Intelligent infusion nursing system based on multi-sensor fusion technology
A multi-sensor fusion, nursing system technology, applied in control/regulation systems, instruments, electrocardiography, etc., can solve problems such as the inability to monitor the adverse reactions of patients infusion in real time, the inability to meet the intelligent nursing monitoring of patients, and the lack of intelligent infusion nursing capacity. , to achieve the effect of reducing medical accidents, improving the level of intelligence, and improving the safety factor of use
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Embodiment 1
[0039] This embodiment constructs a kind of intelligent infusion nursing system of multi-sensor fusion technology that automatically judges the infusion drip speed according to the patient's physiological condition;
[0040]The intelligent infusion nursing system includes a monitor placed on the dropper to obtain the infusion drop speed data and the infusion bottle to obtain the liquid level data; a control device for adjusting the infusion drop speed and the switch of the infusion channel on the infusion set; The sensing device that obtains body temperature, blood pressure, and heart rate somatosensory data on the patient; the alarm that is placed in the nurse's room to send out an alarm to remind the medical staff; judges whether the infusion channel is abnormal or whether the patient has any adverse events based on the data received from the monitor and the sensing device Response, whether the liquid in the infusion bottle reaches the alarm line, send out the infusion stop s...
Embodiment 2
[0058] combined with Figure 1-5 , in addition to comprising the content of the above embodiments, also lies in:
[0059] The control device includes a first clamping device for clamping and controlling the dripping speed of the infusion tube, a second clamping device located below the dropper for controlling the opening or closing of the infusion channel, providing the first The hydraulic system of the clamping force of the clamping device and the second clamping device is placed between the hydraulic system and the first clamping device to communicate with the host to control the first electromagnetic of the first clamping device A control valve, placed between the hydraulic system and the second clamping device, communicates with the host to control the second electromagnetic control valve of the second clamping device.
[0060] The first clamping device is connected in parallel with the second clamping device, sharing a hydraulic system. The first holding device is compo...
Embodiment 3
[0071] combined with Figure 1-5 , in addition to comprising the content of the above embodiments, also lies in:
[0072] The drip rate monitor comprises a light source arranged to generate a divergent or concentrated beam, a light shield disposed between the first lens assembly and the focal area and forming a pattern of alternating opaque and transparent areas of the illuminating beam, And a first lens assembly configured to project the light beam to a focus area, and a photodetector configured to receive reflected light from the light source after passing through the light shield and detect the pulse frequency of the reflected light.
[0073] In addition to the light sensor, the light detector also includes a second lens assembly having a receiving area and projecting reflected light in the receiving area onto the light sensor.
[0074] The pulse frequency is an indication of the velocity of the moving object, the velocity of the object being calculated as a function of th...
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