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Multifunctional anesthesia depth monitoring device for anesthesiology

A technology for depth of anesthesia and monitoring devices, applied in application, medical science, diagnostic recording/measurement, etc., can solve problems such as incomplete data and lack of multiple comparison data

Inactive Publication Date: 2019-06-14
唐莹
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, the multifunctional anesthesia depth monitoring device provided in the above-mentioned technical solution still has many shortcomings in actual use, such as the data monitored are mostly the data information of the anesthetist in a passive state, the data is not perfect and there is no It is difficult to get accurate results from multiple comparative data

Method used

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  • Multifunctional anesthesia depth monitoring device for anesthesiology
  • Multifunctional anesthesia depth monitoring device for anesthesiology
  • Multifunctional anesthesia depth monitoring device for anesthesiology

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] The present invention provides such Figure 1-5 A multifunctional anesthesia depth monitoring device shown in the anesthesia department includes a base 1, a detection housing 2 is arranged on the top of the base 1, a data control center is arranged inside the detection housing 2, and the detection housing 2 A display screen 3 is provided on the front side surface, a first storage case 4 is provided on one side of the detection case 2, a second storage case 41 is provided at the bottom of the first storage case 4, and a second storage case 41 is provided at the bottom of the detection case 2. A hood 5 is provided inside, a radio wave extraction device 6 is provided on the top of the inner wall of the hood 5, a heating plate 7 is provided inside the second storage case 41, and a refrigeration device 8 is provided at the bottom of the first storage case 4 , the refrigeration device 8 includes a refrigeration housing 81 , a refrigerator 82 , a solenoid valve 83 , an attachm...

Embodiment 2

[0030] Further, the top of the inner wall of the hood 5 is provided with a cushion 51, the hood 5 and the cushion 51 are made of rubber material, the electric wave extraction device 6 is fixedly connected with the hood 5, the hood 5 Connecting seats 52 are provided at both ends of the bottom, and a clamping elastic rope is connected between the two connecting seats 52. Side plates 53 are provided on both sides of the inner wall of the hood 5, and ultrasonic waves are arranged inside the side plates 53. Generator 54.

[0031] Further, the radio wave extraction device 6 includes a radio wave receiver, an amplifier, a first filter, an analog data converter and a second filter, and the radio wave extraction device 6 is used to receive and amplify brain waves sent by the human brain in real time and processing, and transmit the processed brain waves to the data control center.

[0032] Beneficial effects of this embodiment: After the head cover 5 is put on the head of the anesthet...

Embodiment 3

[0034]Further, the bottom of the heating plate 7 is provided with a heat conduction pad 71, the inside of the heating plate 7 is uniformly provided with heating wires, the top of the heating plate 7 and the hood 5 are connected with an elastic rope, and the other end of the elastic rope is fixed It is arranged inside the first storage case 4 and the second storage case 41 .

[0035] Further, the interior of the refrigeration housing 81 is filled with cooling liquid, a refrigerator 82 is provided at the bottom of the inner wall of the refrigeration device 8, and a solenoid valve 83 is provided on the outside of the refrigeration device 8, and the outside of the solenoid valve 83 is attached plate 84 , the attachment plate 84 is hollow, and the attachment plate 84 communicates with the electromagnetic valve 83 through a water pipe 85 .

[0036] Beneficial effects of this embodiment: use the electric wave extraction device 6 to monitor the brain wave signal in real time after put...

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Abstract

The invention discloses a multifunctional anesthesia depth monitoring device for anesthesiology, and in particular relates to the field of medical equipment. The monitoring device comprises a base. The top of the base is provided with a detection casing, and a data control center is arranged inside the detection casing. A display screen is disposed on the front side surface of the detection casing, a first storage casing is disposed on one side of the detection casing, and a second storage casing is disposed at the bottom of the first storage casing. The monitoring device is provided with a heating plate and a refrigerating device. A heating wire inside the heating plate is controlled to work and transfer the heat to a thermal pad to contact the skin at different parts of the human body after the body can withstand the temperature, and monitors the reaction of the brain wave under the heated condition of the skin. A refrigerator works to refrigerate a coolant, then a solenoid valve isopened, the coolant is delivered to an attached plate and then contacts the skin at the different parts of the human body through the low-temperature attached plate to monitor the reaction of the brain wave under the cold condition of the skin, so that the status of an anesthesia patient can be obtained by monitoring difference of the anesthesia depth.

Description

technical field [0001] The invention relates to the technical field of medical equipment, more specifically, the invention relates to a multifunctional anesthesia depth monitoring device for anesthesia department. Background technique [0002] Anesthesia depth monitoring is an important work content to ensure the quality of anesthesia. Loss of consciousness is a core anesthetic component, and reliable clinical measures such as the alertness / sedation score cannot be implemented due to the use of muscle relaxants. The isolated arm technique, which temporarily blocks blood supply to the limb to preserve its command response, is the gold standard for intraoperative consciousness monitoring, but it cannot be continuously monitored throughout the anesthesia period due to the limitation of limb ischemia time. However, the existing anesthesia depth monitoring device cannot obtain an accurate evaluation of the degree of anesthesia, which often leads to the situation of over-anesthes...

Claims

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Application Information

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IPC IPC(8): A61B5/00A61B5/0476
Inventor 唐莹张敬
Owner 唐莹
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