Cable retention assembly and medical system
By designing a detachable cable retention assembly, and utilizing a hook structure and detachable attachments to increase cable retention points, the challenge of cable management in confined medical systems has been solved, enabling efficient cable management and autonomous installation, and improving the user experience.
Patent Information
- Application Number
- CN202423090408.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-12-13
AI Technical Summary
In small or compact medical systems, there are limited installation sites for cable holding devices, making it difficult to effectively manage multiple cables without taking up extra space.
A cable holding assembly is designed, including a first cable holder and a detachably connected second cable holder. The cable holding points are increased by a hook structure and a detachable attachment part. The slotted structure with a narrow outer edge and a wide inner edge enables quick engagement, and the sloped guide facilitates installation and disassembly.
Without taking up extra space, it increases cable retention points, improves cable management efficiency, facilitates user self-installation and replacement, and reduces reliance on professional services.
Smart Images

Figure CN223797827U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the medical field, and more specifically to cable holding components and medical systems. Background Technology
[0002] Various cables are widely used in the medical field, such as gas pipelines for providing life support to patients, or cables for acquiring physiological signals. The large volume of cables used can lead to tangling, knots, and easy damage. Cable holding devices are commonly used to manage these cables, preventing long cables from falling to the ground and causing damage or tripping hazards to operators. Furthermore, cable holding devices can prevent large quantities of cables from becoming tangled together.
[0003] The installation of cable holding devices inevitably occupies mounting space. For medical systems operating in confined or compact environments, the number of mounting spaces is limited. This makes it difficult to hold all cables when there are many. Therefore, improving cable holding efficiency without occupying additional space resources is a challenge. Utility Model Content
[0004] At least in view of this, improvements have been made in one or more embodiments of this application.
[0005] Some embodiments of this application provide a cable holding assembly for a medical system, characterized in that the cable holding assembly includes a first cable holder, the first cable holder comprising: a fixing portion connected to the medical system; a bending portion connected to the fixing portion, the bending portion being bent to form a hook, the hook including opposing inner and outer surfaces, wherein the inner surface is used to hold the cable; and an attachment portion disposed on the outer surface of the hook, the attachment portion being used for detachably connecting a second cable holder.
[0006] Optionally, the attachment portion includes a slot extending from top to bottom along the main body direction of the bent portion, the internal dimension of the slot being larger than the external dimension of the slot, the top of the slot including a notch, and the bottom of the slot being closed.
[0007] Optionally, the top of the slot forms a sloping structure from top to bottom.
[0008] Optionally, the top of the slot and the fixing portion include a gap that allows the second cable retainer to be inserted into or removed from the top.
[0009] Optionally, the cable holding assembly further includes a second cable holder, the second cable holder comprising: a holding portion for holding the cable; and a connecting portion fixedly connected to the holding portion, the connecting portion being detachably connected to the attachment portion of the first cable holder.
[0010] Optionally, the retaining part includes a clamping part, which can hold the cable in a clamping manner to prevent the cable from falling off.
[0011] Optionally, the retaining part and the connecting part are retractably connected.
[0012] Optionally, the second cable retainer further includes a retractable portion, wherein the retaining portion and the connecting portion are connected via the retractable portion; the retractable portion includes a retractable material or a retractable cable winding device.
[0013] Optionally, the attachment portion includes a slot extending from top to bottom along the main body direction of the bent portion, the internal dimension of the slot being larger than the external dimension of the slot, the top end of the slot including a notch, and the bottom end of the slot being closed; the connecting portion includes a first part and a second part connected sequentially from the inside to the outside, the size of the first part being smaller than the external dimension of the slot, and the size of the second part being larger than the external dimension of the slot but smaller than the internal dimension of the slot, so that the connecting portion can enter the slot from the notch at the top end of the slot and engage.
[0014] Optionally, the bottom width of the second part gradually decreases from top to bottom.
[0015] Other embodiments of this application also provide a medical system including the cable holding assembly described in any of the above embodiments.
[0016] Optionally, the medical system includes an operation panel, and the cable retaining assembly is connected to the bottom surface of the operation panel.
[0017] Optionally, the medical system includes an ultrasound imaging system, the ultrasound imaging system includes a probe, and the probe includes the cable.
[0018] Other features and aspects will become clear from the following detailed description and accompanying drawings. Attached Figure Description
[0019] The present invention can be better understood by describing exemplary embodiments of the present invention in conjunction with the accompanying drawings, in which:
[0020] Figure 1 These are schematic diagrams of medical systems according to some embodiments of this application;
[0021] Figure 2 This is a schematic diagram of a cable holding assembly in some embodiments of this application;
[0022] Figure 3 This is a schematic diagram of the cable holding assembly in some embodiments of this application from another perspective;
[0023] Figure 4 This is a schematic diagram of a second cable retainer in some embodiments of this application;
[0024] Figure 5 This is a schematic diagram of the assembly relationship between the first cable holder and the second cable holder in some embodiments of this application;
[0025] Figure 6 This is a schematic diagram of a medical system including a cable holding assembly in some embodiments of this application. Detailed Implementation
[0026] The following describes specific embodiments of this utility model. It should be noted that, in order to provide a concise description, this specification cannot provide a detailed description of all features of the actual embodiments. It should be understood that, in the actual implementation of any embodiment, just as in any engineering or design project, various specific decisions are often made to achieve the developer's specific goals and to meet device-related or commercially relevant constraints, which can change from one embodiment to another. Furthermore, it is understood that although the efforts made in this development process may be complex and lengthy, for those skilled in the art related to the content disclosed in this utility model, some design, manufacturing, or production modifications based on the technical content disclosed in this disclosure are merely conventional technical means and should not be construed as insufficient content of this disclosure.
[0027] Unless otherwise defined, the technical or scientific terms used in the claims and description shall have the ordinary meaning understood by one of ordinary skill in the art to which this utility model pertains. The terms "first," "second," and similar words used in the specification and claims of this utility model patent application do not indicate any order, quantity, or importance, but are merely used to distinguish different components. The terms "an" or "a" and similar words do not indicate a quantity limitation, but rather indicate the presence of at least one. The terms "comprising" or "including" and similar words mean that the element or object preceding "comprising" or "including" encompasses the element or object listed following "comprising" or "including" and its equivalents, and do not exclude other elements or objects. The terms "connected" or "linked" and similar words are not limited to physical or mechanical connections, nor are they limited to direct or indirect connections.
[0028] Figure 1 This is a schematic diagram of a medical system according to some embodiments of the present invention. The medical system is illustrated using an ultrasound imaging system 100 as an example. The ultrasound imaging system 100 includes a beamformer 101 and a transmitter 102, both of which drive a primitive 104 within a probe 106 to transmit pulsed ultrasound signals into the body (not shown). According to various embodiments, the probe 106 can be any type of probe, including linear probes, curved array probes, 1.25D arrays, 1.5D arrays, 1.75D arrays, or 2D array probes. According to other embodiments, the probe 106 can also be a mechanical probe, such as a mechanical 4D probe or a hybrid probe. The probe 106 can be used to acquire 4D ultrasound data containing information about how a volume changes over time. Each volume can include multiple 2D images or slices. Still referring to… Figure 1Pulsed ultrasound signals are backscattered from structures within the body (such as blood cells or muscle tissue), generating echoes that return to primitive 104. The echoes are converted by primitive 104 into electrical signals or ultrasound data, and the electrical signals are received by receiver 108. The electrical signals representing the received echoes pass through receiver beamformer 110, which outputs ultrasound data. According to some embodiments, probe 106 may include electronic circuitry to perform all or part of the operation of transmit beamforming and / or receive beamforming. For example, all or part of transmit beamformer 101, transmitter 102, receiver 108, and receive beamformer 110 may be located in probe 106. The terms "scan" or "in scan" may also be used in this disclosure to refer to the process of acquiring data by transmitting and receiving ultrasound signals. The terms "data" and "ultrasound data" may be used in this disclosure to refer to one or more datasets acquired using an ultrasound imaging system. Operation panel 115 can be used to control the operation of ultrasound imaging system 100. The operation panel can be used to control the input of patient data or to select various modes, operations, and parameters, etc. The operation panel 115 may include one or more user input devices, such as a keyboard, hard keys, touch pad, touch screen, trackball, rotary control, slider, soft keys, or any other user input device.
[0029] The ultrasound imaging system 100 also includes a processor 116 that controls the transmit beamformer 101, transmitter 102, receiver 108, and receive beamformer 110. According to various embodiments, the receive beamformer 110 can be a conventional hardware beamformer or a software beamformer. If the receive beamformer 110 is a software beamformer, it can include one or more of the following components: a graphics processing unit (GPU), a microprocessor, a central processing unit (CPU), a digital signal processor (DSP), or any other type of processor capable of performing logical operations. The beamformer 110 can be configured to implement conventional beamforming techniques as well as techniques such as backtracking transmit beamforming (RTB).
[0030] Processor 116 communicates electronically with probe 106. Processor 116 can control probe 106 to acquire ultrasound data. Processor 116 controls which primitives 104 are activated and the shape of the beam emitted from probe 106. According to one embodiment, ultrasound imaging system 100 can continuously acquire ultrasound data using probe 106 at frame rates, for example, 10 Hz to 30 Hz. Images generated from this data can be refreshed at similar frame rates. Other embodiments can acquire and display data at different rates. For example, depending on size and potential application, some embodiments may acquire ultrasound data at frame rates less than 10 Hz or greater than 30 Hz. For example, many applications involve acquiring ultrasound data at a frame rate of 50 Hz. Memory 120 is included therein to store processed frames of acquired data. In an exemplary embodiment, memory 120 has sufficient capacity to store ultrasound data frames acquired over a period of time, with a length of at least several seconds. Data frames are stored in a manner that facilitates retrieval based on the order or time of their acquisition. Memory 120 can include any known data storage medium.
[0031] Furthermore, the ultrasound imaging system 100 may also include a cable holding assembly 200. In one example, the cable holding assembly 200 may be connected to the operation panel 115. In another example, the cable holding assembly 200 may be located in other locations. The cable holding assembly 200 is used to hold the cables of the probe 106. In some examples, the ultrasound imaging system 100 is connected to multiple probes 106 simultaneously. When multiple probes 106 are idle, the cables of these probes may all need to be held by the cable holding assembly 200. Accordingly, multiple cable holding assemblies 200 may be needed to prevent damage caused by the cables of different probes becoming tangled, knotted, or dragging on the ground. However, for ultrasound imaging systems used in confined or compact environments, the number of mounting points is limited. In some usage scenarios, it is difficult to meet the requirements for cable holding. At least for the above reasons, improvements are proposed in some embodiments of this application.
[0032] Please refer to all factors. Figure 2 and Figure 3 .in, Figure 2 A schematic diagram of a cable holding assembly 200 according to some embodiments of this application is shown. Figure 3 A schematic diagram of a cable retention assembly 200 in some embodiments of this application is shown from another perspective. The cable retention assembly 200 can be used in medical systems (e.g., Figure 1 (Ultrasonic imaging system 100). The cable holding assembly 200 includes a first cable holder 201. The first cable holder 201 includes:
[0033] Fixing part 211, the fixing part 211 being connected to the medical system;
[0034] A bending portion 212 is connected to the fixing portion 211. The bending portion is bent to form a hook, the hook including opposing inner surfaces 221 and outer surfaces 222, wherein the inner surface 221 is used to hold the cable ( Figure 1 (not shown in the image); and
[0035] Attachment portion 213, the attachment portion 213 being disposed on the outer surface 222 of the hook, the attachment portion being used for detachably connecting a second cable retainer. Figure 1 (Not shown in the image).
[0036] This configuration allows for the addition of new cable retention points without requiring additional connection points (or fixation points) to the medical system. Specifically, in the embodiments of this application, the attachment part 213 allows for the detachable addition of a second cable holder when necessary, thereby increasing the number of cable retention points. The detachable nature also ensures that the attachment part 213, being located on the outer surface 222 of the hook, does not affect the cable retention on the inner surface 221 of the hook.
[0037] The attachment 213 and the second cable retainer can be detachably connected in various ways. Examples are described below. Please refer to [the relevant documentation / reference]. Figure 2 and Figure 3 .in Figure 3 A schematic diagram of the cable holding assembly 200 in some embodiments of this application is shown from another perspective.
[0038] like Figure 2 and Figure 3 As shown, the attachment portion 213 may include a slot 310 extending from top to bottom along the main body direction of the bent portion 212. The internal dimension of the slot 310 is larger than the external dimension of the slot 310. The top end of the slot 310 includes a notch 311, and the bottom end of the slot 310 is closed.
[0039] This configuration allows for quick and reliable engagement of the second cable retainer using the slot 310 structure, which is narrow on the outside and wide on the inside. Furthermore, the notch 311 at the top facilitates the insertion of the second cable retainer into the notch, and the closed bottom prevents it from easily coming out of the slot 310.
[0040] The shape of the slot 310, which is narrow on the outside and wide on the inside, can include various types, such as "T" shaped structures, wedge-shaped structures, etc., and is not limited to a single type in this disclosure.
[0041] Continue to refer to Figure 2 , Figure 3In some examples, the top of the slot 310 forms a sloping structure from top to bottom. This design makes it easier for users to connect the first cable holder 201 and the second cable holder. The sloping structure also guides the second cable holder. Thus, even when the first cable holder 201 is installed in a location not easily visible to the user, such as the bottom of a medical system's control panel, the user can easily install the second cable holder simply by relying on the guidance of the sloping structure.
[0042] Furthermore, in some examples, the top of the slot 310 and the fixing portion 211 include a gap. This gap allows the second cable holder to be inserted into or removed from the top. The dimensional arrangement of this gap further ensures that even when the first cable holder 201 is installed in a medical system, it does not hinder the user from installing the second cable holder onto the first cable holder 201.
[0043] Thus far, one or more examples above have described a case where the cable holding assembly 200 includes a first cable holder 201. Furthermore, one or more cooperating components of the first cable holder 201 have been described to facilitate quick and reliable assembly of the second cable holder by the user as needed, thereby enabling the second cable holder to become a user replaceable unit (CRU).
[0044] In one example, the cable retention assembly may consist only of a first cable retainer. This is suitable for scenarios where, for example, the user does not require additional cable retention points and, consequently, does not need to assemble a second cable retainer. In another example, the cable retention assembly may include the first cable retainer described in any of the embodiments above, while also including a second cable retainer. The type of the second cable retainer can vary, and is described exemplarily below.
[0045] Please refer to Figure 4 The diagram illustrates a second cable holder 401 in some embodiments of this application. The second cable holder 401 may include a holding portion 411 for holding a cable. The second cable holder 401 may also include a connecting portion 412, which is fixedly connected to the holding portion 411, and the connecting portion 412 is detachably connected to the attachment portion of the first cable holder described in any of the above embodiments. Therefore, in scenarios where a user requires an additional cable holder, only the second cable holder 401 needs to be connected to the attachment portion of the first cable holder, thus adding a cable holding point without the need for an additional fixing portion.
[0046] In one example, the specific method by which the second cable retainer 401 retains the cable can differ from that of the first cable retainer. Thus, when a user assembles both the second and second cable retainers simultaneously, different types of cable retainers can be selected to achieve different cable retention functions according to actual needs. For example, the retaining part 411 may include a clamping part that can hold the cable in a clamping manner to prevent it from falling off.
[0047] The specific configuration of the clamping part can be as follows: Figure 4 As shown, this is achieved by setting the retaining part 411 into a U-shaped structure. The central dimension of the U-shaped structure can be smaller than the diameter of the cable to be retained, and the retaining part 411 itself can be made of an elastic material, such as plastic or metal that can undergo elastic deformation. Thus, when the cable is inserted into the U-shaped structure, the U-shaped structure deforms to lock the cable in place. However, this application is not limited to this; the retaining part 411, as a clamping part, can also be implemented in other ways, for example, by setting it as a clip.
[0048] In an optional embodiment, the holding portion 411 and the connecting portion 412 of the second cable retainer 401 can also be connected in a retractable manner. This further improves user convenience. For example, after the cable is held in the holding portion 411, the user can move the holding portion 411 and the cable together by dragging the cable. After dragging, the cable can return to its original position under the action of the holding portion 411 without manual operation by the user, thereby improving convenience.
[0049] The following is an exemplary description of the implementation of the retractable connection. In some embodiments, the second cable retainer 401 may include a retractable portion 413. The retaining portion 411 and the connecting portion 412 are connected through the retractable portion 413. The retractable portion 413 may include a retractable material or a retractable winding device. The retractable material and the retractable winding device can be any of those in the prior art. For example, the retractable material may include a spring or a stretchable polymer material. The retractable winding device may include a torsion spring, a winding spool connected to the torsion spring, and a wire wound on the winding spool. This application is not limited to any particular type. Thus, the retractable portion can bear part of the cable's weight, thereby reducing the force required by the operator's wrist to pull the cable. Furthermore, when the cable needs to be retracted, the retractable winding portion automatically retracts and holds the cable, preventing it from dragging on the ground.
[0050] Figure 3The example describes a configuration where the attachment portion of the first cable holder is detachably connected to the connection portion of the second cable holder. In a corresponding embodiment, the connection portion of the second cable holder can correspond to this configuration, achieving a simple and reliable detachable connection between the first and second cable holders. Please refer to the following for further details. Figure 3 and Figure 4 The connecting portion 412 of the second cable retainer 401 may include a first portion 421 and a second portion 422 connected sequentially from the inside out. The size of the first portion 421 is smaller than the external size of the slot 310, and the size of the second portion 422 is larger than the external size of the slot 310 but smaller than the internal size of the slot 310, so that the connecting portion 412 can enter the slot 310 from the notch 311 at the top of the slot 310 and engage.
[0051] In an optional embodiment, the bottom width of the second portion 422 gradually decreases from top to bottom. This arrangement improves the efficiency of the user engaging the first and second cable retainers. The gradually tapering end also guides the insertion of the second portion 422 into the slot 310.
[0052] Thus far, the connection methods of the detachable first and second cable retainers have been described in detail in the above embodiments of this application. Combinations of one or more of the above embodiments can bring different conveniences to users, which will be illustrated below.
[0053] In one example, the cable holding assembly may consist of only a first cable holder. This implementation is suitable for applications where the number of cable holding devices is not critical. Consequently, users do not need to purchase or install a second cable holder, thus saving costs and eliminating the need for additional maintenance.
[0054] In another example, the cable retention assembly may include both a first cable retainer and a second cable retainer. In the example of this application, the first and second cable retainers are detachably connected, allowing a user (e.g., a doctor) to select and install the second cable retainer along with the first cable retainer. This application has described several structural designs that facilitate rapid installation, enabling users to perform simple and quick installation without requiring professional assistance from after-sales service personnel.
[0055] In one example, the first cable holder and the second cable holder are different types of cable holders. For instance, the first cable holder could be a hook-type holder, while the second cable holder could be a clamp-type holder. This gives users more options for cable retention. For example, for heavier or longer cables, a clamp-type holder can be used. This ensures the cable is less likely to fall off and be damaged, and the clamp itself can continuously distribute the cable weight, thus improving the user experience. As another example, for situations involving frequent cable replacement or use, or for shorter cables, a hook-type holder can be chosen for easier operation.
[0056] In another example, the second cable holder can also be a retractable cable holder, which enhances the user experience. While retractable mechanisms, such as retractable materials or retractable cable reels, may lead to decreased reliability after prolonged use, the detachable first and second cable holders of this application ensure the user's ease of replacing the vulnerable second cable holder. That is, even if damage occurs, the user can replace the second cable holder themselves without relying on after-sales service personnel. In other words, the detachable second cable holder of this application can work in conjunction with its retractable structure to compensate for the reliability reduction caused by retractability.
[0057] The assembly relationship between the first and second cable retainers is illustrated in more detail below. Please refer to the diagram. Figure 5 This diagram illustrates the assembly relationship between the first cable retainer and the second cable retainer in some embodiments of this application. Figure 5 As shown, when a user needs to assemble the first cable holder 201 and the second cable holder 401, they only need to insert the second cable holder 401 into the first cable holder 201 in the direction of arrow A. Furthermore, in an optional embodiment, the bottom width of the second portion of the second cable holder 401 gradually narrows from top to bottom, thereby providing a guiding effect during insertion. This allows the second cable holder 401 and the first cable holder 201 to be easily connected even if the user's viewing angle is not directly facing the slot direction of the first cable holder 201. Therefore, even non-professionals (e.g., non-professional after-sales personnel) can perform self-installation or component replacement. Further, refer to... Figure 5When the user needs to disassemble or replace the second cable retainer 401, they only need to push the second cable retainer 401 along direction B to disengage it from the first cable retainer 201. In some use cases, such as when the second cable retainer 401 is damaged, the user can replace it themselves without waiting for maintenance personnel. Thus, the embodiments of this application provide a user-replaceable unit (CRU) type cable retention assembly. Unless otherwise stated, any of the embodiments described above can be freely combined.
[0058] Furthermore, in some embodiments, this application also provides a medical system. This medical system may include the cable holding assembly described in any of the embodiments above. It will be understood that the medical system can be any one or more of a variety of types in the art. For example, it may include the system described in this application. Figure 1 The described ultrasound imaging system may also include a patient monitor, electroencephalogram (EEG) machine, or electrocardiograph (ECG) machine, and accordingly, a cable holding assembly can be used to hold the cables, such as lead or sensor cables, included in the patient monitor, EEG machine, or ECG machine. As another example, the medical system may also include anesthesia machines or ventilators, and accordingly, a cable holding assembly can be used for the cables of the anesthesia machine or ventilator, or the tubing providing gas support, etc. Further examples are not provided.
[0059] The following is through Figure 6 An example is provided. Figure 6 A schematic diagram of a medical system 600 according to some embodiments of this application is shown. The medical system 600 may include an operation panel 601. Additional attachment devices can be provided on the operation panel 601 for human-computer interaction or other functions. For example, the operation panel 601 may include a user interface such as a touchscreen or keyboard for user input.
[0060] In some embodiments, the medical system 600 may include a cable retention assembly 602. The cable retention assembly 602 can be connected to the bottom surface of the operation panel 601. Therefore, the mounting position of the cable retention assembly 602 does not significantly affect the mounting positions of other devices on the operation panel 601 for the medical system 600. Especially for compact medical imaging devices, this connection method can save space as much as possible.
[0061] The specific construction of the cable retaining assembly 602 can be referred to any of the embodiments described above in this application. For example, as Figure 6As shown, the cable holding assembly 602 may include a first cable holder 611 and a second cable holder 612. The first cable holder 611 is fixedly connected to the bottom surface of the operation panel 601 (e.g., by screws). The second cable holder 612 is detachably connected to the first cable holder 611. In a preferred example, the first cable holder 611 is configured as a hook-type structure, and the second cable holder 612 is configured as a retractable clamp-type retainer structure. This provides users with more personalized options.
[0062] It should be noted that the above is an exemplary description of the cable holding assembly 602. The specific structure of the cable holding assembly 602, including the construction of the first cable holder 611 and the second cable holder 612, can be referred to the description in any of the embodiments of this application above, and will not be repeated here.
[0063] In one example, the medical system 600 may be an ultrasound imaging system. Further, the ultrasound imaging system may also include probes (not shown in the figure). Typically, an ultrasound imaging system includes multiple probes to meet the needs of medical scenarios. Accordingly, the multiple probes include cables 603. In embodiments of this application, the cables 603 can be held by a cable holding assembly 602. Furthermore, in a preferred embodiment, the user can assign appropriate cable holder types based on the user's usage habits and application scenarios for different cables and corresponding probes, such as assigning a first cable holder or a second cable holder, thereby improving user convenience.
[0064] Some exemplary embodiments have been described above; however, it should be understood that various modifications can be made. For example, suitable results may be achieved if the described techniques are performed in a different order and / or if components in the described apparatus, architecture, device, or circuit are combined in a different manner and / or replaced or supplemented by other components or their equivalents. Accordingly, other embodiments also fall within the scope of the claims.
Claims
1. A cable holding assembly for use in a medical system, characterized in that, The cable retaining assembly includes a first cable retainer, the first cable retainer comprising: Fixing part, the fixing part being connected to the medical system; A bending portion, connected to the fixing portion, the bending portion being bent to form a hook, the hook including opposing inner and outer surfaces, wherein the inner surface is used to hold the cable; and An attachment portion is disposed on the outer surface of the hook, the attachment portion being used for detachably connecting a second cable retainer.
2. The cable holding assembly as claimed in claim 1, characterized in that: The attachment portion includes a slot extending from top to bottom along the main body direction of the bent portion. The internal dimension of the slot is larger than the external dimension of the slot. The top of the slot includes a notch, and the bottom of the slot is closed.
3. The cable holding assembly as described in claim 2, characterized in that: The top of the slot forms a sloping structure from top to bottom.
4. The cable holding assembly as claimed in claim 2, characterized in that: The top of the slot and the fixing part include a gap that allows the second cable retainer to be inserted into or removed from the top.
5. The cable holding assembly as claimed in claim 1, characterized in that, The cable holding assembly further includes a second cable holder, the second cable holder comprising: A retaining part, the retaining part being used to retain the cable; and The connecting part and the retaining part are fixedly connected, and the connecting part and the attachment part of the first cable retainer are detachably connected.
6. The cable holding assembly as claimed in claim 5, characterized in that: The retaining part includes a clamping part, which can hold the cable in a clamping manner to prevent the cable from falling off.
7. The cable holding assembly as claimed in claim 5, characterized in that: The retaining part and the connecting part are retractably connected.
8. The cable holding assembly as claimed in claim 7, characterized in that, The second cable retainer also includes: The retractable part is connected to the retaining part and the connecting part; the retractable part includes a retractable material or a retractable winding device.
9. The cable holding assembly as claimed in claim 5, characterized in that: The attachment portion includes a slot extending from top to bottom along the main body direction of the bent portion. The internal dimension of the slot is larger than the external dimension of the slot. The top of the slot includes a notch, and the bottom of the slot is closed. The connecting part includes a first part and a second part connected sequentially from the inside out. The size of the first part is smaller than the outer size of the slot, and the size of the second part is larger than the outer size of the slot but smaller than the inner size of the slot, so that the connecting part can enter the slot from the notch at the top of the slot and engage.
10. The cable holding assembly as claimed in claim 9, characterized in that: The bottom width of the second part gradually decreases from top to bottom.
11. A medical system, characterized in that, The medical system includes a cable retention assembly as described in any one of claims 1-10.
12. The medical system as described in claim 11, characterized in that, The medical system includes an operation panel, and the cable retainer assembly is connected to the bottom surface of the operation panel.
13. The medical system as described in claim 12, characterized in that, The medical system includes an ultrasound imaging system, the ultrasound imaging system includes a probe, and the probe includes the cable.