CN201379566Y - Medical alarm system for remote sleep-monitoring - Google Patents
Medical alarm system for remote sleep-monitoring Download PDFInfo
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- CN201379566Y CN201379566Y CN200920032408U CN200920032408U CN201379566Y CN 201379566 Y CN201379566 Y CN 201379566Y CN 200920032408 U CN200920032408 U CN 200920032408U CN 200920032408 U CN200920032408 U CN 200920032408U CN 201379566 Y CN201379566 Y CN 201379566Y
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Abstract
The utility model relates to a medical alarm system, in particular to a medical alarm system for remote sleep-monitoring, and solves the problem that a patient suffers a disease outbreak while sleeping and can not receive immediate and rapid treatment. The alarm system provided by the utility model comprises a pulse monitoring device, an alarm part and a door control part; the pulse monitoring device comprises a pulse sensor for acquiring pulse signals of a sleeper, an embedded-type system for analyzing the pulse signals and a wireless transmitting device for sending wireless signals when the pulse signals are abnormal; the alarm part comprises a wireless receiving device, a first singlechip and a wireless transmitting device; the door control part comprises a wireless receiving device for receiving open-door signals and a second singlechip for analyzing the open-door signals and outputting unlocking voltage; and the second singlechip is connected with an electric control lock. The utility model can effectively solve the emergency rescue problem when the patient suffers a disease outbreak at night and can give an alarm in the shortest time so as to gain time to save the patient.
Description
One, technical field:
This utility model relates to a kind of medical alarm system, is specifically related to a kind of long-range sleep monitoring medical alarm system.
Two, background technology:
Sleep is human most important physiological activity, and 1/3rd times of life are all spent in sleep, and it is the instinctive behaviour of living organism, and is significant to keeping race's continuity and individual survival.The multiple diseases such as for example cardiovascular, cerebral thrombosis, apoplexy, breathing suffocate yet people are easy to happen suddenly in sleep procedure.According to statistics, U.S. every year there are 200000 people that acute myocardial infarction takes place approximately and 37500 people die suddenly at night.20% myocardial infarction, 15% sudden cardiac death occur between the 6:00 in midnight to morning.These diseases are done owing to sending out in sleep, and the people is in automatism in sleep, and seizure of disease is uncontrollable, can not be given treatment to timely.A lot of medical alarm calls system is arranged in the market, but when all being seizure of disease patient when seizure of disease under conscious state by patient by the alarm calls system signal that gives the alarm.Also there is not patient to be in automatism in the market, automatic alarm calls system when seizure of disease.
Three, utility model content:
For solving the problems of the technologies described above, this utility model provides a kind of long-range sleep monitoring medical alarm system, to solve patient's disease of showing effect, the problem that can't be given treatment to timely in sleep.
In order to reach above-mentioned technical purpose, this utility model adopts following technical scheme:
A kind of long-range sleep monitoring medical alarm system, it is characterized in that: this system comprises the pulse supervising device, report to the police part and door control section; Described pulse supervising device comprises the pulse transducer that obtains sleeper's pulse signal, the embedded system that pulse signal is analyzed and the wireless launcher that sends alarm signal when pulse signal is unusual; The described part of reporting to the police comprises the radio receiver that receives alarm signal, alarm signal is carried out first single-chip microcomputer of analytical judgment and launched the wireless launcher of enabling signal; Described door control section comprises that the radio receiver, the clamshell doors signal that receive enabling signal analyze and export the second singlechip of voltage of unblanking; Described second singlechip is connected with electric control lock.
The voltage of the above-mentioned supply unit that is connected with each single-chip microcomputer and external circuits for+5V~+ DC voltage of 12V.
The beneficial effects of the utility model are: can solve the Emergency Assistance problem of patient when happening suddenly acute disease night effectively, can reflect patient status fast, accurately and timely automatically by this system and give the alarm in the shortest time under patient's automatism and race against time for patient's treatment.
Four, description of drawings:
Fig. 1 is this utility model pulse supervising device theory diagram;
Fig. 2 is this utility model warning part theory diagram;
Fig. 3 is this utility model door control section theory diagram;
Fig. 4 is this utility model wireless signal transmission program flow diagram;
Fig. 5 is that this utility model wireless signal receives program flow diagram;
Five, the specific embodiment:
Below in conjunction with accompanying drawing this utility model is further described:
A kind of long-range sleep monitoring medical alarm system, this system comprises the pulse supervising device, report to the police part and door control section.The pulse supervising device is to be worn on patient's the wrist, and the part of reporting to the police is arranged on bedside, and for example on the bedside cabinet, the door control section is arranged near the door.The pulse supervising device comprises the pulse transducer that obtains sleeper's pulse signal, the embedded system that pulse signal is analyzed and the wireless launcher that sends alarm signal when pulse signal is unusual.The part of reporting to the police comprises the radio receiver that receives alarm signal, first single-chip microcomputer that alarm signal is analyzed and the wireless launcher of launching enabling signal.The door control section comprises that the radio receiver, the clamshell doors signal that receive enabling signal analyze and export the second singlechip of voltage of unblanking, and described second singlechip is connected with electric control lock.
Pulse transducer adopts highly sensitive passive ceramic pressure sensor, is worn on the wrist, can receive the faint pulse signal of patient.Embedded system is responsible for pulse signal is sampled, measure, write down patient's pulse information and behavior reaction information, and to these information handle in real time, the affirmation of pattern recognition and the signal true and false, normally whether judge pulse, whether decision carries out audible alarm or telephone phonic alarm.That the used embedded system of pulse monitoring device adopts is ARM embedded system (S344 B0X), be to be main hardware with the embedded microprocessor, expansion I/O driving simultaneously, LCD driving and demonstration and internal memory, the system that relies on linux system software and corresponding application software to form together.Application software is being controlled the running and the behavior of system, and (SuSE) Linux OS is being controlled the reciprocal action of application code and hardware.Above-mentioned hardware all can have been bought on market, and linux system software also is existing operating system, and above-mentioned application software needs the designer to program, and program thread is 1~6 step in this system's implementation method, also embodies to some extent in the accompanying drawing 4.The voltage of the supply unit that each single-chip microcomputer and external circuits connect is+5V~+ DC voltage of 12V.
Embodiment 1:
Is " audible alarm " pattern when in advance to default:
Referring to Fig. 1: when patient is in sleep state, be worn over the pulse signal that pulse transducer on the pulse supervising device on the patient's wrist obtains patient.By embedded system pulse signal is carried out comprehensive analysis again,, send alarm signal by wireless launcher if embedded system is judged this pulse signal when unusual.Referring to Fig. 2: the radio receiver of the part of reporting to the police on the bedside cabinet, when receiving this alarm signal, first single-chip microcomputer sends audible alarm according to predefined " audible alarm " pattern by electric bell, and patient's deliverer burst disease in sleep needs Emergency Assistance near in time reminding.
Referring to Fig. 4 and Fig. 5, when in advance to default be " audible alarm " pattern, then system realizes by following steps according to " audible alarm " pattern mode of in advance setting:
(1) by pulse transducer sleeper's pulse is carried out the pulse signal sampling;
(2) whether by embedded system pulse signal is carried out analysis-by-synthesis, it is normal to analyze pulse;
(3), then continue sleeper's pulse to be carried out the pulse signal sampling by pulse transducer if pulse is normal;
(4) if cacosphyxia judges whether to be the disease bursty state by embedded system;
(5), then continue sleeper's pulse to be carried out the pulse signal sampling by pulse transducer if not the disease bursty state;
(6) if the disease bursty state is then sent alarm signal by embedded system by wireless launcher;
(7) the warning part that is placed on the bedside cabinet receives alarm signal by radio receiver, according to " audible alarm " pattern of prior setting, by sending audible alarm by electric bell behind the first single-chip microcomputer discriminatory analysis.
System has realized making near reminding deliverer as running into the mode of emergency case system by audible alarm by above-mentioned steps, and the patient in the sleep is given treatment to timely.
Embodiment 2:
Is " telephone phonic alarm is also opened door simultaneously " pattern when in advance to default.
Referring to Fig. 1: when patient is in sleep state, be worn over the pulse signal that pulse transducer on the pulse supervising device on the patient's wrist obtains patient.By embedded system pulse signal is carried out comprehensive analysis again: if embedded system is judged this pulse signal when unusual, embedded system order wireless launcher sends alarm signal.Referring to Fig. 2: at this moment, the warning that is positioned on the bedside cabinet partly receives this alarm signal, according to prior setting, after the first single-chip microcomputer Treatment Analysis, sends telephone phonic alarm by phone, and sends enabling signal by wireless launcher simultaneously.When the deliverer can't not use near the patient under the situation of audible alarm, system can be in the very first time Advise By Wire patient deliverer burst disease in sleep.Referring to Fig. 3: the radio receiver that is positioned near the door control section the door receives the enabling signal of being sent by the part of reporting to the police, it is enabling signal that this signal is judged after the second singlechip analyzing and processing, export the voltage of unblanking, general electric control lock voltage is 12V, the voltage of unblanking of second singlechip output 12V, motor in the electric control lock is made the action of opening the door, and makes things convenient for the deliverer to succour patient.
Referring to Fig. 4 and Fig. 5, when in advance to default be " telephone phonic alarm is also opened door simultaneously " pattern, then system realizes by following steps according to the mode of in advance setting pattern:
(1) by pulse transducer sleeper's pulse is carried out the pulse signal sampling;
(2) whether by embedded system pulse signal is carried out analysis-by-synthesis, it is normal to analyze pulse;
(3), then continue sleeper's pulse to be carried out the pulse signal sampling by pulse transducer if pulse is normal;
(4) if cacosphyxia judges whether to be the disease bursty state by embedded system;
(5), then continue sleeper's pulse to be carried out the pulse signal sampling by pulse transducer if not the disease bursty state;
(6) if the disease bursty state is then sent alarm signal by embedded system by wireless launcher;
(7) the warning part that is placed on the bedside cabinet receives alarm signal by radio receiver, according to the pattern that configures in advance, by sending telephone phonic alarm by phone behind the first single-chip microcomputer discriminatory analysis, and order wireless launcher to send enabling signal simultaneously;
(8) the door control section receives the enabling signal of being sent by warning system, and whether analyze this signal through second singlechip is enabling signal;
(9) second singlechip judges it is enabling signal, then exports the 12V voltage of unblanking;
(10) motor in the electric control lock is made the action of opening the door.
System has realized by telephone phonic alarm and the mode of opening door simultaneously the patient in the sleep being given treatment to as running into the emergency case system timely by above-mentioned steps.
Claims (2)
1. medical alarm system is monitored in a long-range sleep, and it is characterized in that: this system comprises the pulse supervising device, report to the police part and door control section;
Described pulse supervising device comprises the pulse transducer that obtains sleeper's pulse signal, the embedded system that pulse signal is analyzed and the wireless launcher that sends alarm signal when pulse signal is unusual;
The described part of reporting to the police comprises the radio receiver that receives alarm signal, alarm signal is carried out first single-chip microcomputer of analytical judgment and launched the wireless launcher of enabling signal;
Described door control section comprises that the radio receiver, the clamshell doors signal that receive enabling signal analyze and export the second singlechip of voltage of unblanking; Described second singlechip is connected with electric control lock.
2. a kind of long-range sleep monitoring medical alarm system according to claim 1 is characterized in that: the voltage of the described supply unit that is connected with each single-chip microcomputer and external circuits is+5V~+ DC voltage of 12V.
Priority Applications (1)
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CN200920032408U CN201379566Y (en) | 2009-03-31 | 2009-03-31 | Medical alarm system for remote sleep-monitoring |
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CN200920032408U CN201379566Y (en) | 2009-03-31 | 2009-03-31 | Medical alarm system for remote sleep-monitoring |
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CN201379566Y true CN201379566Y (en) | 2010-01-13 |
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CN200920032408U Expired - Fee Related CN201379566Y (en) | 2009-03-31 | 2009-03-31 | Medical alarm system for remote sleep-monitoring |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106175695A (en) * | 2016-08-31 | 2016-12-07 | 北京首科长昊医疗科技有限公司 | A kind of detecting system of sleep apnea syndrome |
-
2009
- 2009-03-31 CN CN200920032408U patent/CN201379566Y/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106175695A (en) * | 2016-08-31 | 2016-12-07 | 北京首科长昊医疗科技有限公司 | A kind of detecting system of sleep apnea syndrome |
CN106175695B (en) * | 2016-08-31 | 2017-07-14 | 北京首科长昊医疗科技有限公司 | A kind of detecting system of OSAS |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20100113 Termination date: 20150331 |
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EXPY | Termination of patent right or utility model |