Non-invasive blood pressure simulation system and implementation method thereof

A technology of blood pressure simulation and implementation method, which is applied in the direction of cardiac catheterization, etc., can solve problems such as complex value transmission, complex transmission device, and measurement error of sphygmomanometer, and achieve high-efficiency value conversion device, high blood pressure simulation degree, and various simulation parameters. Effect

Active Publication Date: 2013-07-31
CONTEC MEDICAL SYST
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AI Technical Summary

Problems solved by technology

In the scheme of simulating the human arm, the transmission device used is complex, and the artificial muscle layer with artificial blood vessels is generally wrapped by an elastic membrane. Due to the limitations of existing materials, these artificial tissues are difficult to simulate real human tissues, which will cause errors in the measurement of the sphygmomanometer , and most of these devices use static blood pressure simulation, which cannot realize the simulation of different patient states
Another method, such as the patent with the patent publication number CN 202342027 U, is to directly input the simulated pressure fluctuation into the pneumatic system of the sphygmomanometer, although the implementation method of directly inputting the simulated pressure fluctuation into the pneumatic system of the sphygmomanometer

Method used

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  • Non-invasive blood pressure simulation system and implementation method thereof

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Effect test

Embodiment 1

[0037] A non-invasive blood pressure simulation system, see figure 1 , the system includes:

[0038] A microprocessor module 2 for outputting pressure waveform signals to the stepper motor 1;

[0039] A cylinder 3 with a piston volume not greater than 20cc, the stepper motor is controlled by the stepper motor driver 2-1 of the microprocessor module, connected through a lead screw 4 and drives the piston to move forward and backward;

[0040] A position sensor 5 that is arranged on the piston port of the cylinder and transmits the position of the piston, the position sensor is connected with the microprocessor 2-2 of the microprocessor module;

[0041] A pressure sensor 6 that is arranged on the cylinder and feeds back the pressure in the cylinder is provided with a temperature sensor 7 in the pipeline connected between the cylinder and the pressure sensor, and the temperature sensor and the pressure sensor are connected to the microprocessor module;

[0042] A deflation pipe...

Embodiment 2

[0050] A non-invasive blood pressure simulation implementation method based on the non-invasive blood pressure simulation system of Embodiment 1, said system comprising:

[0051] A microprocessor module for outputting the pressure waveform signal to the stepper motor;

[0052] A cylinder with a volume not greater than 20cc with a piston, the stepping motor is connected and drives the piston to move back and forth;

[0053] A position sensor arranged at the piston port of the cylinder to transmit the position of the piston, the position sensor is connected to the microprocessor module;

[0054] A pressure sensor arranged on the cylinder to feed back the pressure in the cylinder, a temperature sensor is arranged in the pipeline connecting the cylinder and the pressure sensor, and the temperature sensor and the pressure sensor are connected to the microprocessor module;

[0055] a vent pipe connected to the atmosphere through a first solenoid valve connected to the microprocesso...

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Abstract

The invention particularly relates to a non-invasive blood pressure simulation system and an implementation method thereof. The non-invasive blood pressure simulation system comprises a microprocessor module, an air cylinder, a position sensor, a pressure sensor, a temperature sensor, an air outlet pipe, an inner blood pressure cuff and a pressure port, wherein the microprocessor module is used for outputting a pressure waveform signal to a stepping motor; the volume of the air cylinder is not more than 20 cc; the air outlet pipe is connected with the atmosphere through a first electromagnetic valve; the inner blood pressure cuff is connected with the air cylinder through a second electromagnetic valve; and the pressure port connected with a blood pressure meter is arranged on the air cylinder. The instrument provided by the invention can be used for detecting and correcting the blood pressure meter which applies an oscillography principle through an electronic technology and producing or researching and developing the oscillography non-invasive blood pressure meter; compared with the prior art, because the quantity value conversion device of the simulation instrument is high in efficiency, precise and is unnecessary to maintain for a long time, the simulation instrument has the characteristics of good repetitiveness, accuracy and long-time stability in operation; and compared with the traditional non-invasive blood pressure simulation device, the simulation instrument increases multiple detection functions, thereby achieving various simulation parameters and overall detection functions.

Description

technical field [0001] The invention belongs to the field of medical testing equipment, and in particular relates to a non-invasive blood pressure simulation system and its implementation method. The air leakage rate test, overvoltage protection test and static pressure calibration can be performed on the sphygmomanometer through the peripheral air pump and solenoid valve module, and the device is designed There are internal standard cylinder simulation cuffs to further improve simulation consistency. Background technique [0002] With the acceleration of the pace of modern life and the change of lifestyle, people pay more and more attention to health. As an important health indicator, blood pressure has been widely used and recognized. Blood pressure has become an important basis for clinical diagnosis of diseases, observation of treatment effects, and judgment of prognosis. Blood pressure measurement can be realized by direct and indirect methods. The direct method is an ...

Claims

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Application Information

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IPC IPC(8): A61B5/0225
Inventor 胡坤许云龙高瑞斌张金玲闫博华邹翰斌
Owner CONTEC MEDICAL SYST
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