WO2023040598A1 - 动物繁育的数据管理系统、方法、电子设备及存储介质 - Google Patents

动物繁育的数据管理系统、方法、电子设备及存储介质 Download PDF

Info

Publication number
WO2023040598A1
WO2023040598A1 PCT/CN2022/114074 CN2022114074W WO2023040598A1 WO 2023040598 A1 WO2023040598 A1 WO 2023040598A1 CN 2022114074 W CN2022114074 W CN 2022114074W WO 2023040598 A1 WO2023040598 A1 WO 2023040598A1
Authority
WO
WIPO (PCT)
Prior art keywords
animals
cage
animal
information
offspring
Prior art date
Application number
PCT/CN2022/114074
Other languages
English (en)
French (fr)
Inventor
李迪迪
王晓良
崔恒睿
Original Assignee
千乘镜像(北京)科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 千乘镜像(北京)科技有限公司 filed Critical 千乘镜像(北京)科技有限公司
Publication of WO2023040598A1 publication Critical patent/WO2023040598A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR 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; CALCULATING OR 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
    • G06F16/29Geographical information databases
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/02Agriculture; Fishing; Forestry; Mining

Definitions

  • the invention relates to the technical field of animal breeding, in particular to a data management system, method, electronic equipment and storage medium for animal breeding.
  • the object of the present invention is to provide a data management system, method, electronic equipment and storage medium for animal breeding.
  • the management system for animal breeding provided by the present invention can provide services for animal breeding, so that the data layer of animal breeding It is clearer, the animal breeding plan and the animal cage operation are more convenient, the labor cost is reduced, and the work quality is improved.
  • the present invention mainly comprises the following aspects:
  • the embodiment of the present invention provides a data management system for animal breeding, the data management system includes a cage closing module, an identification module, a cage separation module and a space management module:
  • the cage-closing module is used to inquire about the cage-closing information of animals, add a cage-closing scheme, edit a cage-closing scheme, generate a cage-closing scheme, and view a cage-closing scheme, and perform cage-closing according to the cage-closing scheme for the parental animals in the database , to generate the information of offspring animals;
  • the identification module is used to identify newly added parent animals and newly added offspring animals, and obtain identification information of newly added parent animals and newly added offspring animals;
  • the cage separation module is used for separating cages before the identification of the offspring animals, for separating the parents after the parent animals are caged, and for the newly added parent animals and/or the New offspring animals were identified and separated into cages;
  • the space management module is used to manage the space position information of each animal.
  • the cage module includes:
  • the first cage unit is used to cage the parental animals, and after judging that the parental animals in the database have reached the pregnant period in the cage-closing scheme and successfully developed pregnant, generate information about the offspring animals.
  • the cage module includes:
  • the second cage unit is used for judging that the parent animals in the database have reached the pregnancy period in the cage scheme and have failed to develop a pregnancy, and the parent animal in the cage scheme that has not successfully developed a pregnancy with the database
  • the other parent animals in the cage are caged together to generate the information of the corresponding offspring animals.
  • the cage separation module includes:
  • the pre-separation cage unit which is used to separate the cages before the identification of the offspring animals.
  • the offspring animals are Cage separation before identification;
  • the post-identification cage separation unit is used for separating new parent animals and new offspring animals into cages after identification, according to the identification information of the newly added parent animals, the identification information of the newly added offspring animals and the target cage rules, After the identification of the newly added parent animals and the newly added offspring animals, they are divided into cages.
  • the animal information module is configured to import, query, export, edit and add attribute information of the parent animal and the attribute information of the offspring animal.
  • the data management system also includes a strain management module:
  • the strain management module is used to collect the strain information of the parent animal in the database, the strain information of the offspring animal, the strain information of the newly added parent animal, and the newly added offspring animal Add, query, edit and delete the strain information.
  • the data management system also includes a usage management module:
  • the use management module is used to manage the experimental purposes of the newly added parent animals and the newly added offspring animals, and determine The purposes of the newly added parent animals and the newly added offspring animals include experiment, identification, detection, elimination, death, accident, sale, reserve species, expanded species and production species.
  • the embodiment of the present invention also provides a data management method for animal breeding, the data management method comprising:
  • the attribute information of the parental animals after determining that the parental animals can be used for mating, generate a confinement plan, and judge that the parental animals reach the conception cycle in the confinement plan and succeed After the pregnancy is manifested, the information of the offspring animal corresponding to the information of the parent animal is generated;
  • the identification information of the newly added parent animals the identification information of the newly added offspring animals and the target cage separation rules, after the identification of the newly added parent animals and the newly added offspring animals, they are divided into cages and, after determining When the offspring animals reach the weaning period in the cage-closing scheme, according to the gender information of the offspring animals, the offspring animals are identified and separated into cages before being identified.
  • an embodiment of the present invention also provides an electronic device, including: a processor, a memory, and a bus, the memory stores machine-readable instructions executable by the processor, and when the electronic device is running, the The processor communicates with the memory through a bus, and the machine-readable instructions are executed by the processor to execute the steps of the data management method described in the possible implementation manners of the second aspect above.
  • an embodiment of the present invention further provides a computer-readable storage medium, where a computer program is stored on the computer-readable storage medium, and when the computer program is run by a processor, the above-mentioned possible implementation manners in the second aspect are executed. The steps of the data management method described above.
  • the animal breeding management system provided by the present invention can provide services for animal breeding, making the data layer of breeding animals clearer, the operation of animal breeding schemes and animal cages more convenient, and reducing labor costs. Improved quality of work.
  • Fig. 1 shows a schematic structural diagram of a data management system for animal breeding provided by an embodiment of the present invention
  • Fig. 2 shows a schematic structural diagram of another data management system for animal breeding provided by an embodiment of the present invention
  • Fig. 3 shows a schematic structural diagram of another data management system for animal breeding provided by an embodiment of the present invention
  • Fig. 4 shows a flow chart of a data management method for animal breeding provided by an embodiment of the present invention
  • Fig. 5 shows a schematic structural diagram of an electronic device provided by an embodiment of the present invention.
  • 10-data management system 110-caging module; 111-first cage unit; 112-second cage unit; 120-identification module; 130-cage separation module; 131-cage separation unit before identification; 132-cage separation unit after identification; 133-parental generation cage separation unit; 140-space management module; 150-animal information module; 160-strain management module; 170-use management module; 180-audit management module; 190-user management Module; 210-species management module; 220-entry audit module; 230-ethics audit module; 240-certificate module; 250-system management module; 500-electronic equipment; 510-processor;
  • the methods, systems, electronic devices, and storage media described in the embodiments of the present invention can be applied to any scene that requires data management of animal breeding.
  • the embodiments of the present invention are not limited to specific application scenarios.
  • the data management system, method, device, electronic equipment and storage medium schemes of the animal breeding are all within the protection scope of the present invention.
  • the embodiment of the present invention provides a data management system, method, electronic equipment, and storage medium for animal breeding.
  • the animal breeding management system provided by the present invention can provide services for animal breeding, making the data layer of animal breeding more efficient. Clear, animal breeding programs and animal cages are more convenient to operate, reducing labor costs and improving work quality.
  • Fig. 1 is a schematic structural diagram of a data management system for animal breeding provided by an embodiment of the present invention.
  • the animal breeding data management system 10 provided by the embodiment of the present invention includes a cage closing module 110 , an identification module 120 , a cage separating module 130 and a space management module 140 .
  • the cage combination module 110 is used to inquire about the cage information of animals, add a cage scheme, edit a cage scheme, generate a cage scheme, and view a cage scheme, and perform cage integration according to the cage scheme for the parental animals in the database. Cages to generate information about offspring animals.
  • the parental animals in the database it is necessary to judge that the parental animals in the database can be used in cages. Date, or use status, to determine whether the parental animals can be used for mating, and on the premise that the parental animals can be mated, according to the gender information in the attribute information of the parental animals, generate a cage plan, and according to the cage plan Cage the parent animals, and after the birth of the offspring animals suckled by the mother animals, record the number of offspring animals born, automatically generate offspring animal information, and determine the offspring animals in the offspring animal attribute information.
  • Strain information here, according to the species information, strain information and gender information in the attribute information of the parental animals, generate a cage plan, which can be specifically: number the parental animals, and use different numbers to represent different genders of the parental animals Carry out co-caging to generate a co-caging scheme, wherein the parent animals include parent animals and mother animals.
  • the animal information of offspring animal includes but not limited to the unique ID of offspring animal and other related information.
  • the attribute information of the parent animal includes the species information of the parent animal, the number information of the parent animal, the gender information of the parent animal, the spatial position information of the parent animal, the strain information of the parent animal, the The birth information of the parent animal, the information of the parent animal including the pregnancy cycle of the parent animal, and the use information of the parent animal;
  • the cage information includes the attribute information of the above parent animal, the number information of the cage, and the parent animal after the cage.
  • cage-sharing scheme includes attribute information of the above-mentioned parent-generation animals, serial number information of the cages, above-mentioned parent-generation animal The spatial position information of the animals after they are caged together, the pregnancy cycle of the parental animals, the preset mating ratio of the parental animals, the weaning cycle of the offspring animals, and the number of cyclical matings of the above-mentioned parental animals.
  • the ratio of the preset mating ratio is at least one ratio setting method, and the preset gender ratio can be specifically but not limited to 1:1; 1:2 or 1:3.
  • the pregnancy cycle of each maternal animal can be determined, and according to the pregnancy cycle, the managers are reminded to formulate the cage separation plan in advance, and according to the pregnancy cycle Periodic situation, automatically judge whether to enter the mating cycle or enter the weaning period.
  • the present invention will automatically calculate the birth date of the offspring animal according to the strain information of the parent animal and the pregnancy cycle, and remind the management personnel again , when the mother animal enters the stage of birth and weaning, the administrator will input the number of offspring animals born, automatically generate the information of the offspring animals, and automatically generate a cage separation plan, and the user can generate according to the cage separation plan Import, export, comment, delete, batch operation and add new cage information.
  • the cage closing module 110 can specifically query the cage information of the animal by clicking the cage information button, and click the new cage button to pop up a new cage pop-up box to fill in the cage information to add a cage scheme.
  • the cage scheme has not been generated yet, you can click the edit button to edit or delete the current data, and click the generate scheme button to generate the corresponding cage scheme.
  • click the view scheme button to pop up the view scheme pop-up box , and further manipulation can be performed in the pop-up box.
  • the Pregnancy button When you click the Pregnancy button, enter the pregnancy time to set the animal into a pregnant state. After the pregnancy operation is completed, the pregnancy button goes out, and the birth button lights up to carry out the birth operation.
  • the offspring animal click the birth button, enter the number of births and the date of birth, and the birth will be successful. After this operation is completed, the offspring animal data will be automatically added to the corresponding The number of animals born, and the animal number will increase sequentially.
  • the weaning button lights up. When the weaning date is reached, the weaning button will pop up a weaning pop-up box. Detection, culling, fatalities, accidents, sales, reserve species, expansion species, and production species.
  • the data management system provided by the present invention can determine the genotype of the target strain according to the number of planned breeding of the target strain, and based on the genotype of the target strain, determine the position of the chromosome where the transgene of the parent animal is located and the genetic traits of the gene, Realize the automatic design of animal breeding programs.
  • the identification module 120 is configured to identify the newly-added parent animal and the newly-added offspring animal, and obtain identification information of the newly-added parent animal and identification information of the newly-added offspring animal.
  • the identification module 120 identifies the newly added parental animals and the newly added offspring animals, and the result of the identification is to determine the experimental use of the newly added parental animals and the newly added offspring animals.
  • the identification experiments include but are not limited to Preset genotyping experiments.
  • a new identification information pop-up box will pop up. After entering the information corresponding to the pop-up box, click OK, and a new one will be added.
  • the authentication information is sent to the authentication module 120, and the authentication information is synchronized to the corresponding experiment information.
  • the cage separation module 130 is used for separating cages before the identification of the offspring animals, for separating the parents after the parent animals are caged, and for the newly added parent animals and/or all The newly added offspring animals were identified and separated into cages.
  • the cage separation module 130 includes three cage separation methods, which are respectively the parent generation cage separation for the parent animals after the end of the cage-closing cycle, the cage separation before the identification and the cage separation after the identification, and after the cage separation, the cage separation will be carried out in the cage-closing scheme.
  • the cage information the strain information of the offspring animals and the experimental information of the newly added parent animals and the newly added offspring animals are recorded.
  • the experimental information includes the experiment number, the purpose of the experiment and the effect of the experiment. It can be obtained by weighting the cages before identification.
  • This information is automatically generated after clicking the weaning date in the cage combination plan.
  • the purpose is to display all the information of the current cage and the offspring
  • the cage number corresponding to the animal click the button to view the weaning cage number to view the cage number and animal number corresponding to the current offspring animal; click on the information of each cage (after) to display the information of the cage after identification, click to add the parent animal Or after adding offspring animals, select the corresponding animal and click the Add button, a pop-up box will pop up to add information for each cage, select the strain name, room name, and enter the new cage rules and the number of each cage, click OK
  • the animals were re-caged according to the new rules.
  • the space management module 140 is used for managing the space position information of each animal.
  • the space management module 140 is used to manage the spatial location information of each animal in the database, which may specifically include, but not limited to, adding, deleting, modifying, and checking the spatial location information, specifically the location corresponding to the spatial location.
  • the country, province, city, county/district, building number, floor, room, cage frame, cage position and cage position number are added, deleted, modified and checked.
  • the spatial location information includes the animal room where each animal is located, building number information, floor information, room information, cage information and cage position information.
  • all room information and the names in the strain information under the corresponding room, the number of strain cages, and the cages under the strain can be displayed by viewing the room information button, and cages can be deleted and deleted in batches; by clicking the batch import button, the room import pops up In the pop-up box, click the download template button to download the corresponding template, add the corresponding data in the template, click upload after the addition is complete, select the filled template and click OK to complete the room addition; by selecting multiple rooms and clicking the delete button on the data, the You can delete a room and all cages under the room. Click the delete button after a single data item to delete a single room and all cages under this room; click to expand a room and a strain under the room, and you will see the cages under the current strain. You can Perform single and bulk delete operations on cages.
  • the data management system 10 of the animal breeding data management scheme provided by the embodiment of the present invention can provide services for animal breeding, making the data layer of breeding animals clearer , the scheme of animal breeding and the separation of animals into cages are more convenient to operate, reduce labor costs, and improve the quality of work, and the present invention combines cages according to the cage combination scheme to generate offspring animals, and can add new additions to the cage combination scheme, Realize the direct modification of the co-caging plan, avoiding the excessive time and cost of artificially designing the animal co-caging program and changing the co-caging program, and improving the fault tolerance rate.
  • the present invention uses the space management module 140 The management of the spatial position information of the animals ensures the uniqueness of the cage positions, realizes the recirculation of the cage position numbers, and further realizes the efficient and orderly management of the animals in cages and cages.
  • FIG. 2 is a schematic structural diagram of another animal breeding data management system 10 provided by an embodiment of the present invention.
  • the data management system 10 of animal breeding provided by the embodiment of the present invention comprises a cage closing module 110, an identification module 120, a cage separating module 130 and a space management module 140:
  • the cage combination module 110 is used to inquire about the cage information of animals, add a cage scheme, edit a cage scheme, generate a cage scheme, and view a cage scheme, and perform cage integration according to the cage scheme for the parental animals in the database. Cages to generate information about offspring animals.
  • the cage module 110 includes:
  • the first cage unit 111 is used to cage the parent animals, and generate information about the offspring animals after judging that the parent animals in the database have reached the pregnant period in the cage-closing scheme and successfully developed pregnant.
  • the first cage-closing unit 111 Before the first cage-closing unit 111 generates the information of offspring animals, it will record the information of the offspring animals born after the parent animals have reached the pregnant period and successfully developed pregnant animals, and after the mother animals give birth. Quantity, and the parental generation animal is carried out separate cage processing.
  • the cage module 110 includes:
  • the second cage unit 112 is used for judging that the parent animals in the database reach the period of conceiving in the cage-closing scheme and fail to develop conceives successfully, and combine the mother animals that have not successfully conceived in the cage-closing scheme with Other parent animals in the database are caged together to generate information about the corresponding offspring animals.
  • the second cage unit 112 is used to cyclically mate the parent-generation animals according to the information of the parent-generation animals when the first cage-closing unit 111 does not produce offspring animals, and generate corresponding offspring animals during the cyclic mating And the information of the offspring animal, wherein the information on the offspring animal includes but not limited to recording the quantity information of the offspring animal.
  • the second cage-closing unit 112 Before the second cage-closing unit 112 generates the information of the new offspring animal, it will separate the new parent-generation animal into cages after the new parent-generation animal has reached the pregnant period and successfully developed pregnant. .
  • the identification module 120 is configured to acquire identification information of newly added parent animals and identification information of newly added offspring animals.
  • the cage separation module 130 is used to identify the newly added parent animal and the newly added offspring animal, and obtain the identification information of the newly added parent animal and the newly added offspring animal.
  • the cage module 130 includes:
  • the subcage unit 131 before identification is used for the subcage before the identification of offspring animals. Cages were separated before identification.
  • animal cards can be automatically generated for cage separation, and the animal cards include the weaned transgenic animal PCR information card, the weaned transgenic animal undetected PCR information card, and the transgenic animal breeding information card.
  • cages can be divided according to the number of offspring animals born above.
  • the separation of offspring animals before identification is to separate and raise at least one offspring animal according to male and female.
  • the user wants to check the corresponding cage plan and cage information of a certain parent animal, or the user wants to check the information of the cage separation of a certain offspring animal
  • the cage information corresponding to the cage scheme and the cage separation before identification are displayed through the graphical user interface of the terminal or the graphical user interface of the touch mobile device.
  • the cage separation unit 132 is used for separating new parent animals and new offspring animals into cages after identification, according to the identification information of the newly added parent animals, the identification information of the newly added offspring animals and the target cage rules , after identifying the newly added parent animals and the newly added offspring animals, they are divided into cages.
  • the target cage rule is a self-defined cage rule.
  • the target cage rule includes, but is not limited to, identifying the corresponding new parent animal and new child animal according to the sex of the target animal.
  • the target cage rule can be It is specifically divided into female yin, female yang, male yin, and male yang.
  • the target cage separation rules can be defined by users according to their needs.
  • the separation cage unit 132 after identification is used for identification experiments, such as for experiments, identification, detection, elimination, death, accident, sale, reserve species, expansion species and production species.
  • the user When the user wants to check the identified cage information corresponding to a newly added parent animal or newly added offspring animal, the user responds by clicking on the GUI on the PC side or touching the GUI on the mobile device Based on the user's information viewing request, display the identified cage separation information.
  • the cage separation module 130 also includes a parent generation cage separation unit 133, which is used to prevent the parent generation animals from continuing to communicate with the mother generation animals after the parent generation animals in the judging database have reached the cage closure period in the cage closure scheme and successfully developed the pregnancy.
  • a parent generation cage separation unit 133 which is used to prevent the parent generation animals from continuing to communicate with the mother generation animals after the parent generation animals in the judging database have reached the cage closure period in the cage closure scheme and successfully developed the pregnancy.
  • the parent animals after the cages are separated into cages, specifically, the parent animals in the cages after the cages are separated into cages.
  • the parent cage separation unit 133 is located in front of the pre-identification cage separation unit 131 .
  • the space management module 140 is used for managing the space position information of each animal.
  • the data management system provided by the present invention will display a 2d coordinate system, the starting point of the coordinate is located at the lower left corner of the 2d operation interface, and the positive direction of the y-axis of the coordinate system is the north direction of the actual orientation , the size of the coordinate system is the maximum value of the house area, the area of the operation interface provided by the present invention includes but is not limited to the area of positive integer multiples of 5m*4m, such as 10m*8m, 20m*16m, preset in the coordinate system
  • the size of the virtual house, the default value is 5m*4m
  • the position of the room door is on the short side of the room by default
  • the manager can change the size, shape and door position of the room at will, but the size of the house cannot exceed the maximum value of the coordinate system scope.
  • the manager After determining the size of the room, the manager can put the specific type of cage required into the room, and click OK after completion to create the room.
  • the visual display methods for the room include but are not limited to: 2D display mode, 3d display mode, monitor mode and inter-operation mode.
  • the data management system 10 also includes an animal information module 150 .
  • the animal information module 150 is used for importing, querying, exporting, editing and adding the attribute information of the parent animals and the attribute information of the offspring animals.
  • the animal information module 150 is used for querying, deleting, exporting, importing, batch-operating mouse status, and adding participants, wherein the batch-importing of parental animals is a separate function.
  • the animal information module 150 is an operation on the attribute information of the animal, and its purpose is to store the attribute information of the animal, so as to facilitate subsequent operations such as cage closing, cage separation, identification, and usage of the animal.
  • the data management system 10 also includes a strain management module 160 .
  • the strain management module 160 is used to collect the strain information of the parent animal, the strain information of the offspring animal, the strain information of the newly added parent animal and the newly added offspring animal in the database. Animal strain information can be added, queried, edited and deleted.
  • the main purpose of the strain management module 160 is to store animal strain information, because the current animal strain needs to be stored in the system when animal information is subsequently added.
  • the added strain information displayed in the strain management module 160 is all derived from the pre-strain, and the management of the pre-strain includes querying the pre-strain, adding a pre-strain, editing a pre-strain, and deleting a pre-strain.
  • the main purpose of setting up the pre-strain is to set up the managers of the strain module.
  • the use management module 170 is used to manage the experimental use of the newly added parent animal and the experimental use of the newly added offspring animal, according to the identification information of the newly added parent animal and the newly added offspring Identification information of offspring animals, to determine the uses of the newly added parent animals and the newly added offspring animals, the uses include experiments, identification, testing, elimination, death, accidents, sales, reserve species, expanded species, and production species.
  • the data management system 10 also includes an audit management module 180:
  • the review management module 180 is used to generate a cage-housing scheme for the newly added offspring animal strain information, the newly added parent offspring animal strain information, the newly added offspring animal attribute information, and the newly added parent offspring animal Conduct an audit, and use it for the cage-closing of the cage-closing module 110 after confirming that the audit is passed.
  • the audit management module 180 can audit the newly added strains, and can also audit the newly entered animals.
  • the system will display the review page. After clicking the agree button, the strain is successfully added, and after clicking the reject strain addition button, the strain addition fails.
  • the user management module 190 is configured to obtain the login authority of the user, and enter the animal information module 150 through the login authority.
  • the user management module 190 allows different users to obtain access to the animal breeding management system through different registration and login methods. For example, the user can input the user name, password and Verification code, click to log in, if the user name and password are correct, then enter the animal breeding management system, otherwise it will prompt that the user name or password is wrong. After the user's login time reaches the preset time, the animal reproduction database will reacquire the authority of the above-mentioned users.
  • the types of users can be divided into individual users and institutional users. Non-certified institutions and certified institutions, and certified institutions are divided into production-type animal rooms, use-type animal rooms and production-use animal rooms.
  • the user management module 190 can also modify basic information and personal passwords.
  • the present invention can visualize buildings, rooms, cages, cages, and animals.
  • the system interface is equipped with animal operation rooms, cage display areas, cage display areas, resident information display areas, resident space display areas, and online visualization areas.
  • the simulation shows that here, the data of the operation in the operation room will be updated to the database in real time, and the operation room is set in 2D mode, 3D mode, monitoring mode and operation room mode, which is convenient for personnel to carry out batch breeding management and operation of animals.
  • the data management system 10 of the animal breeding data management scheme provided by the embodiment of the present invention can provide services for animal breeding, making the data layer of breeding animals clearer , the scheme of animal breeding and the separation of animals into cages are more convenient to operate, reduce labor costs, and improve the quality of work, and the present invention combines cages according to the cage combination scheme to generate offspring animals, and can add new additions to the cage combination scheme, Realize the direct modification of the co-caging scheme, avoiding the excessive time and cost of artificially designing the co-caging scheme of animals and changing the co-caging scheme, and improving the fault tolerance rate.
  • the present invention uses the space management module 140 manages the spatial position information of the animals, and realizes efficient and orderly management of caged and caged animals.
  • FIG. 3 is a schematic structural diagram of another data management system for animal breeding provided by an embodiment of the present invention.
  • the data management system 10 for animal breeding provided by the embodiment of the present invention also includes a species management module 210 , an entry review module 220 , an ethics review module 230 , a certificate module 240 and a system management module 250 .
  • the species management module 210 is used for managing the species information of animals in the database, and the species includes but not limited to mice, rats, guinea pigs, monkeys, rabbits and dogs.
  • the move-in review module 220 includes enterprise move-in review and individual move-in review.
  • the individual move-in review specifically means that individuals can inquire about the certified animal room of the enterprise, and can submit an application to the enterprise after selecting a suitable animal room.
  • the application type is divided into self-selection As well as enterprise allocation, after submitting the application, wait for the enterprise's review, and after the review is passed, individual users can use the above-mentioned animal room.
  • the enterprise entry review is specifically that the enterprise can check the individual users who apply for entry in the entry review module 220, and can approve or reject the current user. For individual users who choose to choose independently, the enterprise only needs to enter to check whether the application for user entry is in compliance with the regulations and whether it can be realized. Maximization of benefits, specifically for the enterprise to choose open empty cages, and approve or reject the user's application for entry; for individual users who choose to be allocated by the enterprise, the enterprise needs to choose open empty cages or spare cages for cages according to user needs Assignment, agree or reject the user's application for admission.
  • the ethics review module 230 is used to review whether the processing information of the animals used for the experiment conforms to ethics, such as the date of the animals' move-in, the date of the experiment, the name of the experiment, the batch number of the experiment, the person in charge, grouping, experimental modeling, The way of drug administration, the way of killing animals after the experiment and the way of handling the remaining animals shall be reviewed.
  • the certificate module 240 is used to manage the quality certificates of the animals that are stationed.
  • the certificate information includes animal species strains, grades, animal specifications (weight, age in days, sex, etc.), quantity, date of the latest quality inspection, quality inspection unit , purpose, sales unit, license number, quality person in charge, handler and date, etc., and the corresponding management personnel can also generate animal quality certificates and animal ethics certificates for animals in batches online, and online visualization can be edited by animal or by cage
  • the related information of the animal qualification certificate makes the present invention be beneficial to the related work of the management personnel of the animal room.
  • the system management module 250 is used for user management, authority management, role management of managers, department and post management.
  • the data management system 10 of the animal breeding data management scheme provided by the embodiment of the present invention can provide services for animal breeding, making the data layer of breeding animals clearer , it is more convenient to generate animal breeding schemes and separate cages for animals, reduce labor costs, and improve work quality, and the present invention combines cages according to the cage-closing scheme to generate offspring animals, and can add new cages to the cage-closing scheme. Realize the direct modification of the co-caging plan, avoiding the excessive time and cost of artificially designing the animal co-caging program and changing the co-caging program, and improving the fault tolerance rate.
  • the present invention uses the space management module 140 The spatial position information of the animals is managed, and the efficient and orderly management of the animals in cages and cages is realized.
  • FIG. 4 is a flowchart of a data management method for animal breeding provided by an embodiment of the present invention. As shown in FIG. 4, the data management method includes the following steps:
  • the attribute information of the parent animal after it is determined that the parent animal can be used for mating, generate a confinement plan, and determine the pregnancy period of the parent animal in reaching the confinement plan And after the pregnancy is successfully conceived, the information of the offspring animal corresponding to the information of the parent animal is generated.
  • the identification information of the newly added parent animals the identification information of the newly added offspring animals and the target cage separation rules, separate the newly added parent animals and the newly added offspring animals into cages after identification, and When it is determined that the offspring animals have reached the weaning cycle in the cage-housing scheme, according to the gender information of the offspring animals, the offspring animals are separated into cages before being identified.
  • the animal breeding management system provided by the present invention can provide services for animal breeding, making the data layer of breeding animals clearer, It is more convenient to generate animal breeding schemes and separate cages for animals, reduce labor costs, and improve work quality, and the present invention performs cage closing according to the cage-closing scheme to generate offspring animals, and can add new cage-closing schemes to realize Directly change the co-caging plan, avoiding the excessive time and cost of artificially designing the animal co-caging program and changing the co-caging program, and improving the error tolerance rate.
  • the identification information of newly added parental animals and newly added offspring animals is identified and separated into cages, which avoids the singleness of manual design for animal cage separation and improves the efficiency of cage separation.
  • the present invention manages the animals through space
  • the spatial location information realizes the efficient and orderly management of animal co-caging and sub-caging.
  • FIG. 5 is a schematic structural diagram of an electronic device 500 provided by an embodiment of the present invention, including: a processor 510, a memory 520, and a bus 530.
  • the memory 520 stores the Machine-readable instructions, when the electronic device 500 is running, the processor 510 communicates with the memory 520 through the bus 530, and the machine-readable instructions are executed by the processor 510 when running as described above.
  • the attribute information of the parental animals after determining that the parental animals can be used for mating, generate a confinement plan, and judge that the parental animals reach the conception cycle in the confinement plan and succeed After the pregnancy is revealed, the information of the offspring animal corresponding to the information of the parent animal is generated.
  • the identification information of the newly added parent animals According to the identification information of the newly added parent animals, the identification information of the newly added offspring animals and the target cage separation rules, the newly added parent animals and the newly added offspring animals are identified and divided into cages, and after determining When the offspring animals reach the weaning period in the cage-closing scheme, according to the gender information of the offspring animals, the offspring animals are identified and separated into cages before being identified.
  • the animal breeding management system can provide services for animal breeding, making the data layer of breeding animals clearer, the operation of animal breeding schemes and animal cages more convenient, and reducing labor costs.
  • the quality of work is improved, and the present invention performs cage-closing according to the cage-closing scheme to generate offspring animals, and can add new ones to the cage-closing scheme, so as to directly modify the cage-closing scheme, avoiding the artificially designed animal cage-closing scheme And the time and cost required to change the cage solution are too high, which increases the fault tolerance rate, and separates the offspring animals before identification and the identification information of the new parent animals and the new offspring animals.
  • the cage avoids the singleness of manual design for animal cage separation, and improves the efficiency of cage separation.
  • the present invention manages the spatial position information of the animals through the space management module, and realizes efficient and orderly cage cages for animals. and cage management.
  • an embodiment of the present invention also provides a computer-readable storage medium, where a computer program is stored on the computer-readable storage medium, and when the computer program is run by a processor, the data management provided by the above-mentioned embodiments is executed. method steps.
  • the storage medium can be a general-purpose storage medium, such as a removable disk, a hard disk, etc.
  • the above-mentioned entity association method can be executed, and the cage information of the cage matching scheme can be realized.
  • the separate display of the first cage information of the cage separation scheme and realize the display of the information of each state of cage separation and cage closing. While improving the accuracy of data information, it avoids manual recording of a large amount of data and reduces human cost.
  • the units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place, or may be distributed to multiple network units. Part or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
  • the functions are realized in the form of software function units and sold or used as independent products, they can be stored in a non-volatile computer-readable storage medium executable by a processor.
  • the essence of the technical solution of the present invention or the part that contributes to the prior art or the part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium , including several instructions to make a computer device (which may be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the method described in each embodiment of the present invention.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disc and other media that can store program codes. .

Landscapes

  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Databases & Information Systems (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Business, Economics & Management (AREA)
  • Data Mining & Analysis (AREA)
  • General Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Human Resources & Organizations (AREA)
  • Animal Husbandry (AREA)
  • Marine Sciences & Fisheries (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Remote Sensing (AREA)
  • Health & Medical Sciences (AREA)
  • Economics (AREA)
  • General Health & Medical Sciences (AREA)
  • Agronomy & Crop Science (AREA)
  • Marketing (AREA)
  • Primary Health Care (AREA)
  • Strategic Management (AREA)
  • Tourism & Hospitality (AREA)
  • General Business, Economics & Management (AREA)
  • Computational Linguistics (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

本发明提供了一种动物繁育的数据管理系统、方法、电子设备和存储介质,数据管理系统包括合笼模块、鉴定模块、分笼模块和空间管理模块:合笼模块,用于查询动物的合笼信息,新增合笼方案、编辑合笼方案、生成合笼方案以及查看合笼方案,针对数据库中的父母代动物按照合笼方案进行合笼,生成子女代动物;分笼模块,用于子女代动物的鉴定前分笼以及新增父母代动物和新增子女代动物鉴定后分笼。本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,更加方便动物繁育的方案生成以及动物的分笼操作,降低人力成本,提升了工作质量。

Description

动物繁育的数据管理系统、方法、电子设备及存储介质
本发明要求于2021年09月17日提交中国专利局、申请号为202111090590.8、发明名称为“动物繁育的数据管理系统、方法、电子设备及存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本发明中。
技术领域
本发明涉及动物繁育技术领域,尤其是涉及一种动物繁育的数据管理系统、方法、电子设备及存储介质。
背景技术
在动物饲养以及繁育的过程中,会有大量繁育方案的设计以及繁育数据产生,如对动物代次数据,动物分笼的数据,动物出生以及引进动物等数据的记录,且在生成动物的合笼方案时需要计算对应的时间,这样对大量数据进行人工记录以及计算的操作,是很消耗人力以及时间的,但是数据的准确性却无法保证,这样会面临成本过高,但工作的质量以及效率无法提升的问题。
发明内容
有鉴于此,本发明的目的在提供一种动物繁育的数据管理系统、方法、电子设备及存储介质,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,动物繁育的方案以及动物的分笼操作更加方便,降低人力成本,提升了工作质量。
本发明主要包括以下几个方面:
第一方面,本发明实施例提供了一种动物繁育的数据管理系统,所述数据管理系统包括合笼模块、鉴定模块、分笼模块和空间管理模块:
所述合笼模块,用于查询动物的合笼信息,新增合笼方案、编辑合笼方案、生成合笼方案以及查看合笼方案,针对数据库中的父母代动物按照合笼方案进行合笼,生成子女代动物的信息;
所述鉴定模块,用于针对新增父母代动物以及新增子女代动物进行鉴定,获取新增父母代动物的鉴定信息以及新增子女代动物的鉴定信息;
所述分笼模块,用于针对所述子女代动物进行鉴定前分笼、针对所述父母代动物进行合笼后的父母代分笼,以及针对所述新增父母代动物和/或所述新增子女代动物进行鉴定后分笼;
所述空间管理模块,用于管理各个动物的空间位置信息。
在一种可能的实施方式中,所述合笼模块包括:
第一合笼单元,用于对所述父母代动物进行合笼,在判断数据库中的父母代动物在达到合笼方案中的显怀周期且成功显怀后,生成子女代动物信息。
在一种可能的实施方式中,所述合笼模块包括:
第二合笼单元,用于在判断数据库中的父母代动物在达到合笼方案中的显怀周期且未成功显怀后,将所述合笼方案中未成功显怀的母代动物与数据库中其他父代动物进行合笼,生成对应的子女代动物的信息。
在一种可能的实施方式中,所述分笼模块包括:
鉴别前分笼单元,用于子女代动物的鉴定前分笼,在确定子女代动物达到合笼方案中的离乳周期时,根据所述子女代动物的性别信息,对所述子女代动物进行鉴别前分笼;
鉴别后分笼单元,用于新增父母代动物和新增子女代动物鉴定后分笼,根据所述新增父母代动物的鉴定信息、新增子女代动物的鉴定信息以及目标分笼规则,对所述新增父母代动物和所述新增子女代动物鉴定后分笼。
在一种可能的实施方式中,所述动物信息模块,用于对所述父母代动物的属性信息和所述子女代动物的属性信息进行导入、查询、导出、编辑和新增。
在一种可能的实施方式中,所述数据管理系统还包括品系管理模块:
所述品系管理模块,用于对所述数据库中的所述父母代动物的品系信息、所述子女代动物的品系信息、所述新增父母代动物的品系信息以及所述新增子女代动物的品系信息进行新增、查询、编辑删除。
在一种可能的实施方式中,所述数据管理系统还包括用途管理模块:
所述用途管理模块,用于对新增父母代动物以及新增子女代动物的实验用途进行管理,根据所述新增父母代动物的鉴定信息以及所述新增子女 代动物的鉴定信息,确定所述新增父母代动物以及所述新增子女代动物的用途,所述用途包括实验、鉴定、检测、淘汰、死亡、事故、售出、后备种、扩大种以及生产种。
第二方面,本发明实施例还提供了一种动物繁育的数据管理方法,所述数据管理方法包括:
根据所述父母代动物的属性信息,在确定所述父母代动物能够用于交配后,生成合笼方案,并在判断所述父母代动物在达到所述合笼方案中的显怀周期且成功显怀后,生成与所述父母代动物的信息对应的子女代动物的信息;
针对新增父母代动物以及新增子女代动物进行鉴定,获取所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息;
根据所述新增父母代动物的鉴定信息、新增子女代动物的鉴定信息以及目标分笼规则,对所述新增父母代动物和所述新增子女代动物鉴定后分笼以及,在确定所述子女代动物达到所述合笼方案中的离乳周期时,根据所述子女代动物的性别信息,对所述子女代动物进行鉴别前分笼。
第三方面,本发明实施例还提供了一种电子设备,包括:处理器、存储器和总线,所述存储器存储有所述处理器可执行的机器可读指令,当电子设备运行时,所述处理器与所述存储器之间通过总线通信,所述机器可读指令被所述处理器运行时执行上述第二方面中可能的实施方式中所述的数据管理方法的步骤。
第四方面,本发明实施例还提供一种计算机可读存储介质,该计算机可读存储介质上存储有计算机程序,该计算机程序被处理器运行时执行述第二方面中可能的实施方式中所述的数据管理方法的步骤。
本发明实施例中,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,动物繁育的方案以及动物的分笼操作起来更加方便,降低人力成本,提升了工作质量。
为使本发明的上述目的、特征和优点能更明显易懂,下文特举较佳实施例,并配合所附附图,作详细说明如下。
说明书附图
为了更清楚地说明本发明实施例的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,应当理解,以下附图仅示出了本发明的某些实施例,因此不应被看作是对范围的限定,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他相关的附图。
图1示出了本发明实施例所提供的一种动物繁育的数据管理系统的结构示意图;
图2示出了本发明实施例所提供的另一种动物繁育的数据管理系统的结构示意图;
图3示出了本发明实施例所提供的另一种动物繁育的数据管理系统的结构示意图;
图4示出了本发明实施例所提供的一种动物繁育的数据管理方法的流程图;
图5示出了本发明实施例所提供的一种电子设备的结构示意图。
主要元件符号说明:
图中:10-数据管理系统;110-合笼模块;111-第一合笼单元;112-第二合笼单元;120-鉴定模块;130-分笼模块;131-鉴别前分笼单元;132-鉴别后分笼单元;133-父母代分笼单元;140-空间管理模块;150-动物信息模块;160-品系管理模块;170-用途管理模块;180-审核管理模块;190-用户管理模块;210-物种管理模块;220-进驻审核模块;230-伦理审核模块;240-合格证模块;250-系统管理模块;500-电子设备;510-处理器;520-存储器;530-总线。
具体实施方式
为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,应当理解,本发明中的附图仅起到说明和描述的目的,并不用于限定本发明的保护范围。另外,应当理解,示意性的附图并未按实物比例绘制。本发明中使用的流程图示出了根据本发明的一些实施例实现的操作。应当理解,流程图的操作可以不按顺序实现,没有逻辑的上下文关系的步骤可 以反转顺序或者同时实施。此外,本领域技术人员在本发明内容的指引下,可以向流程图添加一个或多个其他操作,也可以从流程图中移除一个或多个操作。
另外,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。通常在此处附图中描述和示出的本发明实施例的组件可以以各种不同的配置来布置和设计。因此,以下对在附图中提供的本发明的实施例的详细描述并非旨在限制要求保护的本发明的范围,而是仅仅表示本发明的选定实施例。基于本发明的实施例,本领域技术人员在没有做出创造性劳动的前提下所获得的全部其他实施例,都属于本发明保护的范围。
为了使得本领域技术人员能够使用本发明内容,结合特定应用场景“动物繁育的数据管理”,给出以下实施方式,对于本领域技术人员来说,在不脱离本发明的精神和范围的情况下,可以将这里定义的一般原理应用于其他实施例和应用场景。
本发明实施例下所述方法、系统、电子设备及存储介质可以应用于任何需要进行动物繁育的数据管理的场景,本发明实施例并不对具体的应用场景作限制,任何使用本发明实施例提供的动物繁育的数据管理系统、方法、装置、电子设备及存储介质的方案均在本发明保护范围内。
值得注意的是,经研究发现,在本发明提出之前,在动物饲养以及繁育的过程中,会有大量的繁育数据产生,如对动物代次数据,动物分笼的数据,动物出生以及引进动物等数据的记录,且在生成动物的合笼方案时需要计算对应的时间,这样对大量数据进行人工记录以及计算的操作,是很消耗人力以及时间的,但是数据的准确性却无法保证,这样会面临成本过高,但工作的质量以及效率无法提升的问题。
基于此,本发明实施例提供了一种动物繁育的数据管理系统、方法、电子设备及存储介质,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,动物繁育的方案以及动物的分笼操作起来更加方便,降低人力成本,提升了工作质量。
为便于对本发明进行理解,下面结合具体实施例对本发明提供的技术方案进行详细说明。
请参阅图1,图1为本发明实施例所提供的一种动物繁育的数据管理 系统的结构示意图。如图1中所示,本发明实施例提供的动物繁育的数据管理系统10包括合笼模块110、鉴定模块120、分笼模块130和空间管理模块140。
所述合笼模块110,用于查询动物的合笼信息,新增合笼方案、编辑合笼方案、生成合笼方案以及查看合笼方案,针对数据库中的父母代动物按照合笼方案进行合笼,生成子女代动物的信息。
这里,在针对数据库中的父母代动物按照合笼方案进行合笼,需要判断数据库中的父母代动物能够用于合笼,判断方式为:根据父母代动物的属性信息中的停驻日期、出生日期、或用途状态,判断父母代动物能否用于交配,并在确定父母代动物可以交配的前提下,根据父母代动物的属性信息中的性别信息,生成合笼方案,并根据合笼方案对父母代动物进行合笼,并且在母代动物哺乳的子女代动物出生后,记录出生的子女代动物的数量,自动生成子女代动物的信息,并确定子女代动物的属性信息中的子女代品系信息,这里,根据父母代动物的属性信息中的物种信息,品系信息和性别信息,生成合笼方案,可具体为:将父母代动物进行编号,将不同编号的代表不同性别的父母代动物进行合笼,生成合笼方案,其中,父母代动物包括父代动物和母代动物。
在生成合笼方案后,需要判断父母代动物在达到显怀周期后是否成功显怀,在确定父母代动物在达到显怀周期且成功显怀后,生成与所述父母代动物对应的子女代动物;在确定母代动物在达到显怀周期未能成功显怀后,则需要将上述父母代动物中的母代动物与数据库中的其他父代动物进行重新的循环合笼,直至能够生成子女代动物,从而确定子女代动物的品系信息,这里,子女代动物的动物信息包括但不限制于子女代动物的唯一ID和其他相关的信息。
上述中,所述父母代动物的属性信息包括父母代动物的物种信息、父母代动物的编号信息、父母动物的性别信息、父母代动物的空间位置信息、父母代动物的品系信息、父母代动物的出生信息、包含母代动物怀孕周期的母代动物的信息以及父母代动物的用途信息;合笼信息包括上述父母代动物的属性信息、合笼的编号信息、上述父母代动物合笼后的空间位置信息、父母代动物的目标显怀日期、父母代动物的目标交配比以及子女代动 物的离乳日期;合笼方案包括上述父母代动物的属性信息、合笼的编号信息、上述父母代动物合笼后的空间位置信息、父母代动物的显怀周期、父母代动物的预设交配比、子女代动物的离乳周期以及上述父母代动物循环交配的次数。
这样,当父母代动物按照合笼方案中的预设交配比在显怀周期内能够成功显怀时,直接生成子女代动物的信息,并确定显怀日期,进而确定的具体合笼信息,当父母代动物按照笼方案中的预设交配比在显怀周期内未能够成功显怀时,在进行循环交配成功后,确定显怀日期,进而确定的具体合笼信息;预设交配比的比例设定方式为至少一种比例设定方式,所述预设的所述性别配比可具体但不受限制于为1:1;1:2或1:3。
这里,可根据父母代动物中母代动物所对应的不同的品系信息,确定每个母代动物的显怀周期,根据显怀周期,提醒管理人员进行分笼方案的提前制定,并根据显怀周期情况,自动判断是进入交配再次循环还是进入待产离乳,在进入待产离乳后,本发明会自动根据父母代动物的品系信息与显怀周期计算子女代动物的出生日期并再次提醒管理人员,在所述母代动物进入出生离乳阶段时,管理员人员会输入子女代动物出生的只数,自动生成子女代动物的信息,自动生成分笼方案,且用户可对根据分笼方案生成的合笼信息进行导入、导出、批注、删除、批量操作以及新增。
其中,合笼模块110可具体通过点击合笼信息按钮查询动物的合笼信息、通过新增合笼按钮点击弹出新增合笼弹出框填入合笼信息可新增合笼方案,若当前合笼方案还未生成,则可以点击编辑按钮对当前数据进行编辑或者删除,以及点击生成方案按钮生成对应的合笼方案,在对合笼方案进行查看时,点击查看方案按钮,弹出查看方案弹出框,再弹出框里可进行进一步的操纵,点击弹出框左上角的导出按钮会将当前的合笼方案导出为excel表格。还可以对合笼方案的单条数据进行操作,点击怀孕按钮时输入怀孕时间,即可将动物设置为怀孕状态。完成怀孕操作后怀孕按钮熄灭,出生按钮亮起可进行出生操作,当子女代动物出生时点击出生按钮,输入出生数量以及出生日期即可出生成功,这个操作完成后子女代动物数据会自动添加对应出生数的动物,而且动物编号会依次递增。此操作完成后离乳按钮亮起,当到达离乳日期后点击离乳按钮会弹出离乳弹出框,离 乳弹出框会显示出生的子女代动物以及子女代动物的用途,如实验、鉴定、检测、淘汰、死亡、事故、售出、后备种、扩大种以及生产种。
这里,本发明提供的数据管理系统可根据目标品系计划繁育的数量,确定目标品系的基因型,并基于目标品系的基因型,确定父母代动物的转基因所在的染色体的位置以及基因的遗传性状,实现自动设计动物繁育方案。
所述鉴定模块120,用于针对新增父母代动物以及新增子女代动物进行鉴定,获取所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息。
这里,鉴定模块120对新增父母代动物以及新增子女代动物进行鉴定,且鉴定的结果为确定新增父母代动物以及新增子女代动物的实验用途,所述鉴定实验包括但不限制于预设基因型鉴定实验。
上述中,对于子女代动物以及父母代动物的鉴定实验与对新增父母代动物以及新增子女代动物的鉴定实验类似,这里,不再赘述。
当点击新增父母代动物的消息栏或者新增子女代动物的消息栏后,再点击新增按钮,弹出新增鉴定信息弹出框,输入弹出框对应的信息后,点击确定,会新增一个鉴定信息到鉴定模块120,并将鉴定信息同步到对应的实验信息中。
所述分笼模块130,用于针对所述子女代动物进行鉴定前分笼,针对所述父母代动物进行合笼后的父母代分笼,以及针对所述新增父母代动物和/或所述新增子女代动物进行鉴定后分笼。
这里,分笼模块130包括三种分笼方式,分别为父母代动物在合笼周期结束后进行的父母代分笼,鉴定前分笼以及鉴定后分笼,且分笼后会在合笼方案以及合笼信息中均记录子女代动物的品系信息以及新增父母代动物的和新增子女代动物的实验信息,所述实验信息包括实验编号、实验用途以及实验作用,且鉴定后分笼也可以通过将鉴定前分笼进行加权分笼的方式得到。
上述实施例中,可通过点击每笼信息(前)钮查看鉴定前分笼的信息,此信息是在合笼方案点击离乳日期后自动生成,目的是为了展示当前笼的所有信息以及子代动物对应的笼号,点击查看离乳笼号按钮即可查看当前 子代动物对应的笼号以及动物编号;点击每笼信息(后)会展示鉴定后分笼的信息,点击新增父母代动物或者新增子女代动物后,选择对应的动物再点击新增按钮,弹出新增每笼信息弹出框,选择品系名称,房间名,以及输入新的笼规则和每笼数量后,点击确定会对这些动物重新按照新的规则来分笼。
所述空间管理模块140,用于管理各个动物的空间位置信息。
这里,空间管理模块140,用于对数据库中各个动物的空间位置信息进行管理,具体可包括但不限制于对空间位置信息进行增、删、改、查,具体可以为空间位置所对应的所在的国家、省、市、县/区、楼号、楼层、房间、笼架、笼位以及笼位号进行增删改查。
并在获取到至少一个新增子女代动物以及新增父母代动物的信息后,确定每个新增子女代动物以及新增父母代动物的空间位置信息。
上述中,空间位置信息包括每个动物所处的动物房,楼号信息楼层信息、房间信息、笼架信息以及笼位信息。
这样,通过查看房间信息按钮展示所有房间信息以及对应房间下的品系信息中的名称、品系笼数以及品系下的笼,并且可对笼进行删除以及批量删除操作;通过点击批量导入按钮弹出房间导入弹出框,点击下载模板按钮下载对应的模板,在模板里添加对应的数据,添加完成后点击上传选择填好后的模板点击确定房间添加完成;通过选择多个房间后点击数据上的删除按钮即可删除房间以及房间下的所有笼,点击单条数据后的删除按钮删除单个房间以及这个房间下的所有笼;通过点击展开房间以及房间下的某个品系,会看到当前品系下的笼,可以对笼进行单个删除以及批量删除操作。
本发明实施例提供的动物繁育数据管理方案的数据管理系统10,与现有技术中相比,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,动物繁育的方案以及动物的分笼操作起来更加方便,降低人力成本,提升了工作质量,且本发明按照合笼方案进行合笼,生成子女代动物,并可以对合笼方案进行新增,实现直接对合笼的方案进行更改,避免了人工设计动物的合笼方案以及更改合笼方案所需要的时间和成本过高,提高了容错率,且通过对子女代动物进行 鉴定前分笼以及对新增父母代动物和新增子女代动物的鉴定信息进行鉴定后分笼,避免了人工设计对动物进行分笼的单一性,提高了分笼的效率,同时,本发明通过空间管理模块140管理所述动物的空间位置信息,保证了笼位的唯一性,实现了笼位号可循环性,进而实现了高效、有序的对动物合笼和分笼的管理。
请参阅图2,图2为本发明实施例所提供的另一种动物繁育的数据管理系统10的结构示意图。如图2中所示,本发明实施例提供的动物繁育的数据管理系统10包括合笼模块110、鉴定模块120、分笼模块130和空间管理模块140:
所述合笼模块110,用于查询动物的合笼信息,新增合笼方案、编辑合笼方案、生成合笼方案以及查看合笼方案,针对数据库中的父母代动物按照合笼方案进行合笼,生成子女代动物的信息。
进一步的,所述合笼模块110包括:
第一合笼单元111,用于对所述父母代动物进行合笼,在判断数据库中的父母代动物在达到合笼方案中的显怀周期且成功显怀后,生成子女代动物的信息。
这里,所述第一合笼单元111在生成子女代动物的信息前,会在父母代动物达到显怀周期且成功显怀后,且在母代动物分娩后,会记录出生的子女代动物的数量,并对所述父母代动物进行分笼处理。
进一步的,所述合笼模块110包括:
第二合笼单元112,用于在判断数据库中的父母代动物在达到合笼方案中的显怀周期且未成功显怀后,将所述合笼方案中未成功显怀的母代动物与数据库中其他父代动物进行合笼,生成对应的子女代动物的信息。
这里,第二合笼单元112用于在第一合笼单元111未产生子女代动物的情况下,根据父母代动物的信息对父母代动物进行循环交配,并在循环交配生成对应的子女代动物以及所述子女代动物的信息,其中,所述子女代动物的信息包括但不限制于记录子女代动物的数量信息。
其中,所述第二合笼单元112在生成新的子女代动物的信息前,会在新的父母代动物达到显怀周期且成功显怀后,对所述新的父母代动物进行分笼处理。
所述鉴定模块120,用于获取新增父母代动物的鉴定信息以及新增子女代动物的鉴定信息。
所述分笼模块130,用于针对新增父母代动物以及新增子女代动物进行鉴定,获取所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息。
进一步的,所述分笼模块130包括:
鉴别前分笼单元131,用于子女代动物的鉴定前分笼,在确定子女代动物达到合笼方案中的离乳周期时,根据所述子女代动物的性别信息,对所述子女代动物进行鉴别前分笼。
这里,子女代动物的鉴别前分笼可以自动生成动物卡片,动物卡片包括转基因动物离乳已检测PCR信息卡、转基因动物离乳未检测PCR信息卡、转基因动物繁育信息卡。
这里,可根据上述出生子女代动物的数目进行分笼。
上述中,子女代动物的所述鉴别前分笼为将至少一个子女代动物按照雌雄进行分笼饲养。
这样,当用户想要查看某个父母代动物所对应的所述合笼方案以及合笼信息,或用户想要查看某个子女代动物的所述分笼的信息时,所述用户通过点击PC端的用户图形界面或触控移动装端的用户图形界面来响应于用户的信息查看请求,对所述合笼方案对应的合笼信息以及所述鉴别前分笼的进行显示。
鉴别后分笼单元132,用于新增父母代动物和新增子女代动物鉴定后分笼,根据所述新增父母代动物的鉴定信息、新增子女代动物的鉴定信息以及目标分笼规则,对所述新增父母代动物和所述新增子女代动物鉴定后分笼。
这里,目标分笼规则为自定义分笼规则,目标分笼规则包括但不限制于根据目标动物的性别,鉴定对应的新增父母代动物和新增子女代动物,所述目标分笼规则可具体划分为雌阴、雌阳、雄阴和雄阳,目标分笼规则可以为用户根据需求自己定义的分笼规则。
这样,鉴别后分笼单元132用于鉴别实验,如用于实验、鉴定、检测、淘汰、死亡、事故、售出、后备种、扩大种以及生产种。
当用户想要查看某个新增父母代动物或新增子女代动物所对应的鉴别后的分笼信息时,所述用户通过点击PC端的用户图形界面或触控移动装端的用户图形界面来响应于用户的信息查看请求,对所述鉴别后的分笼信息进行显示。
所述分笼模块130还包括父母代分笼单元133,用于在判断数据库中的父母代动物在达到合笼方案中合笼周期且成功显怀后,为了防止父代动物继续与母代动物交配、影响母代动物哺乳子女代动物,将所述合笼后的父母代动物进行分笼处理,具体为将所述合笼后笼子中的父代动物进行分笼。
这里。所述父母代分笼单元133位于所述鉴别前分笼单元131前。
所述空间管理模块140,用于管理各个动物的空间位置信息。
这里,当空间管理模块140在新增房间时,本发明提供的数据管理系统会展示一个2d的坐标系,坐标起点位于2d操作界面的左下角,坐标系y轴正方向为实际方位的北方向,坐标系的大小是房子面积的最大值,本发明提供的操作界面的面积包括但不限制于5m*4m的正整数倍面积,如10m*8m,20m*16m,在坐标系中有预设虚拟房屋大小,其默认值为5m*4m,且房间门的位置默认在房间的短边位置,管理人员可以随意的改变房间的大小,形状,门的位置,但房屋大小无法超过坐标系最大值范围。确定好房间大小之后,管理人员可将需要的特定型号笼架放入房间内,完成之后点击确定即可创建房间,这里,对于房间的可视的展示方式包括单但不限于:2d展示模式、3d展示模式、监控模式以及操作间模式。
进一步的,所述数据管理系统10还包括动物信息模块150。
所述动物信息模块150,用于对所述父母代动物的属性信息和所述子女代动物的属性信息进行导入、查询、导出、编辑和新增。
这里,动物信息模块150用于查询、删除、导出、导入、批量操作小鼠状态、以及新增参与人员,其中,父母代动物的批量导入是单独的功能。
上述中,动物信息模块150是对动物的属性信息的操作,目的是存储动物的属性信息,方便后续对动物进行合笼,分笼,鉴定,用途等操作。
进一步的,所述数据管理系统10还包括品系管理模块160。
所述品系管理模块160,用于对所述数据库中的所述父母代动物的品 系信息、所述子女代动物的品系信息、所述新增父母代动物的品系信息以及所述新增子女代动物的品系信息进行新增、查询、编辑删除。
这里,在对父母代动物的品系信息进行新增品系的处理操作时,需要请求向拥有更高限权的管理人员进行审核,且品系信息中的品系编号均不能修改。
上述中,品系管理模块160主要目的是存储动物的品系信息,因为在后续添加动物信息时需要当前动物的品系存储在于本系统中。
这样,品系管理模块160中显示添加的品系信息均是来源于预品系,针对预品系的管理包括包含查询预品系,新增预品系,编辑预品系,以及删除预品系。设置预品系主要的目的是为了设置品系模块的管理人员。
进一步的,所述用途管理模块170,用于对新增父母代动物的实验用途以及新增子女代动物的实验用途进行管理,根据所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息,确定所述新增父母代动物以及所述新增子女代动物的用途,所述用途包括实验、鉴定、检测、淘汰、死亡、事故、售出、后备种、扩大种以及生产种。
上述中,当点击新增父母代动物的鉴定信息或者新增子女代动物的鉴定信息后,选择对应的动物再点击新增按钮,弹出实验用途弹出框选择实验用途,以及输入对应的实验用途数据后点击确定即可新增用途。
进一步的,所述数据管理系统10还包括审核管理模块180:
所述审核管理模块180,用于对新增子女代动物的品系信息、新增父母代动物的品系信息、所述新增子女代动物的属性信息、所述新增父母代动物生成合笼方案进行审核,并在确认审核通过后用于合笼模块110的合笼。
这里,审核管理模块180可以对新增品系进行审核,也可以对新进驻的动物进行审核。
上述中,当用户在确认新增品系信息后,系统会展示到审核页面,点击同意按钮后,品系新增成功,点击拒绝品系新增按钮后,品系新增失败。
进一步的,所述用户管理模块190,用于获取用户的登录权限,并通过所述登录权限进入所述动物信息模块150。
这里,用户管理模块190使得不同的用户可通过不同的注册登录的方 式来获取进入所述动物繁育管理系统的权限,如用户可在PC端或一个终端的登录界面输入用户的用户名、密码以及验证码,点击登录,若用户名以及密码正确,则进入所述动物繁育管理系统,否则提示用户名或者密码错误。用户在登录时间达到预设时间后,所述动物繁衍数据库会重新获取上述用户的权限,其中,用户的类型可分为个人用户和机构用户,机构用户主要放各类动物房相关单位,分为未认证机构和认证机构,认证机构又分为生产型动物房,使用型动物房和生产使用型动物房。
上述中,用户管理模块190还可以修改基本资料以及个人密码。
此外,本发明可以对楼、房间、笼架、笼位、动物进行可视化处理,系统界面设置动物操作间、笼子展示区、笼架展示区、进驻信息展示区、进驻空间展示区、在线可视化区以及模拟显示,这里,在操作间进行操作的数据都会实时更新到数据库中,操作间设置2D模式、3D模式、监控模式以及操作间模式,方便实现人员对动物进行批量繁育管理和操作。
本发明实施例提供的动物繁育数据管理方案的数据管理系统10,与现有技术中相比,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,动物繁育的方案以及动物的分笼操作起来更加方便,降低人力成本,提升了工作质量,且本发明按照合笼方案进行合笼,生成子女代动物,并可以对合笼方案进行新增,实现直接对合笼的方案进行更改,避免了人工设计动物的合笼方案以及更改合笼方案所需要的时间和成本过高,提高了容错率,且通过对子女代动物进行鉴定前分笼,以及对新增父母代动物和新增子女代动物的鉴定信息进行鉴定后分笼,避免了人工设计对动物进行分笼的单一性,提高了分笼的效率,同时,本发明通过空间管理模块140管理所述动物的空间位置信息,实现了高效、有序的对动物合笼和分笼的管理。
请参阅图3,图3为本发明实施例所提供的另一种动物繁育的数据管理系统的结构示意图。如图3中所示,本发明实施例提供的动物繁育的数据管理系统10还包括物种管理模块210、进驻审核模块220、伦理审核模块230、合格证模块240和系统管理模块250。
所述物种管理模块210,用于管理数据库中动物的物种信息,物种的种类包括但不限于小鼠、大鼠、豚鼠、猴、兔和狗。
所述进驻审核模块220,包括企业进驻审核和个人进驻审核,个人进驻审核具体为个人可以查询认证后的企业动物房,选择合适的动物房后可对该企业提交申请,申请类型分为自主选择以及企业分配,在提交申请后,等待企业审核,审核通过后,个人用户即可使用上述动物房。
企业进驻审核具体为企业可在进驻审核模块220查看申请进驻的个人用户,可以同意或者拒绝当前用户,对于选择自主选择的个人用户企业只需进查看申请的用户进驻是否符合规定以及是否能够实现企业利益最大化,具体为企业选择对外开放空笼位,对用户进驻申请进行同意或者拒绝;对于选择企业分配的个人用户,企业需要根据用户需求,选择对外开放空笼位或备用笼位进行笼位分配,对用户进驻申请进行同意或者拒绝。
所述伦理审核模块230,用于对进驻的动物用于实验的处理信息是否符合伦理进行审核,如对动物的进驻日期、实验日期、实验名称、实验批号、负责人、分组、实验造模、给药方式、实验后动物处死方式以及剩余动物处理方式进行审核。
所述合格证模块240,用于管理进驻动物的质量合格证,合格证信息包括动物物种品系、等级、动物规格(体重,日龄,性别等)、数量、最近一次质量检测日期、质量检测单位、用途、出售单位、许可证号、质量负责人、经手人以及日期等,并且相应管理人员也可在线对动物批量生成动物质量合格证、动物伦理合格证,在线可视化按只或者按笼进行编辑动物合格证相关信息,这样使得本发明有利于动物房管理人员管理相关工作。
所述系统管理模块250,用于用户管理、权限管理、管理人员的角色管理、部门以及岗位管理。
本发明实施例提供的动物繁育数据管理方案的数据管理系统10,与现有技术中相比,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,更加方便动物繁育的方案生成以及动物的分笼操作,降低人力成本,提升了工作质量,且本发明按照合笼方案进行合笼,生成子女代动物,并可以对合笼方案进行新增,实现直接对合笼的方案进行更改,避免了人工设计动物的合笼方案以及更改合笼方案所需要的时间和成本过高,提高了容错率,且通过对子女代动物进行鉴定前分笼以及对新增父母代动物和新增子女代动物的鉴定信息进行鉴 定后分笼,避免了人工设计对动物进行分笼的单一性,提高了分笼的效率,同时,本发明通过空间管理模块140管理所述动物的空间位置信息,实现了高效、有序的对动物合笼和分笼的管理。
请参阅图4,图4为本发明实施例所提供的一种动物繁育的数据管理方法的流程图,如图4中所示,所述数据管理方法包括以下步骤:
S401、根据所述父母代动物的属性信息,在确定所述父母代动物能够用于交配后,生成合笼方案,并在判断所述父母代动物在达到所述合笼方案中的显怀周期且成功显怀后,生成与所述父母代动物的信息对应的子女代动物的信息。
S402、针对新增父母代动物以及新增子女代动物进行鉴定,获取所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息。
S403、根据所述新增父母代动物的鉴定信息、新增子女代动物的鉴定信息以及目标分笼规则,对所述新增父母代动物和所述新增子女代动物鉴定后分笼,以及在确定所述子女代动物达到所述合笼方案中的离乳周期时,根据所述子女代动物的性别信息,对所述子女代动物进行鉴别前分笼。
本发明实施例提供的动物繁育数据管理方案的数据管理方法,与现有技术中相比,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,更加方便动物繁育的方案生成以及动物的分笼操作,降低人力成本,提升了工作质量,且本发明按照合笼方案进行合笼,生成子女代动物,并可以对合笼方案进行新增,实现直接对合笼的方案进行更改,避免了人工设计动物的合笼方案以及更改合笼方案所需要的时间和成本过高,提高了容错率,且通过对子女代动物进行鉴定前分笼以及对新增父母代动物和新增子女代动物的鉴定信息进行鉴定后分笼,避免了人工设计对动物进行分笼的单一性,提高了分笼的效率,同时,本发明通过空间管理所述动物的空间位置信息,实现了高效、有序的对动物合笼和分笼的管理。
请参阅图5,图5为本发明实施例所提供的一种电子设备500的结构示意图,包括:处理器510、存储器520和总线530,所述存储器520存储有所述处理器510可执行的机器可读指令,当电子设备500运行时,所述处理器510与所述存储器520之间通过所述总线530进行通信,所述机 器可读指令被所述处理器510运行时执行如上述实施例中任一所述的数据管理方法的步骤。
具体地,所述机器可读指令被所述处理器510执行时可以执行如下处理:
根据所述父母代动物的属性信息,在确定所述父母代动物可以用于交配后,生成合笼方案,并在判断所述父母代动物在达到所述合笼方案中的显怀周期且成功显怀后,生成与所述父母代动物的信息对应的子女代动物的信息。
针对新增父母代动物以及新增子女代动物进行鉴定,获取所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息。
根据所述新增父母代动物的鉴定信息、新增子女代动物的鉴定信息以及目标分笼规则,对所述新增父母代动物和所述新增子女代动物鉴定后分笼,以及在确定所述子女代动物达到所述合笼方案中的离乳周期时,根据所述子女代动物的性别信息,对所述子女代动物进行鉴别前分笼。
本发明实施例中,本发明提供的动物繁育的管理系统,可以为动物繁育提供服务,使得繁育动物的数据层更加清晰,动物繁育的方案以及动物的分笼操作起来更加方便,降低人力成本,提升了工作质量,且本发明按照合笼方案进行合笼,生成子女代动物,并可以对合笼方案进行新增,实现直接对合笼的方案进行更改,避免了人工设计动物的合笼方案以及更改合笼方案所需要的时间和成本过高,提高了容错率,且通过对子女代动物进行鉴定前分笼以及对新增父母代动物和新增子女代动物的鉴定信息进行鉴定后分笼,避免了人工设计对动物进行分笼的单一性,提高了分笼的效率,同时,本发明通过空间管理模块管理所述动物的空间位置信息,实现了高效、有序的对动物合笼和分笼的管理。
基于同一申请构思,本发明实施例还提供了一种计算机可读存储介质,所述计算机可读存储介质上存储有计算机程序,所述计算机程序被处理器运行时执行上述实施例提供的数据管理方法的步骤。
具体地,所述存储介质能够为通用的存储介质,如移动磁盘、硬盘等,所述存储介质上的计算机程序被运行时,能够执行上述实体关联方法,可以实现对合笼方案的合笼信息以及分笼方案的第一分笼信息的分别展示, 并实现了展示分笼及合笼在各个状态的信息,在提高了数据信息的准确性的同时,避免了大量数据的人工的记录,降低了人力成本。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统和装置的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。在本发明所提供的几个实施例中,应所述理解到,所揭露的系统、装置和方法,可以通过其它的方式实现。以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,又例如,多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些通信接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个处理器可执行的非易失的计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者所述技术方案的部分可以以软件产品的形式体现出来,所述计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
以上仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易 想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应以权利要求的保护范围为准。

Claims (10)

  1. 一种动物繁育的数据管理系统,其特征在于,所述数据管理系统包括合笼模块、鉴定模块、分笼模块和空间管理模块:
    所述合笼模块,用于查询动物的合笼信息,新增合笼方案、编辑合笼方案、生成合笼方案以及查看合笼方案,针对数据库中的父母代动物按照合笼方案进行合笼,生成子女代动物的信息;
    所述鉴定模块,用于针对新增父母代动物以及新增子女代动物进行鉴定,获取所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息;
    所述分笼模块,用于针对所述子女代动物进行鉴定前分笼、针对所述父母代动物进行合笼后的父母代分笼,以及针对所述新增父母代动物和/或所述新增子女代动物进行鉴定后分笼;
    所述空间管理模块,用于管理各个动物的空间位置信息。
  2. 根据权利要求1所述的数据管理系统,其特征在于,所述合笼模块包括:
    第一合笼单元,用于对所述父母代动物进行合笼,在判断数据库中的父母代动物在达到合笼方案中的显怀周期且成功显怀后,生成子女代动物信息。
  3. 根据权利要求2所述的数据管理系统,其特征在于,所述合笼模块包括:
    第二合笼单元,用于在判断数据库中的父母代动物在达到合笼方案中的显怀周期且未成功显怀后,将所述合笼方案中未成功显怀的母代动物与数据库中其他父代动物进行合笼,生成对应的子女代动物的信息。
  4. 根据权利要求3所述的数据管理系统,其特征在于,所述分笼模块包括:
    鉴别前分笼单元,用于子女代动物的鉴定前分笼,在确定子女代动物达到合笼方案中的离乳周期时,根据所述子女代动物的性别信息,对所述子女代动物进行鉴别前分笼;
    鉴别后分笼单元,用于新增父母代动物和新增子女代动物鉴定后分笼,根据所述新增父母代动物的鉴定信息、新增子女代动物的鉴定信息以及目标分笼规则,对所述新增父母代动物和所述新增子女代动物鉴定后分 笼。
  5. 根据权利要求3所述的数据管理系统,其特征在于,所述数据管理系统还包括动物信息模块:
    所述动物信息模块,用于对所述父母代动物的属性信息和所述子女代动物的属性信息进行导入、查询、导出、编辑和新增。
  6. 根据权利要求3所述的数据管理系统,其特征在于,所述数据管理系统还包括品系管理模块:
    所述品系管理模块,用于对所述数据库中的所述父母代动物的品系信息、所述子女代动物的品系信息、所述新增父母代动物的品系信息以及所述新增子女代动物的品系信息进行新增、查询、编辑删除。
  7. 根据权利要求1所述的数据管理系统,其特征在于,所述数据管理系统还包括用途管理模块:
    所述用途管理模块,用于对新增父母代动物以及新增子女代动物的实验用途进行管理,根据所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息,确定所述新增父母代动物以及所述新增子女代动物的用途,所述用途包括实验、鉴定、检测、淘汰、死亡、事故、售出、后备种、扩大种以及生产种。
  8. 一种动物繁育的数据管理方法,其特征在于,所述数据管理方法包括:
    根据父母代动物的属性信息,在确定所述父母代动物能够用于交配后,生成合笼方案,并在判断所述父母代动物在达到所述合笼方案中的显怀周期且成功显怀后,生成与所述父母代动物的信息对应的子女代动物的信息;
    针对新增父母代动物以及新增子女代动物进行鉴定,获取所述新增父母代动物的鉴定信息以及所述新增子女代动物的鉴定信息;
    根据所述新增父母代动物的鉴定信息、新增子女代动物的鉴定信息以及目标分笼规则,对所述新增父母代动物和所述新增子女代动物鉴定后分笼,以及,
    在确定所述子女代动物达到所述合笼方案中的离乳周期时,根据所述子女代动物的性别信息,对所述子女代动物进行鉴别前分笼。
  9. 一种电子设备,其特征在于,包括:处理器、存储器和总线,所述存储器存储有所述处理器可执行的机器可读指令,当电子设备运行时,所述处理器与所述存储器之间通过总线通信,所述机器可读指令被所述处理器运行时执行如上述权利要求8中所述的数据管理方法的步骤。
  10. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质上存储有计算机程序,所述计算机程序被处理器运行时执行如上述权利要求8中所述的数据管理方法的步骤。
PCT/CN2022/114074 2021-09-17 2022-08-23 动物繁育的数据管理系统、方法、电子设备及存储介质 WO2023040598A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202111090590.8 2021-09-17
CN202111090590.8A CN113792075A (zh) 2021-09-17 2021-09-17 动物繁育的数据管理系统、方法、电子设备及存储介质

Publications (1)

Publication Number Publication Date
WO2023040598A1 true WO2023040598A1 (zh) 2023-03-23

Family

ID=79183741

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2022/114074 WO2023040598A1 (zh) 2021-09-17 2022-08-23 动物繁育的数据管理系统、方法、电子设备及存储介质

Country Status (2)

Country Link
CN (1) CN113792075A (zh)
WO (1) WO2023040598A1 (zh)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113792075A (zh) * 2021-09-17 2021-12-14 千乘镜像(北京)科技有限公司 动物繁育的数据管理系统、方法、电子设备及存储介质

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020038298A1 (en) * 2000-09-25 2002-03-28 Moriaki Kusakabe Management system and managing method for information of individuals
CN107563730A (zh) * 2017-08-31 2018-01-09 临沂市兔兔畜牧科技有限公司 一种规模化家兔养殖智能管理系统
CN111523017A (zh) * 2020-04-29 2020-08-11 重庆大学 一种实验动物信息管理系统及实验动物个体身份区分方法
CN111881132A (zh) * 2020-07-08 2020-11-03 南京百迈斯信息科技有限公司 一种基于可移动设备的实验动物管理系统及管理方法
CN113792075A (zh) * 2021-09-17 2021-12-14 千乘镜像(北京)科技有限公司 动物繁育的数据管理系统、方法、电子设备及存储介质

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104599036A (zh) * 2014-12-22 2015-05-06 青岛康大外贸集团有限公司 一种规模化家兔育种场育种管理系统
CN110502588A (zh) * 2019-07-31 2019-11-26 深圳市博思共创信息技术有限公司 实验动物管理系统的数据处理方法、装置、设备及介质
JP6902815B1 (ja) * 2020-06-01 2021-07-14 株式会社Eco‐Pork 畜産情報管理システム、畜産情報管理方法、及び畜産情報管理プログラム
CN111972350B (zh) * 2020-09-04 2023-03-24 中南大学湘雅医院 一种转基因小鼠繁育方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020038298A1 (en) * 2000-09-25 2002-03-28 Moriaki Kusakabe Management system and managing method for information of individuals
CN107563730A (zh) * 2017-08-31 2018-01-09 临沂市兔兔畜牧科技有限公司 一种规模化家兔养殖智能管理系统
CN111523017A (zh) * 2020-04-29 2020-08-11 重庆大学 一种实验动物信息管理系统及实验动物个体身份区分方法
CN111881132A (zh) * 2020-07-08 2020-11-03 南京百迈斯信息科技有限公司 一种基于可移动设备的实验动物管理系统及管理方法
CN113792075A (zh) * 2021-09-17 2021-12-14 千乘镜像(北京)科技有限公司 动物繁育的数据管理系统、方法、电子设备及存储介质

Also Published As

Publication number Publication date
CN113792075A (zh) 2021-12-14

Similar Documents

Publication Publication Date Title
CN108932348B (zh) 区块链的合并处理方法、装置、区块链节点及存储介质
CN105229649B (zh) 用于疾病关联的人类基因组变异分析和报告的系统及方法
AU2019226217A1 (en) Configuration of a digital twin for a building or other facility via bim data extraction and asset register mapping
CN105989194A (zh) 表数据比较的方法和系统
WO2023040598A1 (zh) 动物繁育的数据管理系统、方法、电子设备及存储介质
CN104391934A (zh) 数据校验方法和装置
EP3779760A1 (en) Blockchain-based data processing method and apparatus, and electronic device
US11379467B2 (en) System for uploading information into a metadata repository
WO2019218597A1 (zh) 一种表驱动的云模式软件自动构造方法及系统
WO2020151321A1 (zh) 基于图计算技术的理赔反欺诈方法、装置、设备及存储介质
CN110992002B (zh) 事项处理方法、装置、设备及存储介质
EP3506315A1 (en) Method of using medical data related to patients suffering a given disease
CN113722301A (zh) 基于教育信息的大数据处理方法、装置及系统、存储介质
CN113159123A (zh) 一种数据标注方法、标注员考核方法及标注结果审核方法
CN107667365A (zh) 计算机辅助设计(cad)环境中自动组装部件的方法和设备
CN115390821B (zh) 一种面向自然语言无代码编程的软件应用构建方法
CN114219596B (zh) 一种基于决策树模型的数据处理方法及相关设备
CN115221380A (zh) 一种城建档案的批量管理方法、系统和平台
CN108665244A (zh) 基于61850模型的定值单自动生成方法及存储介质
US20240169320A1 (en) Computer System and Methods for Managing Data, Data Access, and Data Retention
US20210064681A1 (en) Entity mapping based on incongruent entity data
CN107209763A (zh) 指定和应用数据的规则
CN111427544A (zh) 软件需求文档的生成方法、装置、存储介质及电子设备
TW201246095A (en) Method and system for managing processes
CN112862426A (zh) 一种基于机器自动化任务的流程流转方法

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 22868972

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE