in accordance with the life habit information obtained by the measured information obtaining unit 22. The action improvement processing unit 25 is configured to determine whether an improvement in living activity of the user is required or not on the basis of the element index computed by the fatigue element index computing unit 23.
摘要:
A biological gas detection device (12) acquires (40) a reference output value (MAXR) that is an output value outputted from a semiconductor gas sensor (26) in a reference air sample, the semiconductor gas sensor (26) having sensitivity to an interfering gas and a target gas contained in a biological gas, acquires (42) a target gas concentration that is a concentration of the target gas measured based on a first output value (Rs), the first output value being outputted from the semiconductor gas sensor (26) during measurement of the biological gas, corrects (44) the target gas concentration based on a second output value (Rair) and the reference output value (MAXR), the second output value (Rair) being outputted from the semiconductor gas sensor (26) in an air sample prior to measurement of the biological gas: and outputs (46) information according to the corrected target gas concentration.
摘要:
A biological information processing device obtains biological information indicating a body condition (S91), and associates different kinds of the biological information with respective specific graphical elements (S92). Each of specific graphical elements is same kind of element that constitutes an appearance of a graphical figure. The biological information processing device sets value to the specific graphical element depending on degree of the biological information for the at least one specific graphical element associated with the obtained biological information (S93), and generates indicating data of a biological figure that is an aggregate of the specific graphical elements on the basis of the set value (S94).
摘要:
The activity monitor (100) includes a basic information acquisition unit (20) that accepts input of basic physical information (BA) of the user's body, a target information acquisition unit (30) that accepts input of the user's target physical expenditure (CS), an activity pattern acquisition unit (40) that acquires pattern information indicating the user's intent on the activity amount (AM), and a target activity calculation unit (50) that determines a target activity amount (TA) on the basis of the basic physical information (BA), the target physical expenditure (CS), and the pattern information acquired by the activity pattern acquisition unit (40).