Bionic fetal head position correction system for eutocia in obstetrical department
A bionic, fetal technology, applied in medical science, massage aids, physical therapy, etc., to save manpower, save time, and improve efficiency
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Embodiment 1
[0052] Please refer to Figure 1-5 , a bionic fetal head position correction system for obstetrics, including a lying board 1; slide rails 2 are provided on both sides of the lying board 1, and at least one group of moving frames 3 is provided on the sliding rails 2, Described mobile frame body 3 comprises slip ring 31, and described slip ring 31 is arranged on slide rail 2, and slip ring 31 is matched and slidably connected with slide rail 2, and the outer wall of described slip ring 31 is connected with telescopic rod 32, and described The top of telescoping rod 32 is connected with top beam 33, and described top beam 33 is arranged on the top of lying board 1, and described top beam 33 is slidingly provided with first slide block 34 below, and the other end of described first slide block 34 Connected with the first ball joint 35, the first slide block 34 is connected to the arc body 36 by the first ball joint 35, and the inside of the arc body 36 is provided with multiple s...
Embodiment 2
[0055] Please refer to Figure 12 , a bionic fetal head position correction system for obstetrics, comprising a couch 1; both sides of the couch 1 are provided with two-way threaded rods 12, and the two ends of the two-way threaded rods 12 rotate with the couch 1 Connected, one end of the screw plate is connected with a servo motor 13, and the servo motor 13 is connected with the deck board 1. When the two-way threaded rod 12 is used on both sides of the recliner 1, and the two-way threaded rod 12 is driven by the provided drive motor 3623, the slip ring 31 is internally provided with an internal thread, and the first slider 34 Driven by a linear motor, when the servo motor 13 drives the two-way threaded rod 12 to rotate clockwise, the two moving frames 3 move relative to each other, and the linear motor drives the first slider 34 to make the two arc-shaped bodies 36 move similarly. Two arc-shaped bodies 36 drive the fetus to rotate clockwise to correct. When the servo motor ...
Embodiment 3
[0057] Please refer to Figure 6-9 , on the basis of Embodiment 1, the adjustment mechanism 361 includes a first flat plate 3611, one side of the first flat plate 3611 is connected to the inner wall of the arc-shaped body 36, and the other side of the arc-shaped body 36 is symmetrically provided with two bases 3612 , the side close to the two bases 3612 is lower than the far side, and the base 3612 is in an inclined structure; a base 3614 is provided above the two bases 3612, and baffles 3613 are provided on both sides of the base 3612. The seat 3614 is matched with two sliding seats 3615 , the sliding seats 3615 are “concave” structures, and the sliding seats 3615 are slidably connected with the base 3614 .
[0058]The two sides of the sliding seat 3615 are provided with at least one sliding block 3616, and the two sides of the base 3614 are provided with two guide rails 3617 parallel to the base 3614, and the sliding block 3616 is matched and slidably connected with the guid...
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