A wearable medical testing spotlight

By designing a three-level lighting mode and a lamp head structure with magnetic adsorption connection, the problem of inconvenient lighting when observing in a confined area with wearable medical testing spotlights has been solved, achieving flexible and multi-angle lighting effects.

CN122486142APending Publication Date: 2026-07-31SHANGHAI HUIGUAN QIMAI MEDICAL EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANGHAI HUIGUAN QIMAI MEDICAL EQUIP CO LTD
Filing Date
2026-06-25
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing wearable medical testing spotlights have a large angle between the direction of the light head and the direction of human eye observation when observing small areas at close range, resulting in some areas not being effectively illuminated and making operation inconvenient.

Method used

A wearable medical testing spotlight was designed, featuring three lighting modes: head-mounted lighting, handheld lighting, and independent central light column lighting. The lamp head is secured by a lanyard, and the lampshade is magnetically attached to the turntable for multi-angle adjustment. The central light column can be detached for use as an independent flashlight, and the circuit controls the lighting and extinguishing of the LEDs.

Benefits of technology

It enables flexible multi-angle adjustment and independent use of the lamp head, adapting to the lighting needs of different observation areas and improving the effectiveness and ease of operation of close-range observation.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a wearable medical examination spotlight. The wearable medical examination spotlight includes: a lamp head that generates different types of light sources and a strap for fixing the lamp head; the lamp head includes a lamp cover, a lamp chamber fixedly installed inside the lamp cover, a lamp plate fixedly installed on the side wall of the lamp chamber, different types of LED beads electrically connected to the lamp plate, a through hole in the center of the lamp plate and the lamp chamber, a central lamp post passing through the through hole, the central lamp post being an independent light-emitting unit, and a base fixedly installed at the bottom of the lamp cover corresponding to the central lamp post, the base being detachably connected to the bottom of the central lamp post. The wearable medical examination spotlight provided by this invention, with its three-stage detachable lamp head, allows operators to select the appropriate lighting mode according to their lighting needs. Compared with existing technologies, both the lamp head and the central lamp post within the lamp head can be independently detached and used, facilitating multi-angle and all-round inspection of different observation areas.
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Description

Technical Field

[0001] This invention relates to the field of medical device technology, and in particular to a wearable medical testing spotlight. Background Technology

[0002] Medical examination lights are specialized devices providing illumination for medical diagnosis and treatment, suitable for fields such as gynecology, dentistry, emergency care, and laboratories. Their light sources primarily utilize LED technology, achieving an illuminance of up to 40,000 lx at half a meter. The LEDs have a lifespan of approximately 50,000 hours. They are equipped with a sterilizable handle and a flexible gooseneck arm. The lamp head typically features a flared structure, wider at the front and narrower at the back. Two independent fixing mechanisms are available: a clamp-on type including a bracket, support, and tightening handle, and a wall-mounted type including an adapter post and steel plate. The circuit control module incorporates a brightness adjustment knob, supporting stepless dimming from 50% to 100%.

[0003] Existing technology discloses a wearable medical testing spotlight, publication number CN219995233U, relating to the field of medical devices. The wearable medical testing spotlight includes a horizontal strap and a fixing mechanism mounted beside the horizontal strap. The fixing mechanism includes a fixing frame sleeved on the horizontal strap, a rubber plate whose bottom is fixedly connected to the surface of the fixing frame, an adjusting screw fixedly connected to the fixing frame, a clamping plate whose top is rotatably connected to the bottom of the adjusting screw, a fixing pin whose bottom is fixedly connected to the bottom of the clamping plate, a pinhole located on the inner wall of the fixing frame, vertical straps fixedly connected to both sides of the horizontal strap, a fixing block fixedly connected to one side of the horizontal strap, a slide rail fixedly connected to the top of the fixing block, and a mounting plate slidably connected to the slide rail. The horizontal strap, already secured with adhesive tape, can be fixed in place to prevent the connection of the medical testing spotlight from loosening and obstructing surgery during procedures.

[0004] As with the existing technology described above, the lamp beads are fixedly installed inside the lamp head and can only adjust the illumination angle according to the angle of the lamp head. When observing small areas at close range, such as the nasal cavity and ear canal, the direction of illumination of the lamp head and the direction of observation of the human eye are at a large angle. Only a small area overlaps and is easy to observe, while other areas cannot achieve convenient and effective illumination.

[0005] Therefore, it is necessary to provide a wearable medical testing spotlight to solve the above-mentioned technical problems. Summary of the Invention

[0006] In response to the above situation and to overcome the shortcomings of the existing technology, the present invention provides a wearable medical testing spotlight with three lighting modes: head-mounted lighting, handheld lighting with the lamp head removed, and lighting of a small area with the independent central lamp column inside the lamp head removed, making it more flexible to use.

[0007] To achieve the above objectives, the technical solution adopted by the present invention is as follows: Wearable medical testing spotlight, including: lamp heads that produce different types of light sources and straps for securing the lamp heads; The lamp head includes a lamp cover, a lamp chamber is fixedly installed inside the lamp cover, a lamp plate is fixedly installed on the side wall of the lamp chamber, different types of lamp beads are electrically connected to the lamp plate, a through hole is opened in the middle of the lamp plate and the lamp chamber, a central lamp column is inserted into the through hole, the central lamp column is an independent light-emitting unit, a base is fixedly installed at the bottom of the lamp cover at the position corresponding to the central lamp column, and the base is detachably connected to the bottom of the central lamp column; The binding rope includes a horizontal band and a vertical band. The ends of the horizontal band are serrated. The two ends of the horizontal band are fixedly connected by a first fixing knob. One end of the vertical band is fixedly installed on the horizontal band, and the other end is detachably installed on the horizontal band by a second fixing knob. The transverse belt has a mounting platform on one side. The cavity inside the mounting platform is an adjustment cavity. A steering plate is rotatably mounted inside the adjustment cavity. Contacts are fixedly mounted on the steering plate. The side of the lamp cover near the steering plate is detachably connected to the steering plate. Contacts are also fixedly mounted on the lamp cover. When the lamp cover is rotated, the contacts at different positions make contact with the contacts on the steering plate to conduct electricity, thereby lighting up the corresponding lamp beads.

[0008] Preferably, the diameter of the steering plate inside the adjustment cavity is slightly smaller than the inner diameter of the adjustment cavity. The steering plate is magnetic and can be attracted to the bottom of the lamp cover. The rotational connection between the steering plate and the adjustment cavity is damped, and the steering plate can maintain its angle and position unchanged under a certain external force.

[0009] Preferably, the turn plate itself is magnetized and has magnetic properties, and a magnet is glued and fixed inside the lamp cover on the side near the turn plate, and the two sides that are in contact with each other have opposite magnetic properties, so that the bottom of the lamp cover is attracted and fixed to the turn plate when in contact, and the lamp head can be removed from the mounting platform as a whole.

[0010] Preferably, the central light post is an independently emitting flashlight with multiple light source types. It is cylindrical in shape and has a magnetic base. The mounting platform is a cylindrical structure with one open end, the diameter of which is slightly larger than the outer diameter of the central light post. The bottom of the central light post can be magnetically attached to the inner wall of the mounting platform and can also be pulled out from the mounting platform for independent use to illuminate a narrow observation area.

[0011] Preferably, a lens frame is rotatably mounted on one edge of the lampshade. Similarly, the edge of the lens frame is rotatably connected to the lampshade, and the rotatable connection has a certain damping. The lens frame is a ring-shaped structure, and a light shield for reducing the light intensity of the lamp beads is detachably installed inside it.

[0012] Preferably, the light shield is circular, with its outer diameter being the same as the inner diameter of the annular lens frame. An annular groove is provided on the outer side of the light shield, and a flexible rubber ring is fixedly installed on the inner wall of the light shield. The rubber ring can be inserted into the groove on the light shield for fixation.

[0013] Preferably, on the two ends of the transverse belt, one of the outer ends has a first adjustment groove that penetrates the belt body, and the other end has a mounting hole for installing a first fixing knob. The first fixing knob has a threaded rod in the middle, which passes through the first adjustment groove and the mounting hole. One end is threaded with a stop block. By moving the stop block on the threaded rod, the two ends of the belt are clamped and fixed.

[0014] Preferably, one end of the longitudinal belt is fixedly mounted on the transverse belt, and the other end is an adjustable end. The adjustable end has a second adjustment groove that penetrates the belt body, and a second fixing knob is installed at the second adjustment groove to fix the relative position of the adjustable end and the transverse belt.

[0015] Preferably, a manual switch is installed on the outer wall of the lamp cover, and the control effect of the manual switch on the lamp beads is the same as the control effect of the lamp cover and the contacts on the turn plate on the lamp beads.

[0016] Preferably, both the transverse and longitudinal strips are made of elastic plastic. The transverse strip is hollow inside and has multiple heat dissipation holes on its surface. A heat dissipation module is detachably installed on one side of the outer wall of the transverse strip. The heat dissipation module includes a shell, which is cylindrical with openings at both ends. A fixing ring is fixedly installed on the inner wall of the shell, and a motor is installed on the fixing ring. A fan blade is fixedly installed on the output end of the motor. The fan blade rotates and drives external air into the hollow cavity of the transverse strip and out through the heat dissipation holes.

[0017] Compared with the prior art, the present invention has the following beneficial effects: (1) The present invention uses a three-stage detachable lamp head to facilitate the selection of appropriate lighting modes by the staff according to the lighting needs. Compared with the prior art, the lamp head and the central lamp post inside the lamp head can be detached and used independently, so as to facilitate multi-angle and all-round inspection of different observation areas. (2) The circuit board of the present invention is equipped with various types of lamp beads to meet various lighting needs, and the lamp beads can be switched on and off by rotating the lamp cover, which is convenient to operate; (3) The horizontal and vertical straps of the present invention are worn on the head of the staff from three dimensions to achieve stable wearing and prevent the lamp head from shaking during use. At the same time, the length of the vertical strap can be adjusted with one hand. Attached Figure Description

[0018] Figure 1A first-view structural schematic diagram of the wearable medical detection spotlight provided by the present invention; Figure 2 A schematic diagram of the second perspective of the wearable medical detection spotlight provided by the present invention; Figure 3 An explosion image of the wearable medical detection spotlight provided by the present invention; Figure 4 A top view of the wearable medical detection spotlight provided by the present invention; Figure 5 A cross-sectional view of the wearable medical detection spotlight provided by the present invention; Figure 6 for Figure 5 Enlarged view of a local structure in the image; Figure 7 Circuit diagram of the wearable medical detection spotlight provided by the present invention; Figure 8 This is a schematic diagram of the structure of the second embodiment of the wearable medical detection spotlight provided by the present invention; Figure 9 This is a schematic diagram of the internal structure of the heat dissipation module for the wearable medical testing spotlight provided by the present invention.

[0019] The corresponding names of the reference numerals in the attached drawings are as follows: 10, lamp holder; 11, lamp cover; 111, manual switch; 112, base; 12, lamp chamber; 13, lamp board; 131, lamp bead; 132, limiting hole; 14, central lamp post; 15, lens frame; 151, rubber ring; 16, light shield; 161, slot; 20, binding rope; 21, transverse belt; 211, belt end; 212, first adjustment groove; 213, first fixing knob; 214, stop block; 215, heat dissipation hole; 22, longitudinal belt; 221, adjustment end; 222, second adjustment groove; 223, second fixing knob; 23, mounting platform; 231, adjustment cavity; 232, steering plate; 233, contact point; 30, heat dissipation module; 31, outer shell; 311, connecting end; 32, fixing ring; 33, motor; 331, fan blade; 34, protective cover. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments. The embodiments of the present invention include, but are not limited to, the following embodiments.

[0021] Example 1: like Figure 1 As shown, the wearable medical examination spotlight provided by the present invention includes two parts: a lamp head 10 and a strap 20. The lamp head 10 is used to generate different types of light sources to adapt to different medical examination scenarios. The strap 20 is used to fix the lamp head 10 to the user's head to achieve the effect of wearable lighting.

[0022] Specifically, such as Figure 1-3 As shown, the lamp head 10 is generally truncated cone-shaped, including the outermost lamp cover 11. The lamp cover 11 is a cylindrical shell structure with one end closed and the other end open. The open end faces the user, and the closed end is used to detachably connect to the turn plate 232 on the rope 20. A contact 233 is fixedly provided on the bottom outer wall of the closed end of the lamp cover 11. The contact 233 is made of conductive material such as copper sheet and is used to contact the contact 233 on the turn plate 232 to realize circuit conduction.

[0023] A magnet is glued and fixed to the inner side wall of the bottom of the lamp cover 11. The magnet can magnetically attract the turn plate 232 (the structure of the turn plate 232 will be described in detail below), thereby realizing the detachable fixing of the lamp head 10 and the turn plate 232.

[0024] A lamp chamber 12 is fixedly installed inside the lamp cover 11. The lamp chamber 12 has a ring structure, and its outer wall is bonded and fixed to the inner wall of the lamp cover 11. The inner wall of the lamp chamber 12 has a reflective coating, which can reflect and focus light. A lamp plate 13 is fixedly installed on its side wall. The lamp plate 13 is a ring circuit board. Multiple different types of lamp beads 131 are electrically connected to the lamp plate 13. It should be noted that different types of lamp beads 131 refer to light sources that can emit different colors, different color temperatures, or different light intensities, such as white high-brightness lamps, yellow soft light lamps, and ultraviolet lamps, to adapt to different medical testing needs, such as routine wound examination, superficial ENT examination, and fluorescence imaging detection. A through hole is opened in the middle of the lamp plate 13 and the lamp chamber 12, which is a limiting hole 132. The limiting hole 132 is set along the axial direction of the lamp head 10 and is used to insert the central lamp post 14.

[0025] The central lamp post 14 is an independent light-emitting unit separate from the lamp board 13 and the lamp beads 131. In this embodiment, the central lamp post 14 is an independently emitting flashlight, which has its own power supply and light-emitting element, and also has multiple light source types. This part is mature existing technology and will not be described in detail here.

[0026] The central lamp post 14 is cylindrical, and its outer diameter is adapted to the inner diameter of the through hole in the middle of the lamp chamber 12 and the lamp plate 13, so that the central lamp post 14 can be inserted into the through hole and remain stable. A base 112 is fixedly installed at the center of the bottom of the inner wall of the closed end of the lamp cover 11. The base 112 is a sleeve structure, and the bottom of the central lamp post 14 can be inserted into the groove of the base 112. The bottom of the central lamp post 14 is magnetic and can be detachably connected to the base 112 by magnetic adsorption. When the examination is relatively narrow and deep, the user can pull the central lamp post 14 out of the lamp cover 11 and use it as an independent handheld lighting tool. On the other hand, the central lamp post 14 with a magnetic bottom can be adsorbed onto external equipment such as medical lamp holders, making it more flexible to use.

[0027] A lens holder 15 is rotatably mounted on the edge of the opening end of the lampshade 11. The lens holder 15 has a circular structure, and one side of its outer edge is rotatably connected to the edge of the opening end of the lampshade 11 through a damping pivot. Therefore, there is a certain damping at the hinge, so that the lens holder 15 can maintain its position after rotating to a certain angle.

[0028] A light shield 16 is detachably installed inside the lens holder 15. The light shield 16 is a circular sheet structure, such as a gray glass sheet, which can be used to weaken the light intensity emitted by the lamp bead 131 to avoid causing discomfort to the patient when examining sensitive areas or to prevent the user from being unable to see the affected area due to strong reflected light at close range. The outer diameter of the light shield 16 is the same as the inner diameter of the annular shape of the lens holder 15. An annular groove 161 is opened on the outer wall side of the light shield 16, and a ring groove 161 is provided along the circumference of the light shield 16. Correspondingly, a flexible rubber ring 151 is fixedly installed on the inner wall of the lens holder 15. The rubber ring 151 is circular, and its inner diameter is slightly smaller than the outer diameter of the lens hood 16. When the lens hood 16 is installed in the lens holder 15, the rubber ring 151 uses its own elastic deformation to get into the slot 161 on the lens hood 16. After getting into the slot, it returns to its original shape, thereby fixing the lens hood 16 in the lens holder 15. When it is necessary to replace or remove the lens hood 16, it can be pushed out by applying pressure to its edge with a finger.

[0029] like Figure 1-2 As shown, the strap 20 includes a horizontal strap 21 and a vertical strap 22. The horizontal strap 21 is made of rubber material and is an arc-shaped strap. The arc is adapted to the contour of the human forehead. When worn, the horizontal strap 21 is set to wrap around the user's forehead horizontally. The two ends of the horizontal strap 21 are strap ends 211. When worn, the two strap ends 211 are located behind the user's head and are connected and fixed to each other by the first fixing knob 213.

[0030] One end 211 on the outside has a first adjustment groove 212 that penetrates the belt body. The first adjustment groove 212 extends along the length of the belt body into an elongated hole. The other end 211 has a mounting hole for installing a first fixing knob 213. The middle part of the first fixing knob 213 is a threaded rod that passes through the first adjustment groove 212 and the aforementioned mounting hole. One end of the threaded rod extends out of the belt end 211 and is threadedly fitted with a stop 214. By turning the stop 214, the position of the stop 214 on the threaded rod can be adjusted, thereby changing the clamping force between the two ends 211. For users with different head circumferences, the wearing tightness of the transverse strap 21 can be adjusted through the belt end 211 to maintain a comfortable wearing condition.

[0031] One end of the longitudinal belt 22 is sewn and fixedly connected to the top middle position of the transverse belt 21. The other end of the longitudinal belt 22 is an adjustable end 221. The adjustable end 221 has a second adjusting groove 222 that penetrates the belt body. The second adjusting groove 222 also extends along the length of the belt body in the shape of an elongated hole. A second fixing knob 223 is installed at the second adjusting groove 222. The structure of the second fixing knob 223 is the same as that of the first fixing knob 213. The middle part is a threaded rod, which passes through the second adjusting groove 222 and is threaded into the corresponding threaded hole on the transverse belt 21. It can be adjusted by loosening or turning. Tightening the second fixing knob 223 allows the position of the adjusting end 221 relative to the transverse strap 21 to be adjusted along the length of the second adjusting groove 222, thereby changing the effective length of the longitudinal strap 22 to accommodate different head sizes. When in use, the longitudinal strap 22 extends from front to back along the top of the user's head, forming a stable wearing and fixing structure together with the transverse strap 21. Compared with the prior art, the longitudinal strap 22 is only connected to the transverse strap 21 at one end, meaning that the user only needs to operate the adjusting end 221 to adjust the length of the longitudinal strap 22 with one hand.

[0032] A circular mounting platform 23 is integrally formed on the front side of the transverse belt 21. The mounting platform 23 is a hollow cylindrical structure with an opening at one end. The internal cylindrical cavity is an adjustment cavity 231, whose axis is perpendicular to the front side of the transverse belt 21. A steering plate 232 is rotatably mounted inside the adjustment cavity 231. The steering plate 232 is a cylindrical plate structure with an outer diameter slightly smaller than the inner diameter of the adjustment cavity 231. The rotatable connection between the steering plate 232 and the adjustment cavity 231 is located in the middle of the steering plate 232, and a damping washer is installed at the rotatable connection, so that the steering plate 232... When subjected to a certain amount of external force, the 32 can rotate, and after the external force is removed, it can maintain its rotation angle and position unchanged. Three contacts 233 are fixedly installed on the side of the turn plate 232 facing the lamp cover 11, and are equidistantly distributed along the circumference of the turn plate 232. The three contacts 233 correspond to three different types of lamp beads 131 on the lamp plate 13. The turn plate 232 itself is magnetized and has magnetism, so it can be magnetically attracted to the magnet at the bottom of the lamp cover 11, so that the lamp head 10 can be detachably fixed on the turn plate 232.

[0033] When the lamp head 10 is magnetically attached to the turn plate 232, the contact 233 on the lamp cover 11 contacts one of the three directly opposite contacts 233 on the turn plate 232, thus closing the circuit. When the user rotates the lamp cover 11, since the lamp cover 11 and the turn plate 232 are magnetically connected and the turn plate 232 can rotate within the adjustment cavity 231, the lamp cover 11 drives the contacts 233 on it to rotate together, thereby causing the contacts 233 on the lamp cover 11 to sequentially contact the contacts 233 at different positions on the turn plate 232. When the contact 233 of the lamp head 10 contacts the contact 233 of the corresponding type of lamp bead 131 on the turn plate 232, the series circuit of the lamp bead 131 of that type is turned on and the lamp bead 131 lights up. When the contact 233 on the lamp cover 11 is separated from the lamp bead 131, the circuit of the corresponding lamp bead 131 is turned off and the lamp bead 131 is turned off. The above structure achieves the effect of detachably mounting the lamp head 10 on the mounting platform 23 on the one hand, and on the other hand, it utilizes the contact between the lamp cover 11 and the mounting platform 23 and the contact 233 to realize the circuit control of different types of lamp beads 131.

[0034] like Figure 4 , Figure 7 As shown, the manual switch 111 is connected in series in the total power supply circuit of the lamp holder 10. Its control effect is the same as that of the contact 233 on the lamp bead 131, such as a common multi-touch switch. The two are independent switching control systems for the lamp bead 131.

[0035] When in use, first put the strap 20 on the user's head, so that the horizontal strap 21 wraps around the forehead and the vertical strap 22 extends along the top of the head. Adjust the first fixing knob 213 and the second fixing knob 223 to make the strap 20 tight and secure. Then close the manual switch 111 and rotate the lamp cover 11 to select the corresponding type of lamp bead 131 to light it according to the type of light source required for the inspection. If it is necessary to illuminate at a specific angle or observe at close range, the lamp head 10 can be removed from the turn plate 232 and the lamp head 10 can be held for illumination. When it is necessary to illuminate narrow areas such as the ear canal and nasal cavity, the central lamp post 14 can be pulled out from the lamp cover 11 and used as an independent flashlight. The three lighting modes can be flexibly selected or combined according to actual needs.

[0036] Example 2: like Figure 8-9 As shown, both the transverse strip 21 and the longitudinal strip 22 are made of elastic hard plastic material. Unlike the silicone material used in Embodiment 1, the hard plastic material has a certain elasticity and can maintain a preset shape. More importantly, the transverse strip 21 is hollow inside, and multiple heat dissipation holes 215 are equidistantly opened at the upper end for air to pass through.

[0037] A connection port is provided on one side of the outer wall of the transverse belt 21, which connects the internal cavity of the transverse belt 21 with the external environment. A heat dissipation module 30 for pushing air from the outside into the transverse belt 21 is detachably installed at the connection port. The heat dissipation module 30 includes a shell 31, which is cylindrical with openings at both ends and an internal cavity. One end of the opening has an external thread that connects to the connection port. A protective cover 34 is fixedly installed at the other end of the opening. A fixing ring 32 is fixedly installed on the inner wall of the shell 31. The structure of the fixing ring 32 is as follows: Figure 9 As shown, it includes two concentric rings located in the same plane, one inside and one outside. The two rings are fixedly connected by a radial connecting rod to form a unified whole. A motor 33 is fixedly installed on the inner ring. A fan blade 331 is fixedly installed at the output end of the motor 33. When the fan blade 331 rotates, it can drive the outside air into the hollow cavity of the transverse belt 21 and exhaust it from the heat dissipation hole 215. When the staff wears the device for a long time, the temperature of the part of the transverse belt 21 in contact with the skin will rise. In addition, the LED bead 131 will also cause the ambient air temperature to rise when it works for a long time. The fan blade 331 can draw the outside cold air into the transverse belt 21 and exhaust the internal high temperature air to maintain comfort.

[0038] Working principle: The strap 20 is worn on the user's head and the length can be adjusted by the first fixing knob 213 and the second fixing knob 223 to fit different users. The lamp head 10 is installed on the strap 20. The lamp head 10 can be used on the strap 20 or removed from the strap 20. For smaller observation areas, the central lamp post 14 inside the lamp head 10 can be taken out for illumination. The three lighting modes can be used in combination.

[0039] The above embodiments are merely one of the preferred embodiments of the present invention and should not be used to limit the scope of protection of the present invention. Any modifications or refinements made to the main design concept and spirit of the present invention that are not of substantial significance, but solve the same technical problem as the present invention, should be included within the scope of protection of the present invention.

Claims

1. A wearable medical testing spotlight, characterized in that, include: Lamp heads (10) that produce different types of light sources and binding ropes (20) for fixing lamp heads (10). The lamp head (10) includes a lamp cover (11), a lamp chamber (12) is fixedly installed inside the lamp cover (11), a lamp plate (13) is fixedly installed on the side wall of the lamp chamber (12), and different types of lamp beads (131) are electrically connected to the lamp plate (13). A through hole is opened in the middle of the lamp plate (13) and the lamp chamber (12), and a central lamp post (14) is inserted into the through hole. The central lamp post (14) is an independent light-emitting unit. A base (112) is fixedly installed at the bottom of the lamp cover (11) at the position corresponding to the central lamp post (14). The base (112) is detachably connected to the bottom of the central lamp post (14). The binding rope (20) includes a transverse band (21) and a longitudinal band (22). The end of the transverse band (21) is a serrated band end (211). The two ends of the transverse band (21) are fixedly connected by a first fixing knob (213). One end of the longitudinal band (22) is fixedly installed on the transverse band (21), and the other end is detachably installed on the transverse band (21) by a second fixing knob (223). The transverse band (21) has a mounting platform (23) on one side. The cavity inside the mounting platform (23) is an adjustment cavity (231). A steering plate (232) is rotatably mounted inside the adjustment cavity (231). A contact (233) is fixedly mounted on the steering plate (232). The lamp cover (11) is detachably connected to the steering plate (232) on the side close to the steering plate (232). A contact (233) is also fixedly mounted on the lamp cover (11). The lamp cover (11) rotates so that the contacts (233) at different positions come into contact with the contacts (233) on the steering plate (232) to conduct electricity, thereby lighting up the corresponding lamp beads (131).

2. The wearable medical detection spotlight according to claim 1, characterized in that, The diameter of the steering plate (232) inside the adjustment cavity (231) is slightly smaller than the inner diameter of the adjustment cavity (231). The steering plate (232) is magnetic and can be attracted to the bottom of the lamp cover (11). The rotation connection between the steering plate (232) and the adjustment cavity (231) is damped. The steering plate (232) can maintain its angle and position unchanged under a certain external force.

3. The wearable medical detection spotlight according to claim 2, characterized in that, The turn plate (232) itself is magnetized and has magnetism. The lamp cover (11) has a magnet glued and fixed on the side close to the turn plate (232) inside, and the two sides that are in contact with each other have opposite magnetism, so that when they are in contact, the bottom of the lamp cover (11) is attracted and fixed to the turn plate (232), and the lamp head (10) can be removed from the mounting platform (23) as a whole.

4. The wearable medical detection spotlight according to claim 1, characterized in that, The central lamp post (14) is an independently emitting flashlight with multiple light source types. It is cylindrical in shape and has a magnetic bottom. The mounting platform (23) is a cylindrical structure with one open end. The diameter of the opening is slightly larger than the outer diameter of the central lamp post (14). The bottom of the central lamp post (14) can be magnetically attached to the inner wall of the mounting platform (23). At the same time, the central lamp post (14) can be pulled out from the mounting platform (23) for independent use to illuminate a narrow observation area.

5. The wearable medical detection spotlight according to claim 4, characterized in that, A lens frame (15) is rotatably mounted on one edge of the lampshade (11). Similarly, the edge of the lens frame (15) is rotatably connected to the lampshade (11), and the rotatable connection has a certain damping. The lens frame (15) is a ring-shaped structure, and a light shield (16) for weakening the light intensity of the lamp bead (131) can be detachably installed inside it.

6. The wearable medical detection spotlight according to claim 5, characterized in that, The light shield (16) is circular, and its outer diameter is the same as the inner diameter of the annular lens frame (15). An annular groove (161) is provided on the outer side of the light shield (16). A flexible rubber ring (151) is fixedly installed on the inner wall of the light shield (16). The rubber ring (151) can be inserted into the groove (161) on the light shield (16) for fixation.

7. The wearable medical detection spotlight according to claim 1, characterized in that, On the two ends (211) of the transverse belt (21), the outer end (211) has a first adjustment groove (212) that penetrates the belt body, and the other end (211) has a mounting hole for installing a first fixing knob (213). The first fixing knob (213) has a threaded rod in the middle, which passes through the first adjustment groove (212) and the mounting hole. One end is threaded with a stop block (214). By moving the stop block (214) on the threaded rod, the two ends (211) are clamped and fixed.

8. The wearable medical detection spotlight according to claim 7, characterized in that, One end of the longitudinal belt (22) is fixedly installed on the transverse belt (21), and the other end is an adjustable end (221). The adjustable end (221) has a second adjustment groove (222) that penetrates the belt body. A second fixing knob (223) is installed at the second adjustment groove (222) to fix the relative position of the adjustable end (221) and the transverse belt (21).

9. The wearable medical detection spotlight according to claim 1, characterized in that, A manual switch (111) is installed on the outer wall of the lamp cover (11). The control effect of the manual switch (111) on the lamp bead (131) is the same as the control effect of the contact (233) on the lamp cover (11) and the turn plate (232) on the lamp bead (131).

10. The wearable medical detection spotlight according to claim 1, characterized in that, Both the transverse strip (21) and the longitudinal strip (22) are made of elastic plastic. The transverse strip (21) is hollow inside and has multiple heat dissipation holes (215) on its surface. A heat dissipation module (30) is detachably installed on one side of the outer wall of the transverse strip (21). The heat dissipation module (30) includes a shell (31), which is cylindrical with openings at both ends. A fixing ring (32) is fixedly installed on the inner wall of the shell (31). A motor (33) is installed on the fixing ring (32). A fan blade (331) is fixedly installed at the output end of the motor (33). The fan blade (331) rotates and drives external air into the hollow cavity of the transverse strip (21) and out through the heat dissipation holes (215).