Calcaneus shooting retention device
By adjusting the angle between the toes and the calf through a retention device consisting of a wrapping belt and a locking part, the ghosting problem in calcaneal X-ray examinations is solved, and clear radiographs and fixation and rehabilitation of the injured area are achieved.
Patent Information
- Application Number
- CN202422694124.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-05-20
- Filing Date
- 2024-11-06
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-06
AI Technical Summary
During calcaneal X-ray examinations, the full length of the calcaneus cannot be captured in the patient's conventional position, resulting in double or unclear images, and manual adjustments by medical staff pose a risk of radiation exposure.
A wrapping belt is used to bind the toes, a locking piece is fixed to the calf, and a traction belt is used to adjust the angle between the instep and the calf. Through the cooperation of the wrapping belt and the traction belt, the patient's position is changed to avoid ghosting and reduce the radiation of medical staff.
Ensure clear photography of the entire length of the calcaneus to avoid ghosting and reduce radiation risk for medical staff. It can also be used for fixation and rehabilitation of foot and ankle injuries and promote blood circulation.
Smart Images

Figure CN223336130U_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, in particular to a calcaneal radiograph retention device. Background Art
[0002] Calcaneus X-ray is a common medical examination method, mainly used to evaluate the condition of the calcaneus (the bone in the heel). This examination is usually performed through X-rays or CT scans. Calcaneus X-rays can help doctors diagnose a variety of problems, including calcaneal fractures, bone spurs (bone hyperplasia), calcaneal osteomyelitis, arthritis, etc. Through the examination, the doctor can understand the structure and density of the calcaneus and whether there are any abnormal changes. When performing a calcaneal X-ray examination, the doctor will examine different angles as needed, such as the front, side or oblique position.
[0003] In clinical practice, the patient's conventional posture cannot capture the full length of the calcaneus, or it may overlap with other bones in the heel, resulting in double images or unclear images during filming. This is especially true during heel surgery, where a comprehensive image of the calcaneus is required. During filming, medical staff will use their hands to lift and tilt the foot near the toes in order to clearly capture the image of the heel bone. However, this method can easily expose medical staff to radiation, posing a safety hazard. Summary of the Invention
[0004] The object of the present invention is to provide a calcaneal radiograph retention device to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a calcaneal radiograph retention device, comprising a wrapping belt, the wrapping belt being wrapped around and bound to the toes of the foot;
[0006] A locking member, wherein both side walls of the locking member are provided with straps, the two straps are extended and bound along the circumference of the leg, and one end of the locking member extends downward to form a vertical supporting end, and the supporting end enhances the supporting strength in the vertical direction;
[0007] The other end of the locking member is bent and extended in the horizontal direction to form an extended end, a locking end is provided on the upper side of the extended end, a reversing channel is provided between the bottom end of the locking end and the upper end of the extended end, a locking groove is provided on the upper end surface of the locking end, and a fixing head is detachably inserted into the locking groove;
[0008] A traction belt, one end of which is connected to a wrapping belt, and the other end of which passes through a reversing channel and is pulled upward along the side wall of the locking end to the upper end of the locking end and then reversely tensioned. The wrapping belt is subjected to the traction force of the traction belt to synchronously pull the toes, thereby adjusting the angle between the instep and the calf;
[0009] There are gaps between the side walls of the fixed head and the two sides of the locking groove. The fixed head is placed on a traction belt located at the notch of the locking groove. The traction belt is located on both sides of the notch of the locking groove and is pulled into the locking groove following the downward pressing fixed head. The traction belt is clamped in the gaps on both sides of the fixed head with a double-layer structure.
[0010] In a further embodiment, the wrapping belt includes a horizontal end and wrapping ends that are bent and extended at both ends of the horizontal end, one of the wrapping ends is a through-plug, and the other wrapping end is provided with a through-hole, and the through-plug passes through the through-hole and is adhered to the side wall of the through-hole opening by Velcro.
[0011] In a further embodiment, a connecting buckle is provided on the outer side wall of one of the winding ends, and an annular structure is provided at both ends of the traction belt. The annular structure at one end of the traction belt passes from one side of the connecting buckle to the other side, and the annular structure at the other end of the traction belt passes through the annular structure passing through the connecting buckle and is tightened.
[0012] The annular structure at one end of the traction belt away from the connecting buckle passes through the reversing channel, and is pulled upward along the side wall of the locking end to the upper end of the locking end, and then the annular structure is pulled in the reverse direction to tighten the traction belt.
[0013] In a further embodiment, an I-shaped guide wheel is rotatably provided in the reversing channel, a notch is provided on the side wall of the locking groove, and a matching shaft is rotatably provided in the notch. The traction belt passing through the reversing channel passes under the I-shaped guide wheel, and is pulled upward along the side wall of the locking end and around the upper side wall of the matching shaft.
[0014] In a further embodiment, the horizontal end of the wrapping belt is located on the lower side of the toes, and the two wrapping ends are respectively wrapped around the outside of the big toe and the little toe and stretched and adhered together on the upper side. The wrapping belt is subjected to the upward traction force of the traction belt and synchronously pulls the toes, thereby reducing the angle between the instep and the calf, and stretching and lifting the toes.
[0015] In a further embodiment, the horizontal end of the wrapping belt is located above the toes, and the two wrapping ends are respectively wrapped around the outside of the big toe and the little toe and stretched and adhered together on the lower side. The wrapping belt is subjected to the downward traction force of the traction belt to synchronously pull the toes, thereby expanding the angle between the instep and the calf, stretching and flattening the sole of the foot.
[0016] In a further embodiment, the traction belt that follows the fixed head and is embedded in the locking groove is positioned between the fixed head and the inner wall of the locking groove in a U-shaped structure, and one side wall of the traction belt is in contact with the side walls and bottom wall of the locking groove, and the other side wall of the traction belt is in contact with the side walls of the fixed head.
[0017] In a further embodiment, the side walls on both sides of the fixing head are provided with winding notches, the traction belt located at the notch position of the locking groove is wound around the outer side walls of the two winding notches, and the fixing head is inserted into the locking groove;
[0018] The traction belt located outside the winding notch is clamped in the gap between the fixed head and the inner wall of the locking groove.
[0019] In a further embodiment, arc-shaped notches are provided on both side walls of the fixed head, a clamping notch is provided on the bottom wall of the fixed head, the traction belt located at the notch of the locking groove is embedded in the clamping notch, arc-shaped protrusions are fixed on both side walls in the locking groove, the fixed head is inserted into the locking groove, the arc-shaped protrusions are embedded in the clamping notch, the opposite side walls of the clamping notch are brought together to clamp the traction belt, and the traction belts located on both sides of the clamping notch are clamped in the gap between the fixed head and the inner wall of the locking groove.
[0020] In a further embodiment, a padding pad is provided on the horizontal end for resting against the toe gap between two adjacent toes, and the padding pad is tilted and supported in the toe gap.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. The present invention relates to a calcaneal X-ray fixation device. When performing an X-ray examination of the calcaneal bone, a fixing member is formed by a wrapping belt wrapped and fixed on the toes of the foot, a locking piece fixed on the calf, and a traction belt. The horizontal end of the wrapping belt is located on the lower side of the toes, and the two wrapping ends are respectively wrapped around the big toe and the little toe from the outside, stretched and adhered together on the upper side. The traction belt is located in the space between the instep and the front side of the calf. The wrapping belt is subjected to the upward traction force of the traction belt to synchronously pull the toes, narrow the angle between the instep and the calf, stretch and lift the toes, change the patient's normal body position, avoid overlapping of the heel with other bones, ensure that the full length of the calcaneal bone can be clearly photographed, avoid the occurrence of double images or unclear situations during the filming, and at the same time, there is no need for medical staff to use their hands to assist in lifting and pulling the foot near the toes toward the front and upper part of the foot, thereby avoiding exposure to radiation radiation to medical staff.
[0023] 2. The present invention can also be used for the fixation and later rehabilitation of bone or ligament injuries of the foot and ankle. By changing the traction direction of the wrapping belt, the horizontal end is located above the toes, and the two wrapping ends are respectively wrapped around the outside of the big toe and the little toe and stretched and adhered together on the lower side. The traction belt is located in the space between the sole of the foot and the back of the calf. The wrapping belt is pulled synchronously with the toes by the downward traction force of the traction belt, thereby widening the angle between the instep and the calf, stretching and flattening the sole of the foot, which helps to maintain the normal anatomical structure of the foot, relieves the pressure on the injured part, and helps to promote blood circulation in the injured part. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1This is a schematic structural diagram of the first embodiment of the present invention;
[0025] Figure 2 This is a schematic structural diagram of the second embodiment of the present invention;
[0026] Figure 3 An exploded view of the retention structure of the present invention;
[0027] Figure 4 A cross-sectional view of the structure of a first embodiment of a locking member of the present invention;
[0028] Figure 5 This is a cross-sectional view of the first embodiment of the assembly structure of the locking member and the traction belt of the present invention;
[0029] Figure 6 A cross-sectional view of the structure of a second embodiment of a locking member of the present invention;
[0030] Figure 7 This is a front view of the fixed head structure of the present invention;
[0031] Figure 8 A cross-sectional view of the structure of a third embodiment of a locking member of the present invention;
[0032] Figure 9 This is a front view of another improved structure of the fixing head of the present invention;
[0033] Figure 10 This is a schematic diagram of the connection structure between the traction belt and the winding belt of the present invention;
[0034] Figure 11 This is a schematic diagram of a further improved structure of the wrapping tape of the present invention.
[0035] In the figure: 1. binding strap; 2. locking piece; 21. locking end; 22. fixing head; 221. winding notch; 222. clamping notch; 223. arc-shaped notch; 23. I-shaped guide wheel; 24. arc-shaped protrusion; 3. traction belt; 4. winding belt; 41. connecting buckle; 42. filling pad. DETAILED DESCRIPTION
[0036] The following is a clear and complete description of the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of them. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts are within the scope of protection of the present invention.
[0037] Embodiment, this embodiment provides a calcaneal radiograph retention device, such as Figure 3 and Figure 11As shown, it includes a wrapping belt 4, which is wrapped around and bound on the toes of the foot; the specific structure of the wrapping belt 4 is: the wrapping belt 4 includes a horizontal end and wrapping ends bent and extended at both ends of the horizontal end, one of the wrapping ends is a through-plug, and the other wrapping end is provided with a through-hole, and the through-plug passes through the through-hole and is adhered to the side wall of the through-hole opening by Velcro.
[0038] Locking member 2, such as Figure 4 and Figure 5 As shown, both side walls of the locking member 2 are provided with straps 1, and the two straps 1 are extended and bound along the circumference of the leg, and the two straps 1 are adhered to each other by Velcro to fix the locking member 2 on the calf. One end of the locking member 2 extends downward to form a vertical supporting end, and the supporting end enhances the supporting strength vertically; the other end of the locking member 2 is bent and extended in the horizontal direction to form an extended end, and a locking end 21 is provided on the upper side of the extended end, and a reversing channel is provided between the bottom end of the locking end 21 and the upper end of the extended end, and a locking groove is provided on the upper end surface of the locking end 21, and a fixing head 22 is detachably inserted in the locking groove. The traction belt 3, one of the winding ends is provided with a connecting buckle 41 on the outer wall, and the two ends of the traction belt 3 are provided with annular structures, and the annular structure at one end of the traction belt 3 passes from one side of the connecting buckle 41 to the other side, and the annular structure at the other end of the traction belt 3 passes through the annular structure passing through the connecting buckle 41 and is tightened, as shown in FIG. Figure 10 As shown, the annular structure at the end of the traction belt 3, away from the connecting buckle 41, passes through the reversing channel and is pulled upward along the sidewall of the locking end 21 to the upper end of the locking end 21. The annular structure is then pulled in the opposite direction to tighten the traction belt 3. The extended end and the supporting end form an inverted L-shaped structure, which provides good support strength. Positioning the locking end 21 away from the supporting end extends the support arm, facilitating the application of traction force to the traction belt 3.
[0039] The retaining element consists of a wrapping belt 4 wrapped around the toes, a locking member 2 fixed to the calf, and a traction belt 3. An I-shaped guide wheel 23 rotates within the reversing channel. A notch is provided in the sidewall of the locking slot, and a matching shaft rotates within the notch. The traction belt 3, which passes through the reversing channel, passes under the I-shaped guide wheel 23, then pulls upward along the sidewall of the locking end 21 and around the upper sidewall of the matching shaft. One end of the traction belt 3 is connected to the wrapping belt 4. The other end of the traction belt 3 passes through the reversing channel and is pulled upward along the sidewall of the locking end 21 to the upper end of the locking end 21, where it is then reversely tensioned. The traction force of the traction belt 3 simultaneously pulls the toes, thereby adjusting the angle between the instep and the calf.
[0040] After the wrapping band 4 has been wrapped around the toes to stretch and change the toe extension angle, the traction band 3 needs to be fixed. Here, there are gaps between the sidewalls of the fixing head 22 and the two sides of the locking groove. That is, after the fixing head 22 is inserted into the locking groove, there are gaps between the two long side walls of the fixing head 22 and the inner wall of the locking groove, while the two short side walls of the fixing head 22 slide and fit with the corresponding side walls in the locking groove. The width of the gap is less than the thickness of the traction band 3. Here, the traction band 3 is made of a flat medical non-woven fabric or fiber braid. After the traction band 3 is pulled, the fixing head 22 is placed on the traction band 3 at the notch of the locking groove and pressed down with force. The traction band 3 is located at both sides of the notch of the locking groove and is pulled into the locking groove following the pressing fixing head 22. The sidewalls of the traction band 3 are squeezed into the gaps with a width less than the thickness of the traction band 3. The traction band 3 is squeezed and compressed, generating compression deformation. At the same time, the friction between the outer wall of the fixing head 22 and the inner wall of the locking groove is enhanced. In the absence of an external force pulling the fixing head 22, the fixing head 22 will not easily disengage. At the same time, the traction belt 3 is clamped in the gaps on both sides of the fixing head 22 in a double-layer structure, which is equivalent to a double-layer fixing structure, further enhancing the stability of the traction belt 3 locked in the locking groove.
[0041] It should be noted that, since the muscles between the foot and calf have corresponding stretching capabilities, after the traction belt 3 stretches the toes and drives the entire instep to change angle, it can continue to make small angle adjustments. Therefore, the advantage of using the fixed head 22 to press the traction belt 3 down along the notch of the locking groove to embed the traction belt 3 into the locking groove is that the position of the traction belt 3 after traction is kept stationary. As the fixed head 22 continuously pushes the traction belt 3 into the locking groove, the part of the traction belt 3 located on the side of the notch of the locking groove can be further pulled into the locking groove, which is conducive to further pulling the instep angle to change.
[0042] The retention method for calcaneal X-ray using retainers is:
[0043] like Figure 1As shown, first, the horizontal end of the wrapping belt 4 is located on the lower side of the toes, and the two wrapping ends are respectively wrapped around the big toe and the little toe, stretched and adhered together on the upper side, so that the wrapping belt 4 is wrapped around the toes of the foot, and the locking part 2 is fixed on the calf. One end of the traction belt 3 is connected to the wrapping belt 4, and the other end of the traction belt 3 passes through the reversing channel and is pulled upward along the side wall of the locking end 21 to the upper end of the locking end 21 and then reversely tensioned. The traction belt 3 is clamped in the gap on both sides of the fixed head 22 with a double-layer structure. The wrapping belt 4 is pulled synchronously by the traction force of the traction belt 3 to pull the toes, thereby reducing the angle between the instep and the calf. Change the patient's normal body position to avoid the heel from overlapping with other bones, ensure that the full length of the calcaneus can be clearly photographed, and avoid ghosting or unclear images when taking the film. The wrapping belt 4 here can be made of disposable medical non-woven fabric, which will be treated as medical waste after the filming is completed, and the other parts of the retaining part are disinfected with alcohol for reuse. In addition, as Figure 11 As shown, a filling pad 42 for supporting the toe gap between two adjacent toes can also be provided on the horizontal end. The filling pad 42 is tilted and supported in the toe gap, which is beneficial to anti-slip and prevents the wrapping belt 4 from separating from the toes.
[0044] Of course, patients may need to adopt different postures to ensure the clarity and accuracy of the image. For example, the patient may need to lie on his back on the examination bed with his legs straight so that his knees are in a straight line. The doctor may also ask the patient to adjust the position of the ankle joint, such as excessive dorsiflexion, to better capture the axial position of the calcaneus. Regardless of the detection posture adopted, the above-mentioned retaining parts can be used to tilt the foot upward near the toes, thereby ensuring that the entire length of the calcaneus is captured in a clear image. At the same time, there is no need for medical staff to use their hands to assist in tilting the foot upward near the toes, thereby avoiding exposure to radiation.
[0045] In addition to securing the calcaneus for X-rays, the aforementioned retainer can also flatten the sole of the foot for fixation and post-rehabilitation of bone or ligament injuries in the ankle. Following an ankle injury, particularly one involving a fracture or ligament injury, the foot's anatomy may change, leading to foot deformation or instability. Flattening the foot ensures that all parts of the foot remain in the correct position, helping to restore normal foot function. Furthermore, swelling and pain in the ankle following an injury may make it difficult for the patient to bear the weight of the foot. Flattening the foot evenly distributes the weight of the foot, reducing pressure on the injured area and thus alleviating pain and swelling. Furthermore, blood circulation in the ankle may be impaired, leading to local ischemia and hypoxia. Flattening the foot promotes blood flow to the injured area, accelerating metabolism and waste removal, and facilitating the repair and regeneration of injured tissue.
[0046] The methods of using retainers to fix bone or ligament injuries in the ankle are:
[0047] like Figure 2 As shown, by changing the traction direction of the wrapping belt 4, the horizontal end of the wrapping belt 4 is located above the toes, and the two wrapping ends are respectively wrapped around the outside of the big toe and the little toe and stretched and adhered together on the lower side. The traction belt 3 is located in the space between the sole of the foot and the back of the calf. The wrapping belt 4 is pulled synchronously with the toes by the downward traction force of the traction belt 3, thereby widening the angle between the instep and the calf, stretching and flattening the sole of the foot, helping to maintain the normal anatomical structure of the foot, reducing the pressure on the injured part, and helping to promote blood circulation in the injured part.
[0048] Furthermore, the first embodiment of the traction belt 3 being fixed in the locking groove: Figure 5 As shown, the traction belt 3 embedded in the locking groove following the fixed head 22 is resting between the fixed head 22 and the inner wall of the locking groove in a U-shaped structure. The side wall of one side of the traction belt 3 fits with the side walls and bottom wall of the locking groove, and the side wall of the other side of the traction belt 3 fits with the side walls of the fixed head 22. A large friction force is generated between the traction belt 3 and the inner wall of the locking groove and the outer wall of the fixed head 22, ensuring that the traction belt 3 is stably embedded in the locking groove and not easy to fall off.
[0049] The second embodiment of the traction belt 3 being fixed in the locking groove: Figure 6 and Figure 7 As shown, winding notches 221 are provided on both side walls of the fixing head 22. The traction belt 3 located at the notch of the locking groove is wound around the outer walls of the two winding notches 221, and the fixing head 22 is inserted into the locking groove. The traction belt 3 is wound into multiple ring structures and inserted into the locking groove, making it difficult for the traction belt 3 to loosen. At the same time, the traction belt 3 located outside the winding notches 221 is clamped in the gap between the fixing head 22 and the inner wall of the locking groove, so that a large friction force is generated between the traction belt 3 and the inner wall of the locking groove and the outer wall of the fixing head 22, ensuring that the traction belt 3 is stably embedded in the locking groove and is not easy to fall off.
[0050] The third embodiment of the traction belt 3 being fixed in the locking groove: Figure 8 and Figure 9As shown, the side walls of the fixed head 22 are each provided with an arc-shaped notch 223, and the bottom wall of the fixed head 22 is provided with a clamping notch 222. The fixed head 22 is made of an elastic material, such as PVC plastic, as long as it has deformation properties. The traction belt 3 located at the notch of the locking groove is inserted into the clamping notch 222. The side walls of the locking groove are each fixed with an arc-shaped protrusion 24. The fixed head 22 is inserted into the locking groove. The bottom walls of the fixed head 22 are provided with inclined surfaces. When the inclined surfaces contact the arc-shaped protrusion 24, the inclined surfaces on both sides of the clamping notch 222 are squeezed together, clamping the traction belt 3. At the same time, the arc-shaped protrusion 24 is embedded in the clamping notch 222 to prevent the fixed head 22 from escaping the locking groove. At the same time, the traction belt 3 on both sides of the clamping notch 222 is clamped in the gap between the fixed head 22 and the inner wall of the locking groove, so that the traction belt 3 is generated with the inner wall of the locking groove and the outer wall of the fixed head 22, ensuring that the traction belt 3 is stably embedded in the locking groove and not easily falling off.
[0051] A connecting rope is provided between the side wall of the fixing head 22 and the upper end of the locking end 21 to prevent the fixing head 22 from being lost.
[0052] Regardless of whether it is fixation of calcaneus X-ray or fixation of bone or ligament damage in the ankle, the above three methods of fixation of the traction belt 3 in the locking groove are applicable.
[0053] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A calcaneal radiograph retention device, characterized in that: It comprises a wrapping belt (4), wherein the wrapping belt (4) is wrapped around and bound to the toes of the foot; A locking member (2), wherein both side walls of the locking member (2) are provided with straps (1), the two straps (1) are extended and bound along the circumference of the leg, and one end of the locking member (2) extends downward to form a vertical supporting end, and the supporting end enhances the supporting strength in the vertical direction; The other end of the locking member (2) is bent and extended in the horizontal direction to form an extended end, a locking end (21) is provided on the upper side of the extended end, a reversing channel is provided between the bottom end of the locking end (21) and the upper end of the extended end, a locking groove is provided on the upper end surface of the locking end (21), and a fixing head (22) is detachably inserted into the locking groove; A traction belt (3), one end of which is connected to a winding belt (4), and the other end of which passes through a reversing channel and is pulled upward along the side wall of the locking end (21) to the upper end of the locking end (21) and then reversely tensioned. The winding belt (4) receives the traction force of the traction belt (3) and synchronously pulls the toes, thereby adjusting the angle between the instep and the calf; Gaps are provided between the side walls of both sides of the fixing head (22) and the two sides of the locking groove. The fixing head (22) is placed on a traction belt (3) located at the notch of the locking groove. The traction belt (3) is located at both sides of the notch of the locking groove and is pulled into the locking groove following the downward pressing fixing head (22). The traction belt (3) is clamped in the gaps on both sides of the fixing head (22) in a double-layer structure.
2. The calcaneal radiography retention device according to claim 1, characterized in that: The winding belt (4) comprises a horizontal end and winding ends bent and extended at both ends of the horizontal end, wherein one of the winding ends is a through-hole and the other winding end is provided with a through-hole. The through-hole is passed through the through-hole and adhered to the side wall of the through-hole opening by a Velcro.
3. The calcaneal radiography retention device according to claim 2, characterized in that: A connecting buckle (41) is provided on the outer side wall of one of the winding ends, and an annular structure is provided at both ends of the traction belt (3). The annular structure at one end of the traction belt (3) passes from one side of the connecting buckle (41) to the other side, and the annular structure at the other end of the traction belt (3) passes through the annular structure passing through the connecting buckle (41) and is tightened. The annular structure at one end of the traction belt (3) away from the connecting buckle (41) passes through the reversing channel and is pulled upward along the side wall of the locking end (21) to the upper end of the locking end (21), and then the annular structure is pulled in the reverse direction to tighten the traction belt (3).
4. The calcaneal radiography retention device according to claim 3, characterized in that: An I-shaped guide wheel (23) is rotatably provided in the reversing channel, a notch is provided on the side wall of the locking groove, and a matching shaft is rotatably provided in the notch. The traction belt (3) passing through the reversing channel passes under the I-shaped guide wheel (23), is pulled upward along the side wall of the locking end (21), and is wound around the upper side wall of the matching shaft.
5. The calcaneal radiography retention device according to claim 4, characterized in that: The horizontal end of the wrapping belt (4) is located at the lower side of the toes, and the two wrapping ends are respectively wrapped around the big toe and the little toe and stretched and adhered together on the upper side. The wrapping belt (4) is subjected to the upward traction force of the traction belt (3), which pulls the toes synchronously, thereby reducing the angle between the instep and the calf, and stretching and tilting the toes.
6. The calcaneal radiography retention device according to claim 4, characterized in that: The horizontal end of the wrapping belt (4) is located above the toes, and the two wrapping ends are respectively wrapped around the outside of the big toe and the little toe and stretched and adhered together on the lower side. The wrapping belt (4) is subjected to the downward traction force of the traction belt (3) to synchronously pull the toes, thereby widening the angle between the instep and the calf, and stretching and flattening the sole of the foot.
7. The calcaneal radiography retention device according to claim 5 or 6, characterized in that: The traction belt (3) embedded in the locking groove following the fixed head (22) is placed between the fixed head (22) and the inner wall of the locking groove in a U-shaped structure, one side wall of the traction belt (3) is in contact with the side walls and bottom wall of the locking groove, and the other side wall of the traction belt (3) is in contact with the side walls of the fixed head (22).
8. The calcaneal radiography retention device according to claim 5 or 6, characterized in that: The side walls of both sides of the fixing head (22) are provided with winding notches (221), the traction belt (3) located at the notch position of the locking groove is wound on the outer side walls of the two winding notches (221), and the fixing head (22) is inserted into the locking groove; The traction belt (3) located outside the winding notch (221) is clamped in the gap between the fixed head (22) and the inner wall of the locking groove.
9. The calcaneal radiography retention device according to claim 5 or 6, characterized in that: The side walls on both sides of the fixed head (22) are provided with arc-shaped notches (223), the bottom wall of the fixed head (22) is provided with a clamping notch (222), the traction belt (3) located at the notch position of the locking groove is embedded in the clamping notch (222), the side walls on both sides of the locking groove are fixed with arc-shaped protrusions (24), the fixed head (22) is inserted into the locking groove, the arc-shaped protrusions (24) are embedded in the clamping notch (222), and the side walls opposite to the clamping notch (222) are brought together to clamp the traction belt (3); The traction belts (3) located on both sides of the clamping notch (222) are clamped in the gap between the fixed head (22) and the inner wall of the locking groove.
10. The calcaneal radiography retention device according to claim 5, characterized in that: The horizontal end is provided with a stuffing pad (42) for contacting the toe gap between two adjacent toes, and the stuffing pad (42) is tiltedly supported in the toe gap.