Rearing manual creation device, rearing manual creation system, and program

The device and system address the challenge of providing personalized pet care by integrating genetic and environmental data to suggest tailored care and training methods, enhancing pet care suitability and effectiveness.

JP2025079119APending Publication Date: 2025-05-21ANICOM HOLD INC
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Patent Information

Application Number
JP2023191586
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-11-09
Publication Date
2025-05-21

AI Technical Summary

Technical Problem

Existing pet care technologies fail to provide personalized care instructions tailored to individual pet animals, considering both genetic and environmental factors, leading to low classification accuracy and unsuitable training methods.

Method used

A device and system that automatically create care instructions by inputting species, breed, genetic information, and early rearing environment, incorporating disease and behavioral characteristic determination units to suggest suitable rearing and training methods, using machine learning algorithms and databases for enhanced accuracy.

Benefits of technology

Enables the creation of personalized care manuals that address specific pet needs, including disease prevention and behavioral training, improving pet care suitability and effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a rearing manual creation device, rearing manual creation system, and program capable of automatically creating a rearing manual tailored to both a user and a pet animal being reared, in response to a user request.SOLUTION: A rearing manual adapted to the individual for a pet animal reared by a user is automatically created by using a rearing manual creation device 1 which comprises: an information input unit 11 that receives information on a target individual including at least species and / or breed, genetic information, and the rearing environment before eight weeks of age; a disease determination unit 12 that determines diseases to which the target individual is susceptible from the genetic information input to the information input unit 11; a behavioral characteristics determination unit 13 that determines behavioral characteristics of the target individual from the species and / or breed, genetic information, and the rearing environment before eight weeks of age input to the information input unit 11; and a rearing manual creation unit 14 that selects a rearing method suitable for the target individual on the basis of the determination results in the disease determination unit 12 and the behavioral characteristics determination unit 13, and creates a rearing manual describing the rearing method.SELECTED DRAWING: Figure 1
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Description

[Technical field]

[0001] The present invention relates to a care instruction manual creating device, a care instruction manual creating system, and a program, and more particularly to a technique for automatically creating care instructions tailored to each individual pet animal owned by a user. [Background technology]

[0002] Pets such as dogs, cats, and rabbits are treated with care as members of the family, and their average lifespan has increased significantly compared to the past due to improvements in the environment in which they are kept. On the other hand, abandonment of pets due to financial reasons or a lack of understanding of the nature of pets and how to train them, and the resulting euthanasia, have become problems.

[0003] As a means for owners to understand the personality and training of their pets, there are training classes, pet care books, and pet care manuals, but all of these are based on general theories for each species or breed and cannot be said to be suitable for individual living organisms. As a method using individual pet information, for example, a method for selecting dogs that bark and dogs that do not bark based on specific genetic information (see Patent Document 1), a system for determining the behavioral characteristics of a pet from the alleles of intron 2 and exon 1, and providing a pet care method including a recommended pet training method based on the classified behavioral characteristics (see Patent Document 2), etc. have been proposed.

[0004] Also, a device has been proposed that proposes appropriate pet food to an owner based on preference information about the preference of the owner who keeps a pet and information about the pet (see Patent Document 3). The information processing device described in Patent Document 3 notifies the owner through chat of questions about the owner's preference, such as whether or not the owner is concerned about the health of the pet and what they pay attention to when feeding the pet, as well as questions about the pet, such as the type, age, sex, weight, whether the pet has been neutered, and preferences, and selects appropriate food based on the answers to these questions and proposes it to the owner. [Prior art documents] [Patent documents]

[0005] [Patent Document 1] JP 2014-64478 A [Patent Document 2] JP 2018-38325 A [Patent Document 3] Patent Publication No. 2023-5917 Summary of the Invention [Problem to be solved by the invention]

[0006] However, the above-mentioned conventional technologies have the following problems. The method described in Patent Document 1 can only determine whether a dog barks or does not bark, and cannot obtain information on how to train the dog. Similarly, the device described in Patent Document 3 can only obtain information on pet food, and cannot obtain information on the pet's personality or training.

[0007] In contrast, the device described in Patent Document 2 classifies pets into nine types based on genetic information and outputs a discipline method for the type to which the individual belongs, but a pet's characteristics and personality are not determined by specific genes alone, but are also influenced by acquired factors such as the environment in which the pet spent its early years. For this reason, the device described in Patent Document 2 has low classification accuracy for the behavioral characteristics of pets, and does not take into account the current rearing environment, so it cannot suggest discipline methods that are suited to the individual's characteristics and rearing environment.

[0008] Therefore, an object of the present invention is to provide a pet care instruction manual creation device, a pet care instruction manual creation system, and a program that automatically create pet care instructions suitable for a user and the pet being kept, in response to a user's request. [Means for solving the problem]

[0009] The care instruction manual creation device of the present invention is a device that automatically creates care instructions for pet animals, and has an information input unit to which information on a target individual including at least the species and / or breed, genetic information, and the rearing environment before the age of 8 weeks is input, a disease determination unit that determines a disease to which the target individual is prone from the genetic information input to the information input unit, a behavioral characteristic determination unit that determines the behavioral characteristics of the target individual from the species and / or breed, genetic information, and the rearing environment before the age of 8 weeks input to the information input unit, and a care instruction manual creation unit that selects a rearing method suitable for the target individual based on the determination results of the disease determination unit and the behavioral characteristic determination unit, and creates a care instruction manual containing the rearing method. The rearing method described in the rearing instructions may include a method for preventing a disease to which the subject individual is prone, and / or a training method for preventing problem behaviors that the subject individual is prone to exhibit. The rearing instruction manual creation device of the present invention may include the current or future rearing environment in the information of the target individual input into the information input unit, and the rearing instruction manual creation unit may suggest a rearing method that takes into account the current or future rearing environment. In addition, the information on the target individual input to the information input unit may include information on the behavioral characteristics of both parents, and the behavioral characteristics of the parents may also be taken into consideration when the behavioral characteristic determination unit determines the behavioral characteristic of the target individual. Furthermore, the information of the target individual input to the information input unit may include the age at which the target individual left its parents, and the age at which the target individual left its parents may also be taken into consideration when the behavioral characteristic determination unit determines the behavioral characteristics of the target individual. Furthermore, the information of the target individual inputted to the information input unit may include current and / or past food information, and the food information may also be taken into consideration when determining the behavioral characteristics of the target individual in the behavioral characteristic determination unit. The care instruction manual creation device of the present invention has a machine algorithm that has been pre-trained using multiple data sets as training data, each data set being composed of a disease or behavioral characteristic of a pet animal and a care method suitable for the disease or behavioral characteristic, and can also suggest a care method for the target individual using the machine learning algorithm.

[0010] The animal care instruction manual creating system according to the present invention includes the animal care instruction manual creating device described above. The care instruction manual creation system of the present invention may be equipped with a disease database server storing genetic information related to the possibility of a pet animal being susceptible to a disease, and / or a behavioral characteristic database server storing genetic information related to the behavioral characteristics of a pet animal. The breeding instruction manual creation system of the present invention may further include a genetic testing device that acquires genetic information of the target individual, and the test results from the genetic testing device may be input to an information input section of the breeding instruction manual creation device. The care instruction manual creation system of the present invention may further include a machine learning algorithm that has been trained in advance using multiple data sets as teacher data, each data set being composed of a disease or behavioral characteristic of a pet animal and a care method suitable for the disease or behavioral characteristic, and may be equipped with a care method suggestion device that suggests a care method for the target individual using the machine learning algorithm.

[0011] The care instruction manual creation program of the present invention is a program for automatically creating care instructions for pet animals, and causes a computer to execute a disease determination function for determining, from the genetic information of the target individual, a disease to which the target individual is susceptible; a behavioral characteristic determination function for determining the behavioral characteristics of the target individual based on the species and / or breed, genetic information, and rearing environment of the target individual before the age of 8 weeks; and a care instruction manual creation function for selecting a rearing method suitable for the target individual based on the results of the determination by the disease determination function and the behavioral characteristic determination function, and creating care instruction instructions including the rearing method. Effect of the Invention

[0012] According to the present invention, it is possible to automatically create a care instruction manual that describes a care method and / or training method suitable for both a user and a pet kept by the user. [Brief description of the drawings]

[0013] [Figure 1] 1 is a conceptual diagram showing an example of the configuration of a rearing instruction manual creating device according to a first embodiment of the present invention. [Diagram 2] FIG. 11 is a conceptual diagram showing an example of the configuration of a rearing instruction manual creating system according to a second embodiment of the present invention. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0014] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. Note that the present invention is not limited to the following preferred embodiments.

[0015] (First embodiment) First, a care instruction manual creation device according to a first embodiment of the present invention will be described. Fig. 1 is a conceptual diagram showing an example of the configuration of the care instruction manual creation device of this embodiment. As shown in Fig. 1, the care instruction manual creation device 1 of this embodiment automatically creates care instructions for a pet animal kept by a user in response to a request from the user, and includes at least an information input unit 11, a disease determination unit 12, a behavioral characteristic determination unit 13, and a care instruction manual creation unit 14.

[0016] [User] The "users" of the care instruction manual creation device 1 of this embodiment include not only the owners of the individuals (target individuals) for which care instructions are created, but also live animal sellers who sell the target individuals and animal protection organizations that protect the target individuals.

[0017] [Pet animals] Examples of pet animals that are targets of the rearing instruction manual creation device 1 of this embodiment include, but are not limited to, mammals such as dogs, cats, rabbits, hamsters, and ferrets, birds, reptiles, and amphibians, and the like, and the device can be applied to various animals kept as pets. From the viewpoint of the accumulation of genetic information related to diseases and behavioral characteristics, dogs, cats, and rabbits are preferable.

[0018] [Information input section 11] Information on the individual (pet animal) for which a rearing instruction manual is to be created is input from, for example, an external user terminal, into the information input unit 11. The information input into the information input unit 11 includes at least the "species and / or breed of the individual," "genetic information," and "rearing environment before the age of 8 weeks," and may further include "current and / or future (after transfer) rearing environment," "behavioral characteristics of parents," "age at which the animal left its parents," "information on food currently and / or previously fed," and the like.

[0019] Furthermore, the "genetic information" input to information input unit 11 is information relating to the animal's genes, such as gene sequence, SNP or gene expression information, and the results of a genetic test may be input as the "genetic information".

[0020] [Disease determination section 12] The disease determination unit 12 determines a disease to which the subject individual is likely to be affected, based on the genetic information of the subject individual input to the information input unit 11. Examples of genetic information related to disease susceptibility used for disease determination in the disease determination unit 12 include gene sequences that are correlated with or cause the susceptibility of a certain disease, SNPs, the presence or absence of the gene, and the expression level of the gene. Specifically, examples of such information include genetic information that indicates that a mutation in a part of a gene makes it easier or harder to be affected by a specific disease, and genetic information that indicates that a specific sequence makes it easier or harder to be affected by a specific disease.

[0021] Among the various diseases of companion animals, known genetic diseases in dogs (hereditary diseases) include, for example, cancer, progressive retinal atrophy (PRA), hereditary cataracts, Collie eye abnormality (CEA), von Willebrand disease (vWD)-related genes, ivermectin sensitivity (MDR1 gene), copper storage liver disease, cystinuria, osteogenesis imperfecta, X-linked muscular dystrophy, congenital myotonia (mutation in voltage-dependent chloride channel gene), narcolepsy (mutation in orexin-related gene), severe combined immunodeficiency, leukocyte adhesion deficiency (CLAD), cyclic neutropenia (Gray Collie syndrome), phosphofructokinase deficiency, pyruvate kinase deficiency, and lysosomal diseases.

[0022] In addition, examples of genetic diseases in cats include osteochondrodysplasia, polycystic kidney disease, hypertrophic cardiomyopathy, glycogen storage disease, pyruvate kinase deficiency, progressive retinal atrophy, and spinal muscular atrophy.

[0023] The method for determining which disease a subject individual is susceptible to from its genetic information is not particularly limited, but for example, a disease database that stores genetic information related to the susceptibility of pet animals to a disease can be provided inside or outside the care instruction creation device 1, and the information stored in this disease database can be compared with the genetic information of the subject individual to determine the disease.

[0024] If a susceptible disease is found as a result of the judgment, the disease judgment unit 12 outputs the name of the disease to the rearing instruction manual creation unit 14. In the rearing instruction manual creation device 1 of this embodiment, a method for preventing the disease may also be stored in the disease database, and the method for preventing the disease may be output together with the susceptible disease.

[0025] [Behavioral characteristic judgment section 13] The behavioral characteristic determination unit 13 determines the behavioral characteristics of the target individual from the species and / or breed, genetic information, and rearing environment before the age of 8 weeks input to the information input unit 11. Examples of genetic information related to the behavioral characteristics of the animal used for determining the behavioral characteristics in the behavioral characteristic determination unit 13 include the sequence of a gene that influences the personality of the animal, SNP, the presence or absence of the gene, the expression level of the gene, and the like.

[0026] In addition, the method of determining the behavioral characteristics of a target individual from its genetic information is not particularly limited, but for example, a behavioral characteristics database in which genetic information related to the behavioral characteristics of pet animals is stored within or outside the care instruction manual creation device 1, and the determination can be made by comparing the information stored in this behavioral characteristics database with the genetic information of the target individual.

[0027] Examples of behavioral characteristics include friendliness (friendly / unfriendly), docility (quiet / active), nervousness (neurotic / easygoing), sociability (sociable / introverted), bravery (timid / brave), flexibility (stubborn / flexible), resilience (easy to get hung up on / quick to change), assertiveness (shy / proactive), dependency (spoiled / independent), strong-willed (strong-willed / timid), aggression (aggressive / not aggressive), barking tendency (easy to bark / not easy to bark), and patience (patient / inpatient).

[0028] For dogs, 13 items of behavioral traits (temperament) related to sociality are known and can be used in relation to C-barq (Canine Behavioral Assessment and Research Questionnaire), a dog behavior analysis system developed by Sirpell of the University of Pennsylvania. The behavioral traits of C-barq are also used in the "2016 Study on Research Methods for the Ideal Time to Separate Young Dogs and Cats from Their Parents and Siblings" conducted by the Japan Veterinary Medical Association under the commission of the Ministry of the Environment. The 13 behavioral traits are aggression, fear, separation anxiety, contact hypersensitivity, traineeship, tracking ability, excitability, attachment behavior, and motor activity.

[0029] For example, when the species of the target individual is a dog, the behavioral characteristic determination unit 13 determines that the dog is a "dog that does not bark" if the 955th base of the serotonin receptor 1B (5-HTR1B) gene is T / T or T / C type and the 199th base of the monoamine oxidase B (MAOB) gene is C / C or T / C type. Conversely, when the 955th base of the 5-HTR1B gene is C / C or T / C type and the 199th base of the MAOB gene is T / T or T / C type, the behavioral characteristic determination unit 13 determines that the dog is a "dog that barks." This makes it possible to determine whether the dog is prone to barking.

[0030] In addition, regarding "friendliness towards humans," if the base located at position 31,596,03 of the dog genome (CamFam3.1) is of the G / G type, it is judged to be "highly friendly towards humans," if it is of the G / A type, it is judged to be "moderately friendly towards humans," and if it is of the A / A type, it is judged to be "lowly friendly towards humans." This allows the degree of friendliness towards humans of the dog to be determined.

[0031] The behavioral characteristics determination unit 13 reflects the rearing environment before the age of 8 weeks on the determination result based on the above-mentioned genetic information. It is known that the environment in which a pet animal such as a dog or cat spends its early years affects the formation of its personality. For example, there may be a difference in "friendliness toward people" between an individual that grew up in contact with other dogs and many people under a large-scale breeder and an individual that grew up alone under a small-scale breeder.

[0032] Specifically, even if an individual is judged to be friendly to humans based on genetic information, it may be shy because it spent its early childhood alone. In such a case, the behavioral characteristics judgment unit 13 adds the judgment result based on the genetic information due to the influence of the rearing environment before the age of 8 weeks, or outputs a judgment result that lowers the rank of "friendliness toward humans."

[0033] In addition, the behavioral characteristic determination unit 13 can also take into consideration information on the behavioral characteristics of the parents when determining the behavioral characteristics of the target individual. For example, if both parents have mischievous personalities, even if the individual has a quiet personality now, there is a possibility that the individual will have a mischievous personality in the future.

[0034] Furthermore, the behavioral characteristic determination unit 13 can take into consideration the age at which the target individual left their parents when determining the behavioral characteristics of the target individual. For example, in the case of a dog, an individual that was separated from its parents at 4 weeks of age tends to have a more affectionate personality than an individual that was separated from its parents at 6 weeks of age.

[0035] Furthermore, the behavioral characteristic determination unit 13 can also take into account current and / or past food information when determining the behavioral characteristic of the target individual. For example, if the target individual was previously fed homemade food, the target individual may not like dry food.

[0036] If it is determined as a result of the above-mentioned determination that the pet is "prone to problem behavior," the behavioral characteristics determination unit 13 also outputs the details of the problem behavior to the rearing instruction manual creation unit 14. In the rearing instruction manual creation device 1 of this embodiment, a discipline method for preventing the problem behavior from occurring may also be stored in the behavioral characteristics database, and the discipline method for preventing the problem behavior may be output together with the details of the problem behavior.

[0037] [Breeding Instructions Department 14] The rearing instruction manual creation unit 14 selects a rearing method suitable for the target individual based on the results of the determination by the disease determination unit 11 and the behavioral characteristic determination unit 12, and creates a rearing instruction manual in which the rearing method is described. Items to be described in the rearing instruction manual include, for example, diseases to which the target individual is prone and methods for preventing them, behavioral characteristics (personality) such as a tendency to cause problematic behaviors and training methods to prevent them, the species or breed and its characteristics, recommended food, information on the parents, etc., but are not limited to these, and items can be appropriately selected according to the user and described with priority.

[0038] For example, if the user is a "live animal seller," the behavioral characteristics (personality), diseases that the animal is prone to and how to prevent them, and the species / breed and its characteristics are listed. If the user is a "pet owner," the recommended food, behavioral characteristics (personality), diseases that the animal is prone to and how to prevent them are listed. Furthermore, if the user is an "animal protection organization," information about the parents and behavioral characteristics (personality) are listed.

[0039] At that time, it is also possible to suggest a rearing method that takes into consideration the current or future (after transfer) rearing environment in the information of the target individual inputted into the information input unit 11. Also, if there is a disease that the pet is likely to suffer from, in addition to that information, it is also possible to suggest a veterinary clinic near the user's address.

[0040] Furthermore, in the rearing instruction manual creation device 1 of this embodiment, a machine learning algorithm may be provided that has been trained in advance using multiple data sets, as teacher data, each data set being made up of a disease or behavioral characteristic of a pet animal and a rearing method suitable for that disease or behavioral characteristic, and this machine learning algorithm may be used to propose a rearing method suited to the behavioral characteristic of the target individual. The "rearing method suited to the disease" referred to here is a rearing method based on, for example, the knowledge of a veterinarian, and the "rearing method suited to the behavioral characteristic" is a rearing method based on, for example, the knowledge of a discipline trainer. This makes it possible to propose a more effective rearing method for the target individual.

[0041] For example, for a dog that is judged to be "prone to barking," a care report with the following comment will be output: Dogs have an instinctive desire to exercise and to bite. Meeting these desires before they start barking will help prevent them from barking. It is also important to set clear rules between you and your dog (for example, "If you do this, you will get a treat"). If your dog knows what to do, he will be less likely to bark. · Try to give your dog a variety of positive experiences from a young age. Forcing your dog to do things will only be counterproductive, so do it little by little while watching how he behaves.

[0042] In addition, for dogs that are judged to be "not very friendly toward people," a care report will be output with the following comment: · Play with them using toys to keep them occupied. Dogs have a habit of chasing moving objects. Getting them to chase toys is an easy way to keep them occupied. -Praise your child for even the smallest things they do by giving them a reward. · Don't force your child to do things that they are not used to or are not good at. When practicing, try to give them rewards. It is natural that they will not be able to do things they do not know. Instead of teaching them that they cannot do something, carefully teach them what they can do to earn praise.

[0043] [program] Each operation of the care instruction manual creation device 1 of this embodiment can be implemented by a program that automatically creates care instructions for pet animals, and causes a computer to execute a disease determination function that determines diseases to which the target individual is susceptible based on the genetic information of the target individual, a behavioral characteristic determination function that determines the behavioral characteristics of the target individual based on the species and / or breed, genetic information, and rearing environment of the target individual before the age of 8 weeks, and a care instruction manual creation function that selects a rearing method suitable for the target individual based on the determination results by the disease determination function and the characteristic determination function, and creates a care instruction manual containing the rearing method.

[0044] As described above in detail, the rearing instruction manual creation device of this embodiment performs disease diagnosis and behavioral characteristic determination using information on the rearing environment before the age of 8 weeks, in addition to the species and / or breed and genetic information, and can automatically create and provide to the user rearing instructions that describe rearing methods and / or training methods that are most suitable for the target individual.

[0045] Second embodiment Next, a rearing instruction manual creation system according to a second embodiment of the present invention will be described. Fig. 2 is a conceptual diagram showing an example of the configuration of the rearing instruction manual creation system of this embodiment. As shown in Fig. 2, the rearing instruction manual creation system 10 of this embodiment includes the rearing instruction manual creation device 1 of the first embodiment described above, and automatically creates rearing instructions suitable for a target individual based on information about the individual input from a user terminal 6 connected via the Internet 7, for example.

[0046] The care instruction manual creation system 10 of this embodiment may be provided with a disease database server 2 that stores genetic information related to the possibility of pet animals suffering from a disease, and a behavioral characteristic database server 3 that stores genetic information related to the behavioral characteristics of pet animals. In this case, the care instruction manual creation device 1 uses the data stored in the disease database server 2 and the behavioral characteristic database server 3 to determine diseases to which the target individual is susceptible and the behavioral characteristics of the target individual.

[0047] The rearing instruction manual creation system 10 of this embodiment may be provided with a genetic testing device 4 that acquires genetic information of a target individual. In this case, the test results of the genetic testing device 4 are input to the information input unit 11 of the rearing instruction manual creation device 1 and used for determination in the disease determination unit 12 and the behavioral characteristic determination unit 13.

[0048] The rearing instruction manual creation system 10 of this embodiment may further include a rearing method suggestion device 5 having a machine learning algorithm that has been trained in advance using multiple data sets, as teacher data, each data set being made up of a disease or behavioral characteristic of a pet animal and a rearing method suitable for that disease or behavioral characteristic, and that proposes a rearing method according to the behavioral characteristic of a target individual using the machine learning algorithm. The "rearing method suitable for the disease" referred to here is a rearing method based on, for example, the knowledge of a veterinarian, and the "rearing method suitable for the behavioral characteristic" is a rearing method based on, for example, the knowledge of a discipline trainer. This makes it possible to suggest a more effective rearing method for the target individual.

[0049] The care instruction manual creation system of this embodiment performs disease diagnosis and behavioral characteristic determination using information on the rearing environment before the age of 8 weeks, in addition to the species and / or breed and genetic information, so that it can automatically create care instruction manuals that describe rearing methods and / or training methods that are suitable for the target individual and provide them to the user.

[0050] The present invention can also have the following configuration. [1] An apparatus for automatically creating pet care instructions, comprising: An information input unit into which information on the target individual including at least the species and / or breed, genetic information, and rearing environment before the age of 8 weeks is input; a disease determination unit for determining a disease to which the subject individual is susceptible based on the genetic information inputted into the information input unit; a behavioral characteristic determination unit that determines the behavioral characteristics of the target individual based on the species and / or breed, genetic information, and rearing environment before the age of 8 weeks input to the information input unit; a rearing instruction creation unit that selects a rearing method suitable for the target individual based on the results of the determination made by the disease determination unit and the behavioral characteristic determination unit, and creates a rearing instruction manual describing the rearing method; A breeding instruction manual creating device having the same. [2] The rearing instruction manual creation device described in [1], wherein the rearing method described in the rearing instruction manual includes a method for preventing diseases to which the target individual is prone. [3] The rearing instruction manual creation device according to claim [1] or [2], wherein the rearing method described in the rearing instruction manual includes a training method for preventing problem behaviors that the target individual is prone to exhibit. [4] The information of the target individual input to the information input unit includes the current or future rearing environment, The rearing instruction manual creation device according to any one of [1] to [3], wherein the rearing instruction manual creation unit proposes a rearing method taking into consideration the current or future rearing environment. [5] The information of the target individual input to the information input unit includes information on the behavioral characteristics of the parents, The rearing instruction manual creation device according to any one of [1] to [4], wherein the behavioral characteristic determination unit also takes into account the behavioral characteristics of the parents when determining the behavioral characteristic of the target individual. [6] The information of the target individual input to the information input unit includes the age at which the individual left its parents, The rearing instruction manual creation device according to any one of [1] to [5], wherein the behavioral characteristic determination unit also takes into account the age at which the target individual became independent when determining the behavioral characteristic of the target individual. [7] The information of the target individual input to the information input unit includes current and / or past food information, The rearing instruction manual creation device according to any one of [1] to [6], wherein the behavioral characteristic determination unit also takes into account the food information when determining the behavioral characteristic of the target individual. [8] A care instruction manual creation device as described in any of [1] to [7], which has a machine algorithm that has been pre-trained using multiple data sets as training data, each data set being composed of a disease or behavioral characteristic of a pet animal and a care method suitable for the disease or behavioral characteristic, and which proposes a care method for the target individual using the machine learning algorithm. [9] A rearing instruction manual creation system comprising the rearing instruction manual creation device according to any one of [1] to [7].

[10] The care instruction manual creation system according to claim [9], further comprising a disease database server storing genetic information relating to the susceptibility of pet animals to diseases.

[11] A care instruction manual creation system as described in [9] or

[10] , comprising a behavioral characteristic database server that stores the relationship between genetic information and behavioral characteristics of pet animals.

[12] Further, a genetic testing device for acquiring genetic information of a subject individual is provided, The rearing instruction manual creation system according to any one of [9] to

[11] , wherein the test results from the genetic testing device are input to an information input unit of the rearing instruction manual creation device.

[13] The system for creating rearing instructions according to any one of [9] to

[12] further comprises a machine learning algorithm that has been trained in advance using multiple data sets as training data, each data set being composed of a disease or behavioral characteristic of a pet animal and a rearing method suitable for the disease or behavioral characteristic, and a rearing method suggestion device that suggests a rearing method for the target individual using the machine learning algorithm.

[14] A program for automatically creating pet care instructions, comprising: A disease determination function for determining a disease to which a subject individual is susceptible based on the genetic information of the subject individual; A behavioral characteristic determination function for determining the behavioral characteristics of the target individual based on the species and / or breed, genetic information, and rearing environment of the target individual before the age of 8 weeks; a rearing instruction creation function for selecting a rearing method suitable for the target individual based on the results of the disease determination function and the behavioral characteristic determination function, and creating a rearing instruction manual describing the rearing method; A program that causes a computer to execute the following. [Explanation of symbols]

[0051] 1. Equipment for creating animal care instructions 2 Disease Database Server 3. Behavioral characteristics database server 4. Genetic testing equipment 5. Breeding method suggestion device 6 User terminals 7. Internet 10. Breeding Instructions Creation System 11 Information input section 12 Disease determination department 13 Behavioral characteristics judgment unit 14. Breeding Instructions Department

Claims

1. An apparatus for automatically creating pet care instructions, comprising: an information input unit into which information on the target individual, including at least the species and / or breed, genetic information, and rearing environment before the age of 8 weeks, is input; a disease determination unit for determining a disease to which the subject individual is susceptible based on the genetic information inputted into the information input unit; a behavioral characteristic determination unit that determines behavioral characteristics of the target individual based on the species and / or breed, genetic information, and rearing environment before the age of 8 weeks input to the information input unit; a rearing instruction creation unit that selects a rearing method suitable for the target individual based on the results of the determination made by the disease determination unit and the behavioral characteristic determination unit, and creates a rearing instruction manual describing the rearing method; A breeding instruction manual creating device having the same.

2. The breeding instruction manual creation device according to claim 1 , wherein the breeding method described in the breeding instruction manual includes a method for preventing a disease to which the target individual is prone.

3. 2. The rearing instruction manual creation device according to claim 1, wherein the rearing method described in the rearing instruction manual includes a training method for preventing problem behaviors that the target individual is likely to exhibit.

4. The information of the target individual input to the information input unit includes the current or future rearing environment, The rearing instruction manual creation device according to claim 1 , wherein the rearing instruction manual creation unit proposes a rearing method taking into consideration a current or future rearing environment.

5. The information of the target individual input to the information input unit includes information on the behavioral characteristics of the parents, 2. The rearing instruction manual creating device according to claim 1, wherein the behavioral characteristic determining unit also takes into account the behavioral characteristics of the parents when determining the behavioral characteristic of the target individual.

6. The information of the target individual input to the information input unit includes the age at which the individual left its parents, 2. The rearing instruction manual creating device according to claim 1, wherein the behavioral characteristic determining unit also takes into account the age at which the target individual became independent when determining the behavioral characteristic of the target individual.

7. The information of the target individual input to the information input unit includes current and / or past food information, 2. The rearing instruction manual creating device according to claim 1, wherein the behavioral characteristic determining unit also takes into account the food information when determining the behavioral characteristic of the target individual.

8. The device for creating rearing instructions as described in claim 1 has a machine algorithm that has been pre-trained using multiple data sets as teacher data, the data being composed of diseases or behavioral characteristics of pet animals and rearing methods suitable for the diseases or behavioral characteristics, and suggests a rearing method for the target individual using the machine learning algorithm.

9. A rearing instruction manual creating system comprising the rearing instruction manual creating device according to any one of claims 1 to 7.

10. 10. The system for creating pet care instructions according to claim 9, further comprising a disease database server storing genetic information relating to the susceptibility of pet animals to diseases.

11. 10. The system for creating a pet care instruction manual according to claim 9, further comprising a behavioral characteristics database server in which genetic information relating to the behavioral characteristics of pet animals is stored.

12. Further, a genetic testing device for acquiring genetic information of a subject individual is provided, 10. The rearing instruction manual creating system according to claim 9, wherein the test results from the genetic testing device are input to an information input unit of the rearing instruction manual creating device.

13. The system for creating rearing instructions as described in claim 9 further includes a machine learning algorithm that has been trained in advance using multiple data sets as teacher data, each data set being composed of a disease or behavioral characteristic of a pet animal and a rearing method suitable for the disease or behavioral characteristic, and a rearing method suggestion device that suggests a rearing method for the target individual using the machine learning algorithm.

14. A program for automatically creating pet care instructions, comprising: A disease determination function for determining a disease to which a subject individual is susceptible based on the genetic information of the subject individual; A behavioral characteristic determination function for determining the behavioral characteristics of the target individual based on the species and / or breed, genetic information, and rearing environment of the target individual before the age of 8 weeks; a rearing instruction creation function for selecting a rearing method suitable for the target individual based on the results of the disease determination function and the behavioral characteristic determination function, and creating a rearing instruction manual describing the rearing method; A program that causes a computer to execute the following.

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