Kidney puncture assisting device
A technology of kidney puncture and auxiliary device, which is applied in the medical field, and can solve problems such as the inability to adjust the three-dimensional position and puncture angle of the puncture guide, the inability to automatically track the puncture position, and difficult patient fixation.
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Embodiment 1
[0049]Such asfigure 1 ,Figure 5 withFigure 7 As shown, a kidney puncture aid is mainly composed of the following parts, including:
[0050]Sheet bed 1, bed 1 is the main body support of the device;
[0051]The position of the mass position maintenance assembly 2 for maintaining the patient's buttocks and head position;
[0052]Waist fixing assembly 3 for fixing the patient's waist;
[0053]The puncture guide 4 is disposed above the bed 1;
[0054]A orientation adjustment assembly 5 for driving the puncture guide 4 for three-dimensional spatial orientation;
[0055]An angle adjustment component 6 for driving the puncture guide 4 for angular adjustment;
[0056]A color trace assembly for identifying pre-coated in patient waist puncture portions;
[0057]And a puncture needle supply assembly 7 for penetrating needles.
[0058]Such asfigure 1 ,Figure 5 withFigure 7 As shown, the patient can be lying on the bed 1 when used, and the patient position can be sufficiently fixed by utilizing the position maintenance as...
Embodiment 2
[0070]The difference from Example 1 is that a layer of anti-fouling coating is coated on the surface of the bed 1, wherein the preparation process of the antifouling coating is as follows:
[0071]S1, take the weight of the following weight: 40 parts of the acrylic monomer, 20 parts of allyl glycerol ether, 30 copies of acrylamide, 20 parts of the amphiphilic moltrium monomer, 20 parts of methacrylate, N, N, N, N, N, N, N, N, N, 15 parts of N-methylene bis acrylamide, 15 parts of dimethylacrylate, 5 parts of diethyl methacrylate;
[0072]S2, mixed the acrylic monomer, allyl glycidyl ether, and polymerized to obtain a first polymer emulsion in the reactive kettle;
[0073]S3, mixed acrylamide, amphiphilic molar monomer, methacrylate, mixed with glycidyl ether, and polymerized to obtain a second polymer emulsion in the reactive kettle;
[0074]S4, the first polymer emulsion is mixed with the second polymer emulsion to add N, N-methylene bis acrylamide, dimethylacrylamide, dimethacrylate and dieth...
Embodiment 3
[0076]Unlike Example 2, the preparation of the anti-fouling coating is prepared, wherein the preparation process of the anti-fouling coating is as follows:
[0077]S1, take the weight of the following weight: 43 parts of acrylic monomer, 30 parts of allyl glycidyl ether, 30 copies of acrylamide, 20 parts of the amphiphilic mid, 20 parts of methacrylate, N, N, N, N, N, N, N, N, N, N, N, 12 parts of N-methylene bis acrylamide, 15 parts of dimethylacrylate, 5 parts of diethyl methacrylate;
[0078]S2, mixed the acrylic monomer, allyl glycidyl ether, and polymerized to obtain a first polymer emulsion in the reactive kettle;
[0079]S3, mixed acrylamide, amphiphilic molar monomer, methacrylate, mixed with glycidyl ether, and polymerized to obtain a second polymer emulsion in the reactive kettle;
[0080]S4, mixing the first polymer emulsion and the second polymer emulsion, add N, N-methylene bis acrylamide, dimethylamine, dimethylamine, and diethyl amine, and then heated to 55 ° C. Insulation 1 h, c...
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