Uroscope operating bed
The uroscopy operating table, which integrates a multi-segment adjustable structure and an electric adjustment mechanism, solves the problem of high complexity in adjusting the position of patients on traditional operating tables. It enables rapid and accurate position adjustment, improves surgical efficiency and safety, and enhances patient comfort.
Patent Information
- Application Number
- CN202520820514.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-28
AI Technical Summary
Traditional operating tables require additional support frames when adjusting the patient's position, which increases the preparation time and complexity of the operation. This may lead to inaccurate or unstable positioning, affecting the efficiency and safety of the operation and increasing the risk of infection.
A uroscopy operating table was designed, which adopts a multi-segment adjustable structure and a precise electric adjustment mechanism. It integrates adjustment devices and control units, enabling rapid and accurate adjustment of the patient's position without the need for additional supports. This includes independent adjustment of the headrest board, back board, lumbar bridge board, buttock board, and lower limb board group, and rapid position conversion is achieved through telescopic components such as electric push rods.
It improves surgical efficiency and safety, reduces preparation time, lowers the risk of infection, enhances patient comfort, provides better operating space, and reduces the physical burden on medical staff.
Smart Images

Figure CN223944607U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of operating bed, concretely relates to a urinary endoscope operating bed. BACKGROUND
[0002] Urinary endoscopy is a minimally invasive surgery that requires high precision and meticulous operation, and has strict requirements for the patient's body position. During such surgery, correct body position not only helps the surgeon better expose the surgical field, but also reduces the risk of complications and surgery time. For example, a suitable body position can improve the operating path of the endoscope, ensuring that the instrument can accurately reach the target area without damaging surrounding tissues. If the body position is not appropriate, it may limit the surgical field, increase the difficulty and time of surgery, and even cause adverse consequences such as nerve or muscle damage to the patient due to long-term compression of certain parts.
[0003] Traditional operating tables usually have a monolithic, indivisible bed body for patients to lie on during surgery. When adjusting the body position, additional auxiliary supports are needed to support the patient's limbs. The use of different types of auxiliary supports not only increases the time and complexity of surgical preparation, but also may lead to inaccurate or unstable positioning. In addition, frequent changes and adjustments of auxiliary equipment may interrupt the surgical process, increase the risk of infection, and negatively affect patient comfort. Improper body position not only limits the surgical field, but also may cause nerve damage, blood circulation problems, and other issues, prolonging postoperative recovery time. SUMMARY
[0004] In view of the defects and problems existing in the prior art, the utility model provides a urinary endoscope operating bed, which has a unique structure and is designed cleverly. The operating bed integrates a multi-section adjustable structure and an accurate electric adjustment mechanism, so that the patient's body position can be quickly and accurately adjusted without additional auxiliary supports, improving surgical efficiency and safety, and improving patient comfort.
[0005] The utility model discloses a urinary mirror operating bed that adopts the scheme to solve its technical problem, which comprises a bed body, a base, a supporting mechanism, an adjusting device, a lifting mechanism and a control unit, the bed body comprises a headrest plate, a back plate, a waist bridge plate, a hip plate and a lower limb plate group, the headrest plate, the back plate and the hip plate are sequentially arranged and hingedly connected together, the waist bridge plate is arranged between the back plate and the hip plate and is fixedly connected with the hip plate through the lifting mechanism, the hip plate is installed on the base through the supporting mechanism, the lower limb plate group comprises a lower table plate and leg plate groups symmetrically arranged on both sides of the lower table plate, and the lower table plate and the leg plate groups are hingedly connected with the tail end of the hip plate, the adjusting device comprises a head-up and down adjusting mechanism and a leg adjusting mechanism installed at the bottom of the bed body, the head-up and down adjusting mechanism is connected with the controller and is used for controlling the head-up and down angle of the headrest plate, the back plate and the lower table plate, the leg adjusting mechanism is connected with the controller and is used for adjusting the head-up and down angle of the leg plate groups and the included angle between the two leg plate groups and the lower table plate.
[0006] The utility model discloses a urinary mirror operating bed, the structure is unique, and the design is ingenious, and the cooperation of adjusting device and controller controls the bed body shape, and the surgical efficiency and safety are improved obviously, the modular design allows headrest plate, back plate, waist bridge plate, hip plate and lower limb plate group to adjust the angle or height independently, and the limb of patient in different body position can be supported directly, thereby the surgical safety and patient comfort are enhanced. BRIEF DESCRIPTION OF DRAWINGS
[0007] Figure 1 It is the three -dimensional structure schematic diagram of the utility model.
[0008] Figure 2 It is the bed body structure schematic diagram of the utility model.
[0009] Figure 3 It is the lifting assembly structure schematic diagram of the utility model.
[0010] Figure 4 It is the leg plate group structure schematic diagram of the utility model.
[0011] Figure 5 It is the horizontal drive assembly structure schematic diagram of the utility model.
[0012] Figure 6It is the back plate installation schematic diagram of the utility model.
[0013] Figure 7 It is the support mechanism structure schematic diagram of the utility model.
[0014] Figure 8 It is the connecting seat structure schematic diagram of the utility model.
[0015] In the drawing, 611 is a support box, 12 is a back plate, 121 is a back plate shaft, 122 is a back plate frame, 13 is a waist bridge plate, 14 is a hip plate, 15 is a lower limb plate group, 151 is a lower platform plate, 152 is a leg plate group, 153 is a connecting piece, 154 is a thigh supporting plate, 155 is a calf supporting plate, 156 is a fixing shaft, 157 is a slot, 158 is a connecting shaft, 2 is a support mechanism, 21 is a longitudinal horizontal axis, 22 is a transverse horizontal axis, 23 is a lifting column, 24 is an outer column shell, 25 is a connecting seat, 251 is an inner frame, 252 is an outer frame, 253 is a connecting table, 254 is a front tilting lifting column, 255 is a side tilting lifting column, 256 is a transverse rotating shaft, 257 is a longitudinal rotating shaft, 3 is a base, 41 is a telescopic rod a, 42 is a telescopic rod b, 43 is a telescopic rod f, 44 is a telescopic rod c, 45 is a telescopic rod d, 46 is a telescopic rod e, 5 is a lifting assembly, 51 is a platform plate, 52 is a lifting motor, 53 is an inner threaded sleeve, 54 is an outer threaded rod, and 6 is a support box. DETAILED DESCRIPTION EMBODIMENT
[0016] The application will be further described below in combination with the drawings and embodiments.
[0017] The embodiment provides a urinary mirror operation bed, which aims to realize rapid and accurate adjustment of a patient's body position without an additional auxiliary support by integrating a multi-section type adjustable structure and an accurate electric adjusting mechanism, improve operation efficiency and safety, and improve patient comfort, such as Figures 1-8 As shown in the figure, the bed body includes a headrest plate 11, a back plate 12, a waist bridge plate 13, a hip plate 14 and a lower limb plate group 15, the headrest plate 11, the back plate 12 and the hip plate 14 are sequentially arranged and hingedly connected together, a headrest is movably installed on the headrest plate 11, and the headrest is movably installed in various modes, for example, a suction cup is arranged below the headrest and is fixedly installed on the headrest plate through the suction cup.
[0018] The hip plate 14 is installed on the base 3 through the support mechanism 2, the controller can adjust the height of the hip plate 3 through the support mechanism 2, the waist bridge plate 13 is arranged between the back plate 12 and the hip plate 14 and is fixedly connected with the hip plate through the lifting mechanism 5, and specifically, the hip plate 14 is symmetrically provided with support boxes 6 on the bottom surfaces of the left and right ends, the two support boxes 6 are connected with the base 3 through the support mechanism 2, the two support boxes extend forward to be hingedly connected with the back plate, the support mechanism 2 comprises lifting columns 23, outer column shells 24 and connecting seats 25, the lifting columns 23 are vertically installed on the base 3 and are connected with the controller, the outer column shells 24 are matchedly sleeved on the lifting columns 24 and can synchronously lift along with the extension and contraction of the lifting columns, when the controller controls the lifting end of the lifting column to lift, the lifting end of the lifting column will synchronously drive the outer column shell to lift, the connecting seats 25 are fixedly installed on the outer column shell and are fixedly connected with the left and right support boxes, when the controller drives the outer column shell to lift through the lifting column, the outer column shell will drive the hip plate to synchronously lift through the connecting seat, so that the height of the bed body is adjusted, and the types of the lifting columns are various, for example, the lifting column in the embodiment can adopt a hydraulic oil cylinder or an electric push rod.
[0019] The lifting mechanism comprises lifting assemblies 5 which are symmetrically installed on the inner side walls of the left and right support boxes, the lifting assembly 5 comprises a platform plate 51, a lifting motor 52, an inner threaded sleeve 53 and an outer threaded rod 54, the platform plate 51 is vertically installed on the inner side wall of the support box 6, the lifting motor 52 is fixedly installed on the platform plate 51 and is connected with the controller, the inner threaded sleeve 53 is vertically rotatably installed on the platform plate and is in transmission connection with the lifting motor, the outer threaded rod 54 is matchedly sleeved in the inner threaded sleeve 53, and the top end of the outer threaded rod 54 is vertically fixedly connected with the waist bridge plate 13.
[0020] Specifically, as shown in Figure 3 the lifting motor 52 is a servo motor, the platform plate 51 is provided with a through hole in the vertical direction, the lifting motor is fixedly installed on the platform plate, and the motor rotating shaft of the lifting motor extends downward through the through hole to below the platform plate, a shaft hole is matchedly arranged on one side of the platform plate of the lifting motor, the inner threaded sleeve is rotatably installed in the shaft hole, and the bottom end of the inner threaded sleeve extends downward out of the platform plate and is in transmission connection with the motor rotating shaft of the lifting motor, the transmission connection modes of the two are various, and in the embodiment, the two are connected together through a transmission belt and a transmission wheel, when the controller controls the lifting motor to work, the lifting motor will drive the inner threaded sleeve to synchronously rotate, since the outer threaded rod is matchedly sleeved in the inner threaded sleeve and the top end of the outer threaded rod is fixedly connected with the waist bridge plate together, when the inner threaded sleeve rotates, the outer threaded rod will be driven to lift up and down along the inner threaded sleeve, so that the height of the waist bridge plate is adjusted to enable the waist bridge plate to effectively support the waist of the patient.
[0021] The adjusting device comprises a backrest adjusting mechanism and a leg adjusting mechanism installed at the bottom of the bed body, the backrest adjusting mechanism is connected with the controller and used for controlling the inclination angle of the headrest plate, the backrest plate and the lower platform; the backrest adjusting mechanism comprises a head adjusting assembly, a back adjusting assembly and a lower platform adjusting assembly connected with the controller, the tail end of the backrest plate 12 is hingedly connected with the hip plate 14, the two ends of the back adjusting assembly are respectively hingedly connected with the backrest plate and the hip plate, and the back adjusting assembly is used for adjusting the inclination angle of the backrest plate; the hingedly connected mode of the backrest plate and the hip plate is various, for example, as shown in the figure Figure 6 The tail end of the backrest plate 12 is hingedly connected with the hip plate 14, the two ends of the back adjusting assembly are respectively hingedly connected with the backrest plate and the hip plate, and the back adjusting assembly is used for adjusting the inclination angle of the backrest plate; the hingedly connected mode of the backrest plate and the hip plate is various, for example, as shown in the figure
[0022] The tail end of the backrest plate 12 is hingedly connected with the hip plate 14, the two ends of the back adjusting assembly are respectively hingedly connected with the backrest plate and the hip plate, and the back adjusting assembly is used for adjusting the inclination angle of the backrest plate; the hingedly connected mode of the backrest plate and the hip plate is various, for example, as shown in the figure
[0023] The headrest plate 11 is hinged to the back plate 12 at the front end, and the two ends of the head adjusting assembly are hinged to the back plate and the headrest plate respectively; in the embodiment, the telescopic rod b42 is also preferably a gas spring, which is manually controlled through a Bowden cable release; the two ends of the telescopic rod b42 are hinged to the headrest plate 11 and the back plate 12 respectively, and when the upper end surface of the headrest plate is flush with the upper end surface of the back plate, the height of the end of the telescopic rod b connected to the headrest plate is higher than the height of the end of the telescopic rod b connected to the back plate, so that when the controller controls the telescopic rod b to extend, the telescopic rod b will push the headrest plate to rotate upward around the hinge between the headrest plate and the back plate, thereby adjusting the included angle between the headrest plate and the back plate, so that the headrest plate can effectively support the head of the patient during the operation.
[0024] Further, the telescopic rods b in the neck adjusting mechanism are arranged in parallel along the longitudinal direction and are spaced apart by not less than two.
[0025] The two ends of the lower table plate adjusting assembly are hinged to the lower table plate and the hip plate, specifically: the lower table plate adjusting assembly includes at least one telescopic rod f43 connected to the controller, and the two ends of the telescopic rod f43 are hinged to the lower table plate and the hip plate respectively; when the upper end surface of the lower table plate is flush with the upper end surface of the hip plate, the telescopic rod f is in an inclined limit extension state, that is, the end of the telescopic rod f hinged to the lower table plate is higher than the end of the telescopic rod f hinged to the hip plate; so that when the controller controls the telescopic rod f to retract, the telescopic rod d will pull the lower table plate to rotate downward around the hinge between the lower table plate and the hip plate, thereby adjusting the included angle between the lower table plate and the hip plate and controlling the inclination angle of the lower table plate.
[0026] The lower limb plate group includes a lower table plate and leg plate groups symmetrically arranged on both sides of the lower table plate, and the lower table plate and the leg plate groups are hinged to the tail end of the hip plate; the leg plate groups are each provided with a leg adjusting mechanism, and the leg adjusting mechanism is connected to the controller and used for adjusting the inclination angle of the leg plate group and the included angle between the two leg plate groups and the lower table plate,
[0027] The leg adjusting mechanism includes a horizontal adjusting assembly and a lower limb adjusting assembly connected to the controller, and the leg plate group 152 includes a connecting piece 153, a thigh support plate 154 and a calf support plate 155 arranged in sequence from front to back, the connecting piece is rotatably installed on the bottom surface of the hip plate and is in transmission connection with the horizontal adjusting assembly, and is used for adjusting the included angle between the thigh support plate and the hip plate and the lower table plate; the connecting piece extends out of the hip plate and is hinged to the thigh support plate, the calf support plate is hinged to the thigh support plate, the lower limb adjusting assembly is installed on the leg plate group, and is used for adjusting the included angle between the thigh support plate and the hip plate and the knee flexion angle between the calf support plate and the thigh support plate, so that the leg plate group can support the legs in different postures.
[0028] As Figure 7 and Figure 8As shown, the connecting piece is vertically provided with a shaft hole, a fixed shaft 156 is rotatably installed in the shaft hole, the fixed shaft 156 is vertically and fixedly installed on the bottom surface of the hip plate, a slot 157 is matched and provided on the front side of the connecting piece of the fixed shaft, a connecting shaft 158 is vertically provided in the slot on the side of the fixed shaft close to the lower table plate, the horizontal adjustment assembly comprises a telescopic rod c44 connected with the controller, the telescopic rod c44 is preferably an electric push rod, one end of the telescopic rod c is rotatably sleeved on the connecting shaft, the other end of the telescopic rod c44 is rotatably installed on the bottom of the hip plate on the front side of the fixed shaft, when the controller controls the telescopic rod c44 to extend or retract, the telescopic rod c will push and pull the connecting seat to rotate around the fixed shaft through the connecting shaft.
[0029] The lower limb adjustment assembly comprises telescopic rods d45 and e46, the telescopic rods d and e are preferably electric push rods, the telescopic rods d and e are connected with the controller and are used for controlling the extension length of the telescopic rods d and e; the telescopic rod d45 is arranged below the thigh supporting plate, and the two ends of the telescopic rod d are respectively hingedly connected with the connecting piece and the bottom surface of the thigh supporting plate, when the upper end surface of the thigh supporting plate is flush with the upper end surface of the hip plate, the inclined telescopic rod d is in a half-extended state, that is, the end of the telescopic rod d hingedly connected with the thigh supporting plate 154 is higher than the end of the telescopic rod d hingedly connected with the connecting piece; therefore, when the controller controls the telescopic rod d to extend or retract, the telescopic rod d will push and pull the thigh supporting plate to rotate up and down around the hingedly connected part of the thigh supporting plate and the connecting piece, so as to adjust the included angle between the thigh supporting plate and the hip plate and control the inclination angle of the thigh supporting plate.
[0030] The telescopic rod e46 is arranged on the bottom surface of the calf supporting plate 155, and the two ends of the telescopic rod e46 are respectively hingedly connected with the thigh supporting plate and the calf supporting plate, when the calf supporting plate is flush with the thigh supporting plate, the inclined telescopic rod e is in an extreme extended state, that is, the end of the telescopic rod e hingedly connected with the calf supporting plate is higher than the end of the telescopic rod e hingedly connected with the thigh supporting plate, therefore, when the controller controls the telescopic rod e to retract, the telescopic rod e will pull the calf supporting plate to rotate downward around the hingedly connected part of the calf supporting plate and the thigh supporting plate, so as to adjust the included angle between the thigh supporting plate and the calf supporting plate and control the knee flexion angle.
[0031] When the urinary endoscope multi-position operating bed provided in the embodiment is used for surgery, the initial state of the bed body is a horizontal state, which meets the requirements of the prone position or the supine position, according to the body position requirements of the patient, the controller can control the bed body to automatically switch to different body position states through the adjusting device, for example:
[0032] When the bed body of the operating bed is in the initial horizontal state and the body position of the patient needs to be in the flat sitting position, first, the controller controls the telescopic rod d in the two leg adjustment mechanisms and the lower table plate adjustment assembly to act synchronously, so as to drive the two leg plate groups and the lower table plate to synchronously turn down by 90°, then the controller controls the back adjustment assembly, so as to drive the back plate to drive the headrest plate to turn up by 75°, so that the bed body meets the requirements of the bed body in the flat sitting position, in this state, the back plate and the headrest plate can effectively support the upper limbs of the patient.
[0033] When the operating table is initially level and the patient needs to be in a prone position with legs apart, the controller first controls the horizontal adjustment components in the leg adjustment mechanism to drive the two leg panels to rotate outwards synchronously, opening each leg panel by 30°-45°. Then, the controller controls the lower platform adjustment component to drive the lower platform to tilt down 90°, so that the bed can be adjusted to meet the requirements of the prone position with legs apart. In this state, the two leg panels of the bed can not only support the patient's legs to remain open, but the 90° tilted lower platform also provides operating space for medical staff to perform surgery.
[0034] The urological endoscopy operating table provided in this embodiment controls the shape of the bed through the coordination of an adjustment device and a controller, significantly improving surgical efficiency and safety. Its modular design allows independent adjustment of the angle or height of the headrest, backrest, lumbar support, buttock support, and lower limb support assemblies, ensuring direct support for the patient's limbs in different positions, thereby enhancing surgical safety and patient comfort. Furthermore, this embodiment employs telescopic components such as electric push rods, achieving rapid and accurate positional transitions, reducing preparation time and the need for multiple medical personnel, greatly alleviating the physical burden on medical staff, and improving the working environment. The operating table provided in this embodiment supports various complex positional changes from supine to lithotomy, lateral, and prone positions, adapting to different types of urological endoscopy surgeries and providing medical staff with better operating space. The multi-position urological endoscopy operating table provided in this embodiment not only improves the quality and efficiency of surgery but also creates a safer and more comfortable medical operating platform for patients and medical staff. Example
[0035] The difference between Example 2 and Example 1 is that, as Figure 7 and Figure 8 As shown, the connecting seat includes an inner frame 251, an outer frame 252, a connecting platform 253, a forward tilting column 254, and a side tilting column 255. The inner frame 251 is matched and installed on the outer column shell 24 and connected to the side tilting column 255. The controller can drive the inner frame to rotate left and right around the horizontal axis 22 through the side tilting column. The outer frame 252 is matched and installed on the inner frame 251 and connected to the forward tilting column. The controller can drive the outer frame to rotate back and forth around the longitudinal horizontal axis 21 through the forward tilting column. Connecting platforms are symmetrically provided on the left and right sides of the outer frame, and two support boxes are respectively installed on adjacent connecting platforms.
[0036] Specifically: the front and rear ends of the outer column shell 24 are symmetrically provided with horizontal rotating shafts 256 coaxially arranged with the horizontal horizontal axis, and the inner frame 252 is matched and fitted on the two horizontal rotating shafts and can rotate around the horizontal rotating shafts; the left and right outer side walls of the inner frame are symmetrically provided with longitudinal rotating shafts 257 coaxially arranged with the longitudinal horizontal axis, and the outer frame is matched and fitted on the two horizontal rotating shafts of the inner frame and can rotate around the longitudinal rotating shafts; the side-tilting lifting column 255 is arranged on the left side or the right side of the outer column shell 24 and is connected with the controller, the telescopic end of the side-tilting lifting column 255 is arranged upward and is hinged to the bottom surface of the same side inner frame, the tail end of the side-tilting lifting column 255 is hingedly installed on the outer side wall of the same side outer column shell 24, when the controller controls the side-tilting lifting column 255 to extend or retract, the side-tilting lifting column 255 will push and pull the inner frame to rotate and tilt left and right around the horizontal rotating shafts; the front-tilting lifting column 254 is arranged on the front side or the rear side of the outer column shell 24 and is connected with the controller, the telescopic end of the front-tilting lifting column 254 is arranged upward and is hinged to the same side outer frame through a universal joint, and the center point of the universal joint is located on the center axis of the horizontal rotating shaft, the tail end of the front-tilting lifting column 254 is installed on the outer side wall of the same side outer column shell 24 through the universal joint, when the controller controls the front-tilting lifting column 254 to extend or retract, the front-tilting lifting column 254 will push and pull the outer frame to rotate and tilt forward and backward around the longitudinal rotating shaft, and when the inner frame rotates and tilts left and right around the horizontal rotating shaft, it will synchronously drive the outer frame to synchronously rotate, so that the overall inclination angle of the bed body can be controlled according to the needs through the controller during use.
Claims
1. A urological operating table, characterized in that The bed body comprises a headrest plate, a back plate, a waist bridge plate, a hip plate and a lower limb plate group, the headrest plate, the back plate and the hip plate are sequentially arranged and hingedly connected together, the waist bridge plate is arranged between the back plate and the hip plate and is fixedly connected with the hip plate through a lifting mechanism; the hip plate is installed on the base through a supporting mechanism, the lower limb plate group comprises a lower platform plate and leg plate groups symmetrically arranged on both sides of the lower platform plate, and the lower platform plate and the leg plate groups are hingedly connected with the tail end of the hip plate; the adjusting device comprises a reclining and prostrating adjusting mechanism and a leg adjusting mechanism installed at the bottom of the bed body, the reclining and prostrating adjusting mechanism is connected with the controller and is used for controlling the reclining and prostrating angles of the headrest plate, the back plate and the lower platform plate; the leg adjusting mechanism is connected with the controller and is used for adjusting the reclining and prostrating angles of the leg plate groups and the included angle between the two leg plate groups and the lower platform plate.
2. The urological surgical bed according to claim 1, wherein The reclining and prostrating adjusting mechanism comprises a head adjusting assembly, a back adjusting assembly and a lower platform plate adjusting assembly connected with the controller, two ends of the head adjusting assembly are hingedly connected with the back plate and the headrest respectively, two ends of the back adjusting assembly are hingedly connected with the back plate and the hip plate respectively, and two ends of the lower platform plate adjusting assembly are hingedly connected with the lower platform plate and the hip plate respectively.
3. The urological surgical table according to claim 1, wherein The leg adjusting mechanism comprises a horizontal adjusting assembly and a lower limb adjusting assembly connected with the controller, the leg plate group comprises a connecting piece, a thigh supporting plate and a calf supporting plate arranged in sequence from front to back, the connecting piece is rotatably installed on the bottom surface of the hip plate and is in transmission connection with the horizontal adjusting assembly, the connecting piece extends rearward out of the hip plate and is hingedly connected with the thigh supporting plate, the calf supporting plate is hingedly connected with the thigh supporting plate, and the lower limb adjusting assembly is installed on the leg plate group.
4. The urological surgical table according to claim 1, wherein The bottom surfaces of the left and right ends of the hip plate are symmetrically provided with supporting boxes, the two supporting boxes are connected with the base through the supporting mechanism, the two supporting boxes extend forward out of the hip plate and are hingedly connected with the back plate, and the lifting mechanism comprises lifting assemblies symmetrically installed on the inner side walls of the left and right supporting boxes.
5. The urological surgical table according to claim 4, wherein The lifting assembly comprises a platform plate, a lifting motor, an inner threaded sleeve and an outer threaded rod, the platform plate is vertically installed on the inner side wall of the supporting box, the lifting motor is fixedly installed on the platform plate and is connected with the controller, the inner threaded sleeve is vertically rotatably installed on the platform plate and is in transmission connection with the lifting motor, the outer threaded rod is matchedly sleeved in the inner threaded sleeve, and the top end of the outer threaded rod is vertically fixedly connected with the waist bridge plate.
6. The urological surgical table according to claim 4, wherein The supporting mechanism comprises a lifting column, an outer column shell and a connecting seat, the lifting column is vertically installed on the base and is connected with the controller, the outer column shell is matchedly sleeved on the lifting column and can synchronously lift along with the extension and contraction of the lifting column, and the connecting seat is fixedly installed on the outer column shell and is fixedly connected with the left and right supporting boxes.
7. The urological surgical table according to claim 6, characterized in that The connecting seat comprises an inner frame, an outer frame, a connecting table, a front tilting lifting column and a side tilting lifting column, the inner frame is matched and installed on the outer column shell and connected with the side tilting lifting column, the controller can drive the inner frame to rotate and tilt left and right around the horizontal transverse axis through the side tilting lifting column, the outer frame is matched and installed on the inner frame and connected with the front tilting lifting column, the controller can drive the outer frame to rotate and tilt forward and backward around the horizontal longitudinal axis through the front tilting lifting column; the left and right sides of the outer frame are symmetrically provided with the connecting tables, and the two supporting boxes are respectively installed on the adjacent connecting tables.