WO2015046052A1 - 細胞観察情報処理システム、細胞観察情報処理方法、細胞観察情報処理プログラム、細胞観察情報処理システムに備わる記録部、細胞観察情報処理システムに備わる装置 - Google Patents

細胞観察情報処理システム、細胞観察情報処理方法、細胞観察情報処理プログラム、細胞観察情報処理システムに備わる記録部、細胞観察情報処理システムに備わる装置 Download PDF

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Publication number
WO2015046052A1
WO2015046052A1 PCT/JP2014/074838 JP2014074838W WO2015046052A1 WO 2015046052 A1 WO2015046052 A1 WO 2015046052A1 JP 2014074838 W JP2014074838 W JP 2014074838W WO 2015046052 A1 WO2015046052 A1 WO 2015046052A1
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WIPO (PCT)
Prior art keywords
cell
observation
information
search
processing system
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PCT/JP2014/074838
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English (en)
French (fr)
Japanese (ja)
Inventor
靖展 伊賀
洋平 谷川
真一 瀧本
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Olympus Corp
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Olympus Corp
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Priority to EP14848820.8A priority Critical patent/EP3050959A4/en
Publication of WO2015046052A1 publication Critical patent/WO2015046052A1/ja
Priority to US15/079,916 priority patent/US20160203186A1/en
Anticipated expiration legal-status Critical
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/24Querying
    • G06F16/245Query processing
    • G06F16/2455Query execution
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V20/00Scenes; Scene-specific elements
    • G06V20/60Type of objects
    • G06V20/69Microscopic objects, e.g. biological cells or cellular parts
    • G06V20/698Matching; Classification
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/40Information retrieval; Database structures therefor; File system structures therefor of multimedia data, e.g. slideshows comprising image and additional audio data
    • G06F16/43Querying
    • G06F16/432Query formulation
    • G06F16/434Query formulation using image data, e.g. images, photos, pictures taken by a user
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/50Information retrieval; Database structures therefor; File system structures therefor of still image data
    • G06F16/51Indexing; Data structures therefor; Storage structures
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/50Information retrieval; Database structures therefor; File system structures therefor of still image data
    • G06F16/58Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually
    • G06F16/5866Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually using information manually generated, e.g. tags, keywords, comments, manually generated location and time information
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H10/00ICT specially adapted for the handling or processing of patient-related medical or healthcare data
    • G16H10/40ICT specially adapted for the handling or processing of patient-related medical or healthcare data for data related to laboratory analysis, e.g. patient specimen analysis
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H30/00ICT specially adapted for the handling or processing of medical images
    • G16H30/40ICT specially adapted for the handling or processing of medical images for processing medical images, e.g. editing

Definitions

  • the present invention relates to a cell observation information processing system, a cell observation information processing method, and cell observation information for performing cell state management used in biological research using observation information of cells acquired by an observation information acquisition device such as a microscope.
  • the present invention relates to a processing program, a recording unit provided in the cell observation information processing system, and an apparatus provided in the cell observation information processing system.
  • cells used for experiments and research are separated from a living body, planted in a medium in a predetermined culture vessel, cultured and grown.
  • a cell to be cultured is called a parent strain.
  • the cells of the parent strain grow and reach a predetermined cell density and number of cells, a part of the cells in the culture vessel of the parent strain is replanted in a medium in another culture vessel, and cultured and proliferated. This is called subculture.
  • cells for experiments and research separated from the parent strain and subdivided are called child strains.
  • the user repeats subculture while maintaining growth in the cell container of the parent strain, and experiments and researches the cells of the child strain separated and subdivided from the subcultured parent strain. Used for.
  • the state of the cells can change. Changes in the state of cells include short-term changes such as contamination that are obvious at a glance, and long-term changes, for example, in units of several weeks. It is difficult to capture only from cell images acquired at a single point in time.
  • the state of the cells has been performed by the user observing the cells in the culture vessel with the naked eye through a microscope. And the change of the state of the cell was left to the memory and sense of the user. However, since it is left to the user's memory and senses, long-term changes in the state of cells cannot be accurately grasped, and the accuracy of experiments and research cannot be increased. In order to accurately grasp long-term changes in the state of cells, it is necessary to make database observation information at each time point so that it can be searched.
  • Patent Document 1 an image processing apparatus that holds an image database capable of storing and retrieving observation data has been proposed in the following Patent Document 1, for example.
  • the apparatus described in Patent Document 1 gives information such as shooting conditions and shooting date and time regarding acquisition conditions when an observation image is captured to an observation image including an image of a biological specimen, and holds the information in a predetermined relational database.
  • the information about the acquisition condition is designated as a search condition, and an image that matches the search condition can be selected and displayed.
  • Patent Document 1 merely discloses a configuration in which an image and an acquisition condition are associated with each other and stored in a database, and the database described in Patent Document 1 includes cell culture or subculture. I have no idea about using it. For this reason, when the apparatus described in Patent Document 1 is applied to the management of cells used for experiments, the past data of the cells being used (due to the specific circumstances in the field of experiments and research using cells ( The following problem exists that makes it difficult to specify the group) as search data.
  • Problem 1 Problems caused by circumstances such as different cell management methods for each user
  • problems 1 there is a custom or tendency for a user to individually manage cells to be used.
  • the apparatus described in Patent Document 1 when a plurality of users store cell observation data and search using the same database, not only the cell observation data managed by the user who is the person in charge of the experiment, but also other data The cell observation data managed by the user is also searched, and as a result, it becomes complicated or difficult to specify the desired cell observation data by self-management as the search data.
  • the apparatus described in Patent Document 1 is not a system that takes into account the special practice that the user individually manages the cells used in the experiment using the cells as described above.
  • the apparatus described in Patent Document 1 is not configured to be used by a plurality of users in the first place, and does not have a function for searching for data in units of users.
  • the apparatus described in Patent Document 1 if multiple users use the same database, even if each user wants to check only the state of cells under his / her control, he / she As a result, observation data of cells under the control of other people that need not be referred to are mixed in the search results, so that the check of the state of the cells under its control becomes complicated and takes a lot of time.
  • a cell state check is performed in the state where the cell is taken out of the incubator, such as during the passage work, if the cell state check takes time, damage to the cell is increased.
  • the device described in Patent Document 1 does not consider a search using information related to a work for cell maintenance by a user.
  • the user basically checks the cell state every few days. If you check every few days, you can see a big change in the state of the cells. Then, when it is confirmed that the cell activity has reached a predetermined cell density, cell number, etc. with respect to the state of the cells in the culture vessel, the user performs maintenance work for subculture. On the other hand, there is a need for the user to check the daily cell state during the period when the necessary activity for subculture has not been reached, using the cell activity data.
  • the observation data necessary for maintenance work for subculture that is confirmed every few days can be extracted separately from the daily observation data during the period when the subculture has not reached the required activity. This is desirable because unnecessary extraction of observation data can be eliminated and the working time can be shortened.
  • the device described in Patent Document 1 does not consider the search using information related to user work for cell maintenance by the user, wasteful observation data related to other work cannot be excluded, and work time Cannot be shortened.
  • Problem 4 Provides that there is no function that can be searched in units of devices that acquire cell observation data
  • the device described in Patent Document 1 does not have a function of searching for an observation data such as an observation image of a cell in units of devices, and assumes that the observation data of cells acquired by a plurality of devices is recorded in the first place. It is not configured.
  • an observation data such as an observation image of a cell in units of devices
  • it is necessary to check the cell state by going back to the past image.
  • the imaging environment is different for each device.
  • the imaging environment unique to each device that acquires the observation image of the cell.
  • the imaging environment such as a certain device whose lamp has reached the end of its life and the image quality has deteriorated, and that in some devices the cells have been damaged due to laser defects, is unique to each device. If the search can be performed in units of devices, it becomes easier to grasp the cause of the failure smoothly.
  • the device described in Patent Document 1 does not have a function that can be searched in units of devices that acquire observation images of cells, it is difficult to grasp the cause of failure smoothly.
  • Problem 5 Problem that cannot be searched due to changes in activity data
  • the apparatus described in Patent Document 1 cannot be searched by a change in activity data indicating cell activity such as cell density or survival rate.
  • cell activity such as cell density or survival rate.
  • reproducibility of the actual experiment it is desirable to select cells having the same activity as in the previous actual experiment.
  • the apparatus described in Patent Document 1 cannot be searched by a change in activity data, it is difficult to improve the success rate and reproducibility of the actual experiment.
  • a cell observation information processing system has been proposed to solve the above-described conventional problems and can efficiently manage the state of cells used for biological research.
  • An object of the present invention is to provide a cell observation information processing method, a cell observation information processing program, a recording unit provided in the cell observation information processing system, and an apparatus provided in the cell observation information processing system.
  • a cell observation information processing system, a cell observation information processing method, a cell observation information processing program capable of performing the state management of cells used for biological research in a short time It aims at providing the recording part with which a cell observation information processing system is equipped, and the apparatus with which a cell observation information processing system is equipped.
  • a cell observation information processing system a cell observation information processing method, a cell observation information processing program, and a cell capable of accurately performing the state management of cells used for biological research It is an object of the present invention to provide a recording unit provided in the observation information processing system and an apparatus provided in the cell observation information processing system.
  • the cell observation information processing system, the cell observation information processing method, the cell observation information processing program, and the recording provided in the cell observation information processing system can quickly grasp the cause of the failure of the experiment. It is an object of the present invention to provide a device provided in a cell observation information processing system.
  • the cell observation information processing system, the cell observation information processing method, the cell observation information processing program, and the recording provided in the cell observation information processing system can increase the success rate of the experiment. It is an object of the present invention to provide a device provided in a cell observation information processing system.
  • a cell observation information processing system provides a cell image, a cell number, a cell density, and a cell image acquired via an observation information acquisition unit in response to an acquisition instruction at one time point.
  • User identification to identify users performing cell observations as search tags for retrieving activity data indicating cell activity such as shape and viability, and observation information indicating cell observation results such as observation name Information, cell identification information for identifying a cell to be observed, date / time information for identifying the date / time when the observation information was acquired, information on work for maintenance of the cell by the user, and the observation information
  • At least one of device identification information for identifying a device used for acquisition, change information of the activity data, and an image tag for indicating the cell image is obtained.
  • the search tag acquired by the tag acquisition unit is assigned, and the search tag is assigned
  • a storage unit that stores the observation information with the search tag in the recording unit, and the user identification information, the cell identification information, and the cell by the user among the search tags attached to the observation information with the search tag
  • a search condition acquisition unit that acquires, as a search condition, information including at least one of information related to maintenance work, the device identification information, change information of the activity data, and the image tag, and the search condition
  • the recording unit is searched using the search condition acquired by the acquisition unit, and includes the search-tagged observation information to which the search tag that matches the search condition is attached.
  • the data includes an extraction unit for extracting from the recording unit.
  • the cell observation information processing method is based on cell activity, cell number, cell density, shape, viability, etc. acquired in response to an acquisition instruction at one time point.
  • Activity identification data, observation name, etc. as a search tag for searching observation information indicating cell observation results, user identification information for identifying the user performing cell observation, identifying the cell to be observed Cell identification information, date information for identifying the date and time when the observation information was acquired, information regarding work for cell maintenance by the user, and device used for acquiring the observation information
  • a tag acquisition stage for acquiring at least one of device identification information, change information of the activity data, and an image tag for indicating the cell image, and an acquisition instruction at each time point
  • the search tag acquired in the tag acquisition step is assigned to each of the observation information acquired in response, and the observation information with the search tag added with the search tag is stored in the recording unit.
  • the data including the observation information with the search tag to which the search tag that matches the search condition is attached is extracted from the recording unit. Includes a stage out, the.
  • the cell observation information processing program provides a cell image, a cell number, a cell density, a shape, a survival rate, and the like acquired in response to an acquisition instruction at one time point.
  • Activity identification data indicating the activity level, observation name, etc., as a search tag for searching observation information indicating cell observation results, user identification information for identifying a user performing cell observation, and an observation target Cell identification information for identifying a cell that is present, date information for identifying the date and time when the observation information was acquired, information regarding work for cell maintenance by the user, and apparatus used for acquiring the observation information Tag acquisition for acquiring at least one of device identification information for identifying a device, change information of the activity data, and an image tag for indicating the cell image
  • the search tag acquired by the tag acquisition means is attached to each of the observation information acquired corresponding to the acquisition instruction at each time point, and the search tag attached with the search tag Storage means for storing observation information in a recording unit, among the search tags attached to the observation information with the search tag, the
  • FIG. 2 is an explanatory diagram illustrating a configuration example of a tag designation screen for a user to specify a search tag acquired by a tag acquisition unit in the cell image information processing system of FIG. 1, wherein (a) is a configuration of a user ID input screen; The figure which shows an example, (b) is a figure which shows one structural example of the input screen of cell level information, a cell name, and a passage number. It is explanatory drawing which shows one structural example of the search condition designation
  • FIG. 3 It is a block diagram which shows an example of the process sequence in the step which searches and extracts the observation information of a desired cell from a recording part using the cell image information processing system of FIG. 3 is a flowchart showing an example of a processing procedure at a stage of searching and extracting desired cell observation information from a recording unit using the cell image information processing system of FIG. 1.
  • 3 is a graph showing examples of display modes for displaying data including observation information extracted using the cell image information processing system of FIG. 1 on a display screen. It is explanatory drawing which shows the structure of the cell image information processing system concerning one modification of FIG. It is explanatory drawing which shows the structure of the cell image information processing system concerning the other modification of FIG.
  • the cell observation information processing system is a cell image, a cell number, a cell density, a shape, a survival rate, and the like acquired through an observation information acquisition unit in response to an acquisition instruction at one time point.
  • a tag acquisition unit that acquires at least one of device identification information for identifying the device, change information of the activity data, and an image tag for indicating the cell image; To each of the observation information acquired corresponding to the acquisition instruction, the search tag acquired by the tag acquisition unit is assigned, and the observation information with the search tag to which the search tag is added is recorded The user identification information, the cell identification information, and information related to work for cell maintenance by the user, among the search tags attached to the observation information with the search tag, A search condition acquisition unit that acquires information including at least one of device identification information, change information of the activity data, and the image tag as a search condition; and the search condition acquired by
  • the cell observation information processing system of the embodiment of the present invention can acquire user identification information as a search condition. It is configured as follows.
  • the user identification information is identification information for identifying a user who performs cell observation, and more specifically, a person who inputs a cell observation result or a substitute for inputting a cell observation or cell observation result on behalf of the user. Identification information for identifying a person.
  • the recording unit is capable of recording each of the search-tagged observation information corresponding to cell observation by a plurality of users, and the search The condition acquisition unit is configured to acquire information including the user identification information as the search condition.
  • the user When configured so that user identification information can be acquired as a search condition as in the cell observation information processing system according to the embodiment of the present invention, the user can extract observation data of only cells under his / her own management and refer to it.
  • the observation data under the control of other people who are not present can be excluded from the search results.
  • the extraction efficiency is improved, and the time for checking the cell state can be shortened.
  • the damage to the cell can be reduced by reducing the time for checking the state of the cell. Rise.
  • the configuration for acquiring the user identification information as a search condition is, for example, after the user logs in to the main body of the device and before checking the cell state of the day, reconfirming the past observation data of the cells under his / her control For example, it is useful for collectively confirming observation data acquired at a plurality of different time points only for cells under its own management.
  • the cell observation information processing system of the form is configured to be able to acquire cell identification information as a search condition.
  • the cell identification information is identification information for identifying the cell to be observed, and more specifically, the cell name, cell type, parent cell indicating that the cell is to be cultured or cells subdivided from the parent cell. This is identification information including at least one of cell level information for identifying a child strain indicating that the number of cells and the number of passages of cells.
  • the cell name is an arbitrary name given to the cell used by the user for the experiment / research, and the cell type is a kind unique to the cell to be classified.
  • the recording unit is capable of recording each of the search-tagged observation information corresponding to cell observation with a plurality of cells as observation targets.
  • the search condition acquisition unit is configured to acquire information including the cell identification information as the search condition.
  • the cell name and cell level information (parent strain or child strain) ) Can be acquired as a search condition, observation data regarding cells focused on a desired cell level (parent strain or child strain) in a certain cell name can be extracted in a lump. As a result, it is possible to improve the extraction efficiency while confirming a long-term change in the cell level of either the parent strain or the child strain.
  • the cell name and cell level information (parent strain or child strain) is obtained as a search condition by distinguishing the subdivided types of cells (child strain) from the source cell (parent strain), and at the cell level of either the parent strain or the child strain. It is particularly useful for applications that confirm changes in the long-term state of cells.
  • the cell observation information processing system of the embodiment of the present invention it is possible to efficiently extract observation data particularly useful for checking a cell state by acquiring cell level information (parent strain or child strain) as a search condition. As a result, the time for checking the cell state by the user can be shortened.
  • the cell name, cell level information (parent strain or child strain) and passage number
  • the cell name, cell level information ( If it is configured so that it can be acquired as a search condition, it can be subcultured if it can be acquired as a search condition.
  • the extraction efficiency is improved while confirming changes in the long-term state of the cells by confining them to a specific cell, a specific cell level (parent or child strain), and some generations. Can be achieved.
  • the configuration that acquires cell name, cell level information (parent strain or child strain) and passage number as a search condition is the long-term change of the cell beyond the generation (passage number) in the cell undergoing subculture. It is particularly useful for applications to be confirmed.
  • the configuration for acquiring the user identification information and the cell name as a search condition is that, for example, when handling cells that are only cultured and not subcultured in a situation where a plurality of users assign and manage observation data, This is useful for confirming long-term changes in conditions.
  • “user identification information, cell name and cell level information (parent strain or child strain)”, “user identification information, cell name, cell level information (parent strain or child strain)” And “passage number”, “user identification information, cell name, cell level information (parent strain or substrain) and activity data change”, “user identification information, cell name and passage number” can also be searched as search conditions, respectively. It is.
  • the cell observation information processing system is configured to be able to acquire, as a search condition, information related to a cell maintenance work performed by a user. More specifically, the information related to the work for the maintenance of the cell by the user is identification information including at least one of the work contents, the dilution rate, the container type and the container size, and the container address storing the cells.
  • the user basically checks the cell state every several days. If you check every few days, you can see a big change in the state of the cells. Then, when it is confirmed that the cell activity has reached a predetermined cell density, cell number, etc. with respect to the state of the cells in the culture vessel, the user performs maintenance work for subculture. On the other hand, there is a need for the user to check the daily cell state during the period when the necessary activity for subculture has not been reached, using the cell activity data. In order to facilitate maintenance work for subculturing, it is desirable to be able to easily switch between confirmation work of observation data every few days and confirmation work of daily observation data.
  • the configuration is such that the content of the confirmation work by the user, which is information related to the work for maintenance of the cell by the user, can be acquired as a search condition, as in the cell observation information processing system of the embodiment of the present invention,
  • the observation data can be extracted in units of the confirmation work content, and when the extracted observation data is displayed via the display means such as a display device, only the observation data related to the confirmation work desired by the user is displayed. It is possible to eliminate the display of useless observation data regarding the confirmation work. As a result, the time for confirmation work by the user can be shortened.
  • the working effect dilution rate by the configuration searched by the dilution rate is a thinning amount when the cells cultured in the culture vessel are thinned out for passage or experiment.
  • the variation in the thinned-out dilution rate falls within a certain range.
  • the dilution rate is large and the cell density is low, generally, the probability that the cells grow well is low.
  • the dilution rate which is information related to the work for cell maintenance by the user
  • the change in the dilution rate can be obtained. It becomes easy to detect.
  • it in order to detect a change in the dilution rate, it is further configured to be able to search for a deviation amount from the average value in the dilution rate as a search condition. desirable.
  • each user In culturing action-effect cells according to a configuration that searches by container type and size , each user often varies the type and size of the culture container according to the intended use. For example, when subculture is performed, depending on the user, a flask is used for the parent strain and a dish or well is used for the child strain. However, if it is configured so that the container type and size can be acquired as a search condition as in the cell observation information processing system of the embodiment of the present invention, for example, in the above case, by searching with a flask, only the parent strain is observed. Data can be extracted, and observation data of only offspring can be extracted by searching in dishes and wells.
  • the culture vessel In the case of cell culture aimed at increasing the number of cells, it is customary to gradually change the culture vessel to a larger vessel as the culture proceeds. For example, in the initial stage of cell culture, the cells are placed in a small culture container, and when the culture progresses gradually, the cells are replaced with a larger culture container and cultured.
  • the container type and size can be acquired as search conditions as in the cell observation information processing system of the embodiment of the present invention, in the above case, by acquiring a small size, the initial stage of cell culture can be obtained.
  • the observation data of the stage can be extracted, and by acquiring a large size, the observation data of the cells that have been cultured to some extent can be extracted.
  • a container address storing a container such as a well address is searched. It can also be configured to be acquired as In general, wells are used in particular as containers for culturing cells of offspring for experiments. In the case of culturing cells of a child strain, a small amount of cells are seeded in a well and cultured for several days until the cells stably adhere to the well, but there is a need to observe changes during that time.
  • the container address can be acquired as a search condition as in the cell observation information processing system of the embodiment of the present invention, for example, the result of the actual experiment on the cell at a certain address in the well and the observation of the address Data can be linked and confirmed, improving the accuracy of the results.
  • the “user” it is desirable to search using “user identification information and contents of confirmation work by user” as a search condition, as well as “contents of confirmation work by the user”.
  • the cell observation information processing system can acquire the device identification information as a search condition as described above. It is configured as follows. When configured so that device identification information can be acquired as a search condition, as in the cell observation information processing system of the embodiment of the present invention, a system configuration for observing cells and recording observation data using each of a plurality of devices In this case, the device-specific search environment can be acquired so that the device-specific imaging environment can be acquired and the cause of the experiment failure caused by the device-specific imaging environment can be grasped quickly and smoothly. it can.
  • the cell observation information processing system can acquire the change information of the activity data as a search condition as described above. It is configured as follows.
  • the change information of the activity data is, for example, the change amount (that is, the change rate) of the activity data (for example, cell density, cell number, viability) at a plurality of time points, and is indicated by, for example, the slope of the graph. Can do. For example, in the graph showing the change information of the cell number, cells in the observation information acquisition period corresponding to the portion where the change rate of the cell number is large (the slope of the graph is large) have a small change rate (the slope of the graph is small).
  • the cells proliferate more vigorously than the cells in the observation information acquisition period corresponding to the small portion.
  • change information of activity data can be acquired as a search condition
  • only observation data relating to cells that are proliferating can be extracted. become.
  • the cell observation information processing system is configured to acquire the image tag as a search condition as described above.
  • the image tag is a tag for indicating a cell image, and more specifically, for example, is an image that can be displayed in a small size on a selection input screen, or information in which an image and a name corresponding to the image are integrated.
  • the search tag in the observation information with the tag for search is used as the user identification information in the image tag
  • the search tag in the observation information with the tag for search is used as the user identification information in the image tag
  • a data structure in which cell identification information, date / time information, information on work for cell maintenance by the user, device identification information, activity data change information, etc. are subordinated User input information, cell identification information, date and time information, information on work for cell maintenance by the user, device identification information, activity data Change information and the like can be collectively acquired as a search tag, and desired observation data can be searched easily and quickly.
  • the cell observation information processing system is preferably configured as follows.
  • the observation information is preferably composed of information indicating a plurality of observation results corresponding to imaging at the same time for a plurality of observation positions on the sample including the cells.
  • the information indicating the plurality of observation results preferably includes a plurality of cell images.
  • the information indicating the plurality of observation results preferably includes a value calculated based on a plurality of cell images.
  • the information indicating the plurality of observation results preferably includes a plurality of cell images and a value calculated based on the plurality of cell images.
  • the information indicating the plurality of observation results preferably includes a plurality of cell images, and the search tag is a value calculated based on the plurality of cell images.
  • the information indicating the plurality of observation results preferably includes a plurality of cell images, and the search tag is an image tag for indicating the plurality of cell images.
  • the information indicating the plurality of observation results preferably includes a plurality of cell images, and the search tag is a value calculated based on the plurality of cell images.
  • the information indicating the plurality of observation results preferably includes a plurality of cell images, and the search tag is calculated based on the image tag for indicating the plurality of cell images and the plurality of cell images. Value.
  • FIG. 1 is an explanatory diagram showing a basic configuration of a cell observation information processing system according to a first embodiment of the present invention.
  • the cell observation information processing system 10 of the first embodiment includes a tag acquisition unit 11, a storage unit 12, a search condition acquisition unit 14, and an extraction unit 15.
  • 1 is a cell observation information processing apparatus body
  • 13 is a recording unit
  • 20 is an observation information acquisition unit.
  • the cell observation information processing system 10 includes a tag acquisition unit 11, a storage unit 12, a search condition acquisition unit 14, and an extraction unit 15 together with a recording unit 13 and an observation information acquisition unit 20. It has a stand-alone configuration provided in one apparatus main body 1.
  • the cell observation information processing apparatus main body 1 is composed of, for example, a microscope apparatus including a computer including an imaging device and a database.
  • the tag acquisition unit 11 uses user identification information, cell identification information, and observation as search tags for searching for each observation information acquired via the observation information acquisition unit 20 in response to an acquisition instruction at one time point. It is configured to acquire date and time information for identifying the date and time when the information is acquired, information related to a cell maintenance work by the user, device identification information, change information of activity data, and an image tag. Note that the observation information, user identification information, cell identification information, information related to the work for maintenance of cells by the user, device identification information, and image tags are as described above.
  • the tag acquisition unit 11 includes, for example, a user ID as user identification information selected and input by the user on the user ID input screen as shown in FIG.
  • a user ID for example, on the search tag input screen provided in the cell observation information processing apparatus main body 1 as shown in FIG. 2 (b), the cell level information (parent strain or substrain) entered by the user, the cell name, and the passage number are searched. It is configured to be acquired as a tag.
  • the tag acquisition unit 11 automatically sets specified values of information such as cell level information (parent strain or substrain), cell name, passage number, etc. without user input on the search tag input screen of FIG. You may comprise so that it may acquire automatically.
  • the tag acquisition unit 11 identifies date and time when the observation information is acquired from the imaging date and time recorded as a log in the cell image in each observation information acquired through the observation information acquisition unit 20. Get as. Further, the tag acquisition unit 11 acquires an image tag from the cell image in each observation information acquired through the observation information acquisition unit 20.
  • a user ID is used as the user identification information.
  • the user identification information is not limited to the user ID. For example, the user name, nickname, or the like Any character or symbol that can be identified from the user may be used.
  • Each of the user ID selection input units 31-1 to 31-n is composed of image tags that are displayed on the screen so as to be selectively input in a form in which the user image and the character information of the user ID are integrated.
  • 32-1 is a user ID display field
  • 32-2 is a cell level information input field
  • 32-3 is a cell name input field
  • 32-4 is a passage number input field
  • 32-5 is It is an observation data display field.
  • Each of the input fields 32-2 to 32-4 is configured so that the user can input desired information.
  • Each input field 32-2 to 32-4 may be configured so that the user can select and input from several pieces of candidate information.
  • the user ID display field 32-1 is configured to display a user ID selected and input by the user on the user ID input screen.
  • the observation data display field 32-5 is configured to display observation information (for example, activity data) of the cells acquired by the observation information acquisition unit 20.
  • the storage unit 12 assigns the search tag acquired by the tag acquisition unit 11 to each observation information acquired by the observation information acquisition unit 20 in response to the acquisition instruction at each time point, and the search tag The search tag-attached observation information to which is attached is stored in the recording unit 13.
  • the recording unit 13 has one or more records of observation information with tagged tags for search.
  • Each record is created corresponding to the imaging of the cell image at each time point, and one observation information corresponding to the imaging of the cell image at one time point and a search tag for searching the observation information are mutually connected. Associated.
  • the search condition acquisition unit 14 includes user identification information, cell identification information, information regarding work for cell maintenance by the user, device identification information, and activity among the search tags attached to the observation information with the tag for search. Information including at least one of data change information and image tags is obtained as a search condition.
  • the search condition acquisition unit 14 includes, for example, a user ID as user identification information, a cell name as cell identification information, cell level information (on a search condition designation screen as shown in FIG. Parent / substrain), passage number (Passage num), contents of work as information on work for cell maintenance by the user, device ID as device identification information, activity change amount as change information of activity data Among items, in addition to information on items input by the user, for example, a combination of activity data and date / time information is acquired as a search condition.
  • the search condition acquisition unit 14 may be configured to acquire only information input by the user on the search condition designation screen as a search condition. Further, the search condition acquisition unit 14 does not undergo user input on the search condition designation screen of FIG. 3, but the user ID, cell name, cell level information (parent strain / substrain), passage number, work content, device ID, activity You may comprise so that the regulation value of information, such as a degree change amount, may be acquired automatically.
  • 33-1 is a user ID input field
  • 33-2 is a cell name input field
  • 33-3 is a cell level information (parent strain / substrain) input field
  • 33-4 is a passage number input field
  • 33- 5 is a work content input field
  • 33-6 is a device ID input field
  • 33-7 is an activity change amount input field.
  • Each input field 33-1 to 33-7 is configured so that the user can input desired information.
  • the input fields 33-1 to 33-7 may be configured so that the user can select and input from several pieces of candidate information.
  • the search condition designation screen in the example of FIG. 3 does not include an item for inputting a cell type as cell identification information, but includes an item for inputting a cell type, and the cell type for which the search condition acquisition unit 14 has been input.
  • the search condition designation screen in FIG. 3 is merely an example for convenience, and the date and time when the user identification information, the cell identification information, and the observation information are acquired as search tags that can be searched by the search condition acquisition unit 14. Date and time information for identification, information about work for cell maintenance by the user, device identification information, change information of activity data, and desired subordinate items in the image tag (for example, cell name in cell identification information, Of course, any combination of cell type, offspring / parent strain, passage number, etc.) may be used as an input item. Further, the user ID input field 33-1 on the search condition designation screen in the example of FIG.
  • a user ID display field is provided instead of the user ID input field 33-1 to display only the user ID selected and input by the user on the user ID input screen, and the user ID input by the user is performed. You may comprise so that it may omit.
  • the extraction unit 15 searches the recording unit 13 using the search condition acquired by the search condition acquisition unit 14, and includes data including observation information with a search tag to which a search tag that matches the search condition is assigned. It is configured to extract from the recording unit 13.
  • the observation information acquisition unit 20 is configured to acquire observation information in response to an acquisition instruction at one time point. More specifically, the observation information acquisition unit 20 operates when a user inputs an observation name and presses an observation information acquisition instruction button from an image capturing instruction screen (not shown) provided in the apparatus main body 1. A sample including a cell located at an observation position is imaged by an imaging device (not shown), and the captured cell image is subjected to, for example, image processing and analysis processing via an image processing unit and an image analysis unit (not shown). , Activity data indicating cell activity such as cell number, cell density, shape, and survival rate is detected. For example, as shown in FIG. 5, cell image, activity data, and observation name are used as one observation information. Is temporarily stored in a storage area (not shown) in the apparatus main body 1.
  • the record group (1) with numbers 1 to 3 is one piece of observation information acquired by the observation information acquisition unit 20 in response to the acquisition instruction at time T1.
  • the record group (2) with numbers 4 to 6, the record group (3) with numbers 7 and 8, the record (4) with number 9, and the record group (5) with numbers 10 to 13 are at different points in time.
  • Each piece of observation information is acquired by the observation information acquisition unit 20 in response to the acquisition instructions at T2 to T5.
  • the cell observation information processing apparatus body 1 includes, for example, a system login screen (not shown).
  • a system login screen (not shown).
  • a user ID input screen as shown in FIG. 2A is displayed.
  • the user ID is temporarily stored in a storage area (not shown) in the apparatus main body 1.
  • the image capturing instruction screen (not shown) is displayed and the user can perform an image capturing instruction operation.
  • the user ID input screen of FIG. 2A may be configured to have a function as a system login screen so that the user inputs a user ID selection input and a system login ID and password.
  • the cell observation information processing system 10 preferably includes a display screen (not shown) as a presentation unit for presenting data including observation information with a test tag extracted by the extraction unit 15 to the user.
  • the stage in which the user manages the state of the cells being cultured includes the step of storing the observation information of the cultured cells in the recording unit, and searching / extracting the observation information of the desired cell from the recording unit. There is a stage to check the status.
  • the user inputs a system login ID and password on a system login screen (not shown). Then, a user ID input screen as shown in FIG. Next, the user selects and inputs his / her user ID from the user ID selection input units 31-1 to 31-n. Then, the user ID is temporarily stored in the storage area in the apparatus main body 1 and an image capturing instruction screen (not shown) is displayed so that the user can perform an image capturing instruction operation.
  • the user inputs an observation name on an image capturing instruction screen (not shown) and presses an instruction button for instructing acquisition of observation information.
  • the observation information acquisition unit 20 causes the imaging device (not shown) to image the sample including the cell located at the observation position, and for example, an image via an image processing unit and an image analysis unit (not shown)
  • activity data indicating cell activity such as cell number, cell density, shape, and survival rate is detected.
  • the cell image, the activity data, and the observation name are stored as one observation information in a temporary storage area (not shown) in the apparatus main body 1.
  • observation information at one time point is acquired (step S1).
  • acquisition of observation information can be repeated a plurality of times at different acquisition times (step S2).
  • the user can use the search tag input screen as shown in FIG. Enter the offspring, cell name, and passage number.
  • the tag acquisition unit 11 acquires, as a search tag, the parent strain or child strain, the cell name, the passage number input by the user on the tag input screen, and the user ID selected and input by the user on the user ID selection screen ( Step S3).
  • the presentation unit is configured to perform tag input on the search tag input screen and acquisition of the search tag by the tag acquisition unit 11 after the observation information acquisition by the observation information acquisition unit 20 is repeated a plurality of times.
  • the presentation unit is configured to perform tag input on the search tag input screen in real time and acquisition of the search tag by the tag acquisition unit 11. It may be configured to switch, and after a certain period of time has elapsed since the observation information acquisition unit 20 acquired the observation information, the tag input on the search tag input screen and the tag acquisition unit 11 acquire the search tag. You may comprise so that a presentation part may be switched.
  • the storage unit 12 assigns the search tag acquired by the tag acquisition unit 11 to each piece of observation information acquired in response to the acquisition instruction at each time point (step S4), and the search tag Is stored in the recording unit 13 (step S5).
  • the search tag is attached to the observation information at all times and the storage of the observation information with the search tag in the recording unit 13 is completed, the processing in the stage of storing the observation information of the cultured cells in the recording unit is performed. The process ends (step S6).
  • the user selects a user ID as user identification information, a cell name as cell identification information, a cell level among search tags attached to observation information with search tags.
  • Information parent strain / substrain
  • At least one of work contents as information on work for cell maintenance by the user device ID as device identification information
  • activity change amount as activity data change information Specify information including the search condition.
  • the search condition acquisition unit 14 acquires, for example, a combination of activity data and date / time information as the search condition in addition to the information input by the user on the search condition designation screen (step S11).
  • the user ID in the search condition designation screen of FIG. 3 may be configured to initially display the user ID selected and input by the user on the user ID input screen and to omit the input by the user. Good.
  • the extraction unit 15 searches the recording unit 13 using the search conditions acquired by the search condition acquisition unit 14, and includes data including observation information with search tags to which search tags that match the search conditions are assigned. Are extracted from the recording unit 13 (step S12). Thereby, the process of searching and extracting the observation information of the desired cell from the recording unit is completed.
  • Data including the observation information with the tag for search extracted by the extraction unit 15 is displayed on a display screen (not shown) in a display mode according to the search condition acquired by the search condition acquisition unit 14.
  • the user checks the state of the cell by observing the display mode data as shown in FIGS. 10A to 10G displayed on the display screen, for example. As a result, the processing in the stage of searching and extracting desired cell observation information from the recording unit and checking the state of the cell is completed.
  • FIGS. 10 (a) to 10 (g) are examples of display modes on the display screen for presenting the data including the extracted observation information to the user.
  • the display screens shown in FIGS. 10 (a) to 10 (g) may be configured to be switched to a screen having a desired display mode by a user operation.
  • the display screens shown in FIGS. 10 (a) to 10 (g) are merely examples of display modes on the display screen for presenting data including the extracted observation information to the user. Of course not limited.
  • the user identification information can be acquired as a search condition
  • the user can extract and refer to observation data of only the cells under his / her management.
  • the observation data under the control of other people who are not present can be excluded from the search results.
  • the extraction efficiency is improved, and the time for checking the cell state can be shortened.
  • the damage to the cell can be reduced by shortening the time for checking the state of the cell.
  • the cell identification information can be acquired as a search condition
  • the cell name can be acquired as a search condition
  • the observation data regarding the cells of the parent strain and the child strain can be extracted at once.
  • observation data on cells focused on a desired cell level (parent strain or child strain) in a certain cell name is obtained.
  • the extraction efficiency can be improved while confirming a change in the state. For example, when it is configured so that the user ID and cell name can be acquired as a search condition, each user can only obtain his / her intended observation data even if the same cell name is given by a plurality of users. Can be extracted.
  • observation data can be extracted in units of contents of confirmation work by the user, and the user desires when the extracted observation data is displayed via a display means such as a display device. Only the observation data related to the confirmation work to be displayed is displayed, and the display of useless observation data relating to other confirmation work can be eliminated. As a result, the time for confirmation work by the user can be shortened.
  • the dilution rate when the dilution rate can be acquired as a search condition, it becomes easy to detect a change in the dilution rate.
  • each user often changes the type and size of the culture container according to the intended use.
  • the container type and size can be acquired as a search condition
  • the observation data corresponding to the intended use can be efficiently extracted by searching the type and size of the culture container.
  • the container address can be acquired as a search condition
  • the observation result of the actual experiment related to the cell at a certain address in the container and the observation data at the certain address are confirmed and the result is obtained. The accuracy of consideration is improved.
  • the device identification information can be acquired as a search condition, a system for observing cells and recording observation data using each of a plurality of devices.
  • the change information of the activity data can be acquired as a search condition, only the observation data relating to cells that are proliferating can be extracted. become. As a result, it is possible to select cells in the observation information acquisition period that are actively growing specified by the observation data, and use only the cells in the observation information acquisition period for the actual experiment. Will increase.
  • the search tag in the observation information with the tag for search is identified as the image tag by the user.
  • Information, cell identification information, date and time information, information regarding work for cell maintenance by the user, device identification information, and a data structure subordinate to activity data change information for example, in the selection input screen, User input information, cell identification information, date and time information, information related to work for cell maintenance by the user, device identification information, activity level by selecting and inputting only image tags without specifying and inputting individual search tags
  • Data change information and the like can be acquired as search tags, and desired observation data can be searched easily and quickly.
  • the cell information processing system is, for example, a cell obtained by acquiring a computer provided in the apparatus main body 1 in response to an acquisition instruction at one time point.
  • Cell observation as a search tag for searching images, activity data indicating cell activity such as cell number, cell density, shape, and survival rate, and observation information indicating cell observation results such as observation name User identification information for identifying a user, cell identification information for identifying a cell to be observed, date / time information for identifying the date / time when the observation information was acquired, for cell maintenance by the user Information relating to work, device identification information for identifying the device used to obtain the observation information, change information of the activity data, and image for showing the cell image Tag acquisition means for acquiring at least one of the search tags, and assigning the search tag acquired by the tag acquisition means to each of the observation information acquired corresponding to the acquisition instruction at each time point And storing means for storing the observation information with the tag for search to which the search tag is attached in the recording unit, the user
  • the cell information processing system according to the embodiment of the present invention can be read by, for example, a computer provided in the apparatus main body 1 in addition to the configuration in which the cell observation information processing program is provided in the computer provided in the apparatus main body 1.
  • the structure recorded on the recording medium may be sufficient.
  • the cell observation information processing system includes a tag acquisition unit 11, a storage unit 12, a search condition acquisition unit 14, and an extraction unit 15 as one device.
  • the configuration is not limited to the configuration provided in the main body 1.
  • the tag acquisition unit, the storage unit, the search condition acquisition unit, and the extraction unit are distributed to a plurality of devices. It is good also as a structure provided.
  • the cell observation information processing system according to another embodiment of the present invention may include the recording unit 13 together with the tag acquisition unit 11, the storage unit 12, the search condition acquisition unit 14, and the extraction unit 15.
  • FIG. 11 is an explanatory diagram showing a configuration of a cell image information processing system according to a modification of FIG.
  • the tag acquisition unit 11 and the storage unit 12 are in the observation processing device 1a
  • the recording unit 13 is in the recording processing device 1b
  • the search condition acquisition unit 14 and the extraction unit 15 are search processing devices. 1c is provided respectively.
  • the observation information acquisition unit 20 is provided in the observation processing apparatus 1a.
  • the observation processing device 1a is constituted by, for example, a microscope device provided with an imaging device and a computer.
  • the recording processing device 1b is constituted by a storage device that stores a database file, for example.
  • the search processing device 1c is composed of, for example, a computer provided with database software.
  • the observation processing device 1a and the recording processing device 1b, and the recording processing device 1b and the search processing device 1c are connected to each other via a network.
  • the configurations of the tag acquisition unit 11, the storage unit 12, the recording unit 13, the search condition acquisition unit 14, the extraction unit 15, and the observation information acquisition unit 20 are substantially the same as those in the first embodiment shown in FIG.
  • the observation information acquisition unit 20 provided in the observation processing device 1a is 1 by the user when the observation information of the cultured cells is stored in the recording unit 13. Observation information is acquired in response to the acquisition instruction at the time.
  • the tag acquisition unit 12 acquires a search tag for searching observation information acquired via the observation information acquisition unit 20.
  • the storage unit 12 attaches the detection tag acquired by the tag acquisition unit 12 to the observation information, and stores the observation information with the detection tag in the recording unit 13 of the recording device 1b via the network line.
  • the search condition acquisition unit 14 of the search processing device 1c inputs the user on a search condition designation screen (not shown). Get search conditions.
  • the extraction unit 15 searches the recording processing device 1b via the network line using the search condition acquired by the search condition acquisition unit 14, and the search is given a search tag that matches the search condition. Extract data including observation information with tags. The extracted data including the observation information with the tag for search is displayed on a display device (not shown).
  • the tag acquisition unit 11, the storage unit 12, the search condition acquisition unit 14, and the extraction unit 15 that constitute the cell observation information processing system 10 are connected to a plurality of devices 1 a, 1 b, 1 c. Since each device is distributed, the individual devices can be reduced in size and simplified.
  • the tag acquisition unit 11 and the storage unit 12, and the search condition acquisition unit 14 and the extraction unit 15 are provided in different devices 1a and 1c, the observation information of the cultured cells is stored in the recording unit 13. The user can change the operation location between the stage and the stage of searching and extracting desired cell observation information from the recording unit 13 to check the state of the cell, and convenience is improved.
  • the user can easily record data including desired observation information via network communication without being restricted by the location of the observation information acquisition device 1a.
  • the cell state can be confirmed by searching and extracting from.
  • the tag acquisition unit 11 and the storage unit 12 may be provided in a device different from the observation information acquisition unit 20. If the tag acquisition unit 11 and the storage unit 12 are provided in a separate device from the observation information acquisition unit 20, the user can change the operation location in the observation information acquisition stage and the tag acquisition stage, which is more convenient. Further improvement.
  • the user is shown in FIG. 2B on the mobile device without being restricted by the arrangement location of the observation information acquisition device 1a.
  • Such a search tag input screen is displayed, and a desired search tag can be easily given to the observation information acquired by the observation information acquisition unit 20 via network communication by inputting the desired search tag. And can be recorded in the recording unit 13.
  • the search condition acquisition unit 14 and the extraction unit 15 may be provided integrally with the observation processing apparatus 1a.
  • FIG. 12 is an explanatory diagram showing a configuration of a cell image information processing system according to another modification of FIG.
  • each of the plurality of observation processing apparatuses 1a-1, 1a-n includes an observation information acquisition unit 20, a tag acquisition unit 11, and a storage unit 12. .
  • Other configurations are substantially the same as those of the cell information processing system 10 of FIG.
  • each of the plurality of observation processing apparatuses 1a-1, 1a-2 The observation information acquisition unit 20 acquires observation information in response to an acquisition instruction at one time point by the user, and the tag acquisition unit 11 searches for observation information acquired through the observation information acquisition unit 20 The tag is acquired, the storage unit 12 assigns the detection tag acquired by the tag acquisition unit 11 to the observation information, and the observation information with the detection tag is transmitted to the recording unit 13 of the recording device 1b via each network line. save.
  • the processing procedure at the stage of searching and extracting desired cell observation information from the recording unit 13 and checking the cell state is substantially the same as that of the cell information processing system 10 of FIG.
  • the tag acquisition part 11 is the tag for a search, user identification information, cell identification information, the date information for identifying the date which acquired observation information, for the maintenance of the cell by a user
  • the tag acquisition unit 11 connects a plurality of arbitrary types of tags. You may comprise so that it may acquire as one tag.
  • the tag acquisition part 11 selects the user ID which the user selected and input on the tag, such as a parent stock or a substrain, a cell name, a passage number, etc. which the user input in the tag input screen for search, and a user ID selection screen.
  • the tag acquisition part 11 displays the tag input screen for search, for example, a function or user ID which makes a user input tags, such as a parent strain or a substrain, a cell name, and a passage number, etc.
  • You may comprise and comprise the function which displays the screen which makes a user input a search tag, and makes a user input a search tag, such as the function which displays a selection screen and makes a user select user ID.
  • the search condition acquisition unit 14 searches the recording unit 13 using the search condition input by the user on the search condition designation screen, and is provided with a search tag that matches the search condition.
  • the search condition acquisition part 14 is provided with the function which displays a search condition designation
  • region of one point (observation position) on the sample containing a cell is acquired, as a modification, a system is equipped with several cameras, and these several cameras are equipped. It is also possible to acquire a plurality of images by imaging regions of a plurality of observation positions at the same time, and combine the acquired images at the same time into one image group. In this case, one tag (user ID, cell name, etc.) is assigned to one image group, not for each individual image.
  • the structure which acquires and gives a tag by a user's manual input ie, the manual input by a user is received in presentation parts, such as a screen, and a tag acquisition part acquires the tag received by the presentation part.
  • the acquired tag is assigned to observation information such as an image, but the configuration for acquiring and assigning the tag may be a configuration such as the following modification.
  • Modification 1 A configuration tag acquisition unit in which a device automatically acquires and assigns a tag stores a tag whose contents are specified in advance in the device, and the tag stored in the device at the time of tag addition You may comprise so that it may acquire and grant. For example, when a user is fixed to the apparatus, the user ID of the user is stored in the apparatus in advance.
  • Modification 2 A configuration in which a tag is acquired and assigned according to other input modes of the user may be configured to acquire and assign a tag by voice input, line-of-sight input, gesture input, or the like by the user.
  • the tag acquisition unit uses the voice analysis technology as disclosed in Japanese Patent Application Laid-Open No. 2012-252181 to convert the tag voice information input by the user into the tag character string information. It may be configured to convert the character string information of the tag to observation information such as an image.
  • association information that associates the direction in which the user's line of sight moves with characters in the direction is stored in the apparatus, and the tag acquisition unit detects the direction of the user's line of sight. You may comprise so that it may detect with the gaze detection parts, such as a sensor, and the character matched with the direction may be acquired as a tag based on the detected user's gaze direction and matching information.
  • association information that associates a direction in which a body part such as a user's hand, foot, or trunk moves with a character corresponding to the direction is stored in the device, and a tag acquisition unit Is detected by a gesture detection unit such as a gesture detection sensor and is associated with the direction based on the detected movement direction of the body part of the user and the association information.
  • You may comprise so that the acquired character may be acquired as a tag.
  • user input modes such as voice input and line-of-sight input are given as other user input modes.
  • user input modes are not limited to these, for example, input by brain waves, etc. It is also possible to configure so as to acquire and assign tags.
  • a cell observation information processing system As described above, according to some embodiments of the present invention, a cell observation information processing system, a cell observation information processing method, and a cell observation information processing that can efficiently manage the state of cells used for biological research.
  • a program, a recording unit provided in the cell observation information processing system, and an apparatus provided in the cell observation information processing system are obtained.
  • a cell observation information processing system, a cell observation information processing method, and a cell observation information processing program capable of performing state management of cells used for biological research in a short time
  • a recording unit provided in the cell observation information processing system and a device provided in the cell observation information processing system are obtained.
  • a cell observation information processing system a cell observation information processing method, a cell observation information processing program capable of accurately performing cell state management used in biological research, A recording unit provided in the cell observation information processing system and an apparatus provided in the cell observation information processing system are obtained.
  • a cell observation information processing system, a cell observation information processing method, a cell observation information processing program, and a cell observation information processing system capable of quickly grasping the cause of failure of an experiment are provided. An apparatus provided in the recording unit and the cell observation information processing system is obtained.
  • a cell observation information processing system a cell observation information processing method, a cell observation information processing program, and a cell observation information processing system that can increase the success rate of an experiment are provided.
  • An apparatus provided in the recording unit and the cell observation information processing system is obtained.
  • the cell observation information processing system, the cell observation information processing method, the cell observation information processing program, the recording unit provided in the cell observation information processing system, and the device provided in the cell observation information processing system according to the present invention manage the state of cells used for biological research.
  • the present invention is useful in fields that are required to manage the state of a living body that changes in time series.

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PCT/JP2014/074838 2013-09-26 2014-09-19 細胞観察情報処理システム、細胞観察情報処理方法、細胞観察情報処理プログラム、細胞観察情報処理システムに備わる記録部、細胞観察情報処理システムに備わる装置 Ceased WO2015046052A1 (ja)

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EP14848820.8A EP3050959A4 (en) 2013-09-26 2014-09-19 Cell-observation-information processing system, cell-observation-information processing method, cell-observation-information processing program, recording unit for cell-observation-information processing system, and device for cell-observation-information processing system
US15/079,916 US20160203186A1 (en) 2013-09-26 2016-03-24 Cell observation information processing system, cell observation information processing method, cell observation information processing program, archive section provided for the cell observation information processing system, and apparatuses provided for the cell observation information processing system

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