CN215078827U - Ultrasonic probe storage device and ultrasonic system - Google Patents

Ultrasonic probe storage device and ultrasonic system Download PDF

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Publication number
CN215078827U
CN215078827U CN202120005886.4U CN202120005886U CN215078827U CN 215078827 U CN215078827 U CN 215078827U CN 202120005886 U CN202120005886 U CN 202120005886U CN 215078827 U CN215078827 U CN 215078827U
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China
Prior art keywords
cavity
ultrasound probe
ultrasonic probe
probe
electrical signal
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CN202120005886.4U
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Chinese (zh)
Inventor
刘霞
白乐云
朱建光
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Shenzhen Mindray Bio Medical Electronics Co Ltd
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Shenzhen Mindray Bio Medical Electronics Co Ltd
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  • Apparatus For Disinfection Or Sterilisation (AREA)

Abstract

An ultrasonic probe storage device and an ultrasonic system are provided, wherein the storage device comprises a box body and an ultraviolet disinfection component. The box body is provided with at least one containing cavity for containing the ultrasonic probe. The ultraviolet ray disinfection subassembly is installed in the box body to set up around accomodating the chamber, be used for disinfecting to being located the ultrasonic probe who accomodates the intracavity. This ultrasonic probe storage device can use the clearance or use the back at ultrasonic probe and accomodate ultrasonic probe to carrying out ultraviolet ray disinfection and sterilization to ultrasonic probe during accomodating, make full use of ultrasonic probe working gap time is disinfected, need not to set up the disinfection instrument in addition, also need not to take time in addition to disinfect, more convenience of customers is to the use of probe.

Description

Ultrasonic probe storage device and ultrasonic system
Technical Field
The application relates to an ultrasonic system, concretely relates to ultrasonic probe storage device.
Background
An ultrasonic imaging apparatus is an apparatus for performing detection and imaging using ultrasonic waves, and is widely used in the fields of medical diagnosis, research, and the like. The ultrasonic probe is an important component of ultrasonic equipment, and is a structure for realizing the conversion of electric energy and sound energy by utilizing the piezoelectric effect of materials. Doctors need to disinfect the wireless probe in the process of using the probe, the traditional disinfection method uses alcohol or disinfectant to wipe, if special ultraviolet disinfection tools are needed for ultraviolet disinfection, the operation is not convenient, and extra time is needed for disinfection.
SUMMERY OF THE UTILITY MODEL
The application provides an ultrasonic probe storage device and ultrasonic system to show a new structure of disinfecting to the probe.
In view of the above, an embodiment of the present application provides an ultrasound probe containing device, including:
the ultrasonic probe box comprises a box body, wherein at least one accommodating cavity for accommodating an ultrasonic probe is arranged in the box body;
the ultraviolet disinfection component is arranged in the box body, surrounds the containing cavity and is used for disinfecting the ultrasonic probe in the containing cavity;
and the control unit is in signal connection with the ultraviolet disinfection component and is used for controlling the work of the ultraviolet disinfection component.
In one embodiment, the accommodating cavity at least has a sound head accommodating part for accommodating the sound head of the ultrasonic probe, and the ultraviolet disinfection component is arranged in the sound head accommodating part.
In one embodiment, the accommodating cavity further has a handle accommodating portion for accommodating a handle of the ultrasonic probe, and the handle accommodating portion is communicated with the sound head accommodating portion.
In one embodiment, the box body comprises a base and a cover, the base is provided with a first cavity, the cover is connected with the base and covers the first cavity to enclose the first cavity to form the containing cavity.
In one embodiment, the cover body is provided with a second cavity for accommodating the sound head of the ultrasonic probe, the second cavity is communicated with the first cavity, and the sound head accommodating part is positioned in the second cavity so as to sterilize the sound head.
In one embodiment, the base has an outer shell and an inner seat, the inner seat is installed in the outer shell, an installation cavity is arranged between the outer shell and the inner seat, and the control unit is arranged in the installation cavity.
In one embodiment, the case has a docking structure for connecting with a support device to mount the ultrasound probe containment device to the support device.
In one embodiment, the butt joint structure comprises at least one of a buckle structure, a magnetic attraction structure, a hook structure, a threaded connection structure, an assembly hole structure, a detachable bonding structure and a shaft hole tight fit structure.
In one embodiment, the portable electronic device further comprises an electric signal docking assembly, the electric signal docking assembly is arranged on the box body and used for being in wired or wireless connection with the supporting device, and the electric signal docking assembly is electrically connected with the control unit.
In one embodiment, the electrical signal docking assembly includes a plug or receptacle for mating with the support device.
In view of the above, in one embodiment, the present application provides an ultrasound system, which includes a supporting device and the ultrasound probe containing device of any one of the above, wherein the ultrasound probe containing device is mounted on the supporting device.
In one embodiment, the supporting device has a second electrical signal docking assembly, and the supporting device is electrically connected with the control unit of the ultrasound probe accommodating device through the second electrical signal docking assembly.
According to the ultrasonic probe containing device of the embodiment, the containing device comprises a box body and an ultraviolet disinfection component. The box body is provided with at least one containing cavity for containing the ultrasonic probe. The ultraviolet ray disinfection subassembly is installed in the box body to set up around accomodating the chamber, be used for disinfecting to being located the ultrasonic probe who accomodates the intracavity. This ultrasonic probe storage device can use the clearance or use the back at ultrasonic probe and accomodate ultrasonic probe to carrying out ultraviolet ray disinfection and sterilization to ultrasonic probe during accomodating, make full use of ultrasonic probe working gap time is disinfected, need not to set up the disinfection instrument in addition, also need not to take time in addition to disinfect, more convenience of customers is to the use of probe.
Drawings
Fig. 1 is a longitudinal sectional view of an ultrasound probe containing apparatus according to an embodiment of the present disclosure after being loaded into an ultrasound probe;
FIGS. 2 and 3 are schematic views of an ultrasound system from different perspectives in an embodiment of the present application;
fig. 4 is a partially enlarged view of an ultrasound probe containing device of an ultrasound system in an embodiment of the present application.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings. Wherein like elements in different embodiments are numbered with like associated elements. In the following description, numerous details are set forth in order to provide a better understanding of the present application. However, those skilled in the art will readily recognize that some of the features may be omitted or replaced with other elements, materials, methods in different instances. In some instances, certain operations related to the present application have not been shown or described in detail in order to avoid obscuring the core of the present application from excessive description, and it is not necessary for those skilled in the art to describe these operations in detail, so that they may be fully understood from the description in the specification and the general knowledge in the art.
Furthermore, the features, operations, or characteristics described in the specification may be combined in any suitable manner to form various embodiments. Also, the various steps or actions in the method descriptions may be transposed or transposed in order, as will be apparent to one of ordinary skill in the art. Thus, the various sequences in the specification and drawings are for the purpose of describing certain embodiments only and are not intended to imply a required sequence unless otherwise indicated where such sequence must be followed.
The numbering of the components as such, e.g., "first", "second", etc., is used herein only to distinguish the objects as described, and does not have any sequential or technical meaning. The term "connected" and "coupled" when used in this application, unless otherwise indicated, includes both direct and indirect connections (couplings).
The application provides an ultrasonic probe storage device and ultrasonic system can be applicable to the people, also can be applicable to various animals.
The present embodiment shows an ultrasound probe storage apparatus (hereinafter, simply referred to as a storage apparatus) capable of storing an ultrasound probe in a use gap of the ultrasound probe or after use. For example, the ultrasonic probe accommodating device can be an ultrasonic probe accommodating cup sleeve installed on an ultrasonic system supporting device, and the ultrasonic probe can be accommodated and stored in the accommodating cup sleeve in the working process of an ultrasonic system and after the working is finished. The ultrasonic probe storage device can also be a portable ultrasonic probe storage device (such as a portable ultrasonic probe storage box), and the portable ultrasonic probe storage device can be used independently, and can also be carried to move and transport together when the ultrasonic probe is stored. The ultrasonic probe can be a wireless ultrasonic probe or a wired ultrasonic probe.
Referring to fig. 1, in one embodiment, the receiving device 200 includes a box 210, an ultraviolet sterilizing component 220 and a control unit 230. At least one containing cavity 211 for containing the ultrasonic probe 300 is arranged in the box body 210, and the containing cavity 211 can be of a closed structure or a non-closed structure. The ultraviolet sterilization assembly 220 is installed in the case 210 and disposed around the receiving cavity 211 for sterilizing the ultrasonic probe 300 located in the receiving cavity 211. The uv disinfection assembly 220 may include a uv lamp and associated circuitry. The control unit 230 is in signal connection with the uv disinfection module 220 for controlling the operation of the uv disinfection module 220, such as controlling the uv disinfection module 220 to be turned on and off. The control unit 230 is a control circuit board, which may be mounted in the cassette body 210. A switch may be disposed on the box 210 to control the uv sterilizing assembly 220.
This storage device 200 can enough accomodate ultrasonic probe 300 after ultrasonic probe 300 use clearance or use up, can also carry out ultraviolet disinfection and sterilization to ultrasonic probe 300 during accomodating, and make full use of ultrasonic probe 300 working gap time is disinfected, need not to set up disinfection instrument in addition, also need not to take additional time to disinfect, and more convenience of customers saves user's time to the use of probe.
The ultrasonic probe 300 may be partially or entirely housed in the housing 211, for example, a portion of the ultrasonic probe 300 that mainly needs sterilization is placed in the housing 211 to sterilize the portion. The ultrasound probe 300 generally has a sound head 310 for transmitting and receiving ultrasound signals and a handle 320 for gripping by a user. The sound head 310 is a part that is frequently contacted with a patient, and the requirement for disinfection and sterilization is higher, in an embodiment, referring to fig. 1, the receiving cavity 211 at least has a sound head receiving portion for receiving the sound head 310 of the ultrasonic probe 300, and an ultraviolet disinfection component 220 is arranged in the sound head receiving portion to realize disinfection of the sound head 310.
With continued reference to fig. 1, in one embodiment, the receiving cavity 211 further has a handle receiving portion for receiving the handle 320 of the ultrasonic probe 300, and the handle receiving portion is communicated with the sound head receiving portion. The receiving cavity 211 can receive the entire ultrasonic probe 300. The ultraviolet disinfection component 220 can be arranged in the handle accommodating part, so that the handle 320 of the ultrasonic probe 300 is disinfected, and the use safety of a user is improved.
Of course, in some embodiments, the receiving cavity 211 may not have a handle receiving portion, for example, the ultrasonic probe 300 is placed in the receiving cavity 211 with the sound head 310 facing downward.
Referring to fig. 1 and 4, in a more specific embodiment, the case 210 includes a base 212 and a cover 213. The base 212 has a first cavity 2112, and the cover 213 has a second cavity 2111 that receives the applicator 310 of the ultrasonic probe 300. The cover 213 is connected to the base 212, and the second cavity 2111 communicates with the first cavity 2112 to form the receiving chamber 211.
Wherein the sound head receiving portion is located in the second cavity 2111, the cover 213 covers the sound head 310, and the ultraviolet disinfection component 220 is disposed in the second cavity 2111 to disinfect the sound head 310.
In other embodiments, cover 213 may not have second cavity 2111, and receiving cavity 211 is formed primarily by first cavity 2112 in base 212. The cover 213 covers the first cavity 2112 to enclose the first cavity 2112 to form the receiving chamber 211. At this time, the handle receiving portion and the head receiving portion are both located on the base 212.
Further, referring to fig. 1, in one embodiment, the base 212 has a housing 2121 and an inner mount 2122, and the inner mount 2122 is mounted in the housing 2121. For simplicity of the entire base 212, a mounting cavity 2123 is formed between the housing 2121 and the inner seat 2122, and the control unit 230 is disposed in the mounting cavity 2123. The control unit 230 is connected to the UV sterilization assembly 220 via a cable 231, and the cable 231 is routed from the inside of the base 212 to prevent the cable 231 from being exposed.
In another aspect, referring to FIGS. 2-4, an embodiment provides an ultrasound system, particularly for use in the medical field. The ultrasound system includes a support device 100 and a containment device 200. The supporting device 100 is used for supporting the receiving device 200. The supporting device 100 may be a main body of an ultrasound system, and the receiving device 200 is directly mounted on the main body. The supporting device 100 may also be a trolley in an ultrasound system, on which both the main unit of the ultrasound apparatus and the receiving device 200 may be mounted.
Generally, the probe cup on the cart or the main machine has only a simple probe storage function, and is used for placing the ultrasonic probe 300 when the ultrasonic probe 300 is in a non-operating state. The embodiment skillfully utilizes the intermittent time of the front and back work of the ultrasonic probe 300, designs the containing device 200 to have the sterilization function, and improves the safety of the use of the probe.
Further, referring to fig. 2-4, the receiving device 200 may be non-detachably fixed to the supporting device 100. However, the receiving device 200 and the supporting device 100 are usually detachably connected for easy assembly and disassembly.
Further, in one embodiment, the receiving device 200 is detachably connected to the supporting device 100. Specifically, in one embodiment, the butt joint structure includes but is not limited to at least one of a buckle structure (buckle fixation), a magnetic attraction structure (magnetic member is fixed by adsorption), a hook structure (hook or a structure that can be hooked by the hook), a threaded connection structure (bolt connection fixation), an assembly hole structure (threaded hole, fixed hole, etc.), a detachable bonding structure (magic tape bonding fixation, etc.), and a shaft hole tight-fitting structure (assembly shaft or shaft butt joint hole, etc.).
For example, in an embodiment, the abutting structure includes two groove-type fasteners, and the supporting device 100 is provided with a protruding hook portion, which can extend into the corresponding groove-type fastener, so as to realize detachable fixation through the hook structure.
On the other hand, in some embodiments, the receiving device 200 itself may be provided with a power supply, such as a replaceable battery or a rechargeable battery. In other embodiments, the receiving device 200 may also include an electrical signal docking assembly, which is disposed on the box 210 and electrically connected to the supporting device 100 of the ultrasound system in a wired or wireless manner, and the electrical signal docking assembly is electrically connected to the control unit 230.
Specifically, referring to fig. 1, in one embodiment, the electrical signal docking assembly includes a plug 240. The support device 100 has a second electrical signal docking assembly, such as a receptacle 110, in electrical signal connection with the electrical signal docking assembly. The plug 240 mates with the receptacle 110 of the ultrasound system.
In addition, the receiving device 200 and the supporting device 100 may also be connected by wireless means, for example, the electrical signal docking assembly and the second electrical signal docking assembly are both wireless signal receiving and transmitting modules.
Adopt during the storage device 200 that above-mentioned embodiment shows, when the doctor used the probe to scan patient, generally a patient finishes to put back storage device 200 to the probe, designs ultraviolet disinfection subassembly 220 in the probe storage device 200, disinfects to ultrasonic probe 300, and make full use of ultrasonic probe 300 operating gap time disinfects, need not to set up disinfection instrument in addition, also need not to spend time in addition and disinfect, more convenience of customers is to the use of probe.
It is right to have used specific individual example above the utility model discloses expound, only be used for helping to understand the utility model discloses, not be used for the restriction the utility model discloses. To the technical field of the utility model technical personnel, the foundation the utility model discloses an idea can also be made a plurality of simple deductions, warp or replacement.

Claims (12)

1. An ultrasound probe storage device, comprising:
the ultrasonic probe box comprises a box body, wherein at least one accommodating cavity for accommodating an ultrasonic probe is arranged in the box body;
the ultraviolet disinfection component is arranged in the box body, surrounds the containing cavity and is used for disinfecting the ultrasonic probe in the containing cavity;
and the control unit is in signal connection with the ultraviolet disinfection component and is used for controlling the work of the ultraviolet disinfection component.
2. The ultrasound probe containing device according to claim 1, wherein the containing cavity has at least a sound head containing portion for containing a sound head of the ultrasound probe, and the ultraviolet disinfection component is arranged in the sound head containing portion.
3. The ultrasound probe housing device of claim 2, wherein the housing chamber further has a handle housing portion for housing a handle of the ultrasound probe, the handle housing portion communicating with the acoustic head housing portion.
4. The ultrasound probe housing apparatus of claim 3, wherein the case comprises a base having a first cavity and a cover connected to the base and covering the first cavity to enclose the first cavity to form the housing chamber.
5. The ultrasound probe housing apparatus of claim 4, wherein the cover has a second cavity for receiving the sonotrode of the ultrasound probe, the second cavity communicating with the first cavity, the sonotrode housing being located within the second cavity for disinfecting the sonotrode.
6. The ultrasound probe containment device of claim 4, wherein the base has an outer shell and an inner seat, the inner seat being mounted in the outer shell with a mounting cavity therebetween, the control unit being disposed in the mounting cavity.
7. The ultrasound probe containment device of any of claims 1 to 6, wherein the cassette has a docking structure for connecting with a support device to mount the ultrasound probe containment device to the support device.
8. The ultrasound probe housing device of claim 7, wherein the docking structure comprises at least one of a snap-fit structure, a magnetic attraction structure, a hook structure, a threaded connection structure, a mounting hole structure, a detachable adhesive structure, and a shaft hole interference fit structure.
9. The ultrasound probe containing device according to any one of claims 1 to 6, further comprising an electrical signal docking assembly, the electrical signal docking assembly being disposed on the case body and being configured to be electrically connected to the supporting device in a wired or wireless manner, and the electrical signal docking assembly being electrically connected to the control unit.
10. The ultrasound probe containment device of claim 9, wherein the electrical signal docking assembly comprises a plug or socket for mating with the support device.
11. An ultrasound system comprising a support device and an ultrasound probe containment device of any of claims 1-10, the ultrasound probe containment device being mounted on the support device.
12. The ultrasound system of claim 11, wherein the support device has a second electrical signal docking assembly, the support device being in electrical signal connection with the control unit of the ultrasound probe containment device through the second electrical signal docking assembly.
CN202120005886.4U 2021-01-04 2021-01-04 Ultrasonic probe storage device and ultrasonic system Active CN215078827U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120005886.4U CN215078827U (en) 2021-01-04 2021-01-04 Ultrasonic probe storage device and ultrasonic system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120005886.4U CN215078827U (en) 2021-01-04 2021-01-04 Ultrasonic probe storage device and ultrasonic system

Publications (1)

Publication Number Publication Date
CN215078827U true CN215078827U (en) 2021-12-10

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120005886.4U Active CN215078827U (en) 2021-01-04 2021-01-04 Ultrasonic probe storage device and ultrasonic system

Country Status (1)

Country Link
CN (1) CN215078827U (en)

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract

Assignee: Shenzhen Mindray Animal Medical Technology Co.,Ltd.

Assignor: SHENZHEN MINDRAY BIO-MEDICAL ELECTRONICS Co.,Ltd.

Contract record no.: X2022440020009

Denomination of utility model: Ultrasound probe storage device and ultrasound system

Granted publication date: 20211210

License type: Common License

Record date: 20220804

EE01 Entry into force of recordation of patent licensing contract