Monitor and control method thereof, acquisition and receiving device and communication method thereof

文档序号:862183 发布日期:2021-03-16 浏览:2次 中文

阅读说明:本技术 监护仪及其控制方法,采集、接收装置及其通信方法 (Monitor and control method thereof, acquisition and receiving device and communication method thereof ) 是由 刘启翎 任健 付能 聂鹏鹏 刘中华 于 2018-08-01 设计创作,主要内容包括:一种监护仪及控制方法,采集、接收装置(10,20)及通信方法,采集装置(10)与接收装置(20)之间采用第一无线通信技术传输配置数据,采集装置(10)根据配置数据确定第一配对信息和通信信道,进而接收装置(20)在通信信道上通过第二无线通信技术传输第二配对信息,只有在第一配对信息与第二配对信息匹配时,采集装置(10)才被允许将采集到的生理信号或根据生理信号生成的生理信息发送给接收装置(20)。(A monitor and a control method thereof, an acquisition device (10), a receiving device (20) and a communication method are provided, wherein the acquisition device (10) and the receiving device (20) adopt a first wireless communication technology to transmit configuration data, the acquisition device (10) determines first pairing information and a communication channel according to the configuration data, then the receiving device (20) transmits second pairing information on the communication channel through a second wireless communication technology, and only when the first pairing information is matched with the second pairing information, the acquisition device (10) is allowed to transmit acquired physiological signals or physiological information generated according to the physiological signals to the receiving device (20).)

A method of communicating an acquisition device with a receiving device, the acquisition device being configured to be connected to a patient for acquiring physiological signals of the patient, the method comprising the steps of:

the acquisition device acquires configuration data from the receiving device through a first wireless communication technology, and determines first pairing information and a communication channel according to the configuration data;

the acquisition device communicates with the receiving device through a second wireless communication technology on the communication channel to acquire second pairing information transmitted by the receiving device;

the acquisition device judges whether the first pairing information is matched with the second pairing information, and if so, the acquisition device is allowed to send the acquired physiological signal or the physiological information generated according to the physiological signal to the receiving device.

The method of claim 1, wherein the first pairing information is used to uniquely identify control authority for the acquisition device;

the acquisition device communicates with the receiving device through a second wireless communication technology on the communication channel to acquire a control instruction and second pairing information transmitted by the receiving device;

the acquisition device judges whether the first pairing information is matched with the second pairing information, if so, the control instruction is executed, and the acquired physiological signal or the physiological information generated according to the physiological signal is allowed to be sent to the receiving device.

The method of claim 1, wherein the configuration data comprises: the first pairing information or the identification code of the receiving device used for generating the first pairing information, and the frequency parameter corresponding to the communication channel.

The method of claim 3, wherein the configuration data further comprises patient information of the patient.

The method of claim 3, wherein the configuration data comprises the first pairing information and a frequency parameter corresponding to the communication channel, the first pairing information being generated by the receiving apparatus;

the step of the acquisition device determining first pairing information and a communication channel according to the configuration data includes:

the acquisition device determines the first pairing information according to the first pairing information of the configuration data, and determines the communication channel according to the frequency parameter corresponding to the communication channel.

The method of claim 3, wherein the configuration data comprises a receiving device identification code used to generate the first pairing information and a frequency parameter corresponding to the communication channel;

the step of the acquisition device determining first pairing information and a communication channel according to the configuration data includes:

the acquisition device generates first pairing information according to the identification code of the receiving device, and determines the communication channel according to the frequency parameter corresponding to the communication channel;

the acquisition device transmits the first pairing information to the receiving device through the first wireless communication technology.

The method of claim 1, wherein the first wireless communication technology comprises a radio frequency identification technology or a near field communication technology.

The method of claim 1, wherein the acquisition device comprises a first coil, the receiving device comprises a second coil; the second coil sends a radio frequency signal with a preset frequency, the first coil receives the radio frequency signal and generates an induced current to activate the acquisition device after entering an induction range, and the acquisition device acquires the configuration data transmitted by the receiving device after activation.

The method of claim 1, wherein the second wireless communication technology comprises at least one of wireless medical telemetry service technology, wireless local area network technology, bluetooth communication technology, and ZigBee communication technology.

The method of claim 1, wherein the acquiring device determines whether the first pairing information and the second pairing information match, and if so, transmits the acquired physiological signal or physiological information generated according to the physiological signal to a receiving device through a second wireless communication mode.

The method of claim 1, further comprising the step of: the acquisition device determines that the first pairing information does not match the second pairing information, and discards or ignores subsequent data sent by the receiving device, and/or is prohibited from sending the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device.

The method of claim 1, wherein the acquisition device is a portable acquisition device.

The method of claim 1, wherein the acquisition device further displays the physiological signal or displays physiological information generated from the physiological signal.

A method of communicating a receiving device with an acquisition device, the acquisition device being adapted to be connected to a patient for acquiring physiological signals of the patient, the method comprising the steps of:

the receiving device transmits configuration data to the acquisition device through a first wireless communication technology, wherein the configuration data is used for determining first pairing information and a communication channel;

the receiving device communicates with the acquisition device through a second wireless communication technology on the communication channel to transmit second pairing information to the acquisition device, so that the acquisition device is allowed to send the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device after judging that the first pairing information is matched with the second pairing information, wherein the first pairing information and the second pairing information are consistent.

The method of claim 14, wherein the first pairing information is used to uniquely identify control authority for the acquisition device;

the receiving device communicates with the acquisition device through a second wireless communication technology on the communication channel to transmit a control instruction and second pairing information to the acquisition device, so that the acquisition device executes the control instruction after judging that the first pairing information is matched with the second pairing information, and is allowed to send the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device, wherein the first pairing information is consistent with the second pairing information.

The method of claim 14, wherein the configuration data comprises: the first pairing information or the identification code of the receiving device used for generating the first pairing information, and the frequency parameter corresponding to the communication channel.

The method of claim 16, wherein the configuration data further comprises patient information of the patient.

The method of claim 16, wherein the configuration data comprises the first pairing information and a frequency parameter corresponding to the communication channel, the first pairing information being generated by the receiving apparatus.

The method of claim 18, wherein the first pairing information generated by the receiving device comprises:

the first pairing information is generated by the reception device according to the paired number information.

The method of claim 16, wherein the configuration data includes a receiving device identification code used to generate the first pairing information, and a frequency parameter corresponding to the communication channel; and the first pairing information is generated by the acquisition device according to the identification code of the receiving device.

The method of claim 14, wherein the first wireless communication technology comprises a radio frequency identification technology or a near field communication technology.

The method of claim 14, wherein the acquisition device comprises a first coil, the receiving device comprises a second coil; the second coil sends a radio frequency signal with a preset frequency, the first coil receives the radio frequency signal and generates an induced current to activate the acquisition device after entering an induction range, and the acquisition device acquires the configuration data transmitted by the receiving device after activation.

The method of claim 14, wherein the second wireless communication technology comprises at least one of wireless medical telemetry service technology, wireless local area network technology, bluetooth communication technology, and ZigBee communication technology.

A method for controlling a monitor, wherein the monitor comprises at least one acquisition device and a receiving device, the acquisition device is used for connecting with a patient to acquire physiological signals of the patient, and the method comprises the following steps:

the receiving device transmits configuration data to the acquisition device through a first wireless communication technology, wherein the configuration data is used for determining first pairing information and a communication channel;

the acquisition device acquires the configuration data from the receiving device through a first wireless communication technology, and determines first pairing information and a communication channel according to the configuration data;

the acquisition device communicates with the receiving device over the communication channel via a second wireless communication technology;

the receiving device transmits the second pairing information to the acquisition device;

the acquisition device acquires the second pairing information transmitted by the receiving device;

the acquisition device judges whether the first pairing information is matched with the second pairing information, and if so, the acquisition device is allowed to send the acquired physiological signal or the physiological information generated according to the physiological signal to the receiving device.

The method of claim 24, wherein the first pairing information is used to uniquely identify control authority for the acquisition device;

the receiving device transmitting and the second pairing information to the acquisition device comprises: the receiving device transmits a control instruction and the second pairing information to the acquisition device;

the acquiring device acquiring the second pairing information transmitted by the receiving device comprises: the acquisition device acquires the control instruction and second pairing information transmitted by the receiving device;

the acquisition device judges whether the first pairing information is matched with the second pairing information, if so, the control instruction is executed, and the acquired physiological signal or the physiological information generated according to the physiological signal is allowed to be sent to the receiving device.

An acquisition device, comprising:

the acquisition unit is used for connecting a patient to acquire physiological signals of the patient;

a first radio unit configured to wirelessly communicate with a receiving apparatus by a first wireless communication technology;

a second radio unit for wirelessly communicating with the receiving apparatus by a second wireless communication technology;

the first processing unit is used for acquiring configuration data from the receiving device through a first wireless unit, determining first pairing information and a communication channel according to the configuration data, and communicating with the receiving device through a second wireless unit on the communication channel to acquire second pairing information transmitted by the receiving device; and judging whether the first pairing information is matched with the second pairing information, if so, allowing the acquired physiological signal or the physiological information generated according to the physiological signal to be sent to the receiving device.

The acquisition device as claimed in claim 26, wherein the first processing unit is configured to obtain configuration data from the receiving device via the first wireless unit, determine first pairing information and a communication channel according to the configuration data, and communicate with the receiving device via the second wireless unit on the communication channel to obtain the control instruction and the second pairing information transmitted by the receiving device; judging whether the first pairing information is matched with the second pairing information, if so, executing the control instruction, and allowing the acquired physiological signal or the physiological information generated according to the physiological signal to be sent to the receiving device; wherein the first pairing information is used for uniquely identifying the control authority of the acquisition device.

The acquisition device as set forth in claim 26, wherein the configuration data comprises: the first pairing information or the identification code of the receiving device used for generating the first pairing information, and the frequency parameter corresponding to the communication channel.

The acquisition device of claim 28 wherein the configuration data further comprises patient information of the patient.

The acquisition apparatus of claim 28, wherein the configuration data comprises the first pairing information and a frequency parameter corresponding to the communication channel, the first pairing information being generated by the receiving apparatus; the first processing unit determining first pairing information and a communication channel according to the configuration data comprises: the first processing unit determines the first pairing information according to the first pairing information of the configuration data, and determines the communication channel according to a frequency parameter corresponding to the communication channel.

The acquisition device of claim 28, wherein the configuration data comprises a receiving device identification code used to generate the first pairing information and a frequency parameter corresponding to the communication channel; the first processing unit determines first pairing information and a communication channel according to the configuration data, and the method comprises the following steps:

the first processing unit generates first pairing information according to the identification code of the receiving device, and determines the communication channel according to the frequency parameter corresponding to the communication channel; transmitting, by the first wireless unit, the first pairing information to the receiving device.

The acquisition device of claim 26 wherein the first wireless communication technology comprises a radio frequency identification technology or a near field communication technology.

The acquisition device of claim 26 wherein the first wireless unit comprises a first coil and the receiving device comprises a second coil; the second coil sends a radio frequency signal with a preset frequency, the first coil receives the radio frequency signal and generates an induced current to activate the acquisition device after entering an induction range, and the acquisition device acquires the configuration data transmitted by the receiving device after activation.

The acquisition device of claim 26 wherein the second wireless communication technology comprises at least one of wireless medical telemetry service technology, wireless local area network technology, bluetooth communication technology, and ZigBee communication technology.

The acquisition device according to claim 26, wherein the first processing unit determines whether the first pairing information and the second pairing information match, and if so, transmits the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device through the second wireless unit.

The acquisition device as set forth in claim 26, wherein the first processing unit is further configured to: if it is determined that the first pairing information does not match the second pairing information, discarding or ignoring subsequent data sent by the receiving device, and/or being prohibited from sending the acquired physiological signal or physiological information generated from the physiological signal to the receiving device.

The collection apparatus of claim 26, wherein the collection apparatus is a portable collection apparatus.

The acquisition device of claim 26, wherein the acquisition device further displays the physiological signal or displays physiological information generated from the physiological signal.

A receiving apparatus, comprising:

the third wireless unit is used for wirelessly communicating with the acquisition device through the first wireless communication technology; the acquisition device is used for connecting a patient to acquire physiological signals of the patient;

the fourth wireless unit is used for wirelessly communicating with the acquisition device through a second wireless communication technology;

the second processing unit is used for transmitting configuration data to the acquisition device through a third wireless unit, wherein the configuration data is used for determining first pairing information and a communication channel; communicating with the acquisition device through a fourth wireless unit on the communication channel to transmit second pairing information to the acquisition device, so that the acquisition device is allowed to send the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device after judging that the first pairing information is matched with the second pairing information, wherein the first pairing information and the second pairing information are consistent.

The receiving device of claim 39, wherein a second processing unit is configured to transmit configuration data to the acquisition device via a third wireless unit, wherein the configuration data is used to determine first pairing information and a communication channel; communicating with the acquisition device through a fourth wireless unit on the communication channel to transmit a control instruction and second pairing information to the acquisition device, so that the acquisition device executes the control instruction after judging that the first pairing information is matched with the second pairing information, and is allowed to send the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device, wherein the first pairing information and the second pairing information are consistent, and the first pairing information is used for uniquely identifying the control authority of the acquisition device.

The receiving device of claim 39, wherein the configuration data comprises: the communication channel comprises first pairing information or a receiving device identification code used for generating the first pairing information, and a frequency parameter corresponding to the communication channel.

The receiving device of claim 40, wherein the configuration data further comprises patient information of the patient.

The receiving device of claim 40, wherein the configuration data comprises the first pairing information and a frequency parameter corresponding to the communication channel, the first pairing information generated by the second processing unit.

The receiving apparatus of claim 43, wherein the first pairing information generated by the second processing unit comprises: the first pairing information is generated by the second processing unit according to the paired number information.

The receiving device of claim 39, wherein the configuration data comprises a receiving device identification code used to generate the first pairing information, and a frequency parameter corresponding to the communication channel; and the first pairing information is generated by the acquisition device according to the identification code of the receiving device.

The receiving device of claim 39, wherein the first wireless communication technology comprises a radio frequency identification technology or a near field communication technology.

The receiving device of claim 39, wherein the acquisition device comprises a first coil, and the third wireless unit comprises a second coil; the second coil sends a radio frequency signal with a preset frequency, the first coil receives the radio frequency signal and generates an induced current to activate the acquisition device after entering an induction range, and the acquisition device acquires the configuration data transmitted by the receiving device after activation.

The receiving device of claim 39, wherein the second wireless communication technology comprises at least one of wireless medical telemetry service technology, wireless local area network technology, Bluetooth communication technology, and ZigBee communication technology.

A monitor is characterized by comprising at least one acquisition device and a receiving device;

the acquisition device is used for connecting a patient to acquire physiological signals of the patient, acquiring configuration data from the receiving device through a first wireless communication technology, determining first pairing information and a communication channel according to the configuration data, and communicating with the receiving device through a second wireless communication technology on the communication channel to acquire second pairing information transmitted by the receiving device; judging whether the first pairing information is matched with the second pairing information, if so, allowing the acquired physiological signal or the physiological information generated according to the physiological signal to be sent to the receiving device;

the receiving device is used for transmitting configuration data to the acquisition device through a first wireless communication technology, wherein the configuration data is used for determining first pairing information and a communication channel; communicating with the acquisition device over the communication channel via a second wireless communication technology to transmit second pairing information to the acquisition device, wherein the first and second pairing information are consistent.

A monitor comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, wherein the processor when executing the program performs the steps of:

acquiring configuration data from a receiving device through a first wireless communication technology, and determining first pairing information and communication channel pairing information according to the configuration data; the acquisition device is used for connecting a patient to acquire physiological signals of the patient;

communicating with the receiving device over the communication channel via a second wireless communication technology to obtain second pairing information transmitted by the receiving device;

and judging whether the first pairing information is matched with the second pairing information, if so, allowing the acquired physiological signal or the physiological information generated according to the physiological signal to be sent to the receiving device.

A monitor comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, wherein the processor when executing the program performs the steps of:

transmitting configuration data to an acquisition device through a first wireless communication technology, wherein the configuration data is used for determining first pairing information and a communication channel; the acquisition device is used for connecting a patient to acquire physiological signals of the patient;

communicating with the acquisition device through a second wireless communication technology on the communication channel to transmit second pairing information to the acquisition device, so that the acquisition device is allowed to send the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device after judging that the first pairing information is matched with the second pairing information, wherein the first pairing information and the second pairing information are consistent.

A computer-readable storage medium, on which a computer program is stored, which program, when executed by a processor, carries out the steps of:

acquiring configuration data from a receiving device through a first wireless communication technology, and determining first pairing information and a communication channel according to the configuration data; the acquisition device is used for connecting a patient to acquire physiological signals of the patient;

communicating with the receiving device over the communication channel via a second wireless communication technology to obtain second pairing information transmitted by the receiving device;

and judging whether the first pairing information is matched with the second pairing information, if so, allowing the acquired physiological signal or the physiological information generated according to the physiological signal to be sent to the receiving device.

A computer-readable storage medium, on which a computer program is stored, which program, when executed by a processor, carries out the steps of:

transmitting configuration data to an acquisition device through a first wireless communication technology, wherein the configuration data is used for determining first pairing information and a communication channel; the acquisition device is used for connecting a patient to acquire physiological signals of the patient;

communicating with the acquisition device through a second wireless communication technology on the communication channel to transmit second pairing information to the acquisition device, so that the acquisition device is allowed to send the acquired physiological signal or physiological information generated according to the physiological signal to the receiving device after judging that the first pairing information is matched with the second pairing information, wherein the first pairing information and the second pairing information are consistent.

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