Quick feeding device for transplanting calf flora
A microflora and calf technology, applied in veterinary instruments, medical science, etc., can solve the problems of limited direct insertion depth of catheters, poor efficacy of microflora transplantation, and hidden safety hazards of catheters, and achieve rapid transplantation and feeding, guaranteeing The effect of curative effect and shortening of intubation time
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0039] Embodiment 1: as Figure 1-3As shown, the rapid feeding device for calf flora transplantation described in the present application includes a guide device and a transplant catheter 2, and the guide device is sleeved on the inside of the transplant catheter 2, and its specific installation position is at the port site of the insertion end of the transplant catheter 2, A part of the guide device is set in the transplantation catheter 2, and this part is used to combine the guide device and the transplantation catheter 2; the other part protrudes outside the transplantation catheter 2 for front-end guidance; The anorectum moves to the target area for transplant perfusion of flora.
[0040] Such as Figure 2-7 As shown, the guide device includes a guide post 11, a screw propulsion rod 12, a motor 13, a casing 14 and a first traction rope 3, and the described guide post 11, a screw propulsion rod 12, a motor 13 and a sleeve 14 are used to The end-to-end connection is hinge...
Embodiment 2
[0046] Embodiment 2: on the basis of embodiment 1, as figure 2 and image 3 As shown, the guide column 11, the screw propulsion rod 12 and the motor 13 are connected by a ball joint, wherein the motor shaft end of the motor 13 is equipped with a ball seat 124, as Figure 8 As shown, the lower end of the screw propulsion rod 12 is provided with a ball head, and the ball head at the lower end of the screw propulsion rod 12 is installed in the ball seat 124 of the motor shaft, the upper end of the screw propulsion rod 12 is provided with a ball seat 124, and the lower end of the guide column 11 is arranged The ball head, the ball head of the guide column 11 is sleeved in the ball seat 124 at the upper end of the screw propulsion rod 12 .
[0047] The ball joint is formed by the set of the ball seat 124 and the ball head, and the tightness of the set between the ball head and the ball seat 124 is moderate. When the guide device advances forward, the ball head and the ball seat 1...
Embodiment 3
[0050] Embodiment 3: A single-section screw propulsion rod 12 is adopted, and a three-section hinge structure is formed among the guide column 11, the screw drive rod 12 and the motor 13, and the bending degree of the guide device is limited. For the position with high intestinal curvature of the calf, if the curvature of the guide device is not enough to pass through the intestinal curvature, forcing the introduction will cause the deformation of the calf intestinal tract and damage the calf intestinal tract.
[0051] In order to avoid the occurrence of this problem, the guiding device adopts multi-section screw propulsion rods 12 to be connected in series, and universal joints are also used for hinges between the series connected screw propulsion rods 12 .
[0052] This embodiment takes Figure 2-3 The two-section screw propulsion rod 12 shown in is connected in series as an example. The two-section screw propulsion rod 12 is directly connected through a ball-type universal ...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


