Portable diasonograph
By designing a detachable storage box, protective layer and rotating rod structure in a portable ultrasonic diagnostic instrument, the portability and damage problems caused by separate storage of the probe are solved, and more efficient probe portability and use are achieved.
Patent Information
- Application Number
- CN202421931951.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-08-09
AI Technical Summary
When using a portable ultrasound diagnostic device, the separate storage of the probe and the device leads to prolonged diagnosis time and risk of probe damage, affecting portability and first aid efficiency.
A portable ultrasonic diagnostic instrument is designed, which includes a storage box and a detachable connection to the diagnostic instrument body. The storage box is equipped with a protective layer and a rotating rod to protect and store the probe. The connecting line extends through the through grooves, and combines a magnet and a fixing assembly to ensure the fixed connection between the probe and the device.
It improves the portability and convenience of use of the probe, reduces diagnosis time, reduces the risk of probe damage, and improves first aid efficiency.
Smart Images

Figure CN223158385U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of ultrasonic diagnostic instruments, and particularly relates to a portable ultrasonic diagnostic instrument. Background Art
[0002] The portable ultrasonic diagnostic instrument adopts advanced electronic technology and image processing technology, integrates the functions of the ultrasonic diagnostic device in a small and portable body, and realizes the real-time detection and processing of the Doppler frequency shift signal of the echo reflected by the moving viscera and blood. This device has the characteristics of being portable, easy to operate, and instant imaging. The portable ultrasonic diagnostic instrument is also widely used in obstetrics and gynecology. For example, it is used for prenatal examinations of pregnant women to check the growth of the fetus, the position of the placenta, the amount of amniotic fluid, etc.; the portable ultrasonic diagnostic instrument can be quickly examined at the emergency scene or in the emergency department. For example, it can judge whether there are abnormalities in organs such as the heart, lungs, and abdomen, so as to determine the condition and take treatment measures as soon as possible. It shortens the waiting time of patients, reduces the need for moving, and wins time for the rescue of critically ill patients.
[0003] When the portable ultrasonic diagnostic instrument is in use, it is stored separately from the probe. When it is necessary to urgently use the portable ultrasonic diagnostic instrument to diagnose a patient, the diagnostic time will be prolonged, delaying first aid. Moreover, the probe is placed or stored randomly, resulting in the probe being exposed to the environment, thus increasing the risk of damage to the probe. Content of the Utility Model
[0004] Based on the above deficiencies in the prior art, the technical problem to be solved by the utility model is: to provide a portable ultrasonic diagnostic instrument that can store and accommodate the probe to improve its portability.
[0005] The portable ultrasonic diagnostic instrument includes a diagnostic instrument body. An accommodating box with an upward opening is arranged on the side wall of the diagnostic instrument body. A probe is arranged in the accommodating box. The diagnostic instrument body and the accommodating box are detachably connected through a fixing component. A cover plate is slidably connected to the top of the accommodating box. A protective layer for protecting the probe is arranged in the accommodating box. A rotating rod is rotatably connected in the accommodating box. A through groove for the connecting wire of the probe to extend out is opened on the side wall of the accommodating box.
[0006] Further, the fixing component includes a fixing plate fixed on the side wall of the diagnostic instrument body. A slot is opened on the side wall of the fixing plate. A plug rod is arranged in the slot. A fixing groove connected and communicated with the slot is opened on the side wall of the fixing plate. A connecting block fixed on the side wall of the accommodating box is arranged in the fixing groove. A circular ring-shaped installation groove is opened on the fixing plate corresponding to the slot. A fixing ring is arranged in the installation groove. A rotating plate is arranged on the fixing ring.
[0007] Further, an internal thread is opened on the inner wall of the installation groove, and an external thread in threaded fit with the internal thread is arranged on the outer side wall of the fixing ring.
[0008] Further, a fixing groove is formed in the side wall of the storage box.
[0009] Further, magnets are arranged at the edges of the fixing groove, and metal plates attracted to the magnets are hinged to the side wall of the cover plate.
[0010] Further, a knob is arranged at the top end of the rotating rod.
[0011] Further, the protective layer is made of sponge material.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] In the utility model, the storage box and the diagnostic instrument body are detachably connected through the fixing component. The cover plate is moved, and the probe is placed on the protective layer in the storage box to protect the probe. Then the cover plate is covered, and the connecting wire of the probe is wound around the rotating rod to avoid knotting. The probe is stored in the storage box, so that it can be used together with the diagnostic instrument body, avoiding separation of the two, and improving its portability. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural diagram of the utility model;
[0015] Figure 2 is Figure 1 the sectional structural schematic of A-A in
[0016] Figure 3 is Figure 1 the sectional structural schematic of B-B in
[0017] Figure 4 is a perspective view of the utility model;
[0018] Figure 5 is an exploded view of the utility model;
[0019] The names of the components in the figure: 1. Diagnostic instrument body 2. Storage box 3. Magnet 4. Fixing groove 5. Protective layer 6. Probe 7. Knob 8. Cover plate 9. Fixed plate 10. Rotating rod 11. Through groove 12. Metal plate 13. Insert rod 14. Connecting block 15. Fixed ring 16. Rotating plate. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] The following further illustrates the utility model through specific embodiments with reference to the drawings, but the utility model is not limited thereto. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the present invention.
[0021] Embodiment 1
[0022] A portable ultrasonic diagnostic instrument described in this embodiment, as Figure 1, Figure 2 , Figure 3 , Figure 4 and Figure 5As shown in the figure, it includes a diagnostic instrument body 1. On the side wall of the diagnostic instrument body 1, there is a storage box 2 with an upward opening. Inside the storage box 2, there is a probe 6. The diagnostic instrument body 1 and the storage box 2 are detachably connected by a fixing component. A cover plate 8 is slidably connected to the top of the storage box 2. Inside the storage box 2, there is a protective layer 5 for protecting the probe 6. A rotating rod 10 is rotatably connected inside the storage box 2. A through groove 11 for the connection line of the probe 6 to extend out is opened on the side wall of the storage box 2; the diagnostic instrument body 1 is a portable ultrasonic diagnostic instrument of the prior art, and the diagnostic instrument body 1 includes a host, an ultrasonic probe, a power supply, a data storage and transmission module, a control panel, a display screen, a software system, etc.; during use, gel or appropriate lubricant is applied to the scanning part to improve the contact between the ultrasonic probe and the skin. The probe is gently placed on the scanning part, and the probe is kept stable and gently moved to obtain a complete scanning image. The angle and position of the probe are adjusted as needed to ensure comprehensive image information is obtained; this is the prior art and will not be elaborated here; on the side wall of the diagnostic instrument body 1, there is a socket into which the connection line of the probe 6 is inserted. Corresponding to the socket on the side wall of the diagnostic instrument body 1, a storage box 2 is detachably connected to the side wall of the diagnostic instrument body 1 through a fixing component. A sleeve is welded or adhered to the side wall of the diagnostic instrument body 1. Inside the sleeve, there is a fixing rod with an "L" - shaped structure. The fixing rod is inserted into the sleeve, so that the storage box 2 is detachably connected to the side wall of the diagnostic instrument body 1, facilitating the installation and disassembly of the storage box 2. The probe 6 is stored inside the storage box 2. When it is necessary to carry the probe 6, the storage box 2 can be connected to the diagnostic instrument body 1 through the fixing component, so that the probe 6 is carried along with the diagnostic instrument body 1, which is convenient for use; at the opening at the top of the storage box 2, there is a cover plate 8. The cover plate 8 closes the opening of the storage box 2. (not shown in the figure) The cover plate 8 slides on the storage box 2 through a guide rail and a sliding rail. A guide rail is threadedly connected to the outer side wall of the storage box 2. Inside the guide rail, there is a sliding rail that is slidably engaged with it. The sliding rail is threadedly connected to the inner side wall of the cover plate 8. Through the sliding cooperation of the guide rail and the sliding rail, the cover plate 8 slides on the storage box 2 to close the opening of the storage box 2. Also, through the cooperation of the guide rail and the sliding rail, the cover plate 8 is connected to the storage box 2 to prevent the cover plate 8 from falling off the storage box 2. Under the sliding cooperation of the guide rail and the sliding rail, the cover plate 8 is moved to expose the probe 6 stored inside the storage box 2. The probe 6 is taken out of the storage box 2, and the connection line of the probe 6 is inserted into the socket on the side wall of the diagnostic instrument body 1, and the diagnostic instrument body 1 is used to diagnose diseases of patients, which is more convenient to use and saves diagnostic time; a protective layer 5 is adhered to the bottom inside the storage box 2. The top of the protective layer 5 is provided with a groove, and the shape of the groove is the same as the shape of the probe 6, facilitating the probe 6 to be embedded in the groove. The probe 6 is protected by the protective layer 5 to prevent it from colliding with the inner wall of the storage box 2 during movement, resulting in damage to the probe 6; and the protective layer 5 is made of sponge material. The sponge is soft and elastic, which can play a buffering and protective role to prevent the probe 6 from being collided or damaged during transportation and use;The bottom inside the storage box 2 is rotatably connected to a rotating rod 10 through a bearing. The connecting wire of the probe 6 can be wound around the rotating rod 10 to store the connecting wire, preventing it from being tangled messily, and better storing and placing the probe 6. A through groove 11 is provided on the side wall of the storage box 2 close to the socket of the diagnostic instrument body 1. The through groove 11 corresponds to the rotating rod 10. The plug of the connecting wire wound around the rotating rod 10 can extend out of the storage box 2 through the through groove 11 and then be inserted into the socket on the side wall of the diagnostic instrument body 1, enabling the probe 6 to be better connected to the diagnostic instrument body 1 and making it more convenient to use;
[0023] As Figure 1 , Figure 2 , Figure 4 and Figure 5 shown, a fixing groove 4 is provided on the side wall of the storage box 2, and a fixing groove 4 is provided at the top of the front side wall of the storage box 2. When the probe 6 is taken out of the storage box 2, without opening the cover plate 8, the connecting wire of the probe 6 is located in the fixing groove 4. The connecting wire wound around the rotating rod 10 can be stretched through the fixing groove 4 to better diagnose diseases of patients; and a magnet 3 is provided at the edge of the fixing groove 4, and a metal plate 12 that attracts the magnet 3 is hinged to the side wall of the cover plate 8. The metal plate 12 is made of iron. A magnet 3 is pasted on the front side wall of the storage box 2 corresponding to the edge of the fixing groove 4, and a metal plate 12 is hinged to the front side wall of the cover plate 8. The metal plate 12 rotates around the hinge point. When the metal plate 12 rotates to one side of the fixing groove 4, the fixing groove 4 can be exposed for the connecting wire of the probe 6 to pass through. When the metal plate 12 rotates to cover the fixing groove 4, the metal plate 12 attracts the magnet 3 at the fixing groove 4, thereby blocking the fixing groove 4. Moreover, by the mutual attraction of the metal plate 12 and the magnet 3, the cover plate 8 can also be fixed to the storage box 2 to prevent the cover plate 8 from moving, and better protect the probe 6 stored in the storage box 2;
[0024] As Figure 1 , Figure 2 , Figure 4 and Figure 5 shown, a knob 7 is provided at the top of the rotating rod 10, and the knob 7 is pasted or welded to the top of the rotating rod 10. By rotating the knob 7, the rotating rod 10 rotates to wind the connecting wire of the probe 6 around the rotating rod 10 for storage, or the restraint on the connecting wire can be released. The diameter of the rotating rod 10 is smaller than the diameter of the knob 7, which can block the connecting wire wound around the rotating rod 10 to prevent it from falling off the rotating rod 10, and better store and place the probe 6.
[0025] In the actual use process, the probe 6 is placed on the protective layer 5 inside the storage box 2. The protective layer 5 protects the probe 6 to prevent it from being damaged due to expansion during transportation. Then, the connecting wire of the probe 6 is wound around the rotating rod 10 to sort it out and avoid winding and knotting. The storage box 2 is detachably connected to the diagnostic instrument body 1 through a fixing component, so that the probe 6 moves along with the movement of the diagnostic instrument body 1. When the probe 6 needs to be used, the moving cover plate 8 is moved to expose the probe 6 inside the storage box 2. The probe 6 is taken out from the storage box 2, and the patient's disease is diagnosed through the diagnostic instrument body 1 and the probe 6, which can better carry and use the probe 6.
[0026] Embodiment 2
[0027] This embodiment further illustrates the technology, as Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 shown, the fixing component includes a fixing plate 9 fixed on the side wall of the diagnostic instrument body 1. A slot is provided on the side wall of the fixing plate 9, and a plug rod 13 is arranged in the slot. A fixing groove communicating with the slot is provided on the side wall of the fixing plate 9, and a connecting block 14 fixed on the side wall of the storage box 2 is arranged in the fixing groove. A circular installation groove is provided on the fixing plate 9 corresponding to the slot, and a fixing ring 15 is arranged in the installation groove. A rotating plate 16 is arranged on the fixing ring 15; the fixing plate 9 is welded or adhered to the side wall of the diagnostic instrument body 1 with a socket. The fixing plate 9 is located on one side of the socket of the diagnostic instrument body 1. A slot is provided on the front side wall of the fixing plate 9, and the plug rod 13 is inserted into the slot. The front end of the plug rod 13 is welded or adhered to the connecting block 14, and the side wall of the connecting block 14 is welded or adhered to the outer side wall of the storage box 2. A circular installation groove is provided on the front side wall of the fixing plate 9, and the fixing ring 15 is embedded in the installation groove. The front side wall of the fixing ring 15 is welded or adhered to the rotating plate 16. During use, the plug rod 13 is inserted into the slot provided on the front side wall of the fixing plate 9 to connect the storage box 2 with the diagnostic instrument body 1. Then, the fixing ring 15 is inserted into the installation groove on the front side wall of the fixing plate 9. The fixing ring 15 restricts the connecting block 14 and the plug rod 13 to prevent them from falling out of the slot, making it convenient to install and disassemble the storage box 2 and the diagnostic instrument body 1. When the storage box 2 needs to be disassembled from the diagnostic instrument body 1, the above operations can be repeated in reverse; and internal threads are provided on the inner wall of the installation groove, and external threads that are thread-matched with the internal threads are provided on the outer side wall of the fixing ring 15. The installation groove and the fixing ring 15 are thread-connected, making the fixing ring 15 more stable in the installation groove. The rear side wall of the fixing ring 15 abuts against the front side wall of the connecting block 14, so that it firmly fixes the plug rod 13 in the slot, ensuring a more stable connection between the diagnostic instrument body 1 and the storage box 2.
Claims
1. A portable ultrasonic diagnostic apparatus, comprising a diagnostic apparatus main body (1), a storage box (2) with an upward opening is arranged on the side wall of the diagnostic apparatus main body (1), and a probe (6) is arranged in the storage box (2), and is characterized in that: The diagnostic instrument body (1) is detachably connected to the storage box (2) through a fixing component. A cover plate (8) is slidably connected to the top of the storage box (2). A protective layer (5) for protecting the probe (6) is arranged in the storage box (2). A rotating rod (10) is rotatably connected in the storage box (2). A through groove (11) for the connection line of the probe (6) to extend out is formed in the side wall of the storage box (2).
2. The portable ultrasonic diagnostic apparatus according to claim 1, wherein: The fixing component includes a fixing plate (9) fixed to the side wall of the diagnostic instrument body (1). A slot is formed in the side wall of the fixing plate (9). A plug rod (13) is arranged in the slot. A fixing groove connected and communicated with the slot is formed in the side wall of the fixing plate (9). A connecting block (14) fixed to the side wall of the storage box (2) is arranged in the fixing groove. An annular installation groove is formed in the fixing plate (9) corresponding to the slot. A fixing ring (15) is arranged in the installation groove. A rotating plate (16) is arranged on the fixing ring (15).
3. The portable ultrasonic diagnostic apparatus according to claim 2, characterized in that: Internal threads are formed on the inner wall of the installation groove. External threads that are in threaded cooperation with the internal threads are arranged on the outer side wall of the fixing ring (15).
4. The portable ultrasonic diagnostic apparatus according to claim 1, wherein: A fixing groove (4) is formed in the side wall of the storage box (2).
5. The portable ultrasonic diagnostic apparatus according to claim 4, characterized in that: Magnets (3) are arranged at the edges of the fixing groove (4). A metal plate (12) that is attracted to the magnets (3) is hinged to the side wall of the cover plate (8).
6. The portable ultrasonic diagnostic apparatus according to claim 1, wherein: A knob (7) is arranged at the top end of the rotating rod (10).
7. The portable ultrasonic diagnostic apparatus according to claim 1, wherein: The protective layer (5) is made of sponge material.