A medical address structuring processing method

By using postal code decomposition and translucent identifiers, the complexity of medical address records and the challenges of cross-system data exchange are solved, enabling low-cost and reliable address information extraction and exchange, which is applicable to non-networked medical institutions.

CN119361064BActive Publication Date: 2025-12-09WEIJIAN INTELLIGENT (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202411467079.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-12-09
Estimated Expiration
2044-10-21

AI Technical Summary

Technical Problem

Existing methods for recording medical addresses suffer from high processing complexity, poor flexibility, inability to handle diverse address expressions, and difficulty in data exchange across medical systems, especially in areas without network connectivity, resulting in low retrieval efficiency.

Method used

The postal code is broken down into replaceable and non-replaceable parts, and a light-transmitting identification symbol index table is created. The information is converted into light-transmitting identifiers, and the data is extracted through the identification system card. Existing medical equipment such as X-ray film viewing lamps are used for light identification to realize the physical storage and exchange of data.

Benefits of technology

It enables reliable and convenient retrieval and exchange of medical address information, reduces data entry errors and the difficulty of cross-system data exchange, is suitable for non-networked areas, and provides a low-cost physical storage solution.

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Abstract

The present application relates to a medical address structured processing method, comprising the following steps: first, collecting medical address information of a patient; second, decomposing the medical address information into a replaceable part of a postal code and a non-replaceable part of a postal code; third, making a first index table for the replaceable part of the postal code, the first index table comprising a plurality of first light-transmissive identification symbols, and making a second index table for the non-replaceable part of the postal code; fourth, converting the replaceable part of the postal code into a first light-transmissive symbol according to the first index table, and converting the non-replaceable part of the postal code into a second light-transmissive symbol according to the second index table, the first light-transmissive symbol and the second light-transmissive symbol forming a light-transmissive identifier; fifth, setting the light-transmissive identifier on an identification card; and sixth, identifying the identification card by an identification system to obtain the medical address information contained in the identification card.
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Description

TECHNICAL FIELD

[0001] The present application relates to a method for processing address data, in particular to a method for structuring processing of medical address data. BACKGROUND

[0002] In the medical field, standardization and structuring of medical address information is an important part of medical information systems, and is crucial for epidemic analysis, family doctor grid management, and regional management. Traditional methods rely on rules and dictionaries, which have high processing complexity, poor flexibility, and cannot cope with diverse address expressions.

[0003] Currently, medical address records are processed mainly in the following two ways.

[0004] The first way is to record in paper documents. Specifically, the medical address of a patient is recorded on a paper file for easy reference. The main problem with this method is that the recording process is complex, the file is easily contaminated after archiving, and efficient retrieval is not possible.

[0005] The second way is to record in pure electronic form. Specifically, the medical address of a patient is entered one by one into a computer system for easy statistical retrieval. The main problem with this method is that manual entry is prone to errors and the workload is large. When retrieving, the internal networks of various medical systems are often incompatible, making cross-system retrieval difficult. In addition, some medical systems have low electronic device configuration, resulting in poor retrieval efficiency. In particular, some backward areas have not yet configured network electronic devices, making retrieval very difficult. SUMMARY

[0006] The technical solution adopted by the present application is a medical address structuring processing method, comprising the following steps:

[0007] First, collect the medical address information of the patient, which includes country information, large regional information within the country, small regional information within the large region, road information, building information, and doorplate information. The country information, large regional information within the country, small regional information within the large region, and road information are the postal codes of the patient's residence.

[0008] Second, decompose the medical address information into a postal code replaceable part and a postal code non-replaceable part.

[0009] Third step, making a first index table for the replaceable part of the postcode, the first index table including a plurality of first light-transmitting identification symbols, each of the first light-transmitting identification symbols corresponding to an Arabic numeral in the postcode, and making a second index table for the non-replaceable part of the postcode, the second index table including a plurality of second light-transmitting identification symbols.

[0010] Fourth step, converting the replaceable part of the postcode into first light-transmitting symbols according to the first index table, and converting the non-replaceable part of the postcode into second light-transmitting symbols according to the second index table, the first light-transmitting symbols and the second light-transmitting symbols forming a light-transmitting identifier, and forming the medical address information from the light-transmitting identifier.

[0011] Fifth step, setting the light-transmitting identifier on an identification card, the identification card including a plate body and a connector, the connector being set on the plate body, and the light-transmitting identifier being set on the plate body.

[0012] Sixth step, identifying the identification card by an identification system to obtain the medical address information contained in the identification card.

[0013] The present application has the following advantages: the present application uses the postcode of a patient's residence to make an identification card, and identifies the identification card by an identification system to obtain the medical address information contained in the identification card, which is unique and reliable, and the user can directly read the data by the identification system. Since many domestic medical institutions are not connected at present, especially in mountainous and remote areas, medical data cannot be exchanged, and the method of the present application can facilitate the exchange of medical data, thereby facilitating the work of patients and medical workers. In addition, the identification card of the present application has low batch production cost, and can provide other physical storage methods in addition to electronic record data. At the same time, the identification card of the present application has the characteristics of easy archiving and storage. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 A logic diagram for decomposing the medical address information of the present application into a replaceable part of a postcode and a non-replaceable part of a postcode.

[0015] Figure 2 Another logic diagram for decomposing the medical address information of the present application into a replaceable part of a postcode and a non-replaceable part of a postcode.

[0016] Figure 3 A logic diagram for the first index table of the present application.

[0017] Figure 4 A logic diagram for the second index table of the present application.

[0018] Figure 5This is a logic block diagram of how the replaceable part of the postal code in this invention is converted into a first transparent symbol.

[0019] Figure 6 This is a logic block diagram of how the non-replaceable part of the postal code is converted into a second transparent symbol according to the present invention.

[0020] Figure 7 This is a logic block diagram of how medical address information 10 is converted into a light-transmitting identifier according to the present invention.

[0021] Figure 8 This is a schematic diagram of the identification card of the present invention.

[0022] Figure 9 This is a schematic diagram of the identification system of the present invention.

[0023] Figure 10 This is a schematic diagram of the light emitter of the present invention.

[0024] Figure 11 This is a schematic diagram of the sampler of the present invention.

[0025] Figure 12 This is a schematic diagram of the identification system of the present invention.

[0026] Figure 13 This is a schematic diagram of the first embodiment of the handheld sampler of the present invention.

[0027] Figure 14 This is a schematic diagram of a second embodiment of the handheld sampler of the present invention.

[0028] Figure 15 This is a schematic diagram of the identification card of the present invention being placed on the medical record. Detailed Implementation

[0029] like Figures 1 to 15 As shown, a method for structuring medical addresses includes the following steps:

[0030] Step 1: Collect the patient's medical address information.

[0031] The medical address information 10 includes country information, large area information within the country, small area information within the large area, road information, building information, and house number information. In practice, the country information refers to the patient's nationality, such as China or Russia. The large area information within the country refers to the province, city, and state where the patient is located. The road information refers to the specific road where the patient resides, such as Heping Road or Chang'an Street. The building information refers to the specific building where the patient resides, such as Times Building or Science and Technology Building. The house number information refers to the specific floor and house number where the patient resides, such as third floor, number four.

[0032] The country information, the large area information in the country, the small area information in the large area, and the road information are the postal code of the patient's residence.

[0033] Postal code is a code system used by some postal services as a tool for sorting mail as well as for delivering mail to addresses. Postal codes are usually alphanumeric or alphanumeric numbers with an average length of 4 to 7 characters as in the case of China, the United States, and Canada, or 7 to 16 characters as in the case of Germany or Italy. The first number or character of a postal code may be allocated in the name of a particular region, particularly a state or province, and combined with a geographic number representing a territory within the region.

[0034] As shown in FIG. 1, the first step is to acquire the medical address information 10. Figures 1 to 2 As shown in FIG. 2, the second step is to decompose the medical address information 10 into a postal code replaceable part 20 and a postal code non-replaceable part 30.

[0035] As shown in FIG. 3, the third step is to make a first index table 21 for the postal code replaceable part 20, which includes a plurality of first light-transmitting identification symbols 22, each of which corresponds to an Arabic numeral in the postal code. Figures 2 to 4 In practice, a square hole corresponds to the number 0, one round hole corresponds to the number 1, two round holes correspond to the number 2, three round holes correspond to the number 3, four round holes correspond to the number 4, an I-shaped hole corresponds to the number 5, one I-shaped hole plus one round hole corresponds to the number 6, one I-shaped hole plus two round holes corresponds to the number 7, one I-shaped hole plus three round holes corresponds to the number 8, and one I-shaped hole plus four round holes corresponds to the number 9.

[0036] A second index table 31 is made for the postal code non-replaceable part 30, which includes a plurality of second light-transmitting identification symbols 32.

[0037] In a specific implementation, the second index table 31 includes a descriptive information part and a numerical information part, wherein the plurality of second light-transmitting identification symbols 32 corresponding to the descriptive information part are twenty-four English letter-shaped light-transmitting holes, and the plurality of second light-transmitting identification symbols 32 corresponding to the numerical information part are consistent with the plurality of first light-transmitting identification symbols 22 of the first index table 21.

[0038] In a specific implementation, the specific shapes of the first light-transmitting identification symbols 22 and the second light-transmitting identification symbols 32 can also be made into other forms of light-transmitting identification symbols as needed.

[0039] As shown in FIG. 4, the fourth step is to make a second index table 31 for the postal code non-replaceable part 30, which includes a plurality of second light-transmitting identification symbols 32.

[0040] Figures 5 to 6 ​As shown in Fig. 4, in the fourth step, the postal code replaceable part 20 is converted into a first light-transmissive symbol 23 according to the first index table 21, and the postal code non-replaceable part 30 is converted into a second light-transmissive symbol 33 according to the second index table 31, and the first light-transmissive symbol 23 and the second light-transmissive symbol 33 form a light-transmissive identifier 11, and the medical address information 10 is formed by the light-transmissive identifier 11.

[0041] As shown in Fig. 5, in the fifth step, the light-transmissive identifier 11 is arranged on an identification card 40. Figure 7

[0042] In the implementation, the light-transmissive identifier 11 can be arranged on the identification card 40 by a puncher.

[0043] In the implementation, the identification card 40 can be made of opaque paperboard, opaque resin board, opaque plastic board, aluminum foil, metal sheet or the like.

[0044] As shown in Fig. 6, in the implementation, the identification card 40 includes a board body 41 and a connector 42, the connector 42 is arranged on the board body 41, and the light-transmissive identifier 11 is arranged on the board body 41. Figure 8

[0045] As shown in Fig. 7, in the sixth step, the identification card 40 is identified by an identification system 100 to obtain the medical address information 10 contained in the identification card 40. Figures 8 to 15

[0046] As shown in Fig. 8, the identification system 100 includes a light emitter 200, a sampler 300 and a processor 400, and a card cavity 110 is arranged between the light emitter 200 and the sampler 300. Figure 9 The identification system 100 identifies the identification card 40 according to the following steps:

[0047] Step A, the identification card 40 is placed in the card cavity 110.

[0048] Step B, the light emitter 200 is powered to emit light, the light 210 emitted by the light emitter 200 is incident into the card cavity 110, and then the light 210 passes through the light-transmissive identifier 11 on the identification card 40 to irradiate on the sampler 300, and an identifier light spot 310 is formed on the sampler 300.

[0049] Step C, the sampler 300 transmits the information of the identifier light spot 310 to the processor 400.

[0050] The information of the first index table 21 and the second index table 31 is pre-recorded in the processor 400.

[0051] The information of the first index table 21 and the second index table 31 is pre-recorded in the processor 400.​​​

[0052] The processor 400 translates the information of the identifier spot 310 through the first index table 21 and the second index table 31 to obtain the corresponding medical address information 10.

[0053] Step D: The processor 400 transmits the medical address information 10 to the terminal device 500, which then displays the medical address information 10 to the user.

[0054] In practice, the terminal device 500 can be a PC display screen or a handheld electronic device, etc.

[0055] The processor 400 transmits the medical address information 10 to the terminal device 500 via wired or wireless means, such as WIFI or Bluetooth.

[0056] In practical implementation, there are various devices that can realize the functions of the identification system 100, which are described below.

[0057] The light emitter 200 is a surface light emitter.

[0058] like Figure 10 As shown, in order to improve the light emission effect of the light emitter 200, the light emitter 200 can be an LED surface light emitter. The light emitter 200 includes a light guide plate 221, several LED light sources 222, and a reflector 223. The light guide plate 221 has a front light-emitting surface, a back surface, and an outer surface. The reflector 223 is connected to the back surface. The several LED light sources 222 are arranged around the light guide plate 221, corresponding to the outer surface. When the several LED light sources 222 are powered on, the light emitted by them enters the light guide plate 221 and is then emitted through the front light-emitting surface. In other words, the light guide plate 221 converts the several LED light sources 222 from point light sources into surface light sources and then emits light outward.

[0059] In practical implementation, the light emitter 200 can be used as an X-ray film viewing light.

[0060] X-ray viewing lights are typically found in the examination rooms of general hospitals. Utilizing existing X-ray viewing lights to achieve the function of this light emitter 200 simplifies the product structure and reduces product costs.

[0061] The sampler 300 includes a photosensitive sensor 320 disposed in the sampler 300, which captures the identifier spot 310 in step B.

[0062] like Figure 11As shown, in practice, the photosensitive device 320 can be a simple lens capable of sensing light, a digital camera lens, etc. The photosensitive device 320 of the present application only needs to sense the light spot shape at close range, so the lens component can be a low-cost lens, thereby greatly reducing product cost.

[0063] As shown, the sampler 300 includes a fixed column 330 fixedly connected to the sampler 300 at one end, and provided with a limiting head 340 at the other end. The connector 42 of the identification card 40 is a through hole. In use, the connector 42 of the identification card 40 is sleeved on the fixed column 330 to fix the relative position of the identification card 40 and the sampler 300, so that the light-transmitting identifier 11 on the identification card 40 corresponds to the photosensitive device 320. Figure 12

[0064] In specific implementation, the sampler 300 further includes a sliding rail 341, and the light emitter 200 is arranged on the sliding rail 341. In use, first, the connector 42 of the identification card 40 is sleeved on the fixed column 330, and then the light emitter 200 is pushed along the sliding rail 340 to make the light emitter 200 emit light after approaching the sampler 300, so as to improve the light spot effect after the light passes through the light-transmitting identifier 11.

[0065] As shown, when the light emitter 200 is an X-ray film viewer, the sampler 300 is a handheld sampler. The sampler 300 includes a body 350, a fixed column 330, and a handle 360. The photosensitive device 320 is arranged in the body 350, the fixed column 330 is connected to the body 350, and the handle 360 is connected below the body 350. Figure 13 In specific implementation, the body 350 is provided with an information transmission module 351, and the processor 400 is arranged in a medical computer. The processor 400 can be connected to the medical computer in the form of a U disk. In use, first, the connector 42 of the identification card 40 is sleeved on the fixed column 330, and then the sampler 300 is held and attached to the X-ray film viewer. After that, the X-ray film viewer emits light, the sampler 300 collects the information of the identifier light spot 310 and transmits it to the information transmission module 351. The information transmission module 351 transmits the information of the identifier light spot 310 to the processor 400 in a wireless manner. The above product form can make full use of the existing medical computer, thereby reducing the product cost of the sampler 300.

[0066] As shown, when the light emitter 200 is an X-ray film viewer, the sampler 300 is a handheld sampler. The sampler 300 includes a body 350, a fixed column 330, and a handle 360. The photosensitive device 320 is arranged in the body 350, the fixed column 330 is connected to the body 350, and the handle 360 is connected below the body 350.

[0067] Figure 14 ​​As shown, in the specific implementation, the light emitting device 200 can be an X-ray film viewer, the sampler 300 includes a body 350, a fixing column 330 and a handle 360, the processor 400 is arranged in the body 350, and the terminal device 500 is a display screen and is arranged on the body 350.

[0068] According to the method of the present application, the information of the light-transmitting identifier 11 arranged on the identification card 40 can also be other identity information of a patient, such as medical process information, test information and the like, and only the index table content needs to be reprogrammed.

[0069] In addition, the identification card 40 of the present application has low batch production cost and can provide other entity storage methods in addition to electronic record data, and the identification card 40 of the present application is convenient to store, for example, thousands of identification cards 40 can be arranged on a thin column for unified storage.

[0070] As shown, Figure 15 Finally, it is emphasized that the identification card 40 of the present application can be bound at the upper right corner of the case A and can be arranged in a folded and unfolded manner, in the folded state, the identification card 40 is convenient to store together with the case, in the unfolded state, the user can directly read data through the sampler 300, and since many domestic medical institutions have not been connected at present, especially for mountainous and remote areas, medical data cannot be exchanged, the identification card 40 of the present application can facilitate the exchange of medical data, thereby facilitating the work of patients and medical workers.

[0071] As shown, Figures 1 to 8 A data identification loading system 100 is used to identify an identification card 40 and obtain data information 10 contained in the identification card 40. The data information 10 is a light-transmitting identifier 11.

[0072] The data identification loading system 100 includes a light emitting device 200, a sampler 300 and a processor 400, and a card cavity 110 is arranged between the light emitting device 200 and the sampler 300.

[0073] The identification card 40 can be made of non-transparent paperboard, non-transparent resin board, non-transparent plastic board, aluminum foil or metal sheet and the like.

[0074] The identification card 40 includes a board body 41 and a connector 42, the connector 42 is arranged on the board body 41, and the light-transmitting identifier 11 is arranged on the board body 41.

[0075] In the implementation, the light-transmissive identifier 11 is set on the identification card 40 by the puncher.

[0076] The data identification loading system 100 identifies the identification card 40 according to the following steps:

[0077] Step A, the identification card 40 is placed in the card cavity 110.

[0078] Step B, the light emitter 200 is powered to emit light, the light 210 emitted by the light emitter 200 enters the card cavity 110, and then the light 210 passes through the light-transmissive identifier 11 on the identification card 40 to irradiate on the sampler 300, and forms an identifier light spot 310 on the sampler 300.

[0079] Step C, the sampler 300 transmits the information of the identifier light spot 310 to the processor 400.

[0080] The processor 400 has an index table pre-recorded therein, and the processor 400 translates the information of the identifier light spot 310 to obtain the corresponding data information 10 through the index table.

[0081] Step D, the processor 400 transmits the data information 10 to the terminal device 500, and the terminal device 500 displays the data information 10 to the user.

[0082] In practice, the terminal device 500 can be a display screen of a PC or a handheld electronic device, etc.

[0083] The processor 400 transmits the data information 10 to the terminal device 500 in a wired or wireless manner, and the wireless manner can be WIFI, Bluetooth, etc.

[0084] In the implementation, various devices can realize the function of the data identification loading system 100, which are described as follows.

[0085] The light emitter 200 is a surface light emitter.

[0086] In the implementation, in order to improve the light emitting effect of the light emitter 200, the light emitter 200 can be a LED surface light emitter, the light emitter 200 comprises a light guide plate 221, a plurality of LED light sources 222 and a reflecting plate 223, wherein the light guide plate 221 has a front light emitting surface, a back surface and an outer surface, the reflecting plate 223 is connected to the back surface, the plurality of LED light sources 222 correspond to the outer surface and are arranged around the light guide plate 221, the plurality of LED light sources 222 are powered to emit light, and the emitted light enters the light guide plate 221 and is irradiated out through the front light emitting surface, that is, the plurality of LED light sources 222 are converted into surface light sources by the light guide plate 221 and irradiated outwards.

[0087] In the specific implementation, the light emitter 200 can be an X-ray film viewing lamp.

[0088] In a general hospital treatment room, an X-ray film viewing lamp is usually provided, and the function of the light emitter 200 can be realized by using the existing X-ray film viewing lamp, which can simplify the product structure and reduce the product cost.

[0089] The sampler 300 comprises a photosensor 320 arranged in the sampler 300, and the photosensor 320 captures the identifier light spot 310 in step B.

[0090] In practice, the photosensor 320 can be a simple lens that can sense light, a digital camera photosensitive lens or the like, and the photosensor 320 of the present application only needs to sense the light spot shape at a close distance, so the lens component can adopt a low-cost lens, thereby greatly reducing the product cost.

[0091] The sampler 300 comprises a fixing column 330 fixedly connected to one end of the sampler 300, and the fixing column 330 is provided with a limiting head 340 at the other end, the connector 42 of the identification card 40 is a through hole, and in use, the connector 42 of the identification card 40 is sleeved on the fixing column 330 to fix the relative position of the identification card 40 and the sampler 300, so that the light-transmitting identifier 11 on the identification card 40 corresponds to the photosensor 320.

[0092] In the specific implementation, the sampler 300 further comprises a sliding rail 341, and the light emitter 200 is arranged on the sliding rail 341, in use, the connector 42 of the identification card 40 is sleeved on the fixing column 330 first, and then the light emitter 200 is pushed along the direction of the sliding rail 340 to make the light emitter 200 emit light after being close to the sampler 300, so as to improve the light spot effect of the light passing through the light-transmitting identifier 11.

[0093] The light emitter 200 is an X-ray film viewer, the sampler 300 is a handheld sampler, the sampler 300 comprises a body 350, a fixing column 330 and a handle 360, wherein the photosensitive device 320 is arranged in the body 350, the fixing column 330 is connected to the body 350, and the handle 360 is connected below the body 350.

[0094] In specific implementation, the body 350 is provided with an information transmitting module 351, and the processor 400 is arranged in a medical computer, and the processor 400 can be connected to the medical computer in the form of a U disk; in use, first, the connector 42 of the identification card 40 is sleeved on the fixing column 330, then the sampler 300 is held and attached to the X-ray film viewer, after that, the X-ray film viewer emits light, the sampler 300 collects the information of the identifier light spot 310 and transmits the information to the information transmitting module 351, and the information transmitting module 351 transmits the information of the identifier light spot 310 to the processor 400 in a wireless transmission mode; the above product form can make full use of the existing medical computer, thereby reducing the product cost of the sampler 300.

[0095] In specific implementation, the light emitter 200 can also be an X-ray film viewer, the sampler 300 comprises a body 350, a fixing column 330 and a handle 360, the processor 400 is arranged in the body 350, and the terminal device 500 is a display screen and is arranged on the body 350; the above product form has high integration and is convenient for reading data, but has high manufacturing cost.

[0096] As shown in Figures 9 to 15 The system of the application can be applied in the field of processing medical data, especially medical address data, and the specific application and operation mode in the field of medical address data are as follows.

[0097] In practice, the data information 10 comprises country information, large regional information in a country, small regional information in a large region, road information, building information and doorplate information; in practice, the country information is nationality information of a patient, such as China, Russia, etc., the large regional information in a country is information of a province, city or state where the patient is located, the road information is specific road information where the patient is located, such as Peace Road, Chang'an Street, etc., the building information is specific building information where the patient is located, such as Times Mansion, Science and Technology Mansion, etc., and the doorplate information is floor information and doorplate information of a specific building where the patient is located, such as the third floor, No. 4, etc.

[0098] The country information, the large regional information in a country, the small regional information in a large region and the road information are the postal codes of the residence of the patient.

[0099] Postal Code is a code system that a country or region divides the whole country into several parts in order to realize the automatic sorting of mail and the digitization of the postal network, and to speed up the delivery of mail. The postal code is composed of Arabic numerals, such as: the postal code of Yuzhong District, Chongqing, China is 400010, the postal code of New York, USA is 10041, the postal code of Dezheng Road, Longcheng Street, Longgang District, Shenzhen City, Guangdong Province, China is 518170, and so on.

[0100] The data information 10 includes a postal code replaceable part 20 and a postal code non-replaceable part 30.

[0101] The index table includes a first index table 21 and a second index table 31. The postal code replaceable part 20 corresponds to the first index table 21, and the first index table 21 includes a plurality of first light-transmitting identification symbols 22. Each of the first light-transmitting identification symbols 22 corresponds to an Arabic numeral in the postal code.

[0102] In practice, a square hole corresponds to the number 0, one round hole corresponds to the number 1, two round holes correspond to the number 2, three round holes correspond to the number 3, four round holes correspond to the number 4, an I-shaped hole corresponds to the number 5, one I-shaped hole plus one round hole corresponds to the number 6, one I-shaped hole plus two round holes corresponds to the number 7, one I-shaped hole plus three round holes corresponds to the number 8, and one I-shaped hole plus four round holes corresponds to the number 9.

[0103] The postal code non-replaceable part 30 corresponds to the second index table 31, and the second index table 31 includes a plurality of second light-transmitting identification symbols 32.

[0104] In specific implementation, the second index table 31 includes a descriptive information part and a numerical information part. The plurality of second light-transmitting identification symbols 32 corresponding to the descriptive information part are twenty-four English letter-shaped light-transmitting holes, and the plurality of second light-transmitting identification symbols 32 corresponding to the numerical information part are consistent with the plurality of first light-transmitting identification symbols 22 of the first index table 21.

[0105] In specific implementation, the specific shapes of the first light-transmitting identification symbols 22 and the second light-transmitting identification symbols 32 can also be made into other forms of light-transmitting identification symbols as needed.

[0106] The postal code replaceable part 20 is converted into a first light-transmitting symbol 23 according to the first index table 21, and the postal code non-replaceable part 30 is converted into a second light-transmitting symbol 33 according to the second index table 31. The first light-transmitting symbol 23 and the second light-transmitting symbol 33 constitute the light-transmitting identifier 11, and the data information 10 is formed by the light-transmitting identifier 11.

[0107] The light-transmitting identifier 11 is arranged on the plate body 41 of the identification card 40.

[0108] By using the method of the present application, the information of the light-transmitting identifier 11 arranged on the identification card 40 can also be other identity information of a patient, such as medical process information, test information, etc., which can be realized only by reprogramming the index table content.

[0109] In addition, the identification card 40 of the present application has low batch production cost and can provide other physical storage methods in addition to electronic record data. Meanwhile, the identification card 40 of the present application is convenient to store, such as being threaded on a thin column for unified storage.

[0110] Finally, it is worth emphasizing that the identification card 40 of the present application can be bound at the upper right corner of the medical record A and can be arranged in a folding and unfolding manner. In the folded state, the identification card 40 is convenient to store together with the medical record. In the unfolded state, the user can directly read the data through the sampler 300. Since many domestic medical institutions have not been connected at present, especially for mountainous and remote areas, medical data cannot be exchanged. The application of the identification card 40 of the present application can facilitate the exchange of medical data, thereby facilitating the work of patients and medical workers.

[0111] An information identification card 40, the information identification card 40 is provided with a light-transmitting identifier 11, the light-transmitting identifier 11 corresponds to medical address information 10, in the specific implementation, the information identification card 40 includes a plate body 41 and a connector 42, the connector 42 is arranged on the plate body 41, the light-transmitting identifier 11 is arranged on the plate body 41.

[0112] The medical address information 10 contained in the information identification card 40 is obtained by identifying the information identification card 40 through the identification system 100.

[0113] The identification system 100 includes a light emitter 200, a sampler 300 and a processor 400, and a card cavity 110 is arranged between the light emitter 200 and the sampler 300.

[0114] The identification system 100 identifies the information identification card 40 according to the following steps: Step A, the information identification card 40 is placed in the card cavity 110. Step B, the light emitter 200 is powered to emit light, the light 210 emitted by the light emitter 200 enters the card cavity 110, and then the light 210 passes through the light-transmitting identifier 11 on the information identification card 40 to irradiate on the sampler 300 and form an identifier light spot 310 on the sampler 300. Step C, the sampler 300 transmits the information of the identifier light spot 310 to the processor 400. The processor 400 has an index table pre-recorded therein, and the processor 400 translates the information of the identifier light spot 310 through the index table to obtain the corresponding medical address information 10. Step D, the processor 400 transmits the medical address information 10 to the terminal device 500, and the terminal device 500 displays the medical address information 10 to the user.

[0115] The sampler 300 includes a photosensor 320 arranged in the sampler 300 to capture the identifier light spot 310 in step B. The sampler 300 includes a fixing column 330 fixedly connected to one end of the sampler 300, and the fixing column 330 is provided with a limiting head 340 at the other end. The connector 42 of the information identification card 40 is a through hole, and the connector 42 of the information identification card 40 is sleeved on the fixing column 330 to fix the relative position of the information identification card 40 and the sampler 300 when in use, so that the light-transmitting identifier 11 on the information identification card 40 corresponds to the photosensor 320.

[0116] The light emitter 200 is an X-ray film viewer, and the sampler 300 is a handheld sampler. The sampler 300 includes a body 350, a fixing column 330, and a handle 360. The photosensor 320 is arranged in the body 350, the fixing column 330 is connected to the body 350, and the handle 360 is connected below the body 350. The body 350 is provided with an information transmission module 351, and the processor 400 is arranged in a medical computer and connected to the medical computer in the form of a U disk. When in use, the connector 42 of the information identification card 40 is sleeved on the fixing column 330, the sampler 300 is held and attached to the X-ray film viewer, the X-ray film viewer emits light, the sampler 300 collects the information of the identifier light spot 310 and transmits the information to the information transmission module 351, and the information transmission module 351 transmits the information of the identifier light spot 310 to the processor 400 in a wireless manner. The above product form can fully utilize the existing medical computer, thereby reducing the product cost of the sampler 300.

[0117] In practice, the medical address information 10 includes country information, large area information within a country, small area information within a large area, road information, building information, and house number information. The country information, the large area information within a country, the small area information within a large area, and the road information are postal codes of a patient's residence.

[0118] The medical address information 10 includes a postal code replaceable portion 20 and a postal code non-replaceable portion 30. The index table includes information of a first index table 21 and a second index table 31. The postal code replaceable portion 20 corresponds to the first index table 21, and the first index table 21 includes a plurality of first light-transmissive identification symbols 22, each of which corresponds to an Arabic numeral in a postal code. The postal code non-replaceable portion 30 corresponds to the second index table 31, and the second index table 31 includes a plurality of second light-transmissive identification symbols 32. The postal code replaceable portion 20 is converted into a first light-transmissive symbol 23 according to the first index table 21, and the postal code non-replaceable portion 30 is converted into a second light-transmissive symbol 33 according to the second index table 31. The first light-transmissive symbol 23 and the second light-transmissive symbol 33 constitute a light-transmissive identifier 11, and the medical address information 10 is formed by the light-transmissive identifier 11. The light-transmissive identifier 11 is provided on an information identification card 40.

Claims

1. A medical address structuring processing method characterized by, It comprises the following steps: The first step is to collect the medical address information of the patient, which includes country information, large regional information within the country, small regional information within the large region, road information, building information, and doorplate information. The country information, the large regional information within the country, the small regional information within the large region, and the road information are the postcode of the patient's residence, The second step is to decompose the medical address information into a postcode replaceable part and a postcode non-replaceable part, The third step is to make a first index table for the postcode replaceable part, which includes a plurality of first light-transmitting identification symbols, each of which corresponds to an Arabic numeral in the postcode. A second index table is made for the postcode non-replaceable part, which includes a plurality of second light-transmitting identification symbols, The fourth step is to convert the postcode replaceable part into a first light-transmitting symbol according to the first index table, and to convert the postcode non-replaceable part into a second light-transmitting symbol according to the second index table. The first light-transmitting symbol and the second light-transmitting symbol form a light-transmitting identifier, and the medical address information is formed by the light-transmitting identifier, The fifth step is to set the light-transmitting identifier on an identification card, which includes a board body and a connector. The connector is set on the board body, and the light-transmitting identifier is set on the board body, The sixth step is to identify the identification card by an identification system to obtain the medical address information contained in the identification card.

2. The medical address structured processing method of claim 1, wherein: In the third step, a square hole corresponds to the number 0, one circular hole corresponds to the number 1, two circular holes correspond to the number 2, three circular holes correspond to the number 3, four circular holes correspond to the number 4, an I-shaped hole corresponds to the number 5, one I-shaped hole plus one circular hole corresponds to the number 6, one I-shaped hole plus two circular holes corresponds to the number 7, one I-shaped hole plus three circular holes corresponds to the number 8, and one I-shaped hole plus four circular holes corresponds to the number 9.

3. The medical address structured processing method of claim 2, wherein: In the third step, the second index table includes a descriptive information part and a numerical information part.

4. The medical address structured processing method of claim 3, wherein: The descriptive information part corresponds to twenty-six English letter-shaped light-transmitting holes, and the numerical information part corresponds to the same first light-transmitting identification symbols as the first index table. The light-transmitting identifier is set on the identification card by a puncher, and the identification card is made of non-light-transmitting paperboard, non-light-transmitting resin board, non-light-transmitting plastic board, aluminum foil, or metal sheet material.

5. The method of claim 1, wherein: The identification system includes a light emitter, a sampler, and a processor. A card cavity is arranged between the light emitter and the sampler, 6. The medical address structured processing method of claim 1, wherein: The identification system identifies the identification card according to the following steps: Step A: Place the identification card in the card cavity, Step B: The light emitter is powered on to emit light. The light emitted by the light emitter enters the card cavity, and then the light passes through the light-transmitting identifier on the identification card and shines on the sampler to form an identifier light spot on the sampler, ​ Step C, the sampler transmits the information of the identifier light spot to the processor, the processor pre-records the information of the first index table and the second index table, and translates the information of the identifier light spot through the first index table and the second index table to obtain the corresponding medical address information, Step D, the processor transmits the medical address information to the terminal device, and the terminal device displays the medical address information to the user.

7. A medical address structured processing method as claimed in claim 6, characterized in that: The light emitter is a surface light emitter, and the sampler includes a photosensor arranged in the sampler to capture the identifier light spot in step B.

8. The medical address structured processing method of claim 7, wherein: The light emitter is a LED surface light emitter, which includes a light guide plate, a plurality of LED light sources and a reflector plate, wherein the light guide plate has a front light emitting surface, a back surface and an outer surface, the reflector plate is connected to the back surface, and the plurality of LED light sources correspond to the outer surface and are arranged around the light guide plate.

9. The medical address structured processing method of claim 7, wherein: The sampler includes a fixing column fixedly connected to one end of the sampler, and a limiting head arranged at the other end of the fixing column, the connector of the identification card is a through hole, and in use, the connector of the identification card is sleeved on the fixing column to fix the relative position of the identification card and the sampler, so that the light-transmitting identifier on the identification card corresponds to the photosensor, The sampler further includes a sliding rail, and the light emitter is arranged on the sliding rail, and in use, the connector of the identification card is sleeved on the fixing column first, and then the light emitter is pushed along the direction of the sliding rail to make the light emitter emit light close to the sampler.

10. The method of claim 7, wherein: The light emitter is an X-ray film viewer, and the sampler is a handheld sampler, which includes a body, a fixing column and a handle, wherein the photosensor is arranged in the body, the fixing column is connected to the body, and the handle is connected below the body, and the body is provided with an information transmission module, and the processor is arranged in a medical computer and connected to the medical computer in the form of a U disk, in use, the connector of the identification card is sleeved on the fixing column first, then the sampler is held and attached to the X-ray film viewer, and then the X-ray film viewer emits light, the sampler collects the information of the identifier light spot and transmits it to the information transmission module, and the information transmission module transmits the information of the identifier light spot to the processor in a wireless manner.

Citation Information

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