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Tracheal catheter capable of monitoring mixed venous oxygen saturation via air passage without trauma

An endotracheal catheter and saturation technology, applied in the field of medical monitoring devices, endotracheal catheters for non-invasive monitoring of blood oxygen saturation through the airway, and mixed venous blood oxygen saturation monitoring devices, can solve problems such as cardiac perforation, cardiac tamponade, and balloon rupture , to achieve the effects of small impact, clear social significance and medical value, and avoid additional damage

Inactive Publication Date: 2008-04-16
RENJI HOSPITAL ATTACHED TO SHANGHAI NO 2 MEDICALUNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] 1. Arrhythmia, arrhythmia may occur due to the stimulation of the catheter and excessive operation when inserting the catheter, and ventricular premature beats are more common, and it is more likely to occur when the myocardial stress is high
[0009] 2. Airbag rupture, blood components attached to the surface of the airbag can gradually reduce the elasticity of the airbag, long-term indwelling catheter, repeated use and frequent over-inflation of the airbag will cause airbag rupture
[0010] 3. Pulmonary infarction, air bag rupture, misinjection of excessive gas, thrombosis around the catheter, and catheter indwelling for too long can cause small-scale asymptomatic pulmonary infarction
[0013] 6. Thrombosis, intravascular insertion of any catheter can lead to thrombosis, and the polyhexene material used to make pulmonary artery catheters is more likely to occur
[0014] 7. Cardiac tamponade, any operation in the heart may cause heart perforation and cause cardiac tamponade
Also, under conditions of hypoperfusion and mechanical disturbances, oxygen saturation measurements at peripheral sites such as fingers and ears are often inaccurate.

Method used

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  • Tracheal catheter capable of monitoring mixed venous oxygen saturation via air passage without trauma
  • Tracheal catheter capable of monitoring mixed venous oxygen saturation via air passage without trauma
  • Tracheal catheter capable of monitoring mixed venous oxygen saturation via air passage without trauma

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Embodiment Construction

[0031] Such as figure 1 , figure 2 , image 3 and Figure 4As shown, the endotracheal tube for non-invasive monitoring of blood oxygen saturation through the airway of the present invention is composed of a double-lumen endotracheal tube 1, wherein, the double-lumen endotracheal tube 1 is provided with a main cuff 2, and the main cuff The surface of the capsule 2 is provided with a first blood oxygen saturation probe 3, and the outer side of the first blood oxygen saturation probe 3 is covered with a first surface coating 4, and the first surface coating 4 The periphery is connected with the surface of the main cuff 2, the first blood oxygen saturation probe 3 is provided with a first transmitting end 31 and a first receiving end 32, the first transmitting end 31 Lead wires 5 are respectively connected to the first receiving end 32, and the lead wires 5 are buried in the tube wall of the double-lumen endotracheal tube 1, and a secondary sheath is arranged on the left tube ...

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Abstract

A two-chamber air tube pipe for monitoring blood oxygen saturate through airway without hurt, relates to monitoring device for blood oxygen saturate of mixed vain (Sv02) especially. A main set bag is established on the pipe, and a vice set bag on the left pipe. A oxygen saturate detector is fixed in both of the main and the vice set bags, and connects the oxygen saturate monitor through the conductors buried in the inner pipe wall of the pipe. Oxygen saturate detector is fixed in air tube together with the air tube pipe. Oxygen saturate detector on the surface of the main set bag is directed to main artery, and oxygen saturate detector on the surface of the vice set bag is directed to left pulmonary artery, measuring the blood oxygen saturate of artery (Sa02) and vain (Sv02) individually, and the signal is conducted to the blood oxygen saturate monitor through the conductors. Oxygen saturate detector is fixed in the air tube pipe directly, and the conductors are buried in the pipe walls, which could decrease the impact to diameter and sectional area of air tube pipes, induce the resistance of the air way, and avoid the extra additive damage as a result of the monitoring process.

Description

Technical field: [0001] The present invention relates to a medical device, in particular to a medical monitoring device, in particular to a mixed venous oxygen saturation (SvO 2 ) monitoring device, specifically a tracheal catheter for non-invasive monitoring of blood oxygen saturation through the airway. Background technique: [0002] In the prior art, one of the most widely used methods for invasive monitoring of cardiac function and body oxygen supply-oxygen consumption balance in clinical and animal experiments is to use a multi-lumen pulmonary artery catheter, which was introduced in the 1970s by Invented by Swan, Ganz, Forrester, and Ellis et al. The Swan-Ganz catheter is used to monitor cardiac output, which can guide clinical treatment, curative effect evaluation and clinical auxiliary diagnosis and treatment. This technology provides a powerful weapon for clinicians and greatly promotes the treatment and management of clinically critical patients. After improveme...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A61B5/145A61M39/00
Inventor 王祥瑞郑拥军
Owner RENJI HOSPITAL ATTACHED TO SHANGHAI NO 2 MEDICALUNIV
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