Medical image automatic report generation equipment and generation method

By designing an automatic film delivery mechanism and a protective mechanism, the inconvenience and safety problems of patients being taken by deeper tablet outlets in the existing medical image automatic report generation equipment are solved, and the safety protection of the automatic film delivery and tablet outlets of the report form is realized.

CN120220294AInactive Publication Date: 2025-06-27CANCER HOSPITAL AFFILIATED TO GUANGXI MEDICAL UNIV
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Patent Information

Application Number
CN202510345366.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The outlet of the existing medical image automatic report generation device is set deeper. Patients need to bend over to check the report position and then reach out to pick it up, which can easily cause hand scratches and inconvenience, increasing the patient's irritability and anxiety.

Method used

An automatic report generation device for medical imaging is designed, including a report generator, an automatic film delivery mechanism and a protective mechanism. The automatic sheet feeding mechanism uses electric push rods and guide rollers to automatically send sheets to prevent patients from bending over. The protective mechanism ensures the safety of the feeding port through racks and winding ropes.

Benefits of technology

The automatic delivery of the report form is realized, and the patient can get the report form without bent down, avoiding hand scratches and inconvenience, reducing the patient's irritability, and improving the convenience and safety of the tablet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a medical image automatic report generation device and method, and relates to the technical field of medical instruments, the medical image automatic report generation device comprises a report generation mechanism, and the report generation mechanism is internally provided with an automatic film feeding mechanism and a protection mechanism. When the device is used, the guide motor is started, the rotating gear and the annular gear are driven to rotate, the five guide rollers are driven to rotate, reports are flatly laid on the bottom face of the sheet discharging plate, and the reports are prevented from being stacked and folded on the bottom face of the sheet discharging plate. An electric push rod is started to push a moving block to move, so that a film outlet plate moves towards a film outlet, a report is further pushed out of a film outlet groove, and a patient directly takes the report on the film plate, so that the effect of automatic film feeding is achieved, convenience and rapidness are achieved, the patient does not need to stoop to check and then stretch the hand into a deeper film outlet to take the report, and time and labor are saved. Discomfort caused by stooping and accidental hand rubbing are avoided, and the irritable mood of the patient is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical devices, and particularly to a medical image automatic report generation device and a generation method. Background Art

[0002] Medical devices refer to tools, equipment, materials or related software used for the prevention, diagnosis, monitoring, treatment or alleviation of diseases, as well as for improving or replacing physiological structures or functions. These devices can be simple hand tools or complex machines. A medical image automatic report generation device can quickly process a large amount of medical image data, generate a preliminary report within a short time, greatly shorten the waiting time for patients to obtain the report, improve the efficiency of medical services, provide standardized and structured report content and analysis results for doctors, help doctors more comprehensively and accurately evaluate the condition, and provide strong support for the formulation of diagnosis and treatment plans.

[0003] In the prior art, when a medical image automatic report generation device is in use, the printed report form comes out from the film outlet, and the patient can take the report form from the film outlet. However, the film outlet is generally set deeper, making it inconvenient to directly see the position of the report. Patients often need to bend down to check the position of the report at the outlet and then reach out to take it. Taking the film is very inconvenient. Especially for some elderly people, they are prone to falling when bending down to check. There is a certain risk. Moreover, when the patient reaches into the film outlet to take the report form, it is easy to cause abrasions to the hand accidentally. The inconvenience of taking the film will cause trouble and annoyance to the patient when obtaining the report. Especially in the case of urgently obtaining the report or being physically uncomfortable, it may increase the patient's irritability and anxiety, thus causing dissatisfaction with the medical environment and affecting the overall evaluation and trust in the hospital.

[0004] Therefore, we propose a medical image automatic report generation device and a generation method to solve the problems raised in the above background art. Summary of the Invention

[0005] The purpose of the present invention is to provide a medical image automatic report generation device and a generation method to solve the problems raised in the above background art, that is, the film outlet of the medical image automatic report generation device is generally set deeper, patients need to bend down to check the position of the report and then reach out to take it, and it is easy to cause abrasions to the hand accidentally. The inconvenience of taking the film will cause trouble and annoyance to the patient, increase the patient's irritability and anxiety, thus causing dissatisfaction with the medical environment and affecting the overall evaluation of the hospital.

[0006] To achieve the above purpose, the present invention provides the following technical solution: A medical image automatic report generation device includes a report generation mechanism, and an automatic film feeding mechanism and a protection mechanism are arranged inside the report generation mechanism;

[0007] The report generation mechanism includes a report generator. An output slot is provided inside the report generator, and two moving openings are provided on the front surface of the report generator. An output end is arranged inside the output slot;

[0008] The automatic sheet feeding mechanism includes an automatic sheet output component and a report guiding component. The automatic sheet output component includes an electric push rod. One end of the electric push rod is fixedly installed with a moving block, and an output plate is fixedly installed on the top of the moving block;

[0009] The report guiding component includes five guiding rollers. A plurality of rubber blocks are fixedly connected to the outer surfaces of the five guiding rollers. Annular gears are fixedly installed at the centers of the outer surfaces of the five guiding rollers. A guiding motor is fixedly installed at the rear surface of the bottom of the output plate, and a rotating gear is fixedly installed at the output end of the guiding motor.

[0010] Preferably, a code scanning area is arranged on one side of the front surface of the report generator, a card insertion end is arranged on the other side of the front surface of the report generator, a human-computer interaction module is arranged at the top of the front surface of the report generator, a controller is arranged on the inner wall of the report generator, a data acquisition module, an image processing and analysis module, a knowledge base module, a report generation module, and a data storage and management module are sequentially arranged on the inner wall of the report generator near the controller, and two sliding grooves are arranged on the bottom surface inside the output slot.

[0011] Preferably, sliding blocks are fixedly installed on both sides of the bottom of the output plate. Slide rails are movably sleeved on the outer surfaces of the two sliding blocks. Slide rods are fixedly installed on both sides of the bottom of the moving block. A rotating hole is arranged on the bottom surface inside the output plate. The other end of the electric push rod is fixedly installed on the rear wall inside the output slot. The bottoms of the two slide rails are fixedly installed on the bottom surface inside the output slot. The bottom ends of the two slide rods are respectively movably embedded in the two sliding grooves.

[0012] Preferably, rotating blocks are fixedly installed at both ends of the five guiding rollers. Rotating rods are fixedly installed on the outer surfaces of one sides of the two rotating blocks. Fixed blocks are fixedly installed at the rear surfaces of the outer surfaces of both sides of the output plate. The outer surface of the rotating gear meshes with the outer surface of the annular gear.

[0013] Preferably, one ends of the two rotating rods respectively pass through the outer surfaces of both sides of the output plate movably, and one ends of the two rotating rods are respectively movably embedded in the outer surfaces of one sides of the two fixed blocks. The outer surfaces of the five guiding rollers are movably embedded in the output plate. The bottom of the outer surface of the annular gear and the top of the outer surface of the rotating gear are respectively movably embedded in the rotating hole.

[0014] Preferably, the protection mechanism includes two racks. At the front surface of the bottom of each of the two racks, a winding gear is meshingly connected. Inside each of the two winding gears, a limiting rod is fixedly installed. On the outer surface of each of the two limiting rods, a winding rope is fixedly connected. One end of each of the two winding ropes is fixedly connected to a protection plate.

[0015] Preferably, connection blocks are arranged on the rear surfaces of the two racks. On the front surface of each of the two connection blocks, a limiting strip is fixedly installed. On the front surface of each of the two limiting strips, two reset springs are fixedly connected. At the bottom of each of the two connection blocks, a fixing plate is fixedly installed. On the front surface of each of the two fixing plates, a clamping block is fixedly installed.

[0016] Preferably, on the front surface of the inner wall of each of the two connection blocks, a magnet is fixedly connected. On the rear surface of each of the two racks, a metal sheet is fixedly installed. The rear surfaces of the two metal sheets are magnetically connected to the front surfaces of the two magnets respectively. Guide wheels are arranged on both sides of the inner part of the film outlet groove near the front surface. The outer surfaces of the two winding ropes are movably connected to the two guide wheels respectively. The tops of the two racks are fixedly installed on both sides of the bottom of the film outlet plate respectively.

[0017] A generation method for a medical image automatic report generation device includes the following steps:

[0018] S1. The data acquisition module obtains image data from various medical imaging devices, and performs preliminary format conversion and preprocessing. The image processing and analysis module processes and analyzes the images, extracts key features and information. The knowledge base module interprets and judges the analysis results. The report generation module automatically generates a report with text descriptions and analysis conclusions. The data storage and management module is used to store image data and related medical record information, etc.

[0019] S2. Start the guiding motor to drive the rotating gear and the annular gear to rotate, drive the five guiding rollers to rotate, so that the report form is flattened on the bottom surface of the film outlet plate. Start the electric push rod to push the moving block to move, so that the film outlet plate moves towards the film feeding port, and further push the report form out of the film outlet groove.

[0020] S3. When the film outlet plate moves, it will drive the rack to move, and drive the winding gear and the limiting rod to rotate, wind up the two winding ropes, and pull up the protection plate. When the rack is separated from the winding gear, the connection block pushes the clamping block to move, so that it is clamped on the outer surface of the winding gear, and then pull the metal sheet away from the magnet.

[0021] S4. When the film feeding is completed, the electric push rod pulls the film outlet plate to move back to the reset position, drives the rack to mesh with the winding gear again, the magnet and the metal sheet are magnetically attracted together again, and makes the clamping block separated from the winding gear. The rack drives the winding gear to rotate in the reverse direction, unwind the winding rope, and make the protection plate fall to the film feeding port again.

[0022] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0023] 1. When the present invention is in use, start the guiding motor to drive the rotating gear and the annular gear to rotate, drive the five guiding rollers to rotate, so that the report form is flattened on the bottom surface of the sheet outlet plate, avoiding the accumulation and folding of the report form on the bottom surface of the sheet outlet plate. Start the electric push rod to push the moving block to move, so that the sheet outlet plate moves towards the sheet feeding port, further pushing the report form out of the sheet outlet slot. The patient can directly take the report form on the sheet outlet plate, thus achieving the effect of automatic sheet feeding, which is convenient and fast. There is no need for the patient to bend down to check and then reach deep into the sheet outlet to take it, avoiding the discomfort caused by bending down and accidental hand abrasion, and reducing the patient's irritability.

[0024] 2. When the present invention is in use, the movement of the sheet outlet plate will drive the rack to move, and drive the winding gear and the limiting rod to rotate, wind the two winding ropes, and pull up the protective plate. When the rack is separated from the winding gear, the connecting block pushes the block to move, so that it is stuck on the outer surface of the winding gear to limit the winding gear. As the rack continues to move, the metal sheet is pulled away from the magnet, and the return spring unfolds under the pulling force. When the sheet feeding is completed, the electric push rod pulls the sheet outlet plate to move back to its original position, driving the rack to mesh with the winding gear again. The limiting strip enters the rack again, the magnet and the metal sheet are magnetically attracted together again, and the block is separated from the winding gear. The rack drives the winding gear to rotate in the reverse direction, unwind the winding rope, so that the protective plate falls to the sheet feeding port again to protect the sheet feeding port, preventing children from stuffing their hands or other items into the sheet outlet slot out of curiosity, affecting the normal sheet feeding of the subsequent report form.

[0025] 3. When the present invention is in use, the data acquisition module obtains image data from various medical imaging devices, and performs preliminary format conversion and preprocessing. The image processing and analysis module processes and analyzes the images, extracts key features and information. The knowledge base module interprets and judges the analysis results. The report generation module automatically generates a report with text descriptions and analysis conclusions. The data storage and management module is used to store image data and related medical records and other information. The patient's identity is recognized by scanning the barcode through the scanning area or inserting the medical card into the card insertion end. The required report form is selected through the human-computer interaction module and the report form is printed. The report generation module prints the report form and discharges it from the sheet outlet end. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is a front perspective view of a medical image automatic report generation device of the present invention;

[0027] Figure 2 is an unfolded perspective view of the structure of a medical image automatic report generation device of the present invention;

[0028] Figure 3 This is a partial structural cross-sectional schematic diagram of the report generator in a medical image automatic report generation device of the present invention;

[0029] Figure 4 This is a structural cross-sectional schematic diagram of the automatic film feeding mechanism in a medical image automatic report generation device of the present invention;

[0030] Figure 5 This is a structural schematic diagram of the protection mechanism in a medical image automatic report generation device of the present invention;

[0031] Figure 6 This is an unfolded structural schematic diagram of the automatic film output component in a medical image automatic report generation device of the present invention;

[0032] Figure 7 This is an unfolded structural schematic diagram of the film output board in a medical image automatic report generation device of the present invention;

[0033] Figure 8 This is an unfolded structural schematic diagram of the report guiding component in a medical image automatic report generation device of the present invention;

[0034] Figure 9 This is an unfolded structural schematic diagram of the winding rope in a medical image automatic report generation device of the present invention;

[0035] Figure 10 This is a partial structural cross-sectional schematic diagram of the rack in a medical image automatic report generation device of the present invention.

[0036] In the figure:

[0037] 1. Report generation institution; 101. Report generator; 102. Scanning area; 103. Card insertion end; 104. Human-computer interaction module; 105. Controller; 106. Data acquisition module; 107. Image processing and analysis module; 108. Knowledge base module; 109. Report generation module; 110. Data storage and management module; 111. Film outlet slot; 112. Moving port; 113. Film outlet end; 114. Slide groove; 2. Automatic film feeding mechanism; 21. Automatic film outlet assembly; 2101. Electric push rod; 2102. Moving block; 2103. Film outlet plate; 2104. Slide block; 2105. Slide rail; 2106. Slide rod; 2107. Rotating hole; 22. Report guiding assembly; 2201. Guiding roller; 2202. Rubber block; 2203. Ring gear; 2204. Guiding motor; 2205. Rotating gear; 2206. Rotating block; 2207. Rotating rod; 2208. Fixed block; 3. Protection mechanism; 301. Rack; 302. Winding gear; 303. Limiting rod; 304. Winding rope; 305. Protection plate; 306. Connecting block; 307. Limiting strip; 308. Return spring; 309. Fixed plate; 310. Clamping block; 311. Magnet; 312. Metal sheet; 313. Guide wheel. Detailed implementation mode

[0038] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0039] Embodiment 1: Please refer to Figures 1 - 10As shown in the figure, the present invention provides a technical solution: a medical image automatic report generation device, including a report generation mechanism 1, an automatic film feeding mechanism 2 and a protection mechanism 3 are arranged inside the report generation mechanism 1; the report generation mechanism 1 includes a report generator 101, a film outlet slot 111 is opened inside the report generator 101, two moving openings 112 are opened on the front surface of the report generator 101, and a film outlet end 113 is arranged inside the film outlet slot 111; the automatic film feeding mechanism 2 includes an automatic film outlet component 21 and a report guiding component 22, the automatic film outlet component 21 includes an electric push rod 2101, one end of the electric push rod 2101 is fixedly installed with a moving block 2102, and a film outlet plate 2103 is fixedly installed on the top of the moving block 2102; the report guiding component 22 includes five guiding rollers 2201, a plurality of rubber blocks 2202 are fixedly connected to the outer surfaces of the five guiding rollers 2201, an annular gear 2203 is fixedly installed at the center of the outer surfaces of the five guiding rollers 2201, a guiding motor 2204 is fixedly installed at the rear surface of the bottom of the film outlet plate 2103, a rotating gear 2205 is fixedly installed at the output end of the guiding motor 2204, sliding blocks 2104 are fixedly installed on both sides of the bottom of the film outlet plate 2103, slide rails 2105 are movably sleeved on the outer surfaces of the two sliding blocks 2104, sliding rods 2106 are fixedly installed on both sides of the bottom of the moving block 2102, a rotating hole 2107 is opened on the bottom surface inside the film outlet plate 2103, the other end of the electric push rod 2101 is fixedly installed on the rear wall inside the film outlet slot 111, the bottoms of the two slide rails 2105 are fixedly installed on the bottom surface inside the film outlet slot 111, the bottom ends of the two sliding rods 2106 are respectively movably embedded in the two sliding grooves 114, rotating blocks 2206 are fixedly installed at both ends of the five guiding rollers 2201, rotating rods 2207 are fixedly installed on the outer surfaces of one sides of the two rotating blocks 2206, fixing blocks 2208 are fixedly installed at the rear surfaces of the outer surfaces of both sides of the film outlet plate 2103, the outer surface of the rotating gear 2205 is meshed with the outer surface of the annular gear 2203, one ends of the two rotating rods 2207 respectively pass through the outer surfaces of both sides of the film outlet plate 2103 movably, and one ends of the two rotating rods 2207 are respectively movably embedded in the outer surfaces of one sides of the two fixing blocks 2208, the outer surfaces of the five guiding rollers 2201 are movably embedded in the film outlet plate 2103, and the bottom of the outer surface of the annular gear 2203 and the top of the outer surface of the rotating gear 2205 are respectively movably embedded in the rotating hole 2107.

[0040] In this embodiment, when in use, a film feeding port is opened at the top of the moving opening 112, and the film feeding port is communicated with the film outlet slot 111. As Figure 6 and Figure 7 shown, the bottom of the film outlet plate 2103 near the front surface and the bottom of the protection plate 305 both fall on the bottom surface inside the film feeding port. As Figure 6As shown, the protection plate 305 is located in front of the sheet output plate 2103. After the report generating mechanism 1 generates the report, the report is automatically discharged through the sheet output end 113 and falls onto the outer surface of the guide roller 2201. At the same time, the controller 105 controls the guide motor 2204 to start, and the guide motor 2204 drives the rotating gear 2205 and the ring gear 2203 to rotate, driving the five guide rollers 2201 to rotate. When the report form is discharged from the sheet outlet end 113, it falls onto the outer surface of the guide roller 2201. When the guide roller 2201 rotates, it generates a forward pushing force on the report form. Under the action of the rubber block 2202, it provides friction, which facilitates to better push the report form forward, so that the report form moves forward on the bottom surface inside the sheet outlet plate 2103. At this time, the report form will be discharged from the sheet outlet end 113 and will move forward on the bottom surface of the sheet outlet plate 2103, so that the report form is flatly laid on the bottom surface of the sheet outlet plate 2103, avoiding the report form from piling up and folding on the bottom surface of the sheet outlet plate 2103, affecting the smoothness of subsequent sheet output, and also avoiding the folding of the report form affecting the subsequent medical staff's viewing of information. After the report sheet is completely laid flat on the film output plate 2103, the electric push rod 2101 is started, pushing the moving block 2102 to move forward inside the film output slot 111, so that the film output plate 2103 moves toward the film delivery port. While the film output plate 2103 moves forward, it drives the two racks 301 to rotate together, so that the winding gear 302 rotates, and the winding rope 304 is wound up, thereby pulling the protective plate 305 upward to make it leave the film delivery port. Then the film output plate 2103 is moved out of the film delivery port, and the report sheet is further pushed out from the film output slot 111, and the patient directly takes it out of the film plate 2103. The film outlet of the automatic report generation equipment is generally set deep, and the patient needs to bend over to see the position of the report form, and then reach out to take it, which may cause hand scratches if not careful. The inconvenience of taking films will make patients feel troublesome and distressed, increase patients' irritability and anxiety, and thus cause dissatisfaction with the medical environment, affecting the overall evaluation of the hospital.

[0041] Embodiment 2: Figures 4 - 6 and Figures 8 - 10As shown in the figure, the protection mechanism 3 includes two racks 301. At the front surface of the bottom of the two racks 301, there are winding gears 302 engaged respectively. Inside the two winding gears 302, there are limiting rods 303 fixedly installed. On the outer surfaces of the two limiting rods 303, there are winding ropes 304 fixedly connected. One end of the two winding ropes 304 is fixedly connected with a protection plate 305. On the rear surfaces of the two racks 301, there are connecting blocks 306. On the front surfaces of the two connecting blocks 306, there are limiting strips 307 fixedly installed. On the front surfaces of the two limiting strips 307, there are two reset springs 308 fixedly connected. At the bottom of the two connecting blocks 306, there are fixing plates 309 fixedly installed. On the front surfaces of the two fixing plates 309, there are clamping blocks 310 fixedly installed. On the front inner walls of the two connecting blocks 306, there are magnets 311 fixedly connected. On the rear surfaces of the two racks 301, there are metal sheets 312 fixedly installed. The rear surfaces of the two metal sheets 312 are magnetically connected to the front surfaces of the two magnets 311 respectively. At both sides near the front inner wall of the film outlet slot 111, there are guide wheels 313 arranged. The outer surfaces of the two winding ropes 304 are movably connected with the two guide wheels 313 respectively. The tops of the two racks 301 are fixedly installed at both sides of the bottom of the film outlet plate 2103 respectively.

[0042] In this embodiment, during use, the movement of the film output plate 2103 drives the two racks 301 and the two connecting blocks 306 to move forward together, and drives the two winding gears 302 and the two limiting rods 303 to rotate, winding the two winding ropes 304. Under the guidance of the guiding wheel 313, the protective plate 305 is pulled up, facilitating the outward movement of the film output plate 2103 for film feeding. As the rack 301 moves, it drives the connecting block 306 to move forward. When the rack 301 completely leaves above the winding gear 302 and passes through the moving port 112, the connecting block 306 moves above the winding gear 302, and the clamping block 310 is clamped on the outer surface of the winding gear 302 to limit the winding gear 302, preventing the winding gear 302 from automatically rotating after separating from the rack 301 and affecting the winding of the winding rope 304. As the rack 301 continues to move, it pulls the metal sheet 312 to continue moving, separating from the magnet 311, and the rack 301 moves on the outer surface of the limiting strip 307, causing the return spring 308 to be pulled and expanded. When the film feeding ends, the electric push rod 2101 pulls the moving block 2102 and the film output plate 2103 to move backward and reset, driving the rack 301 to move backward from the moving port 112 into the film output slot 111. When the rack 301 moves above the winding gear 302 again and meshes with the winding gear 302 again, the limiting strip 307 enters the rack 301 again, and the magnet 311 and the metal sheet 312 are magnetically attracted together again. As the rack 301 continues to move backward, it pushes the connecting block 306 to move backward, and pushes the fixing plate 309 and the clamping block 310 to move backward, causing the clamping block 310 to separate from the winding gear 302. Under the continuous movement of the rack 301, it drives the winding gear 302 to rotate reversely, releasing the winding rope 304, so that the protective plate 305 falls to the film feeding port again to protect the film feeding port, preventing children from stuffing their hands or other items into the film output slot 111 out of curiosity and affecting the normal film feeding of subsequent reports.

[0043] Embodiment 3: As Figures 1 - 7 and Figure 9 shown, the report generation mechanism 1 includes a report generator 101. An output slot 111 is provided inside the report generator 101. Two moving ports 112 are provided on the front surface of the report generator 101. An output end 113 is arranged inside the output slot 111. A code scanning area 102 is arranged on one side of the front surface of the report generator 101, and a card insertion end 103 is arranged on the other side of the front surface of the report generator 101. A human-computer interaction module 104 is arranged at the top of the front surface of the report generator 101. A controller 105 is arranged on the inner wall of the report generator 101. A data acquisition module 106, an image processing and analysis module 107, a knowledge base module 108, a report generation module 109, and a data storage and management module 110 are successively arranged on the inner wall of the report generator 101 near the controller 105. Two sliding grooves 114 are provided on the bottom surface inside the output slot 111.

[0044] In this embodiment, during use, the barcode scanning area 102 is used to scan barcodes, and the card insertion end 103 is used to insert the medical record card to quickly and accurately identify the patient's identity and obtain relevant medical treatment information, examination items and other data of the patient in the hospital system, so as to match and print the corresponding medical imaging reports and films subsequently. The human-computer interaction module 104 provides a user interface to facilitate doctors or operators to input instructions, view image and report content, print reports, etc., realizing the interaction between people and the device. The data acquisition module 106 is responsible for obtaining image data from various medical imaging devices and performing preliminary format conversion and preprocessing for subsequent analysis. The image processing and analysis module 107 uses technologies such as image recognition, computer vision, and deep learning to process and analyze images, extract key features and information, such as identifying lesion areas and measuring organ sizes. The knowledge base module 108 contains a large amount of medical knowledge, imaging diagnosis criteria, disease characteristics and other data, which are used as the basis and reference for generating reports and are used to interpret and judge the analysis results. The report generation module 109 automatically generates a report with text descriptions and analysis conclusions according to the results of image processing and analysis and the information in the knowledge base, in accordance with the standard report template and format, and prints it out. The printed report is discharged from the film output end 113. The data storage and management module 110 is used to store image data, analysis results, generated reports, and relevant medical records and other information, supporting data retrieval, backup and security management.

[0045] The generation method and working principle of the present invention are as follows. The barcode scanning area 102 is used to scan barcodes, and the card insertion end 103 is used to insert the medical treatment card to quickly and accurately identify the patient's identity. The human-computer interaction module 104 provides a user interface to facilitate doctors or operators to input instructions, view images and report content, print reports, etc. The data acquisition module 106 is responsible for obtaining image data from various medical imaging devices. The image processing and analysis module 107 processes and analyzes the images to extract key features and information. The knowledge base module 108 is used to interpret and judge the analysis results. The report generation module 109 automatically generates a report with text descriptions and analysis conclusions and prints it out, and the printed report is discharged from the film output end 113. The data storage and management module 110 is used to store information such as image data, analysis results, generated reports, and relevant medical records. The report falls onto the outer surface of the guiding roller 2201 through the film output end 113. The controller 105 controls the guiding motor 2204 to start. The guiding motor 2204 drives the rotating gear 2205 and the annular gear 2203 to rotate, driving the five guiding rollers 2201 to rotate. When the report is discharged from the film output end 113 and falls onto the outer surface of the guiding roller 2201, when the guiding roller 2201 rotates, it simultaneously generates a forward driving force on the report, causing the report to move forward and flatten on the bottom surface of the film output plate 2103. The electric push rod 2101 starts to push the moving block 2102 forward, causing the film output plate 2103 to move towards the film feeding port. While the film output plate 2103 moves forward, it drives the two racks 301 to rotate together, causing the winding gear 302 to rotate and wind the winding rope 304, thereby pulling up the protection plate 305 upwards so that it leaves from the film feeding port. At the same time, it drives the connecting block 306 to move forward. When the rack 301 completely leaves above the winding gear 302, the connecting block 306 moves above the winding gear 302 and engages the clamping block 310 on the outer surface of the winding gear 302 to limit the winding gear 302. As the rack 301 continues to move, it pulls the metal sheet 312 to continue moving and separates from the magnet 311. Then the film output plate 2103 moves out of the film feeding port, further pushing the report out of the film output slot 111. The patient can directly take the report on the film output plate 2103. When the film feeding is over, the electric push rod 2101 pulls the moving block 2102 and the film output plate 2103 to move backward and reset, driving the rack 301 to move backward. When it moves and meshes with the winding gear 302 again, the limiting bar 307 enters the rack 301 again, and the magnet 311 and the metal sheet 312 are magnetically attracted together again. As the rack 301 continues to move backward, it pushes the connecting block 306 to move backward, and also pushes the fixing plate 309 and the clamping block 310 to move backward, causing the clamping block 310 to separate from the winding gear 302. Under the continuous movement of the rack 301, it drives the winding gear 302 to rotate backward and unwind the winding rope 304, so that the protection plate 305 falls onto the film feeding port again to protect the film feeding port.

[0046] Among them, the human-computer interaction module 104, the controller 105, the data acquisition module 106, the image processing and analysis module 107, the knowledge base module 108, the report generation module 109, the data storage and management module 110, the electric push rod 2101, and the guiding motor 2204 are all prior arts, and their components and principles of use are all public technologies, and no further explanations will be given here.

[0047] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A medical image automatic report generating device, comprising a report generating mechanism (1), characterized in that: The report generating mechanism (1) is internally provided with an automatic film feeding mechanism (2) and a protection mechanism (3); The report generating mechanism (1) comprises a report generator (101), a sheet outlet slot (111) is provided inside the report generator (101), two moving openings (112) are provided on the front surface of the report generator (101), and a sheet outlet end (113) is provided inside the sheet outlet slot (111); The automatic film feeding mechanism (2) comprises an automatic film discharging component (21) and a report guide component (22), wherein the automatic film discharging component (21) comprises an electric push rod (2101), a moving block (2102) is fixedly mounted on one end of the electric push rod (2101), and a film discharging plate (2103) is fixedly mounted on the top of the moving block (2102); The report guide assembly (22) includes five guide rollers (2201), the outer surfaces of the five guide rollers (2201) are fixedly connected with a plurality of rubber blocks (2202), a ring gear (2203) is fixedly installed at the center of the outer surfaces of the five guide rollers (2201), a guide motor (2204) is fixedly installed at the rear surface of the bottom of the sheet output plate (2103), and a rotating gear (2205) is fixedly installed at the output end of the guide motor (2204).

2. The medical imaging automatic report generating device according to claim 1, characterized in that: A code scanning area (102) is arranged on one side of the front surface of the report generator (101), a card insertion end (103) is arranged on the other side of the front surface of the report generator (101), a human-computer interaction module (104) is arranged at the top of the front surface of the report generator (101), a controller (105) is arranged on the inner wall of the report generator (101), a data acquisition module (106), an image processing and analysis module (107), a knowledge base module (108), a report generation module (109) and a data storage and management module (110) are arranged in sequence on the inner wall of the report generator (101) near the controller (105), and two slide grooves (114) are arranged on the bottom surface of the inner part of the film output slot (111).

3. The medical imaging automatic report generating device according to claim 2, characterized in that: Slide blocks (2104) are fixedly installed on both sides of the bottom of the film output plate (2103), and the outer surfaces of the two slide blocks (2104) are movably sleeved with slide rails (2105). Slide rods (2106) are fixedly installed on both sides of the bottom of the moving block (2102). A rotating hole (2107) is opened on the bottom surface of the film output plate (2103). The other end of the electric push rod (2101) is fixedly installed on the rear surface wall inside the film output groove (111). The bottoms of the two slide rails (2105) are fixedly installed on the bottom surface inside the film output groove (111), and the bottom ends of the two slide rods (2106) are movably embedded in the inside of the two slide grooves (114).

4. The medical imaging automatic report generating device according to claim 3, characterized in that: Rotating blocks (2206) are fixedly installed at both ends of the five guide rollers (2201), rotating rods (2207) are fixedly installed on the outer surfaces of one side of two rotating blocks (2206), and fixed blocks (2208) are fixedly installed on the rear surfaces of the outer surfaces of both sides of the sheet discharge plate (2103), and the outer surface of the rotating gear (2205) is meshed with the outer surface of the ring gear (2203).

5. The medical imaging automatic report generating device according to claim 4, characterized in that: One end of the two rotating rods (2207) are movably inserted into the outer surfaces of both sides of the film discharge plate (2103), and one end of the two rotating rods (2207) are movably embedded in the outer surface of one side of the two fixed blocks (2208). The outer surfaces of the five guide rollers (2201) are movably embedded in the interior of the film discharge plate (2103), and the bottom of the outer surface of the ring gear (2203) and the top of the outer surface of the rotating gear (2205) are movably embedded in the interior of the rotating hole (2107).

6. The medical imaging automatic report generating device according to claim 5, characterized in that: The protective mechanism (3) comprises two racks (301), the front surfaces of the bottoms of the two racks (301) are meshedly connected with winding gears (302), the interiors of the two winding gears (302) are fixedly installed with limit rods (303), the outer surfaces of the two limit rods (303) are fixedly connected with winding ropes (304), and one end of the two winding ropes (304) is fixedly connected with a protective plate (305).

7. The medical imaging automatic report generating device according to claim 6, characterized in that: A connecting block (306) is provided on the rear surfaces of the two racks (301), a limiting strip (307) is fixedly installed on the front surfaces of the two connecting blocks (306), two return springs (308) are fixedly connected to the front surfaces of the two limiting strips (307), a fixing plate (309) is fixedly installed on the bottoms of the two connecting blocks (306), and a clamping block (310) is fixedly installed on the front surfaces of the two fixing plates (309).

8. The medical imaging automatic report generating device according to claim 7, characterized in that: The front walls inside the two connecting blocks (306) are fixedly connected with magnets (311), the rear surfaces of the two racks (301) are fixedly installed with metal sheets (312), the rear surfaces of the two metal sheets (312) are magnetically connected to the front surfaces of the two magnets (311) respectively, guide wheels (313) are arranged on both sides of the inside of the film outlet groove (111) near the front wall, the outer surfaces of the two winding ropes (304) are movably connected to the two guide wheels (313), and the tops of the two racks (301) are fixedly installed on both sides of the bottom of the film outlet plate (2103).

9. The medical imaging automatic report generating device according to claim 8, characterized in that: One end of the two limit rods (303) is movably embedded in the outer surface of one side of the two slide rails (2105), and the other ends of the two limit rods (303) are movably embedded in the two sides of the film outlet groove (111). The outer surface of the protective plate (305) is movably embedded in the film outlet groove (111). The outer surfaces of the two limit bars (307) are movably embedded in the two racks (301). The four reset springs (308) form a group of two adjacent reset springs (308). One end of the two groups of reset springs (308) is fixedly connected to the front surface wall inside the two racks (301), and the outer surfaces of the two limit bars (307) are respectively installed inside the two magnets (311).

10. A method for generating a medical image automatic report generating device, characterized in that: The medical imaging automatic report generation device according to claim 9 is used, comprising the following steps: S1, the data acquisition module (106) acquires image data from various medical imaging devices and performs preliminary format conversion and preprocessing, the image processing and analysis module (107) processes and analyzes the image and extracts key features and information, the knowledge base module (108) interprets and judges the analysis results, the report generation module (109) automatically generates a report with text description and analysis conclusions, and the data storage and management module (110) is used to store image data and related medical records and other information; S2, start the guide motor (2204), drive the rotating gear (2205) and the ring gear (2203) to rotate, drive the five guide rollers (2201) to rotate, so that the report sheet is flatly laid on the bottom surface of the film output plate (2103), start the electric push rod (2101), push the moving block (2102) to move, so that the film output plate (2103) moves toward the film delivery port, and further push the report sheet out from the inside of the film output slot (111); S3, when the sheet discharging plate (2103) moves, the rack (301) is driven to move, and the winding gear (302) and the limit rod (303) are driven to rotate, so that the two winding ropes (304) are wound up, and the protection plate (305) is pulled upwards. When the rack (301) is separated from the winding gear (302), the connecting block (306) pushes the clamping block (310) to move, so that it is clamped on the outer surface of the winding gear (302), and then the metal sheet (312) is pulled apart from the magnet (311); S4. When the film delivery is completed, the electric push rod (2101) pulls the film delivery plate (2103) to move in the reverse direction and reset, driving the rack (301) and the winding gear (302) to mesh again, the magnet (311) and the metal sheet (312) are magnetically attracted together again, and the clamping block (310) and the winding gear (302) are separated, and the rack (301) drives the winding gear (302) to rotate in the reverse direction, and the winding rope (304) is released, so that the protective plate (305) falls to the film delivery port again.