Multifunctional spinal column decompression therapy apparatus
A decompression treatment and multi-functional technology, applied in non-surgical orthopedic surgery, etc., can solve the problems of tension positioning to key lesion positions, treatment can not be realized according to the purpose, and achieve the effect of comfortable treatment
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specific Embodiment 1
[0068] Specific embodiment 1 (simple tension plan for spinal decompression therapy):
[0069] Such as Figure 7 As shown, the plan includes the first, second, and third drawings 902, 903, and 904, respectively. The determined tension plan is shown in 902, which is specially designed for the traditional spinal decompression system. The tension values are in the X axis and Y The axis is expressed in kilograms, and the tension is applied to the patient's spine according to the parameters in the plan. The determined tension plan can be calculated based on the patient's body weight, the patient's medical history, the patient's acceptance of treatment or other factors. The basic spinal decompression therapy system is performed with a feedbackless drive. The feedback of the load cell 301 is used to adjust the speed and rate of change of the feedback-free driver 4, which will increase or decrease the value of the tensile force acting on the patient. In 903, the tension feedback 900 fr...
specific Embodiment 2
[0071] Specific Example 2 (Spine Extension Scheme for Spinal Treatment):
[0072] Such as Figure 8 As shown, plan A01 includes the first, second, and third drawings, respectively, and three drawings A02, A03, and A04. Plan A01 uses a distance-based spinal decompression method, and plan A01 is set to use a traction therapy system. In Figure A02, the predicted spinal extension plan A20 will be displayed on the monitor of the control system 1, and the patient interface device 7 is expected to extend or contract after the treatment course. In this case, the predicted spinal extension plan A20 It is expressed in centimeters and plotted on the Y axis A10 on the left, while time is plotted on the X axis. By way of example only, it is expected that the spine extension scheme A20 extends from the zero point to 10 cm, and it is drawn as a continuous smooth function without sudden changes in the spine. Also in Figure A02, on the spine extension plan A20, the tensile force limit A00 is plo...
specific Embodiment 3
[0077] Specific embodiment 3 (showing a spine extension scheme that adjusts the position of the predetermined extension):
[0078] Such as Picture 9 As shown, the plan B01 includes the first picture B02, the second picture B03, and the third picture B04 respectively. The plan B01 uses a distance-based spinal extension method, and the treatment plan B01 can be set as a traction treatment plan. In this example, the predicted spine extension plan B20 and the tensile force limit B40 are drawn on the first picture B02, and the tensile force limit B40 is set to 50 kg. In the second graph B03, the measured tensile force B70 increases and begins to exceed the preset tensile force limit B60. This data can be explained as the patient's paraspinal muscles are resisting spinal extension due to the following reasons (but not limited to the following reasons), psychological reasons (claustrophobia, panic, etc.), reflex reasons (rapid changes) , Untrue or incorrect patient positioning), or ph...
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