CN204522215U - Calculate the catabiotic device of motion - Google Patents

Calculate the catabiotic device of motion Download PDF

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Publication number
CN204522215U
CN204522215U CN201520175068.3U CN201520175068U CN204522215U CN 204522215 U CN204522215 U CN 204522215U CN 201520175068 U CN201520175068 U CN 201520175068U CN 204522215 U CN204522215 U CN 204522215U
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heart rate
processor
current
consumed energy
assembly
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张涛涛
张欣
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Shenzhen New Element Medical Equipment Technology Development Co Ltd
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Shenzhen New Element Medical Equipment Technology Development Co Ltd
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Abstract

The utility model is applicable to areas of information technology, provides and calculates the catabiotic device of motion.Described device comprises: meter step assembly; Heart rate detection assembly; The processor walking assembly and described heart rate detection assembly and be connected is counted respectively with described; The memory be connected with described processor.The utility model obtains current leg speed by meter step assembly, and current leg speed is sent to processor, heart rate detection assembly obtains Current heart rate, and Current heart rate is sent to processor, processor calculates current kinetic consumed energy according to user's physiological parameter, Current heart rate and/or current leg speed, motion consumed energy is calculated easily and accurately thus in user movement process, user to be made rational planning for exercise intensity and exercise duration according to the motion consumed energy calculated, thus effectively controls blood glucose value.

Description

Calculate the catabiotic device of motion
Technical field
The utility model belongs to areas of information technology, particularly relates to and calculates the catabiotic device of motion.
Background technology
Along with the raising of people's living standard, the fat serious problems having become harm humans health.The data display that International Obesity problem working group announces, the earth just has 1 people to be too obese in every 4 people; The whole world nearly 1/3rd Lethal cases with fat, do not get enough athletic exercise relevant with smoking; Some people fat are from birth shorter than the life-span of ordinary person 5 to 8 years.
Diabetes patient overlaps with obese people height.For obese people, except adjustment diet, increasing energy ezpenditure by motion is also a kind of important means reducing body weight.But for diabetes patient, how to control blood glucose value by suitable exercise is problem demanding prompt solution.
Utility model content
Given this, the utility model embodiment provides the catabiotic device of a kind of calculating motion, to calculate motion consumed energy easily and accurately in user movement process, user to be made rational planning for exercise intensity and exercise duration according to the motion consumed energy calculated, thus effectively controls blood glucose value.
The catabiotic device of a kind of calculating motion, comprising:
Meter step assembly;
Heart rate detection assembly;
The processor walking assembly and described heart rate detection assembly and be connected is counted respectively with described;
The memory be connected with described processor.
Preferably, described device also comprises:
The display screen be connected with described processor.
Preferably, described device also comprises:
The blood sugar test assembly be connected with described processor.
Further, described meter step assembly comprises:
Acceleration transducer.
Preferably, described device also comprises:
The electrostatic discharge protection circuit be connected with described processor.
Preferably, described memory is nonvolatile memory.
Preferably, described device also comprises:
The radio receiving transmitting module be connected with described processor.
Preferably, described radio receiving transmitting module comprises:
Bluetooth submodule.
Further, described device also comprises:
The power supply module be connected with described processor.
Preferably, described power supply module comprises:
Low-dropout regulator.
The beneficial effect that the utility model embodiment compared with prior art exists is: the utility model embodiment obtains current leg speed by meter step assembly, and current leg speed is sent to processor, heart rate detection assembly obtains Current heart rate, and Current heart rate is sent to processor, processor is according to user's physiological parameter, Current heart rate and/or current leg speed calculate current kinetic consumed energy, convenient in user movement process thus, calculate motion consumed energy exactly, user to be made rational planning for exercise intensity and exercise duration according to the motion consumed energy calculated, thus effectively control blood glucose value.
Accompanying drawing explanation
Fig. 1 shows the structured flowchart of the catabiotic device of calculating campaign that the utility model embodiment provides;
Fig. 2 shows the structured flowchart of the catabiotic device of calculating campaign that another embodiment of the utility model provides.
Detailed description of the invention
In order to make the purpose of this utility model, technical scheme and advantage clearly understand, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
Fig. 1 shows the structured flowchart of the catabiotic device of calculating campaign that the utility model embodiment provides, and this device comprises:
Meter step assembly 11;
Heart rate detection assembly 12;
The processor 13 walking assembly 11 and described heart rate detection assembly 12 and be connected is counted respectively with described;
The memory 14 be connected with described processor 13.
Current leg speed for obtaining current leg speed, and is sent to processor 13 by meter step assembly 11.Wherein, leg speed refers to the step number in the unit interval.
The Current heart rate of collection for the Current heart rate of Real-time Collection user, and is sent to processor 13 by heart rate detection assembly 12 in real time.
User's physiological parameter is stored in memory 14.User's physiological parameter includes but not limited to: height, body weight, age, sex, body fat and basal metabolic rate.
Processor 13 for calculating current kinetic consumed energy according to user's physiological parameter, Current heart rate and/or current leg speed, and calculates total motion consumed energy according to the historical movement consumed energy in current kinetic consumed energy and fixed time section.In the utility model embodiment, fixed time section can be a consecutive days, and therefore, here, total motion consumed energy refers to total motion consumed energy of a consecutive days.
Further, processor 13 comprises comparator, for comparing the magnitude relationship of Current heart rate and the first reference value, the second reference value.
Processor 13, when Current heart rate is more than or equal to the first reference value, calculates current kinetic consumed energy according to user's physiological parameter and Current heart rate.Such as, calculate real-time oxygen uptake=(A × Current heart rate/maximum heart rate+B) × maximal oxygen uptake, and real-time oxygen uptake is converted into current kinetic consumed energy by formula 1ml/kgmin ≈ 4.8cal/kgmin.Wherein, maximal oxygen uptake can be arranged by user, also can be drawn according to the estimation of user's physiological parameter by pedometer.
Processor 13, when Current heart rate is more than or equal to the second reference value and is less than the first reference value, calculates current kinetic consumed energy according to user's physiological parameter, Current heart rate and current leg speed.Such as, when current leg speed be 0 ~ 20 step per minute time, current kinetic consumed energy is 3.33 calories every kilogram; When current leg speed be 20 ~ 40 steps per minute time, current kinetic consumed energy is 6.67 calories every kilogram; When current leg speed be 40 ~ 80 steps per minute time, current kinetic consumed energy is 13.33 calories every kilogram; When current leg speed be 80 ~ 90 steps per minute time, current kinetic consumed energy is 28.33 calories every kilogram; When current leg speed be 90 ~ 105 steps per minute time, current kinetic consumed energy is 33.33 calories every kilogram; When current leg speed be 105 ~ 120 steps per minute time, current kinetic consumed energy is 38.33 calories every kilogram; When current leg speed be 120 ~ 150 steps per minute time, current kinetic consumed energy is 53.33 calories every kilogram.Current kinetic consumed energy can be estimated according to user's physiological parameter and current leg speed.
Processor 13, when Current heart rate is less than the second reference value, calculates current kinetic consumed energy according to user's physiological parameter and current leg speed.Such as, the first current kinetic consumed energy is calculated according to user's physiological parameter and Current heart rate, the second current kinetic consumed energy is calculated according to user's physiological parameter and current leg speed, calculate the first current kinetic consumed energy and the catabiotic mean value of the second current kinetic, obtain current kinetic consumed energy.
Because heart rate has good linear relationship with motion consumed energy in middle high-intensity exercise, and in low-intensity motion, heart rate is by mood, the impact of environment is very large, substantially truly energy ezpenditure can not be reflected, again due to pedometer for upper extremity exercise and various complicated strenuous exercise (as by bike, row the boat, upper downstairs and carrying) poor accuracy that judges, and motion consumed energy can be measured more accurately in low-intensity motion, therefore, the utility model embodiment by conjunction with heart rate and leg speed to catabiotic advantage of moving, obtain motion consumed energy result of calculation more accurately.
First reference value and the second reference value are determined according to maximum heart rate.Such as, using 0.5 of maximum heart rate times as the first reference value, using 0.4 of maximum heart rate times as the second reference value.
Maximum heart rate is determined according to user's physiological parameter or history heart rate data.When pedometer uses for the first time, pedometer is according to user's physiological parameter determination maximum heart rate.Such as, the maximum heart rate of man=210-age/2-0.11 × body weight+4, the maximum heart rate of woman=210-age/2-0.11 × body weight.Wherein, body weight is with kilogram for unit.The maximum heart rate of above-mentioned man and the maximum heart rate of woman are that pedometer is according to the initialized maximum heart rate of user's physiological parameter.Pedometer, in the process of follow-up use, is greater than the actual maximum heart rate of initialized maximum heart rate, then actual maximum heart rate is replaced initialized maximum heart rate if detect.
Fig. 2 shows the structured flowchart of the catabiotic device of calculating campaign that another embodiment of the utility model provides, with reference to Fig. 2:
Preferably, described device also comprises:
The display screen 15 be connected with described processor 13.
Display screen 15 can adopt OLED (Organic Light-Emitting Diode, Organic Light Emitting Diode) display screen 15.
Processor 13, after the Current heart rate receiving heart rate detection assembly 12 transmission, shows Current heart rate by display screen 15; Processor 13, after the current leg speed receiving the transmission of meter step assembly 11, shows current leg speed by display screen 15; Processor 13, after the blood glucose value receiving blood sugar test assembly 16 transmission, shows blood glucose value by display screen 15; Processor 13, after calculating current kinetic consumed energy, shows current kinetic consumed energy by display screen 15; Processor 13, after calculating total motion consumed energy, shows total motion consumed energy by display screen 15.
Preferably, described device also comprises:
The blood sugar test assembly 16 be connected with described processor 13.
Blood glucose value for obtaining blood glucose value, and is sent to processor 13 by blood sugar test assembly 16.
Processor 13 utilizes least square method to determine the mapping relations of total motion consumed energy and blood glucose value, and the relation curve of total motion consumed energy and blood glucose value is shown by display screen 15, user is made suitably to adjust exercise intensity and exercise duration according to this relation curve, thus reach better movement effects, be more conducive to the recovery of diabetes.
Further, described meter step assembly 11 comprises:
Acceleration transducer 111.
Preferably, described device also comprises:
The electrostatic discharge protection circuit 17 be connected with described processor 13.
Preferably, described memory 14 is nonvolatile memory.
Preferably, described device also comprises:
The radio receiving transmitting module 18 be connected with described processor 13.
Radio receiving transmitting module 18 is for being sent to mobile terminal by the mapping relations of total motion consumed energy and total motion consumed energy and blood glucose value.Mobile terminal can be mobile phone, panel computer or PDA (PersonalDigital Assistant, personal digital assistant) etc., does not limit at this.
Preferably, described radio receiving transmitting module 18 comprises:
Bluetooth submodule 181.
Further, described device also comprises:
The power supply module 19 be connected with described processor 13.
Preferably, described power supply module 19 comprises:
Low-dropout regulator 191.
The utility model embodiment obtains current leg speed by meter step assembly, and current leg speed is sent to processor, heart rate detection assembly obtains Current heart rate, and Current heart rate is sent to processor, processor calculates current kinetic consumed energy according to user's physiological parameter, Current heart rate and/or current leg speed, motion consumed energy is calculated easily and accurately thus in user movement process, user to be made rational planning for exercise intensity and exercise duration according to the motion consumed energy calculated, thus effectively controls blood glucose value.
The foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all do within spirit of the present utility model and principle any amendment, equivalent to replace and improvement etc., all should be included within protection domain of the present utility model.

Claims (10)

1. calculate the catabiotic device of motion, it is characterized in that, comprising:
Meter step assembly;
Heart rate detection assembly;
The processor walking assembly and described heart rate detection assembly and be connected is counted respectively with described;
The memory be connected with described processor.
2. device as claimed in claim 1, it is characterized in that, described device also comprises:
The display screen be connected with described processor.
3. device as claimed in claim 1, it is characterized in that, described device also comprises:
The blood sugar test assembly be connected with described processor.
4. device as claimed in claim 1, is characterized in that, described meter step assembly comprises:
Acceleration transducer.
5. device as claimed in claim 1, it is characterized in that, described device also comprises:
The electrostatic discharge protection circuit be connected with described processor.
6. device as claimed in claim 1, it is characterized in that, described memory is nonvolatile memory.
7. device as claimed in claim 1, it is characterized in that, described device also comprises:
The radio receiving transmitting module be connected with described processor.
8. device as claimed in claim 7, it is characterized in that, described radio receiving transmitting module comprises:
Bluetooth submodule.
9. device as claimed in claim 1, it is characterized in that, described device also comprises:
The power supply module be connected with described processor.
10. device as claimed in claim 9, it is characterized in that, described power supply module comprises: low-dropout regulator.
CN201520175068.3U 2015-03-26 2015-03-26 Calculate the catabiotic device of motion Active CN204522215U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017152612A1 (en) * 2016-03-08 2017-09-14 博晶医电股份有限公司 Methods for estimating maximal oxygen uptake and next total exercise time

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017152612A1 (en) * 2016-03-08 2017-09-14 博晶医电股份有限公司 Methods for estimating maximal oxygen uptake and next total exercise time

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