WO2024093767A1 - Procédé de partage d'image microscopique et système de microscope - Google Patents

Procédé de partage d'image microscopique et système de microscope Download PDF

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Publication number
WO2024093767A1
WO2024093767A1 PCT/CN2023/126634 CN2023126634W WO2024093767A1 WO 2024093767 A1 WO2024093767 A1 WO 2024093767A1 CN 2023126634 W CN2023126634 W CN 2023126634W WO 2024093767 A1 WO2024093767 A1 WO 2024093767A1
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WIPO (PCT)
Prior art keywords
server
microscope
target image
image
information code
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PCT/CN2023/126634
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English (en)
Chinese (zh)
Inventor
焦琳淇
李民权
冯圣威
赵伟
张飞
董南江
周元平
Original Assignee
徕卡显微系统科技(苏州)有限公司
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Publication of WO2024093767A1 publication Critical patent/WO2024093767A1/fr

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B21/00Microscopes
    • G02B21/36Microscopes arranged for photographic purposes or projection purposes or digital imaging or video purposes including associated control and data processing arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/51Discovery or management thereof, e.g. service location protocol [SLP] or web services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/52Network services specially adapted for the location of the user terminal

Definitions

  • the present application relates to the field of microscopes, and in particular to a microscope image sharing method and a microscope system.
  • a microscope is a device used to capture microscopic images. Although some smart microscopes currently have integrated memory and display screens that can store and view microscopic images, the display screens on current microscopes are unable to meet the need to view high-definition pixel information of microscopic images.
  • the usual practice is to plug the microscope into a USB flash drive, then copy the files in the microscope to the USB flash drive, and then plug the USB flash drive into, for example, a computer; you can also connect the microscope to the Internet and send the files to a designated Internet folder, and then send them to a smart device via email or other third-party software.
  • Another way is to download and install a special App program on your smart device to achieve online image sharing with the microscope.
  • the object of the present invention is to provide a method and system for sharing images on a microscope on a terminal without downloading and installing an application program on the terminal.
  • a microscopic image sharing method comprising:
  • the microscope system Based on the trigger operation of confirming sharing, the microscope system sends the target image to the server connected thereto;
  • Receive and display a first information code returned by the server wherein the first information code is generated by the server according to a pre-configured address of a shared space, and the first information code is configured to trigger a browser of a terminal to jump to the shared space when the terminal reads the first information code, so as to view the target image sent by the server to the shared space.
  • the microscopic image sharing method also includes: pre-connecting the terminal to the network to which the server is currently connected.
  • the microscopic image sharing method also includes: the server generates a second information code, the second information code includes network information connected to the server, and the second information code is configured to connect a terminal to the network currently connected to the server when the terminal reads the second information code.
  • the server is connected to the network in the following manner:
  • the microscope is configured to be connected to a network card, and the network card enables the server to access the network in a wired or wireless manner.
  • the microscopic image sharing method also includes pre-connecting the server to a local area network, wherein the local area network is created by a wireless network card connected to the microscope.
  • the terminal is connected to the network currently connected to the server in the following manner: the server creates a Wi-Fi name for the local area network created by the wireless network card, and the Wi-Fi name contains the identification code of the microscope; the terminal connects to the local area network by selecting the Wi-Fi containing the identification information of the microscope in the WLAN list.
  • the microscopic image sharing method further includes viewing the target image in the shared space in the following manner:
  • the address of the pre-configured shared space is entered in the browser of the terminal.
  • the number of the pre-configured shared spaces is one or more, and the first information code generated by the server corresponds one-to-one to the shared space.
  • the microscopic image sharing method further includes:
  • the server obtains user name information for logging into the microscope system, and binds the target image to be shared with the user name information, so that the shared space simultaneously displays the target image and the corresponding user name information;
  • the microscope system generates an image sharing instruction, wherein the image sharing instruction includes the target image to be shared and the currently logged
  • the server records the user name information of the microscope system; and sends the target image and the corresponding user name information to the shared space based on the image sharing instruction.
  • the microscope is equipped with a human-computer interaction device, and the human-computer interaction device is used to view the images stored in the microscope system and select the target image therefrom and trigger the instruction of sharing the image.
  • the microscope is configured with a sharing operation key and other operation keys, and in response to selecting a target image to be shared and clicking the sharing operation key, an instruction to share the image is triggered.
  • the server within a preset time period after clicking the sharing operation key, in response to an operation of selecting a new target image on the microscope, the server directly sends the new target image to the shared space, or, in response to an operation of deselecting a target image on the microscope, the server directly deletes the deselected target image from the shared space.
  • a microscopic image sharing method comprising:
  • the server receives an image sharing instruction triggered by an operation on the microscope, wherein the image sharing instruction includes a target image to be shared selected on the microscope;
  • the target image is sent to a preconfigured shared space, and a first information code is generated according to the address of the shared space.
  • the first information code is configured to trigger a browser of a terminal to jump to the shared space when the terminal reads the first information code to view the target image.
  • the microscopic image sharing method also includes: pre-connecting the terminal to the network to which the server is currently connected.
  • the microscopic image sharing method also includes: the server generates a second information code, the second information code includes network information connected to the server, and the second information code is configured to connect a terminal to the network currently connected to the server when the terminal reads the second information code.
  • the server is connected to the network in the following manner:
  • the microscope is configured to be connected to a network card, and the network card enables the server to access the network in a wired or wireless manner.
  • the microscopic image sharing method also includes pre-connecting the server to a local area network, wherein the local area network is composed of a wireless network card connected to the microscope. Created.
  • the terminal is connected to the network currently connected to the server in the following manner: the server creates a Wi-Fi name for the local area network created by the wireless network card, and the Wi-Fi name contains the identification code of the microscope; the terminal connects to the local area network by selecting the Wi-Fi containing the identification information of the microscope in the WLAN list.
  • the microscopic image sharing method further includes viewing the target image in the shared space in the following manner:
  • the address of the pre-configured shared space is entered in the browser of the terminal.
  • the number of the pre-configured shared spaces is one or more, and the first information code generated by the server corresponds one-to-one to the shared space.
  • the microscopic image sharing method further includes:
  • the server obtains user name information for logging into the microscope system, and binds the target image to be shared with the user name information, so that the shared space simultaneously displays the target image and the corresponding user name information;
  • the microscope system generates an image sharing instruction, which includes the target image to be shared and the user name information of the current login microscope system; the server sends the target image and the corresponding user name information to the shared space based on the image sharing instruction.
  • the microscope is equipped with a human-computer interaction device, and the human-computer interaction device is used to view the images stored in the microscope system and select the target image therefrom and trigger the instruction of sharing the image.
  • the microscope is configured with a sharing operation key and other operation keys, and in response to selecting a target image to be shared and clicking the sharing operation key, an instruction to share the image is triggered.
  • the server within a preset time period after clicking the sharing operation key, in response to an operation of selecting a new target image on the microscope, the server directly sends the new target image to the shared space, or, in response to an operation of deselecting a target image on the microscope, the server directly deletes the deselected target image from the shared space.
  • a microscope system comprising a microscope and a server, wherein the server is configured to receive an image sharing instruction triggered by an operation on the microscope, wherein the image sharing instruction includes a target image to be shared selected on the microscope; and send the target image in the image sharing instruction to a pre-configured sharing server.
  • a space is created, and a first information code is generated according to the address of the shared space, wherein the first information code is configured to trigger a browser of the terminal to jump to the shared space when a terminal reads the first information code, so as to view the target image.
  • the server and the microscope are integrated or separated.
  • a server configured to be connected to a microscope and configured to perform the following operations:
  • the image sharing instruction includes a target image to be shared selected on the microscope
  • a first information code is generated according to the address of the shared space, wherein the first information code is configured to trigger a browser of a terminal to jump to the shared space to view the target image when the terminal reads the first information code.
  • the server is also configured to set one or more download controls in the shared space for downloading the corresponding target image.
  • a microscope having an interface connected to a server, the microscope being provided with a first operation key for selecting a target image to be shared and a second operation key for confirming sharing of the target image;
  • the microscope is configured to send the target image to a server connected to it based on a trigger operation of the second operation key, and to receive and display a first information code returned by the server, wherein the first information code is generated by the server according to a pre-configured address of a shared space, and the first information code is configured to trigger a browser of a terminal to jump to the shared space when the terminal reads the first information code, so as to view the target image sent by the server to the shared space.
  • the microscope is configured with an interface for inserting a wireless network card or a built-in network card;
  • the server is configured to access the local area network created by the wireless network card or the network connected by the built-in network card through a wired or wireless connection, and generate a second information code, the second information code includes the network information accessed by the server, and the second information code is configured to connect the terminal to the network currently connected to the server when the terminal reads the second information code;
  • the microscope is equipped with a human-machine interaction device, which includes a display screen for viewing images stored in the microscope system and a first operation key for selecting a target image therefrom.
  • a computer program product storing executable program code.
  • the program code is executed on a processor, the microscopic image sharing method described above is executed.
  • the terminal can share microscopic images by scanning the code using the built-in camera or browser scanning function;
  • the smart terminal can automatically connect to the network and enter the shared service address by scanning the code, which is easy to operate. It can also connect to the network and manually enter the shared service address, which is highly flexible and suitable for a variety of application scenarios.
  • FIG1 is a system block diagram of microscopic image sharing provided by an exemplary embodiment of the present invention.
  • FIG2 is a basic flow chart of a microscopic image sharing method provided by an exemplary embodiment of the present invention.
  • FIG3 is a flow chart of a method for sharing microscopic images by scanning a code provided by a specific embodiment of the present invention
  • FIG. 4 is a schematic diagram of a system 100 for executing the microscopic image sharing method described in an embodiment of the present invention.
  • a microscope system is provided, as shown in FIG. 1 and FIG. 4 , wherein the system 100 includes a microscope 110 and a computer system 120, and the server executes instructions in the computer system 120, and the server is configured to receive an image sharing instruction triggered by an operation on the microscope 110, wherein the image sharing instruction includes a target image to be shared selected on the microscope 110; and send the target image in the image sharing instruction to a pre-configured shared space 122; the server generates a first information code according to the address of the shared space 122, and the first information code (code 1 in FIG. 1 ) is configured to trigger a browser of the terminal 140 to jump to the shared space 122 when the terminal 140 reads the first information code code 1, so as to view the target image.
  • the shared space 122 in this embodiment is actually the address of a service pre-configured by the server.
  • the method for sharing microscopic images includes the process shown in FIG2 :
  • Step 1 storing a microscopic image on a microscope.
  • the microscopic image may be captured and stored by a camera of the microscope, or may be copied to the microscope via a removable storage medium.
  • Step 2 Open the folder storing images on the microscope, browse each image, and select the target image to be shared by the first operation key, for example, click on the preset check box corresponding to each image, or operate the image by single-clicking, double-clicking or long-pressing to complete the selection, and in this embodiment, only one target image can be selected for sharing at a time, or multiple target images can be selected for sharing at a time.
  • This operation is completed with the help of the human-computer interaction device on the microscope, and the purpose is to determine the target image to be shared to the microscope.
  • Step 3 Confirm sharing through the second operation key on the microscope.
  • the human-computer interaction device can be, but is not limited to, a touch screen.
  • a second operation key for confirming sharing is provided on the touch screen.
  • the microscope When the key is clicked, the microscope generates an image sharing instruction and sends the image sharing instruction to the server.
  • the image sharing instruction includes the target image selected in step 2. That is, the microscope sends the target image to be shared to the server, and the image sharing instruction tells the server to share the target image in the instruction.
  • the human-computer interaction device can also be a combination of input devices such as a mouse and a keyboard and output devices such as a display screen.
  • the user needs to first click to select an image, and then click a button to confirm sharing, and the server will then send the selected image to the shared space 122 .
  • the server within a preset time (e.g., 30 seconds) after clicking the sharing operation button, if a new target image is selected on the microscope, the server directly sends the newly selected target image to the shared space 122.
  • “directly” means that there is no need to select a new target image and then press the button to confirm sharing again.
  • a preset time e.g., 30 seconds
  • the server directly deletes the canceled target image from the shared space, and the canceled image will no longer be displayed in the shared space 122.
  • Step 4 Based on the fact that the server and the microscope are currently connected to the same network, the server may receive the image sharing instruction.
  • the server can be connected to the same network as the microscope in a number of ways, such as:
  • Method 1 The microscope is connected to a network card 130, for example, a wireless network card (WiFi Dongle) is inserted into the network card interface of the microscope, and WiFi can be automatically created through the AP mode of the WiFi Dongle, so that the microscope is automatically connected to the local area network created by the WiFi Dongle.
  • WiFi Dongle a wireless network card
  • the server and the microscope are integrated, the server will also automatically connect to the local area network created by the WiFi Dongle after the WiFi Dongle is plugged in; if the server and the microscope are separate structures, it is manually connected to the microscope to further connect to the local area network created by the WiFi Dongle plugged into the microscope.
  • the server and the microscope can be connected to the same network in advance, for example, the server can be connected to the LAN immediately after the wireless network card is inserted into the microscope, or the wireless network card can create the LAN when the button to confirm sharing is clicked in step 3.
  • Mode 2 The microscope and the server are connected to a network assigned by a router. Specifically, the microscope is connected to the router via a network card 130, and the router assigns a network to the network card 130 even if the microscope is connected to the network assigned by the router. If the server and the microscope are integrated, when the microscope is connected to the network, the server can also be connected to the same network assigned by the router via wired or wireless means.
  • Step 5 The server sends the target image in the instruction to a pre-configured shared space 122 (i.e., the address of the service), and generates a first information code (i.e., code 1) according to the address of the shared space 122, wherein the information code includes the address information of the service.
  • the server sends the generated first information code to the microscope so that the display screen of the microscope or an external display screen can display the information code of code 1.
  • the present invention is not limited to saving and displaying the first information code in other ways, such as sending it to a printer for printing, or sending a multimedia message with an attachment or a text message with a link to a designated terminal.
  • Step 6 Under the premise that a terminal 140 is connected to the network where the server is currently located, the terminal can trigger the browser of the terminal 140 to jump to the location of the shared space 122 by scanning the first information code to view the shared target image.
  • the terminal 140 does not need to download a special client to view the shared target image. Specifically, the terminal 140 can directly open the camera and stay on the shooting interface for a sufficient time. If the camera of the terminal 140 does not have a scanning and recognition function, it can also use a common client, such as WeChat, Alipay or the scanning function of the browser, to identify the address of the service in the first information code, and then directly trigger the browser of the terminal 140 to jump to this address, or an interface requiring user confirmation appears, such as displaying "Do you want to jump to the address of the image sharing service?" If the user confirms yes, the browser of the terminal 140 is triggered to jump to this address. Then, on the web page of the address to which the browser jumps, the user can view the target image sent by the server to the service address.
  • a common client such as WeChat, Alipay or the scanning function of the browser
  • the present invention does not require the user to scan code 1 on the microscope display, and does not even require the user to be next to the microscope.
  • the first information code may be shared to the user terminal through other users, or even the first information code may be photographed and saved in a local album, and when there is a need to view the shared image, the first information code saved on the terminal may be identified.
  • the terminal 140 also has different ways of accessing the network currently accessed by the server:
  • Method I See Figure 3, which is a flowchart of realizing image sharing by scanning code.
  • the server generates a second information code, namely code 2 in Figure 1.
  • the second information code includes the network information connected to the server. Similar to code 1, the server can send the generated code 2 to the microscope and display the second information code using a display screen integrated in the microscope or a display screen external to the microscope.
  • the information code is not limited to the form of a QR code.
  • code 1 and code 2 can be displayed on the display screen at the same time, and operating instructions can be noted to guide the user to scan the two information codes in the correct order to view the shared target image.
  • the terminal 140 first reads the second information code to automatically access the network to which the server is currently connected, and then reads the first information code to automatically jump to the service address of the shared space to view the target image uploaded to the address.
  • Method II Corresponding to Method 1 and Method 2 in which the server accesses the same network as the microscope, the terminal opens the settings, finds the WiFi module, and selects the name of the network to which the server is connected in the WLAN list.
  • the server is connected to the TP-LINK_001 network, and the terminal also selects TP_LINK_001 in the WLAN list; for example, in Method 1, the server is connected to the LAN created by the wireless network card AP mode, and the server creates a Wi-Fi name for the LAN created by the wireless network card, and the Wi-Fi name contains the identification code of the microscope.
  • the WLAN list is searched for the Wi-Fi containing the identification code of the microscope to connect to the LAN.
  • the present invention does not limit the terminal 140 to viewing the target image of the shared space in a manner of reading the first information code.
  • the address of the pre-configured shared space may be manually input in the browser of the terminal 140 .
  • the first information code generated by the server corresponds to the shared space one by one.
  • the user needs to select the target address from multiple service addresses before or after clicking the button to confirm sharing, so that personalized shared images can be realized. For example, the user needs to share images 1/3/5 with A and images 2/4/6 with B. Then, the user can select images 1/3/5 and the first service address to confirm sharing, and the server returns code 1-1; and select images 2/4/6 and the second service address to confirm sharing, and the server returns code 1-2; then the user shares code 1-1 with A and code 1-2 with B. After logging into the microscope, the user can edit, modify, add, delete, and other operations on the service address.
  • the user name information entered by the user when logging into the microscope can be obtained by the server, and then When the server shares the target image, the shared user can see the image and the information of the sharer (i.e. the user name of the microscope).
  • the specific method includes but is not limited to: the server queries the microscope for the user name of the currently logged-in user, or the image sharing instruction generated by the microscope system includes not only the target image but also the user name information of the currently logged-in microscope system; after the server obtains the user name information, the target image to be shared can be bound to the user name information, so that the shared space can display the target image and the corresponding user name information at the same time, and the display form can be to add watermark information to the image, or to display words such as "The following image is shared by Cris:" in an area independent of the image in the shared space.
  • the server can also set a download control in the shared space for downloading the corresponding target image.
  • the download control When the user clicks the download control, the corresponding target image can be downloaded to the local system album of the terminal.
  • One-click download can also be set, and the user can download multiple target images at the same time.
  • Yet another embodiment of the present invention provides a computer program product storing executable program codes.
  • the program codes are executed on a processor, the microscopic image sharing method as described above and shown in FIG. 2 is executed.
  • FIG. 4 shows a schematic diagram of a system 100 configured to perform the method described herein.
  • System 100 includes a microscope 110 and a computer system 120.
  • Microscope 110 is configured to capture images and is connected to computer system 120.
  • Computer system 120 is configured to perform at least a portion of the method described herein.
  • Computer system 120 can be configured to execute a machine learning algorithm.
  • Computer system 120 and microscope 110 can be separate entities, but can also be integrated into a common housing.
  • Computer system 120 can be part of a central processing system of microscope 110 and/or, computer system 120 can be part of a subcomponent of microscope 110, such as a sensor, actuator, camera, or lighting unit of microscope 110.
  • the computer system 120 may be a local computer device (e.g., a personal computer, laptop, tablet computer, or mobile phone) having one or more processors and one or more storage devices, or may be a distributed computer system (e.g., having one or more processors and one or more storage devices distributed at various locations, such as a local client and/or one or more remote server locations and/or data centers).
  • the computer system 120 may include any circuit or combination of circuits.
  • the computer system 120 may include one or more processors that may be of any type.
  • a processor may refer to any type of computing circuit, such as, but not limited to, a microprocessor, a microcontroller, a complex instruction set computing (CISC) microprocessor, a reduced instruction set computing (RISC) microprocessor, a very long instruction word (VLIW) microprocessor, a graphics processor, a digital signal processor (DSP), a multi-core processor, a field programmable gate array (FPGA) such as a microscope or a microscope component (e.g., a camera), or any other type of processor or processing circuit.
  • CISC complex instruction set computing
  • RISC reduced instruction set computing
  • VLIW very long instruction word
  • DSP digital signal processor
  • FPGA field programmable gate array
  • Computer system 120 may include one or more storage devices, which may include one or more storage elements suitable for a particular application, such as main memory in the form of random access memory (RAM), one or more hard disk drives, and/or one or more drives that handle removable media such as compact disks (CDs), flash memory cards, digital video disks (DVDs), etc.
  • RAM random access memory
  • CDs compact disks
  • DVDs digital video disks
  • Computer system 120 may also include a display device, one or more speakers, and a keyboard and/or controller, which may include a mouse, trackball, touch screen, voice recognition device, or any other device that allows a system user to input information to or receive information from computer system 120.
  • a display device one or more speakers
  • a keyboard and/or controller which may include a mouse, trackball, touch screen, voice recognition device, or any other device that allows a system user to input information to or receive information from computer system 120.
  • Some or all of the method steps may be performed by (or using) a hardware device (e.g., a processor, a microprocessor, a programmable computer or an electronic circuit). In some embodiments, such a device may perform one or more of the most important method steps.
  • a hardware device e.g., a processor, a microprocessor, a programmable computer or an electronic circuit.
  • such a device may perform one or more of the most important method steps.
  • embodiments of the present invention may be implemented in hardware or software.
  • This implementation may be performed using a non-transitory storage medium (such as a digital storage medium, e.g., a floppy disk, DVD, Blu-ray, CD, ROM, PROM and EPROM, EEPROM or FLASH) on which electronically readable control signals are stored, which cooperate (or can cooperate) with a programmable computer system to perform the corresponding method.
  • a non-transitory storage medium such as a digital storage medium, e.g., a floppy disk, DVD, Blu-ray, CD, ROM, PROM and EPROM, EEPROM or FLASH
  • the digital storage medium may be computer readable.
  • Some embodiments of the invention comprise a data carrier having electronically readable control signals, which are capable of cooperating with a programmable computer system, such that one of the methods described herein is performed.
  • embodiments of the present invention can be implemented as a computer program product with a program code, when the computer program product runs on a computer, the program code is executable to perform one of the methods.
  • the program code may, for example, be stored on a machine readable carrier.
  • inventions comprise the computer program for performing one of the methods described herein, stored on a machine readable carrier.
  • an exemplary embodiment of the present invention is, therefore, a computer program having a program code for performing one of the methods described herein, when the computer program runs on a computer.
  • a further embodiment of the invention is a storage medium (or a data carrier or a computer-readable medium) comprising a computer program stored thereon for performing one of the methods described in the invention when the computer program is executed by a processor.
  • the data carrier, the digital storage medium or the recorded medium is generally tangible and/or non-transitory.
  • a further embodiment of the invention is an apparatus as described in the invention, comprising a processor and a storage medium.
  • a further embodiment of the present invention is a data stream or a signal sequence representing the computer program for performing one of the methods described in the present invention.
  • the data stream or the signal sequence can be configured, for example, to be transmitted via a data communication connection, for example via the Internet.
  • a further embodiment comprises a processing means, for example a computer or a programmable logic device, configured to or adapted to perform one of the methods described herein.
  • a processing means for example a computer or a programmable logic device, configured to or adapted to perform one of the methods described herein.
  • a further embodiment comprises a computer on which is installed the computer program for performing one of the methods described herein.
  • Another embodiment of the present invention comprises an apparatus or system configured to transmit (for example, electronically or optically) a computer program for performing one of the methods described in the present invention to a receiver.
  • the receiver may be, for example, a computer, a mobile device, a storage device, etc.
  • the apparatus or system may, for example, comprise a file server for transmitting the computer program to the receiver.
  • a programmable logic device e.g., a field programmable gate array
  • the field programmable gate array can cooperate with a microprocessor to perform one of the methods described in the present invention.
  • the method is preferably performed by any hardware device.

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Abstract

La présente invention divulgue un procédé de partage d'image microscopique et un système de microscope. Le procédé de partage d'image microscopique comprend : la détermination d'une image cible à partager sur la base d'une opération de déclenchement pour sélectionner une image sur un microscope ; l'envoi de ladite image cible depuis un système de microscope vers un serveur, qui est connecté au système de microscope, sur la base d'une opération de déclenchement pour confirmer le partage ; et la réception et l'affichage d'un premier code d'informations, qui est renvoyé par le serveur, le premier code d'informations étant généré par le serveur en fonction de l'adresse d'un espace partagé préconfiguré, le premier code d'informations étant configuré pour, lorsqu'un terminal lit le premier code d'informations, ouvrir, sur le terminal, un navigateur intégré pour accéder à l'espace partagé, de façon à vérifier ladite image cible, qui est envoyée à l'espace partagé par le serveur. Dans la présente invention, une image microscopique sur un microscope peut être partagée et vérifiée sur un terminal sans avoir besoin de l'aide d'un support de stockage amovible tel qu'une clé USB, et il n'est pas nécessaire d'installer, sur le terminal, un programme d'application dédié au partage d'image, de telle sorte que l'opération est pratique.
PCT/CN2023/126634 2022-11-01 2023-10-26 Procédé de partage d'image microscopique et système de microscope WO2024093767A1 (fr)

Applications Claiming Priority (2)

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CN202211356163.4 2022-11-01
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CN115695543A (zh) * 2022-11-01 2023-02-03 徕卡显微系统科技(苏州)有限公司 一种显微图像共享方法及显微镜系统

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CN115695543A (zh) * 2022-11-01 2023-02-03 徕卡显微系统科技(苏州)有限公司 一种显微图像共享方法及显微镜系统

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CN115695543A (zh) * 2022-11-01 2023-02-03 徕卡显微系统科技(苏州)有限公司 一种显微图像共享方法及显微镜系统

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