CN215191501U - Cerebrovascular reserve function monitoring system - Google Patents

Cerebrovascular reserve function monitoring system Download PDF

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CN215191501U
CN215191501U CN202120473041.8U CN202120473041U CN215191501U CN 215191501 U CN215191501 U CN 215191501U CN 202120473041 U CN202120473041 U CN 202120473041U CN 215191501 U CN215191501 U CN 215191501U
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cerebrovascular
image
acquisition device
signal processing
monitoring system
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倪诚
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Cancer Hospital and Institute of CAMS and PUMC
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Cancer Hospital and Institute of CAMS and PUMC
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Abstract

The utility model discloses a cerebrovascular reserve function monitoring system, which comprises an image acquisition device for acquiring the cerebrovascular image of a tested person; the image acquisition device and the blood pressure signal acquisition device are respectively connected with the signal processing device through the communication interface module and are used for processing the cerebrovascular image and the blood pressure signal and analyzing the state of the to-be-detected cerebrovascular; the memory is connected with the display device and used for receiving the data from the image acquisition device and the signal processing device and storing and backing up the received data; the display device is used for receiving the data result of the signal processing device; the image acquisition device, the blood pressure signal acquisition device, the communication module, the signal processing device, the memory and the display device are respectively connected with the main control board, and the main control board is also connected with the positioning device. The utility model discloses a wired/wireless mode with blood vessel state information transmission to cloud ware, the end of doctorsing and nurses for blood vessel monitoring is convenient simple more.

Description

Cerebrovascular reserve function monitoring system
Technical Field
The utility model belongs to the technical field of medical equipment, concretely relates to cerebrovascular deposit function monitor system.
Background
Cerebrovascular reserve refers to the ability of the brain to maintain normal and stable cerebral blood flow through compensatory dilation or constriction of small arteries and capillaries under physiological or pathological stimulation. The function of cerebrovascular reserve isPlays a very important role in the occurrence and development process of cerebrovascular diseases, mainly comprising structural reserve and functional reserve, wherein the structural reserve mainly comprises the level of collateral circulation establishment of a patient, and the functional reserve mainly refers to CO in blood vessels of the patient2Reactivity and automatic regulation of cerebral blood flow. Therefore, how to monitor the cerebrovascular reserve function is very important. The existing cerebrovascular monitoring device is limited by places, has single function and is difficult to meet the existing requirements.
SUMMERY OF THE UTILITY MODEL
To current blood vessel guardianship device receive the place restriction, the problem of current demand is difficult to satisfy to the function singleness, the utility model provides a following scheme:
a cerebrovascular reserve function monitoring system comprises an image acquisition device, a blood pressure signal acquisition device, a communication module, a signal processing device, a memory, a display device and a main control board, and is characterized in that,
the image acquisition device is used for acquiring a cerebrovascular image of a measured person;
the image acquisition device and the blood pressure signal acquisition device are respectively connected with the signal processing device through a communication interface module and are used for processing the cerebrovascular image and the blood pressure signal and analyzing the state of a to-be-detected cerebrovascular;
the memory is connected with the display device and used for receiving data from the image acquisition device and the signal processing device and storing and backing up the received data;
the display device is used for receiving the data result of the signal processing device;
the image acquisition device, the blood pressure signal acquisition device, the communication module, the signal processing device, the memory and the display device are respectively connected with the main control board, and the main control board is also connected with a positioning device.
Preferably, the signal processing device comprises an area selection unit and an operation unit, wherein the area selection unit is used for preprocessing the cerebrovascular image and then marking the cerebrovascular area to be detected, and the operation unit is used for calculating the cerebrovascular flow by applying a blood flow dynamics formula.
Preferably, the communication module comprises a wired or wireless device, and the wireless device comprises one or more of WIFI/Bluetooth/3G/4G/5G.
Preferably, the display device includes touch panel, a plurality of operating button, touch panel operating button all is connected with the main control board, operating button includes start button, stop button, alarm button, first pilot lamp, second pilot lamp, first pilot lamp is used for showing the residual capacity state, the second pilot lamp is used for showing current blood vessel guardianship state.
Preferably, the equipment further comprises an alarm device and an equipment information monitoring device, wherein the equipment information monitoring device is connected with the alarm device and the signal processing device, and the alarm device is respectively connected with the main control board, the cloud server, the medical care end and the display device and used for reminding a user, a client and medical care end personnel and uploading the data to the cloud server as historical state data.
Preferably, the monitoring system further comprises a voice module, wherein the voice module is connected with the main control board and the alarm device and is used for controlling the cerebral vascular reserve function monitoring system through voice and realizing voice alarm prompt.
Preferably, the image acquisition device, comprising a processor,
a signal receiving end for collecting the cerebrovascular image,
a first memory for latching the acquired image content signal,
a second memory for latching the collected image state signal,
a signal output terminal for outputting an image signal,
the first memory and the second memory are connected with the processor through a data bus,
the communication module is used for being connected with external equipment.
Preferably, the wireless communication module includes a GPRS module and a SIM module, and the GPRS module converts the format of the acquired image into a data format recognizable by the external device and sends the converted image to the external device.
The utility model discloses a following technological effect: the utility model discloses a cerebrovascular reserve function monitoring system, use the image acquisition device to gather the cerebrovascular image of measurand, blood pressure signal acquisition device gathers the measurand, then with above-mentioned signal transmission to signal processing device through the communication interface module, handle cerebrovascular image, blood pressure signal, and analyze the cerebrovascular state of measurand, and transmit the information after handling to the memory and save the backup, display device receives signal processing device's data result and shows; in addition, the main control board is connected with a positioning device, and the main control board transmits the cerebrovascular state information to the cloud server and the medical care end in a wired/wireless mode, so that the cerebrovascular monitoring is more convenient and simpler.
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In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive labor.
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In order to make the above objects, features and advantages of the present invention more comprehensible, the present invention is described in detail with reference to the accompanying drawings and the detailed description.
As shown in FIG. 1, the utility model provides a cerebrovascular reserve function monitoring system, which comprises an image acquisition device, a blood pressure signal acquisition device, a communication module, a signal processing device, a memory, a display device and a main control board,
the image acquisition device is used for acquiring a cerebrovascular image of a measured person;
the image acquisition device and the blood pressure signal acquisition device are respectively connected with the signal processing device through a communication interface module and are used for processing the cerebrovascular image and analyzing the state of the to-be-detected cerebrovascular;
the memory is connected with the display device and used for receiving data from the image acquisition device and the signal processing device and storing and backing up the received data;
the display device is used for receiving the data result of the signal processing device;
the image acquisition device, the blood pressure signal acquisition device, the communication module, the signal processing device, the memory and the display device are respectively connected with the main control board, and the main control board is also connected with a positioning device.
According to a further optimization scheme, the signal processing device comprises an area selection unit and an operation unit, the area selection unit is used for preprocessing the cerebrovascular image and then marking the cerebrovascular area to be detected, and the operation unit is used for calculating the cerebrovascular flow by applying a blood flow dynamics formula.
According to a further optimized scheme, the communication module comprises a wired device or a wireless device, and the wireless device comprises one or more of WIFI/Bluetooth/3G/4G/5G.
Further optimize the scheme, display device includes touch panel, a plurality of operating button, touch panel operating button all is connected with the main control board, operating button is including start button, stop button, alarm button, first pilot lamp, second pilot lamp, first pilot lamp is used for showing the residual capacity, if less than 20% the time, shows for red to show on display device, then need in time to charge this moment, the second pilot lamp is used for showing current blood vessel guardianship state, if the state is good then often bright, otherwise the scintillation.
Further optimization scheme still includes alarm device, equipment information monitoring devices with alarm device signal processing device connects, alarm device respectively main control board, cloud server, the end of doctorsing and nurses, display device connect for remind user, customer end, the end personnel of doctorsing and nurses, and upload to cloud server as historical state data, alarm device with the second pilot lamp is connected for play the warning effect.
In a further optimization scheme, the equipment information monitoring device comprises a state query timing unit, and is used for setting a state query interval by a preset timing query mechanism and acquiring the cerebrovascular state information from the cerebrovascular acquisition device according to the state query interval.
The timing inquiry mechanism compares the cerebrovascular state information of two adjacent time periods, detects whether the state information changes, and sends the information to the alarm device if the state information changes.
The monitoring system further comprises a voice module, wherein the voice module is connected with the main control board and the alarm device and used for controlling the cerebral vascular reserve function monitoring system in a voice mode and achieving voice alarm prompting.
The utility model also discloses a cerebrovascular image acquisition device, which comprises a processor,
the signal receiving end is used for collecting the cerebrovascular image,
the first memory is used for latching the acquired image content signal,
the second memory is used for latching the collected image state signal,
the signal output terminal is used for outputting an image signal,
the first memory and the second memory are connected with the processor through a data bus,
the communication module is used for being connected with external equipment.
And the GPRS module converts the format of the further optimized scheme and the acquired image into a data format which can be recognized by external equipment and sends the converted image to the external equipment.
The utility model discloses use image acquisition device to gather the cerebrovascular image of measurand, blood pressure signal acquisition device gathers measurand blood pressure, then through communication interface module with above-mentioned signal transmission to signal processing device, handle cerebrovascular image, blood pressure signal to the analysis of measurand cerebrovascular state, and with the information transmission after handling to the memory and save the backup, display device receives signal processing device's data result and shows; in addition, the main control board is connected with a positioning device, and the main control board transmits the cerebrovascular state information to the cloud server and the medical care end in a wired/wireless mode, so that the cerebrovascular monitoring is more convenient and simpler.
The above-mentioned embodiments are only intended to describe the preferred embodiments of the present invention, but not to limit the scope of the present invention, and those skilled in the art should also be able to make various modifications and improvements to the technical solution of the present invention without departing from the spirit of the present invention, and all such modifications and improvements are intended to fall within the scope of the present invention as defined in the appended claims.

Claims (8)

1. A cerebrovascular reserve function monitoring system comprises an image acquisition device, a blood pressure signal acquisition device, a communication module, a signal processing device, a memory, a display device and a main control board, and is characterized in that,
the image acquisition device is used for acquiring a cerebrovascular image of a measured person;
the image acquisition device and the blood pressure signal acquisition device are respectively connected with the signal processing device through a communication interface module and are used for processing the cerebrovascular image and the blood pressure signal and analyzing the state of a to-be-detected cerebrovascular;
the memory is connected with the display device and used for receiving data from the image acquisition device and the signal processing device and storing and backing up the received data;
the display device is used for receiving the data result of the signal processing device;
the image acquisition device, the blood pressure signal acquisition device, the communication module, the signal processing device, the memory and the display device are respectively connected with the main control board, and the main control board is also connected with a positioning device.
2. The cerebrovascular reserve function monitoring system according to claim 1, wherein the signal processing device comprises an area selection unit and an operation unit, the area selection unit is used for preprocessing the cerebrovascular image and then marking the cerebrovascular area to be detected, and the operation unit is used for calculating the cerebrovascular flow by applying a blood flow dynamics formula.
3. The cerebrovascular reserve function monitoring system of claim 1, wherein the communication module comprises a wired or wireless device, and the wireless device comprises one or more of WIFI/Bluetooth/3G/4G/5G.
4. The cerebrovascular reserve function monitoring system according to claim 1, wherein the display device comprises a touch panel and a plurality of operation buttons, the touch panel and the operation buttons are connected with the main control board, the operation buttons comprise a start button, a stop button, an alarm button, a first indicator light and a second indicator light, the first indicator light is used for displaying the state of residual charge, and the second indicator light is used for displaying the current vascular monitoring state.
5. The cerebrovascular reserve function monitoring system according to claim 1 or 4, further comprising an alarm device and a device information monitoring device, wherein the device information monitoring device is connected with the alarm device and the signal processing device, and the alarm device is respectively connected with the main control board, the cloud server, the medical care terminal and the display device, and is used for reminding a user, a client and medical care terminal personnel and uploading the data to the cloud server as historical state data.
6. The cerebrovascular reserve function monitoring system according to claim 5, further comprising a voice module, wherein the voice module is connected with the main control board and the alarm device, and is used for controlling the cerebrovascular reserve function monitoring system through voice and realizing voice alarm prompt.
7. The cerebrovascular reserve function monitoring system according to claim 1, characterized in that: the image acquisition device comprises a processor,
a signal receiving end for collecting the cerebrovascular image,
a first memory for latching the acquired image content signal,
a second memory for latching the collected image state signal,
a signal output terminal for outputting an image signal,
the first memory and the second memory are connected with the processor through a data bus,
the communication module is used for being connected with external equipment.
8. The cerebrovascular image acquisition device according to claim 7, wherein the wireless communication module comprises a GPRS module and a SIM module, the GPRS module converts the format of the acquired image into a data format recognizable by the external device, and sends the converted image to the external device.
CN202120473041.8U 2021-03-04 2021-03-04 Cerebrovascular reserve function monitoring system Active CN215191501U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120473041.8U CN215191501U (en) 2021-03-04 2021-03-04 Cerebrovascular reserve function monitoring system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120473041.8U CN215191501U (en) 2021-03-04 2021-03-04 Cerebrovascular reserve function monitoring system

Publications (1)

Publication Number Publication Date
CN215191501U true CN215191501U (en) 2021-12-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120473041.8U Active CN215191501U (en) 2021-03-04 2021-03-04 Cerebrovascular reserve function monitoring system

Country Status (1)

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CN (1) CN215191501U (en)

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