WO2018082260A1 - 基于分区数据库的电子病历信息查询系统及方法 - Google Patents

基于分区数据库的电子病历信息查询系统及方法 Download PDF

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Publication number
WO2018082260A1
WO2018082260A1 PCT/CN2017/080706 CN2017080706W WO2018082260A1 WO 2018082260 A1 WO2018082260 A1 WO 2018082260A1 CN 2017080706 W CN2017080706 W CN 2017080706W WO 2018082260 A1 WO2018082260 A1 WO 2018082260A1
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WIPO (PCT)
Prior art keywords
database
partition
electronic
medical
keyword
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PCT/CN2017/080706
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English (en)
French (fr)
Inventor
张贯京
张红治
王海荣
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深圳市前海安测信息技术有限公司
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Publication of WO2018082260A1 publication Critical patent/WO2018082260A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/90Details of database functions independent of the retrieved data types
    • G06F16/95Retrieval from the web
    • G06F16/951Indexing; Web crawling techniques
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/20ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms

Definitions

  • the present invention relates to the field of medical information, and in particular, to an electronic medical record information query system and method based on a partition database.
  • the medical record is the original record of the patient's diagnosis and treatment in the hospital. It contains the home page, the history record, the test results, the medical records, the surgical records, the nursing records, and so on.
  • EMR Electronic Medical Record
  • the main object of the present invention is to provide an electronic medical record information query system and method based on a partition database, which aims to solve the technical problem that the medical record cannot be further queried based on the electronic medical record.
  • the present invention provides an electronic medical record information inquiry system based on a partition database, which is operated in a mobile terminal, and the mobile terminal is communicably connected with a database middleware server and an electronic case server, and the database a middleware server is communicably connected to the medical database server, the medical database server stores medical data, the electronic case server stores an electronic case, the medical database server is installed with a medical database, and the medical database is divided into a plurality of partitions Database, the system includes: [0006] a calculation module, configured to: when the electronic medical record is displayed on the mobile terminal, calculate a contact area of the electronic medical record clicked by the user's finger with the touch screen of the mobile terminal;
  • an obtaining module configured to acquire, when the touch area is greater than or equal to a preset area, and the click time is greater than or equal to a preset time, obtain a text content of the electronic medical record clicked by the user's finger;
  • a parsing module configured to perform text parsing on the text content and display the parsed text content on the floating window
  • the acquiring module is further configured to acquire a keyword selected by the user from the floating window, and search for a partition database corresponding to the keyword;
  • connection module configured to connect, by using a database middleware in the database middleware server, a partition database corresponding to the keyword
  • the receiving module is configured to send the partition data corresponding to the keyword, and receive the medical data returned after the query of the partition database corresponding to the keyword.
  • the electronic case is a tabular electronic case, and the electronic case is divided into a plurality of cells in a form of a table, wherein each cell in the electronic case has a fixed display area and an information input area.
  • the fixed display area displays fixed text content
  • the information input area is used to display text content input by the doctor.
  • the parsed text content is an underlined text
  • the selected keyword is a continuous text or a discontinuous text in the parsed text content.
  • the obtaining module is further configured to perform color conversion on a keyword selected by the user in the floating window.
  • each partition database in the medical database is assigned a unique partition code
  • a partition code corresponds to a keyword of one or more diseases
  • a partition database stores one or more diseases. Key related to medical data.
  • the present invention further provides an electronic medical record information query method based on a partition database, which is applied to a mobile terminal, wherein the mobile terminal is in communication connection with a database middleware server and an electronic case server, and the database is intermediate
  • the medical server is in communication with the medical database server
  • the medical database server stores medical data
  • the electronic case server stores an electronic case
  • the medical database server is installed with a medical database
  • the medical database is divided into multiple partition databases.
  • the electronic case is a tabular electronic case, and the electronic case is divided into a plurality of cells in a form of a table, wherein each cell in the electronic case has a fixed display area and an information input area.
  • the fixed display area displays fixed text content
  • the information input area is used to display text content input by the doctor.
  • the parsed text content is an underlined text
  • the selected keyword is a continuous text or a discontinuous text in the parsed text content.
  • the step of acquiring a keyword selected by the user from the floating window further comprises the following steps: performing color conversion on the keyword selected by the user in the floating window.
  • each partition database in the medical database is assigned a unique partition code
  • a partition code corresponds to a keyword of one or more diseases
  • a partition database stores one or more diseases. Key related to medical data.
  • the present invention adopts the above technical solution, and brings the technical effects as follows:
  • the partition database-based electronic medical record information query system and method adopted by the present invention can be based on data in an electronic medical record from a remote medical database server. Further inquiry of medical data reduces the patient's diagnosis and medical expenses for medical treatment, and reduces the diagnostic efficiency of patients.
  • Further inquiry of medical data reduces the patient's diagnosis and medical expenses for medical treatment, and reduces the diagnostic efficiency of patients.
  • FIG. 1 is a schematic diagram of an application environment of an electronic medical record information inquiry system based on a partition database according to the present invention
  • FIG. 2 is a block diagram showing a preferred embodiment of an electronic medical record information inquiry system based on a partition database according to the present invention
  • FIG. 3 is a flow chart of a preferred embodiment of an electronic medical record information query method based on a partition database according to the present invention.
  • FIG. 4 is a schematic diagram of a preferred embodiment of an electronic medical record of the present invention.
  • FIG. 5 is a schematic diagram of a preferred embodiment of the present invention for analyzing text content in an electronic medical record.
  • FIG. 1 is a schematic diagram of an application environment of an electronic medical record information query system based on a partition database according to the present invention.
  • the electronic database information inquiry system 10 based on the partition database in the present invention runs on the mobile terminal 1.
  • the mobile terminal 1 is communicatively coupled to a database middleware server 2 via a network (not shown), and the database middleware server 2 is communicatively coupled to the medical database server 3.
  • the mobile terminal 1 can access the medical database server 3 through the database middleware server 2, and acquire various types of medical data from the medical database server 3.
  • the medical data includes, but is not limited to, patient name, patient's age, disease, disease name, disease cause, disease diagnosis information, drug name, number of drugs, doctor's name, hospital and department, cost, and patient Contact information (for example, email address, mobile phone number, instant messaging account, etc.), disease encyclopedia, government medical policy documents, etc.
  • the medical database server 3 provides a data import interface (for example, an application program interface, API), and a device or system that accesses the data import interface can obtain medical information from the medical database server 3. data.
  • the medical database server 3 is installed with a medical database 30, wherein the medical database 30 is divided into a plurality of partition databases 300, such as N partition databases 300, and each partition database 300 is assigned a unique partition code.
  • a partition code corresponds to a keyword for one or more diseases, and a partition database 300 stores keyword-related medical data for one or more diseases.
  • the medical database server 3 is further provided with a database connection 31 for connecting with the partition database 300.
  • the database connection 31 can be an Open Database Connectivity (ODBC) and a Java database connection (Java Data Base Connectivity, JDBC).
  • the database middleware server 2 is installed with a database middleware 20, for example, the SQL middleware is a general database middleware 20.
  • the database middleware 20 includes database tags and database connection parameters of each of the partition databases 300 in the medical database 30, and the database tags of each of the partitioned databases 300 correspond to the partition codes of the partitioned database 300.
  • the database connection parameter is used by the database middleware 20 to establish a database connection with the partition database 300 in the medical database 30.
  • the mobile terminal 1 communicates with the electronic case server 4 through a network (not shown), and the user acquires an electronic case on the electronic case server 4.
  • the electronic case server 4 stores an electronic case 100.
  • the electronic case 100 is a tabular electronic disease case 100. Specifically, the electronic case 100 is divided into a plurality of cells in the form of a table. As shown in FIG. 4, the electronic case 100 is displayed on the touch screen of the mobile terminal 1 in the form of a table, and the electronic case 100 is divided into ten cells in the form of a table (10 cells are merely illustrative, actual electronic cases More than ten cells), each cell has corresponding case information, for example, cell 1 shows the name, cell 2 shows the gender, cell 3 shows the birthplace, cell 4 shows the year, cell 5 The occupation is displayed, cell 6 shows the date of the visit, cell 7 shows the doctor, cell 8 shows the department, cell 9 shows the visit information and cell 10 shows the medication information.
  • each cell in the electronic case 100 has a fixed display area and a information input area, wherein the fixed display area displays fixed text content, and the information input area is used to display text content input by the doctor, for example,
  • the "visiting information" in the cell 9 is displayed in the fixed display area, and the "neck muscle stiffness, the spinal physiological curvature is present, and the cervical intervertebral space tenderness" in the cell 9 is displayed in the information input area.
  • the information input area may also display a picture (eg, a medical image picture).
  • the medical data and the electronic case 100 belong to the private information
  • the medical data is sent to the electronic case server 4, and the encryption and decryption algorithm is adopted (for example, the MD5 encryption and decryption algorithm)
  • the RS A encryption and decryption algorithm, the DES encryption and decryption algorithm, the DSA encryption and decryption algorithm, the AES encryption and decryption algorithm, etc. first encrypt the medical data, and then transmit to the electronic case server 4.
  • the network may be a wired communication network or a wireless communication network.
  • the network is preferably a wireless communication network including, but not limited to, a GSM network, a GPRS network, a CDMA network, a TD-SC DMA network, a WiMAX network, a TD-LTE network, an FDD-LTE network, and the like.
  • the medical database server 3 is a cloud platform or a server of a data center, and the data transmission capability and data storage capability of the cloud platform or the data center can better manage and/or assist with the medical database server.
  • the connected mobile terminal 1 facilitates the user to obtain medical data and the electronic case 100.
  • the mobile terminal 1 may be, but not limited to, any other suitable portable touch screen electronic device such as a smart phone, a tablet computer, a personal digital assistant (PDA), a personal computer, an electronic signboard, and the like.
  • a smart phone such as a smart phone, a tablet computer, a personal digital assistant (PDA), a personal computer, an electronic signboard, and the like.
  • PDA personal digital assistant
  • FIG. 2 it is a block diagram of a preferred embodiment of the electronic medical record information query system based on the partition database of the present invention.
  • the electronic medical record information query system 10 based on the partition database is applied to the mobile terminal 1.
  • the mobile terminal 1 includes, but is not limited to, an electronic medical record information query system 10 based on a partition database, a storage unit 11, a processing unit 12, and a communication unit 13.
  • the storage unit 11 may be a read only storage unit ROM, an electrically erasable storage unit EEPRO M, a flash storage unit FLASH or a solid hard disk.
  • the processing unit 12 may be a central processing unit (CPU), a microcontroller (MCU), a data processing chip, or an information processing unit having a data processing function.
  • CPU central processing unit
  • MCU microcontroller
  • data processing chip or an information processing unit having a data processing function.
  • the communication unit 13 is a communication interface with a remote communication function, for example, communication supporting wireless communication technologies such as GSM, GPR S, WCDMA, CDMA, TD-SCDMA, WiMAX, TD-LTE, FDD-LTE. Interface, support wired communication interface of USB and network cable.
  • wireless communication technologies such as GSM, GPR S, WCDMA, CDMA, TD-SCDMA, WiMAX, TD-LTE, FDD-LTE.
  • Interface support wired communication interface of USB and network cable.
  • the electronic database information query system 10 based on the partition database includes, but is not limited to, a calculation module 111, a determination module 112, an acquisition module 113, a parsing module 114, a connection module 115, and a receiving module 116.
  • a module referred to refers to a type that can be executed by the processing unit 12 of the mobile terminal 1 and capable of A series of computer program instruction segments that perform a fixed function are stored in the storage unit 11 of the mobile terminal 1.
  • the calculating module 111 is configured to calculate, when the electronic medical record 100 is displayed on the mobile terminal 1, the contact area of the electronic medical record 100 ⁇ with the touch screen of the mobile terminal 1 by the user's finger.
  • the touch screen is a capacitive touch screen.
  • the capacitive touch screen is a four-layer composite glass screen, the inner surface of the glass screen and the interlayer are each coated with a layer of ITO, the outermost layer is a thin layer of bauxite glass protective layer, and the interlayer IT 0 coating is used as a working surface.
  • Four electrodes are led out at the four corners, and the inner layer of ITO is a shield to ensure a good working environment.
  • the touch screen When the finger touches the metal layer, due to the human body electric field, the user and the touch screen surface form a coupling capacitor.
  • the capacitor For high-frequency current, the capacitor is a direct conductor, and the finger sucks a small current from the contact point.
  • the current drawn from the electrodes on the four corners of the touch screen respectively flows, and the current flowing through the four electrodes is proportional to the distance from the finger to the four corners.
  • the controller in the touch screen accurately calculates the ratio of the four currents. The position of the touch point is obtained, and the contact area can be calculated by the calculation of the touch point.
  • the touch screen is a pressure-sensing capacitive touch screen.
  • the pressure value of the pressure-sensing capacitive touch screen is detected at each point of the finger, and the finger is calculated by the pressure value.
  • the touch area of a pressure-sensing capacitive touch screen is calculated.
  • the determining module 112 is configured to determine whether the touch area is greater than or equal to a preset area.
  • the predetermined area is one square centimeter.
  • the user can set a preset area, for example, setting a preset area of 1.1 square centimeters, 1.2 square centimeters, 1.3 square centimeters, 1.4 square centimeters, etc.
  • the determining module 112 is further configured to determine whether the click time exceeds the preset time.
  • the preset time is one second.
  • the user can set the preset time, for example, setting the preset time to two seconds, three seconds, four seconds, five seconds, etc.
  • the obtaining module 113 is configured to obtain, when the click time is greater than or equal to the preset time, the text content of the electronic medical record 100 is obtained by the user's finger. In this embodiment, the obtaining module 113 acquires text content from the information input area. As shown in FIG. 4, when the user clicks on one of the cells of the electronic case 100 (for example, clicks on the cell 9), the position clicked by the user's finger is located in the cell 9 of the electronic case 100, and the text content in the cell 9 is obtained.
  • the parsing module 114 is configured to perform text parsing on the text content and display the parsed text content in the floating window 110. Specifically, as shown in FIG. 5, the parsing module 114 decomposes the acquired text content into underlined characters and displays them in the floating window 110. Specifically, the floating window 110 is displayed on the uppermost layer of the electronic case 100, and the parsed text content is displayed in the floating window 110. It should be noted that, if the information input area displays a picture, the parsing module 114 parses the picture by OCR (Optical Character Recognition) technology to obtain the parsed text content, and parses the parsed text. The content is displayed in the floating window 110.
  • OCR Optical Character Recognition
  • the obtaining module 113 is further configured to acquire a keyword selected by the user from the floating window 110, and search for the partition database 300 corresponding to the keyword.
  • the parsed text content is displayed on the floating window 110, and the user can click the selected text by a finger, and the clicked text is the keyword selected by the user from the floating window 110.
  • “neck muscle stiffness” is a keyword selected from the floating window 110
  • “Men muscle pain” is a keyword selected from the suspension window 110.
  • the selected keyword may be a continuous text in the parsed text content (for example, "neck muscle stiffness") or a discontinuous text (for example, "neck muscle pain”).
  • the obtaining module 113 also performs color conversion on the keywords selected by the user in the floating window 110, for example, for example.
  • the partition code of the partition database 300 corresponds to the keyword of the disease
  • the partition code corresponding to the selected keyword is found by comparing the selected keyword with the keyword of the disease, and then the partition code of the database 300 is passed.
  • the partition database 300 corresponding to the keyword can be found.
  • connection module 115 is configured to connect to the partition database 300 corresponding to the keyword by the database middleware 20 in the database middleware server 2.
  • the receiving module 116 is configured to send the partition data corresponding to the keyword, and receive the medical data returned by the partition database 300 corresponding to the keyword.
  • the medical database server 3 searches for the corresponding medical data in the partition database 300 corresponding to the keyword according to the keyword. Specifically, after the medical database server 3 completes the search of the medical data according to the keyword, the searched medical data is It is returned to the mobile terminal 1 and displayed on the touch screen of the mobile terminal 1.
  • FIG. 3 it is a flowchart of a preferred embodiment of the electronic medical record information query method based on the partition database of the present invention.
  • the medical data query method based on the electronic medical record 100 is applied to the mobile terminal 1, and the method includes the following steps:
  • Step S11 When the electronic medical record 100 is displayed on the mobile terminal 1, the calculating module 111 calculates the contact area of the electronic medical record 100 ⁇ with the touch screen of the mobile terminal 1 by the user's finger.
  • the touch screen is a capacitive touch screen.
  • the capacitive touch screen is a four-layer composite glass screen.
  • the inner surface and the interlayer of the glass screen are coated with a layer of ⁇ , the outermost layer is a thin layer of bauxite glass protective layer, the interlayer enamel coating is used as the working surface, four electrodes are led at the four corners, and the inner layer is shielded.
  • the finger touches the metal layer due to the human body electric field, the user and the touch screen surface form a coupling capacitor.
  • the capacitor is a direct conductor, and the finger sucks a small current from the contact point.
  • the current drawn from the electrodes on the four corners of the touch screen respectively flows, and the current flowing through the four electrodes is proportional to the distance from the finger to the four corners.
  • the controller in the touch screen accurately calculates the ratio of the four currents.
  • the position of the touch point is obtained, and the contact area can be calculated by the calculation of the touch point.
  • the touch screen is a pressure-sensing capacitive touch screen.
  • the pressure value of the pressure-sensing capacitive touch screen is detected at each point of the finger, and the finger is calculated by the pressure value.
  • the touch area of a pressure-sensing capacitive touch screen is a pressure-sensing capacitive touch screen.
  • Step S12 The determining module 112 determines whether the touch area is greater than or equal to a preset area. When the touch area is greater than or equal to the preset area ⁇ , the flow proceeds to step S13. When the touch area is smaller than the preset area ⁇ , step S12 is repeatedly performed.
  • the predetermined area is one square centimeter. In other embodiments, the user can set the preset area, for example, setting the preset area to 1.1 square centimeters, 1.2 square centimeters, 1.3 square centimeters, 1.4 square centimeters, and the like.
  • Step S13 The determining module 112 determines whether the click time is greater than or equal to the preset time. When the click interval is greater than or equal to the preset time, the flow proceeds to step S14. When the click is less than the preset time, step S13 is repeated. In this embodiment, the preset time is one second. In other embodiments, the user can set the preset time, for example, setting the preset time to two seconds, three seconds, four seconds, five seconds, and the like.
  • step S12 and step S13 are not fixed. In other embodiments, the order of execution of step S12 and step S13 may be reversed. Specifically, step S13 is performed first and then step is executed. In step S12, for example, when the click time in step S13 is greater than or equal to the preset time, the flow proceeds to step S12, and when the touch area in step S12 is greater than or equal to the preset area, the flow proceeds to step S14.
  • Step S14 The obtaining module 113 acquires the text content of the electronic medical record 100 that is clicked by the user's finger.
  • the obtaining module 113 acquires text content from the information input area.
  • the position clicked by the user is located in the cell 9 of the electronic case 100, and the text content in the cell 9 is obtained.
  • the neck muscles are stiff, the spine is physiologically curved, and the cervical intervertebral space is tender.”
  • Step S15 The parsing module 114 performs text parsing on the acquired text content and displays the parsed text content in the floating window 110. Specifically, as shown in FIG. 5, the parsing module 114 decomposes the acquired text content into underlined characters and displays them in the floating window 110. Specifically, the floating window 110 is displayed on the uppermost layer of the electronic case 100, and the parsed text content is displayed in the floating window 110. It should be noted that, if the information input area displays a picture, the parsing module 114 parses the picture by OCR (Optic al Character Recognition) technology to obtain the parsed text content, and parses the parsed text. The text content is displayed within the floating window 110.
  • OCR Optic al Character Recognition
  • Step S16 The obtaining module 113 acquires a keyword selected by the user from the floating window 110, and searches for the partition database 300 corresponding to the keyword. Specifically, the parsed text content is displayed on the floating window 110, and the user can click the selected text by a finger, and the clicked text is the keyword selected by the user from the floating window 110. For example, if the user clicks on the character "neck muscle stiffness" in the floating window 110 with a finger, “neck muscle stiffness” is a keyword selected from the floating window 110, and if the user clicks on the text in the floating window 110 with a finger” "Men muscle pain", then "neck muscle pain” is a keyword selected from the suspension window 110.
  • the selected keyword may be a continuous text in the parsed text content (for example, "neck muscle stiffness") or a discontinuous text (for example, "neck muscle pain”). Further, in order to improve the user experience, the user can intuitively see the selected keyword, in this embodiment.
  • the obtaining module 113 also performs color conversion on the selected keyword, for example, when the user clicks on the selected keyword ⁇ , converts the selected keyword into red text (for example, “the neck muscle is stiff” "Converted to red font”. Since the partition code of the partition database 300 corresponds to the keyword of the disease, the partition code corresponding to the selected keyword is found by comparing the selected keyword with the keyword of the disease, and then the partition code of the database 300 is passed. You can find the score corresponding to the keyword. Area database 300.
  • Step S17 The connection module 115 is connected to the partition database 300 corresponding to the keyword by the database middleware 20 in the database middleware server 2.
  • Step S18 The receiving module 116 sends the partition data corresponding to the keyword, and receives the medical data returned by the partition database 300 corresponding to the keyword.
  • the medical database server 3 searches for the corresponding medical data in the partition database 300 corresponding to the keyword according to the keyword. Specifically, after the medical database server 3 completes the search of the medical data based on the keyword, the searched medical data is returned to the mobile terminal 1 and displayed on the touch screen of the mobile terminal 1.
  • the present invention adopts the above technical solution, and brings the technical effects as follows:
  • the partition database-based electronic medical record information query system and method adopted by the present invention can be based on data in an electronic medical record from a remote medical database server. Further inquiry of medical data reduces the patient's diagnosis and medical expenses for medical treatment, and reduces the diagnostic efficiency of patients.

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Abstract

一种基于分区数据库的电子病历信息查询系统及方法,该方法包括以下步骤:计算用户手指点击该电子病历时与该移动终端的触摸屏的接触面积(S11);获取用户手指点击该电子病历的文本内容(S14);将文本内容进行文字解析并将解析后的文本内容显示于悬浮窗(S15);获取用户从悬浮窗中选择的关键字,并查找所述关键字对应的分区数据库(S16);通过数据库中间件服务器中的数据库中间件与所述关键字对应的分区数据库连接(S17);发送所述关键字对应的分区数据,接收所述关键字对应的分区数据库的查询后返回的医疗数据(S18)。该方法以基于电子病历中的数据从远端的医疗数据库服务器进一步查询医疗数据,降低了患者就医时的诊断时间及就医费用。

Description

基于分区数据库的电子病历信息査询系统及方法 技术领域
[0001] 本发明涉及医疗信息化领域, 尤其涉及一种基于分区数据库的电子病历信息査 询系统及方法。
背景技术
[0002] 病历是病人在医院诊断治疗全过程的原始记录, 它包含有首页、 病程记录、 检 査检验结果、 医嘱、 手术记录、 护理记录等等。 随着医院计算机管理网络化, 电子病历 (EMR, Electronic Medical Record)应运而生。 作为科技进步的产物, 电 子病历因其方便记录, 易存储等优点被越来越广泛的应用在医疗系统中。
[0003] 进一步地, 随着移动医疗的发展, 现在越来越多的患者或医生都使用移动终端
(例如, 手机、 平板电脑等触摸屏的移动终端) 査看电子病例。 然而, 现有的 医疗信息化系统中无法通过电子病例进一步査询医疗数据 (例如, 通过电子病 例中的某几个关键字査询所述关键字对应的医疗数据) , 若患者进行远程诊断 吋, 会导致患者就医吋诊断吋间及费用增加, 同吋也降低了患者就医吋的诊断 效率。
技术问题
[0004] 本发明的主要目的在于提供一种基于分区数据库的电子病历信息査询系统及方 法, 旨在解决基于电子病历无法进一步査询医疗数据的技术问题。
问题的解决方案
技术解决方案
[0005] 为实现上述目的, 本发明提供了一种基于分区数据库的电子病历信息査询系统 , 运行于移动终端中, 所述移动终端与数据库中间件服务器及电子病例服务器 通信连接, 所述数据库中间件服务器与所述医疗数据库服务器通信连接, 所述 医疗数据库服务器存储医疗数据, 所述电子病例服务器存储有电子病例, 所述 医疗数据库服务器安装有医疗数据库, 所述医疗数据库划分为多个分区数据库 , 该系统包括: [0006] 计算模块, 用于当电子病历显示于移动终端上吋, 计算用户手指点击该电子病 历吋与该移动终端的触摸屏的接触面积;
[0007] 获取模块, 用于当所述触摸面积大于或等于预设面积且点击吋间大于或等于预 设吋间吋, 获取用户手指点击该电子病历的文本内容;
[0008] 解析模块, 用于将文本内容进行文字解析并将解析后的文本内容显示于悬浮窗
[0009] 所述获取模块, 还用于获取用户从悬浮窗中选择的关键字, 并査找所述关键字 对应的分区数据库;
[0010] 连接模块, 用于通过所述数据库中间件服务器中的数据库中间件与所述关键字 对应的分区数据库连接; 及
[0011] 接收模块, 用于发送所述关键字对应的分区数据, 并接收所述关键字对应的分 区数据库査询后返回的医疗数据。
[0012] 优选的, 所述电子病例为表格式电子病例, 所述电子病例采用表格的形式分为 多个单元格, 其中, 电子病例中的每个单元格都有固定显示区域及信息输入区 域, 所述固定显示区域显示固定的文本内容, 信息输入区域用于显示医生输入 的文本内容。
[0013] 优选的, 所述解析的文本内容为带下划线的文字, 所选择的关键字为解析的文 本内容中连续的文字或不连续的文字。
[0014] 优选的, 所述获取模块还用于将用户在悬浮窗内所选择的关键字进行颜色转换
[0015] 优选的, 所述医疗数据库中的每一个分区数据库分配有一个唯一的分区代码, 一个分区代码对应一种或多种疾病的关键字, 一个分区数据库存储有对应一种 或多种疾病的关键字相关的医疗数据。
[0016] 另一方面, 本发明还提供一种基于分区数据库的电子病历信息査询方法, 应用 于移动终端中, 所述移动终端与数据库中间件服务器及电子病例服务器通信连 接, 所述数据库中间件服务器与所述医疗数据库服务器通信连接, 所述医疗数 据库服务器存储医疗数据, 所述电子病例服务器存储有电子病例, 所述医疗数 据库服务器安装有医疗数据库, 所述医疗数据库划分为多个分区数据库, 该方 法包括以下步骤:
[0017] 当电子病历显示于移动终端上吋, 计算用户手指点击该电子病历吋与该移动终 端的触摸屏的接触面积;
[0018] 当所述触摸面积大于或等于预设面积且点击吋间大于或等于预设吋间吋, 获取 用户手指点击该电子病历的文本内容;
[0019] 将文本内容进行文字解析并将解析后的文本内容显示于悬浮窗;
[0020] 获取用户从悬浮窗中选择的关键字, 并査找所述关键字对应的分区数据库; [0021] 通过所述数据库中间件服务器中的数据库中间件与所述关键字对应的分区数据 库连接; 及
[0022] 发送所述关键字对应的分区数据, 并接收所述关键字对应的分区数据库査询后 返回的医疗数据。
[0023] 优选的, 所述电子病例为表格式电子病例, 所述电子病例采用表格的形式分为 多个单元格, 其中, 电子病例中的每个单元格都有固定显示区域及信息输入区 域, 所述固定显示区域显示固定的文本内容, 信息输入区域用于显示医生输入 的文本内容。
[0024] 优选的, 所述解析的文本内容为带下划线的文字, 所选择的关键字为解析的文 本内容中连续的文字或不连续的文字。
[0025] 优选的, 所述获取用户从悬浮窗中选择的关键字的步骤进一步包括如下步骤: 对所述用户在悬浮窗内所选择的关键字进行颜色转换。
[0026] 优选的, 所述医疗数据库中的每一个分区数据库分配有一个唯一的分区代码, 一个分区代码对应一种或多种疾病的关键字, 一个分区数据库存储有对应一种 或多种疾病的关键字相关的医疗数据。
发明的有益效果
有益效果
[0027] 本发明采用上述技术方案, 带来的技术效果为: 本发明采用的所述基于分区数 据库的电子病历信息査询系统及方法, 可以基于电子病历中的数据从远端的医 疗数据库服务器进一步査询医疗数据, 降低了患者就医吋的诊断吋间及就医费 用, 同吋也降低了患者就医吋的诊断效率。 对附图的简要说明
附图说明
[0028] 图 1是本发明基于分区数据库的电子病历信息査询系统的应用环境示意图; [0029] 图 2是本发明基于分区数据库的电子病历信息査询系统的优选实施例的模块示 意图;
[0030] 图 3是本发明基于分区数据库的电子病历信息査询方法的优选实施例的流程图 [0031 ] 图 4是本发明电子病历的优选实施例的示意图;
[0032] 图 5是本发明对电子病历中的文本内容进行解析后的优选实施例的示意图。
[0033] 本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0034] 为更进一步阐述本发明为达成预定发明目的所采取的技术手段及功效, 以下结 合附图及较佳实施例, 对本发明的具体实施方式、 结构、 特征及其功效, 详细 说明如下。 应当理解, 此处所描述的具体实施例仅仅用以解释本发明, 并不用 于限定本发明。
[0035] 参照图 1所示, 图 1是本发明基于分区数据库的电子病历信息査询系统的应用环 境示意图。 本发明中的基于分区数据库的电子病历信息査询系统 10运行于移动 终端 1上。 所述移动终端 1通过网络 (图中未示出) 与数据库中间件服务器 2通信 连接, 所述数据库中间件服务器 2与所述医疗数据库服务器 3通信连接。 所述移 动终端 1可以通过数据库中间件服务器 2访问所述医疗数据库服务器 3, 并从所述 医疗数据库服务器 3获取各种类型的医疗数据。 所述医疗数据包括, 但不限于, 患者姓名、 患者年齢、 患病吋间、 疾病名称、 患病原因、 疾病诊断信息、 药品 名称、 药品数量、 医生姓名、 就诊医院及科室、 费用及患者的联系方式 (例如 , 电子邮箱地址、 手机号码、 即吋通信账号等) 、 疾病百科、 政府医疗政策文 件等信息。 具体而言, 所述医疗数据库服务器 3提供数据导入接口 (例如, 应用 程序接口, Application Program Interface, API) , 接入该数据导入接口的设备或 系统都可以从所述医疗数据库服务器 3中获取医疗数据。 [0036] 所述医疗数据库服务器 3安装有医疗数据库 30, 其中, 所述医疗数据库 30划分 为多个分区数据库 300, 例如 N个分区数据库 300, 每一个分区数据库 300分配有 一个唯一的分区代码, 一个分区代码对应一种或多种疾病的关键字, 一个分区 数据库 300存储有一种或多种疾病的关键字相关的医疗数据。
[0037] 所述医疗数据库服务器 3上还设置有数据库连接 31, 用于与所述分区数据库 300 连接。 其中, 所述数据库连接 31可以为一种幵放数据库连接 (Open Database Connectivity , ODBC) 以及 Java数据库连接 (Java Data Base Connectivity, JDBC
[0038] 所述数据库中间件服务器 2安装有数据库中间件 20, 例如, SQL中间件为一种 通用的数据库中间件 20。 在本实施例中, 所述数据库中间件 20包括医疗数据库 3 0中每一个分区数据库 300的数据库标签以及数据库连接参数, 每一个分区数据 库 300的数据库标签与该分区数据库 300的分区代码相对应。 所述数据库连接参 数用于所述数据库中间件 20与医疗数据库 30中的分区数据库 300建立数据库连接
[0039] 进一步地, 所述移动终端 1通过网络 (图中未示出) 与所述电子病例服务器 4通 信连接, 用户获取电子病例服务器 4上的电子病例。
[0040] 所述电子病例服务器 4存储有电子病例 100。 所述电子病例 100为表格式电子病 例 100, 具体地说, 所述电子病例 100采用表格的形式分为多个单元格。 如图 4所 示, 电子病例 100以表格的形式显示于移动终端 1的触摸屏上, 所述电子病例 100 采用表格的形式分为十个单元格 (10个单元格只是举例说明, 实际的电子病例 远远多于十个单元格) , 每个单元格上有对应的病例信息, 例如, 单元格①显示 姓名, 单元格②显示性别, 单元格③显示籍贯, 单元格④显示年齢, 单元格⑤显 示职业, 单元格⑥显示就诊日期, 单元格⑦显示就诊医生, 单元格⑧显示科室, 单元格⑨显示就诊信息及单元格⑩显示用药信息。
[0041] 进一步地, 电子病例 100中的每个单元格都有固定显示区域及信息输入区域, 其中, 固定显示区域显示固定的文本内容, 信息输入区域用于显示医生输入的 文本内容, 例如, 单元格⑨中的 "就诊信息"显示于固定显示区域, 而单元格⑨中 的"颈部肌肉僵硬, 脊柱生理弯曲存在, 颈椎间隙压痛 "显示于信息输入区域。 在 其他实施例中, 所述信息输入区域还可以显示图片 (例如, 医疗影像图片) 。
[0042] 需要说明的是, 由于所述医疗数据及电子病例 100属于隐私信息, 为了确保信 息安全, 所述医疗数据发送给电子病例服务器 4吋, 会通过加解密算法 (例如, MD5加解密算法、 RS A加解密算法、 DES加解密算法、 DSA加解密算法、 AES加 解密算法等) 先对医疗数据进行加密处理, 之后传输给所述电子病例服务器 4。
[0043] 在本实施例中, 所述网络可以是有线通讯网络或无线通讯网络。 所述网络优选 为无线通讯网络, 包括但不限于, GSM网络、 GPRS网络、 CDMA网络、 TD-SC DMA网络、 WiMAX网络、 TD-LTE网络、 FDD-LTE网络等无线传输网络。
[0044] 所述医疗数据库服务器 3是云平台或数据中心的某一台服务器, 通过云平台或 数据中心的数据传输能力及数据存储能力, 可以更好地管理及 /或协助与该医疗 数据库服务器 3连接的移动终端 1, 有利于用户获取医疗数据及电子病例 100。
[0045] 所述移动终端 1可以是, 但不限于, 智能手机、 平板电脑、 个人数字助理 (Pers onal Digital Assistant, PDA) 、 个人电脑、 电子看板等其它任意合适的便携式触 摸屏电子设备。
[0046] 参照图 2所示, 是本发明基于分区数据库的电子病历信息査询系统的优选实施 例的模块示意图。 在本实施例中, 所述基于分区数据库的电子病历信息査询系 统 10应用于移动终端 1。 该移动终端 1包括, 但不仅限于, 基于分区数据库的电 子病历信息査询系统 10、 存储单元 11、 处理单元 12、 及通讯单元 13。
[0047] 所述的存储单元 11可以为一种只读存储单元 ROM, 电可擦写存储单元 EEPRO M、 快闪存储单元 FLASH或固体硬盘等。
[0048] 所述的处理单元 12可以为一种中央处理器 (Central Processing Unit, CPU) 、 微控制器 (MCU) 、 数据处理芯片、 或者具有数据处理功能的信息处理单元。
[0049] 所述的通讯单元 13为一种具有远程通讯功能的通讯接口, 例如支持 GSM、 GPR S、 WCDMA、 CDMA、 TD-SCDMA、 WiMAX、 TD-LTE、 FDD-LTE等无线通讯 技术的通讯接口, 支持 USB、 网线的有线通讯接口。
[0050] 所述基于分区数据库的电子病历信息査询系统 10包括, 但不局限于, 计算模块 111、 判断模块 112、 获取模块 113、 解析模块 114、 连接模块 115及接收模块 116 , 本发明所称的模块是指一种能够被所述移动终端 1的处理单元 12执行并且能够 完成固定功能的一系列计算机程序指令段, 其存储在所述移动终端 1的存储单元 11中。
[0051] 所述计算模块 111用于当电子病历 100显示于移动终端 1上吋, 计算用户手指点 击该电子病历 100吋与该移动终端 1的触摸屏的接触面积。 在本实施例中, 所述 触摸屏为电容式触摸屏。 具体地说, 电容式触摸屏是一块四层复合玻璃屏, 玻 璃屏的内表面和夹层各涂有一层 ITO, 最外层是一薄层矽土玻璃保护层, 夹层 IT 0涂层作为工作面, 四个角上引出四个电极, 内层 ITO为屏蔽层以保证良好的工 作环境。 当手指触摸在金属层上吋, 由于人体电场, 用户和触摸屏表面形成以 一个耦合电容, 对于高频电流来说, 电容是直接导体, 于是手指从接触点吸走 一个很小的电流。 所吸走的电流分别从触摸屏的四角上的电极中流出, 并且流 经这四个电极的电流与手指到四角的距离成正比, 触摸屏中的控制器通过对这 四个电流比例的精确计算, 得出触摸点的位置, 通过触摸点的计算可以计算出 接触面积。 在其他实施例中, 所述触摸屏为压力感应电容式触摸屏, 当用户手 指触摸该压力感应电容式触摸屏吋, 检测手指各点对该压力感应电容式触摸屏 的压力值, 通过压力值计算手指与该压力感应电容式触摸屏的触摸面积。
[0052] 所述判断模块 112用于判断触摸面积是否大于或等于预设面积。 在本实施例中 , 所述预设面积为一平方厘米。 在其它实施例中, 用户可以设置预设面积, 例 如, 设置预设面积为 1.1平方厘米、 1.2平方厘米、 1.3平方厘米、 1.4平方厘米等
[0053] 当所述触摸面积大于或等于预设面积吋, 所述判断模块 112还用于判断点击吋 间是否超过预设吋间。 在本实施例中, 所述预设吋间为一秒。 在其它实施例中 , 用户可以设置预设吋间, 例如, 设置预设吋间为两秒、 三秒、 四秒、 五秒等
[0054] 所述获取模块 113用于当点击吋间大于或等于预设吋间吋, 获取用户手指点击 该电子病历 100的文本内容。 在本实施例中, 所述获取模块 113从信息输入区域 获取文本内容。 如图 4所示, 当用户手指点击电子病例 100的其中一个单元格 ( 例如点击单元格⑨) , 用户手指点击的位置位于电子病例 100的单元格⑨吋, 获 取单元格⑨中的文本内容"颈部肌肉僵硬, 脊柱生理弯曲存在, 颈椎间隙压痛"。 [0055] 所述解析模块 114用于将文本内容进行文字解析并将解析后的文本内容显示于 悬浮窗 110。 具体地说, 如图 5所示, 所述解析模块 114将获取的文本内容分解为 带下划线的文字并显示于悬浮窗 110内。 具体地说, 所述悬浮窗 110显示于所述 电子病例 100的最上层, 悬浮窗 110内显示解析后的文本内容。 需要说明的是, 若信息输入区域显示的是图片吋, 所述解析模块 114通过 OCR (Optical Character Recognition, 光学字符识别) 技术对图片进行解析以获得解析后的文本内容, 并 将解析后的文本内容显示于悬浮窗 110内。
[0056] 所述获取模块 113还用于获取用户从悬浮窗 110中选择的关键字, 并査找所述关 键字对应的分区数据库 300。 具体而言, 解析后的文本内容显示于所述悬浮窗 11 0上吋, 用户可以通过手指点击所选择的文字, 所点击的文字即为用户从悬浮窗 110中选择的关键字。 例如, 若用户用手指点击悬浮窗 110内的文字"颈部肌肉僵 硬", 则"颈部肌肉僵硬 "为从悬浮窗 110中选择的关键字, 若用户用手指点击悬浮 窗 110内的文字"颈部肌肉痛", 则"颈部肌肉痛"为从悬浮窗 110中选择的关键字。 需要说明的是, 所选择的关键字可以是解析的文本内容中连续的文字 (例如, " 颈部肌肉僵硬") , 也可以是不连续的文字 (例如, "颈部肌肉痛") 。 进一步地 , 为了提高用户体验, 让用户很直观地看到选择的关键字, 在本实施例中, 所 述获取模块 113还会将用户在悬浮窗 110内所选择的关键字进行颜色转换, 例如
, 当用户点击所选择的关键字吋, 将所选择的关键字转换成红色的文字 (例如
, 将"颈部肌肉僵硬 "转换成红色字体) 。 由于所述分区数据库 300的分区代码与 疾病的关键字对应, 通过将所选择的关键字与疾病的关键字进行比较找到所选 择的关键字对应的分区代码, 之后通过所述数据库 300的分区代码可以査找到所 述关键字对应的分区数据库 300。
[0057] 所述连接模块 115用于通过所述数据库中间件服务器 2中的数据库中间件 20与所 述关键字对应的分区数据库 300连接。
[0058] 所述接收模块 116用于发送所述关键字对应的分区数据, 并接收所述关键字对 应的分区数据库 300査询后返回的医疗数据。 所述医疗数据库服务器 3根据所述 关键字在该关键字对应的分区数据库 300搜索对应的医疗数据。 具体地说, 当医 疗数据库服务器 3根据所述关键字完成医疗数据的搜索后, 将搜索后的医疗数据 返回给移动终端 1, 并显示于移动终端 1的触摸屏上。
[0059] 参照图 3所示, 是本发明基于分区数据库的电子病历信息査询方法的优选实施 例的流程图。 在本实施例中, 所述的基于电子病历 100的医疗数据査询方法应用 于移动终端 1, 该方法包括以下步骤:
[0060] 步骤 S11 : 当电子病历 100显示于移动终端 1上吋, 所述计算模块 111计算用户手 指点击该电子病历 100吋与该移动终端 1的触摸屏的接触面积。 在本实施例中, 所述触摸屏为电容式触摸屏。 具体地说, 电容式触摸屏是一块四层复合玻璃屏
, 玻璃屏的内表面和夹层各涂有一层 ιτο, 最外层是一薄层矽土玻璃保护层, 夹 层 ΙΤΟ涂层作为工作面, 四个角上引出四个电极, 内层 ΙΤΟ为屏蔽层以保证良好 的工作环境。 当手指触摸在金属层上吋, 由于人体电场, 用户和触摸屏表面形 成以一个耦合电容, 对于高频电流来说, 电容是直接导体, 于是手指从接触点 吸走一个很小的电流。 所吸走的电流分别从触摸屏的四角上的电极中流出, 并 且流经这四个电极的电流与手指到四角的距离成正比, 触摸屏中的控制器通过 对这四个电流比例的精确计算, 得出触摸点的位置, 通过触摸点的计算可以计 算出接触面积。 在其他实施例中, 所述触摸屏为压力感应电容式触摸屏, 当用 户手指触摸该压力感应电容式触摸屏吋, 检测手指各点对该压力感应电容式触 摸屏的压力值, 通过压力值计算手指与该压力感应电容式触摸屏的触摸面积。
[0061] 步骤 S12: 所述判断模块 112判断触摸面积是否大于或等于预设面积。 当所述触 摸面积大于或等于预设面积吋, 流程进入步骤 S13。 当所述触摸面积小于预设面 积吋, 重复执行步骤 S12。 在本实施例中, 所述预设面积为一平方厘米。 在其它 实施例中, 用户可以设置预设面积, 例如, 设置预设面积为 1.1平方厘米、 1.2平 方厘米、 1.3平方厘米、 1.4平方厘米等。
[0062] 步骤 S13: 所述判断模块 112判断点击吋间是否大于或等于预设吋间。 当点击吋 间大于或等于预设吋间吋, 流程进入步骤 S14。 当点击吋间小于预设吋间吋, 重 复执行步骤 S13。 在本实施例中, 所述预设吋间为一秒。 在其它实施例中, 用户 可以设置预设吋间, 例如, 设置预设吋间为两秒、 三秒、 四秒、 五秒等。
[0063] 需要说明的是, 步骤 S12与步骤 S13的执行顺序并不是固定的, 在其它实施例中 , 步骤 S12及步骤 S13的执行顺序可以调换。 具体地说, 先执行步骤 S13再执行步 骤 S12, 例如, 当步骤 S13中的点击吋间大于或等于预设吋间吋, 流程进入骤 S12 , 当步骤 S12中的所述触摸面积大于或等于预设面积吋, 流程进入步骤 S14。
[0064] 步骤 S14: 所述获取模块 113获取用户手指点击该电子病历 100的文本内容。 在 本实施例中, 所述获取模块 113从信息输入区域获取文本内容。 如图 4所示, 当 用户手指点击电子病例 100的其中一个单元格 (例如点击单元格⑨) 吋, 用户手 指点击的位置位于电子病例 100的单元格⑨吋, 获取单元格⑨中的文本内容 "颈部 肌肉僵硬, 脊柱生理弯曲存在, 颈椎间隙压痛"。
[0065] 步骤 S15: 所述解析模块 114将获取的文本内容进行文字解析并将解析后的文本 内容显示于悬浮窗 110。 具体地说, 如图 5所示, 所述解析模块 114将获取的文本 内容分解为带下划线的文字并显示于悬浮窗 110内。 具体地说, 所述悬浮窗 110 显示于所述电子病例 100的最上层, 悬浮窗 110内显示解析后的文本内容。 需要 说明的是, 若信息输入区域显示的是图片吋, 所述解析模块 114通过 OCR (Optic al Character Recognition, 光学字符识别) 技术对图片进行解析以获得解析后的 文本内容, 并将解析后的文本内容显示于悬浮窗 110内。
[0066] 步骤 S16: 所述获取模块 113获取用户从悬浮窗 110中选择的关键字, 并査找所 述关键字对应的分区数据库 300。 具体而言, 解析后的文本内容显示于所述悬浮 窗 110上吋, 用户可以通过手指点击所选择的文字, 所点击的文字即为用户从悬 浮窗 110中选择的关键字。 例如, 若用户用手指点击悬浮窗 110内的文字"颈部肌 肉僵硬", 则"颈部肌肉僵硬 "为从悬浮窗 110中选择的关键字, 若用户用手指点击 悬浮窗 110内的文字"颈部肌肉痛", 则"颈部肌肉痛"为从悬浮窗 110中选择的关键 字。 需要说明的是, 所选择的关键字可以是解析的文本内容中连续的文字 (例 如, "颈部肌肉僵硬") , 也可以是不连续的文字 (例如, "颈部肌肉痛") 。 进一 步地, 为了提高用户体验, 让用户很直观地看到选择的关键字, 在本实施例中
, 所述获取模块 113还会将所选择的关键字进行颜色转换, 例如, 当用户点击所 选择的关键字吋, 将所选择的关键字转换成红色的文字 (例如, 将"颈部肌肉僵 硬"转换成红色字体) 。 由于所述分区数据库 300的分区代码与疾病的关键字对应 , 通过将所选择的关键字与疾病的关键字进行比较找到所选择的关键字对应的 分区代码, 之后通过所述数据库 300的分区代码可以査找到所述关键字对应的分 区数据库 300。
[0067] 步骤 S17: 所述连接模块 115通过所述数据库中间件服务器 2中的数据库中间件 2 0与所述关键字对应的分区数据库 300连接。
[0068] 步骤 S18: 所述接收模块 116发送所述关键字对应的分区数据, 并接收所述关键 字对应的分区数据库 300査询后返回的医疗数据。 所述医疗数据库服务器 3根据 所述关键字在该关键字对应的分区数据库 300搜索对应的医疗数据。 具体地说, 当医疗数据库服务器 3根据所述关键字完成医疗数据的搜索后, 将搜索后的医疗 数据返回给移动终端 1, 并显示于移动终端 1的触摸屏上。
[0069] 以上仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利用本 发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运用在 其他相关的技术领域, 均同理包括在本发明的专利保护范围内。
工业实用性
[0070] 本发明采用上述技术方案, 带来的技术效果为: 本发明采用的所述基于分区数 据库的电子病历信息査询系统及方法, 可以基于电子病历中的数据从远端的医 疗数据库服务器进一步査询医疗数据, 降低了患者就医吋的诊断吋间及就医费 用, 同吋也降低了患者就医吋的诊断效率。

Claims

权利要求书
[权利要求 1] 一种基于分区数据库的电子病历信息査询系统, 运行于移动终端中, 其特征在于, 所述移动终端与数据库中间件服务器及电子病例服务器 通信连接, 所述数据库中间件服务器与所述医疗数据库服务器通信连 接, 所述医疗数据库服务器存储医疗数据, 所述电子病例服务器存储 有电子病例, 所述医疗数据库服务器安装有医疗数据库, 所述医疗数 据库划分为多个分区数据库, 该系统包括: 计算模块, 用于当电子病 历显示于移动终端上吋, 计算用户手指点击该电子病历吋与该移动终 端的触摸屏的接触面积; 获取模块, 用于当所述触摸面积大于或等于 预设面积且点击吋间大于或等于预设吋间吋, 获取用户手指点击该电 子病历的文本内容; 解析模块, 用于将文本内容进行文字解析并将解 析后的文本内容显示于悬浮窗; 所述获取模块, 还用于获取用户从悬 浮窗中选择的关键字, 并査找所述关键字对应的分区数据库; 连接模 块, 用于通过所述数据库中间件服务器中的数据库中间件与所述关键 字对应的分区数据库连接; 及接收模块, 用于发送所述关键字对应的 分区数据, 并接收所述关键字对应的分区数据库査询后返回的医疗数 据。
[权利要求 2] 如权利要求 1所述的基于分区数据库的电子病历信息査询系统, 其特 征在于, 所述电子病例为表格式电子病例, 所述电子病例采用表格的 形式分为多个单元格, 其中, 电子病例中的每个单元格都有固定显示 区域及信息输入区域, 所述固定显示区域显示固定的文本内容, 信息 输入区域用于显示医生输入的文本内容。
[权利要求 3] 如权利要求 1所述的基于分区数据库的电子病历信息査询系统, 其特 征在于, 所述解析的文本内容为带下划线的文字, 所选择的关键字为 解析的文本内容中连续的文字或不连续的文字。
[权利要求 4] 如权利要求 1所述的基于分区数据库的电子病历信息査询系统, 其特 征在于, 所述获取模块还用于将用户在悬浮窗内所选择的关键字进行 颜色转换。
[权利要求 5] 如权利要求 1所述的基于分区数据库的电子病历信息査询系统, 其特 征在于, 所述医疗数据库中的每一个分区数据库分配有一个唯一的分 区代码, 一个分区代码对应一种或多种疾病的关键字, 一个分区数据 库存储有对应一种或多种疾病的关键字相关的医疗数据。
[权利要求 6] —种基于分区数据库的电子病历信息査询方法, 应用于移动终端中, 其特征在于, 所述移动终端与数据库中间件服务器及电子病例服务器 通信连接, 所述数据库中间件服务器与所述医疗数据库服务器通信连 接, 所述医疗数据库服务器存储医疗数据, 所述电子病例服务器存储 有电子病例, 所述医疗数据库服务器安装有医疗数据库, 所述医疗数 据库划分为多个分区数据库, 该方法包括以下步骤: 当电子病历显示 于移动终端上吋, 计算用户手指点击该电子病历吋与该移动终端的触 摸屏的接触面积; 当所述触摸面积大于或等于预设面积且点击吋间大 于或等于预设吋间吋, 获取用户手指点击该电子病历的文本内容; 将 文本内容进行文字解析并将解析后的文本内容显示于悬浮窗; 获取用 户从悬浮窗中选择的关键字, 并査找所述关键字对应的分区数据库; 通过所述数据库中间件服务器中的数据库中间件与所述关键字对应的 分区数据库连接; 及发送所述关键字对应的分区数据, 并接收所述关 键字对应的分区数据库査询后返回的医疗数据。
[权利要求 7] 如权利要求 6所述的基于分区数据库的电子病历信息査询方法, 其特 征在于, 所述电子病例为表格式电子病例, 所述电子病例采用表格的 形式分为多个单元格, 其中, 电子病例中的每个单元格都有固定显示 区域及信息输入区域, 所述固定显示区域显示固定的文本内容, 信息 输入区域用于显示医生输入的文本内容。
[权利要求 8] 如权利要求 6所述的基于分区数据库的电子病历信息査询方法, 其特 征在于, 所述解析的文本内容为带下划线的文字, 所选择的关键字为 解析的文本内容中连续的文字或不连续的文字。
[权利要求 9] 如权利要求 6所述的基于分区数据库的电子病历信息査询方法, 其特 征在于, 所述获取用户从悬浮窗中选择的关键字的步骤进一步包括如 下步骤: 对所述用户在悬浮窗内所选择的关键字进行颜色转换。
[权利要求 10] 如权利要求 6所述的基于分区数据库的电子病历信息査询方法, 其特 征在于, 所述医疗数据库中的每一个分区数据库分配有一个唯一的分 区代码, 一个分区代码对应一种或多种疾病的关键字, 一个分区数据 库存储有对应一种或多种疾病的关键字相关的医疗数据。
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