Limb fixing device capable of being intelligently controlled and freely adjusted
A technology of intelligent control and fixed device, applied in passive exercise equipment, physical therapy and other directions, can solve the problems of aggravating the symptoms of limb edema, the symptom effect is not obvious, and the operation and use are inconvenient, so as to reduce the symptoms of limb edema and facilitate daily care. , the effect of reducing workload
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Embodiment 1
[0037] refer to Figure 1 to Figure 6 As shown, a limb immobilization device that can be intelligently controlled and freely adjusted is characterized in that it includes: a rear limb support module 1, a front limb support module 2, a palm support block 3, a finger retractor 4, a knee joint support module 5, Track plate 6, ankle support 7, remote controller 10;
[0038] The rear limb support module 1, the front limb support module 2, and the palm support block 3 are sequentially connected through a transition belt 9, respectively lifting and turning the upper arm, forearm, and palm of the upper limb, and the finger retractor 4 passes through the driving rod. 8 is connected to one side of the palm support block 3 and pulls the patient's fingers to form an upper limb lifting device. The module 2 rotates horizontally; the track plate 6 is fixedly connected to one side of the knee joint support module 5 that can lift the knee joint, and the ankle joint supporter 7 can lift the an...
Embodiment 2
[0047] Another embodiment of the present invention is the working principle of a limb immobilization device that can be intelligently controlled and adjusted freely:
[0048] In the whole device, the drive rod 8 provides the power for the device to operate, and the drive rod 8 is regulated by the control box 201, and the remote control sends out the control command, as follows:
[0049] The adjustment button 1001 is used for man-made input operation instructions, and the instruction information is analyzed and processed by the first micro-processing module 1013, and then the instruction information is transmitted to the control box 201 in the form of an infrared signal by the infrared transmitter 1012, and the infrared signal in the control box 201 The receiver 2021 receives the infrared signal, and transmits the infrared signal to the second micro-processing module 2022 for analysis and processing, and finally the second micro-processing module 2022 executes the operation comm...
Embodiment 3
[0052] Another embodiment of the present invention is a specific use method and steps of a limb immobilization device that can be intelligently controlled and adjusted freely:
[0053] 1. Place the two parts of the device on the upper and lower limbs of the patient respectively.
[0054] 2. Place the patient's upper limbs from the shoulders into the rear limb support module, front limb support module, and palm support block.
[0055] 3. Bind the patient's upper limbs to the rear limb support module and the front limb support module through the first fixing belt.
[0056] 4. Insert the patient's finger into the ring.
[0057] 5. Place the patient's knee joint on the knee joint support module, place the patient's heel on the joint replacement support, and restrain the patient's ankle joint through the second fixing belt.
[0058] 6. Use the remote controller to issue specific commands to the drive rods of each part of the device.
[0059] In summary, 1. The device is designed...
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