A color design method and system for medical clip appliers
By generating gradient color levels that adapt to the surgical environment and instrument functions, combined with visual testing and analysis, selecting suitable color design solutions, the visual recognition problem of medical clamp applicators in the operating room is solved, and surgical efficiency and safety are improved.
Patent Information
- Application Number
- CN202411752134.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2044-12-02
AI Technical Summary
The existing medical clamp applicator design methods have failed to effectively adapt to the lighting conditions, color environment and visual needs of the surgical team in the operating room, resulting in difficulty in visual recognition and increasing surgical risks and time delays.
By collecting application scenario information, generate application environment gradient color ratings and instrument design gradient color ratings, combined with visual testing analysis, select suitable color design solutions for surgical environment and instrument functions, including tone variations and weight optimization, and construct color wheel templates and databases for color screening.
It effectively improves surgical efficiency, reduces surgical risks, and ensures the visibility and recognition of the instrument in the surgical environment.
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Figure CN119670294B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical device design, and in particular to a color design method and system for a medical clip applier. Background Art
[0002] In the modern operating room environment, the color design of medical clip appliers is particularly important because this device plays a vital role in many types of surgeries. Traditionally, medical clip appliers are usually made of standard metallic colors or single colors, which may lead to visual identification difficulties in complex surgical environments, increasing operational risks and time delays during surgery.
[0003] Existing medical clip applier design methods fail to effectively adapt to the lighting conditions, color environment and visual needs of the surgical team in the operating room. Traditional methods usually provide basic color choices, lack detailed adaptation to the surgical environment and instrument functions, and also lack differentiation in the visual responses of individual doctors and nurses. This one-size-fits-all color design approach fails to provide sufficient visual support, which may increase surgical risks in emergency situations and affect medical effects and patient safety.
[0004] The information disclosed in this background technology section is only intended to deepen the understanding of the overall background technology of the present disclosure and should not be regarded as an admission or any form of suggestion that the information constitutes the prior art known to those skilled in the art. Summary of the Invention
[0005] The present invention provides a color design method and system for a medical clip applier, which can effectively solve the problems in the background technology.
[0006] In order to achieve the above object, the technical solution adopted by the present invention is:
[0007] A method and system for color design of a medical clip applier, the method comprising:
[0008] Collect application scenario information, and determine surgical environment information and instrument application functions based on the application scenario information;
[0009] Constructing a color wheel template, determining a selection range of the color wheel template according to the surgical environment information, and sorting the selection range according to hue to generate a gradient color scale for the application environment;
[0010] Determine the selection range of the color wheel template according to the application function of the instrument, and sort the selection range according to the hue to generate the instrument design gradient color scale;
[0011] A plurality of alternative color groups are generated according to the application environment gradient color scale and the instrument design gradient color scale, and a visual test analysis is performed on the alternative color groups to select the alternative color groups as the clip applier color design scheme.
[0012] Furthermore, a plurality of standby color groups are generated according to the application gradient color scale and the instrument design color scale, including:
[0013] Taking each color level of the application environment gradient color level as a base color, and generating a plurality of first color tone variants for each corresponding base color;
[0014] Taking each color level of the instrument-designed gradient color scale as a base color, and generating a plurality of second hue variants for each corresponding base color;
[0015] The first color tone variant and the second color tone variant are respectively used as the color tone scale of the application environment gradient color tone scale and the color tone scale of the instrument design gradient color tone scale;
[0016] The application environment gradient color scale and the instrument design gradient color scale are respectively used as single-cycle color selections, and a plurality of standby execution color groups are generated by combining the two single-cycle color selections.
[0017] Furthermore, each color level of the instrument-designed gradient color level is used as a base color, and a plurality of second color tone variants are generated for each corresponding base color, including:
[0018] Determine the main color of the clip applier based on the surgical environment information and the instrument application function;
[0019] Comparing the color difference of each color level of the instrument design gradient color level with the main color of the clip applier color design, and quantifying the color difference comparison to obtain a quantified contrast color difference;
[0020] Adding a design weight to each of the instrument design gradient color levels according to the corresponding quantized contrast color difference, and generating a plurality of second color tone variants based on the base color of each color level according to the added design weight;
[0021] The number of the second hue variants generated by the basic color of the color scale with the lowest design weight is 0, and the difference in the number of the second hue variants generated corresponding to the basic colors of the color scale is at least 1.
[0022] Furthermore, the instrument design gradient color scale is optimized, including:
[0023] Selecting a twin clip applier based on the similarity of the instrument application functions in the same surgical environment information, and obtaining the instrument design gradient color scale corresponding to the twin clip applier as a twin gradient color scale, wherein the twin gradient color scale corresponds to a twin design weight;
[0024] Setting a color scale optimization range for the instrument design gradient color scale according to the attached design weight;
[0025] Setting a color scale preferred range for the twin gradient color scale according to the twin design weight, wherein the color scale preferred range is consistent with the number of color scales in the color scale optimization range;
[0026] The color scales within the color scale preferred range are replaced with the color scales within the color scale optimization range, and the instrument design gradient color scales are optimized and updated.
[0027] Further, performing visual testing and analysis on the prepared color set and selecting the prepared color set as the color design scheme for the clip applier includes:
[0028] Establishing visual requirement standards based on the surgical environment information, and performing color visibility evaluation on the standby color set, testing the reflectivity and brightness index of the standby color set under the application scenario information conditions;
[0029] Performing a color contrast effect test on the prepared color set using a high-precision color analyzer to evaluate the contrast on a predetermined background color and measure the color difference;
[0030] Conducting color resolution testing to quantify the effectiveness of the prepared color set in identifying parts of surgical instruments and to evaluate color recognition thresholds;
[0031] The prepared color set is selected as the clip applier color design scheme based on the color visibility evaluation, color difference and color resolution.
[0032] Furthermore, visual testing and analysis are performed on the prepared color set from multiple visual angles, including the color visibility evaluation, color difference and color resolution.
[0033] Furthermore, a color wheel template is constructed, and a selection range of the color wheel template is determined according to the surgical environment information, including:
[0034] Determine the current surgical environment and surgical site according to the surgical environment information and the instrument application function, and obtain the surgical environment color tone and the surgical site color tone respectively;
[0035] A color wheel template is constructed based on a standard color wheel, wherein the color wheel template includes a full range of hues;
[0036] Constructing a color tone screening database, and obtaining standard color tones according to the color tone screening database and the relationship between the color tones of the surgical environment and the color tones of the surgical site;
[0037] Based on the color wheel template, the standard hues are selected as base points, extended to adjacent hue areas, and the color wheel template selection range is determined. The hues are sorted based on the corresponding color wheel template selection range to generate application environment gradient color levels and instrument design gradient color levels.
[0038] Furthermore, a color tone screening database is constructed, and standard color tones are obtained according to the color tone screening database and the relationship between the color tones of the surgical environment and the color tones of the surgical site, including:
[0039] Collecting the historical surgical environment information and the historical surgical site information, and determining a plurality of historical surgical environment tones and a plurality of historical surgical site tones according to the historical surgical environment information and the historical surgical site information, wherein the historical surgical environment information and the historical surgical site information include a plurality of different surgical environments and surgical sites;
[0040] Selecting high-contrast tones that complement the historical surgical environment tones and the historical surgical site tones as standard tones based on the color wheel template;
[0041] Matching the standard tones of the plurality of surgical environments and the plurality of surgical sites one by one, obtaining tone mapping information of the surgical environments and tone mapping information of the surgical sites, and creating an index relationship;
[0042] The surgical environment tone mapping information, the surgical site tone mapping information, and the index relationship are integrated to create a tone screening database.
[0043] A color design system for a medical clip applier, the system comprising:
[0044] An application scenario information acquisition module collects application scenario information and determines surgical environment information and instrument application functions based on the application scenario information;
[0045] An environmental gradient color scale generation module constructs a color wheel template, determines a selection range of the color wheel template according to the surgical environment information, and sorts the selection range according to hue to generate an application environment gradient color scale;
[0046] An instrument gradient color scale generation module determines a selection range of the color wheel template according to the instrument application function, and sorts the selection range according to hue to generate an instrument design gradient color scale;
[0047] The gradient color scale design selection module generates a plurality of alternative color groups according to the application environment gradient color scale and the instrument design gradient color scale, performs visual test analysis on the alternative color groups, and selects the alternative color groups as the clip applier color design scheme.
[0048] Furthermore, the gradient color scale design selection module includes:
[0049] an environmental color tone variant extension unit, which takes each color level of the application environment gradient color level as a base color and generates a plurality of first color tone variants for each corresponding base color;
[0050] an instrument hue variant extension unit, which takes each color level of the instrument design gradient hue as a base color and generates a plurality of second hue variants for each corresponding base color;
[0051] a variant unified color scale application unit, wherein the first color tone variant and the second color tone variant are respectively used as the color scale of the application environment gradient color scale and the color scale of the instrument design gradient color scale;
[0052] The single-cycle combined color selection unit uses the application environment gradient color scale and the instrument design gradient color scale as single-cycle color selections respectively, and generates a plurality of standby execution color groups by combining the two single-cycle color selections.
[0053] The technical solution of the present invention can achieve the following technical effects:
[0054] It effectively solves the impact of surgical environment conditions and surgical site conditions on instrument visibility. By accurately selecting colors based on surgical environment information and instrument function requirements, it effectively improves surgical efficiency and greatly reduces surgical risks.
[0055] The above description is only an overview of the technical solution of the present application. In order to more clearly understand the technical means of the present application, it can be implemented in accordance with the contents of the specification. In order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are listed below. BRIEF DESCRIPTION OF THE DRAWINGS
[0056] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0057] Figure 1 A flowchart of a method for color design of a medical clip applier;
[0058] Figure 2 Generate a flow chart for the standby execution group;
[0059] Figure 3 Generate a flow diagram for the second color variant;
[0060] Figure 4 Diagram of a color design system for medical clip appliers. DETAILED DESCRIPTION
[0061] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0062] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this invention pertains. The terms used in this specification are for the purpose of describing specific embodiments only and are not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0063] Example 1
[0064] like Figure 1 As shown, the present application provides a method for color design of a medical clip applier, the method comprising:
[0065] S100: Collect application scenario information, and determine surgical environment information and instrument application functions based on the application scenario information;
[0066] S200: Constructing a color wheel template, determining a selection range of the color wheel template according to the surgical environment information, and sorting the selection range according to hue to generate a gradient color scale for the application environment;
[0067] S300: determining a selection range of a color wheel template according to an instrument application function, and sorting the selection range according to hue to generate a gradient color scale for the instrument design;
[0068] S400: generating a plurality of alternative color groups according to the application environment gradient color scale and the instrument design gradient color scale, performing visual test analysis on the alternative color groups, and selecting the alternative color group as a color design scheme for the clip applier.
[0069] Specifically, detailed information about the surgical environment is first collected, such as the lighting conditions of the operating room, the colors of the walls and floors, the colors and layout of commonly used instruments, etc. At the same time, the application functions of the instruments also need to be considered, such as the surgical site where the instrument is used during surgery and whether it needs to be quickly identified. A color wheel template is constructed based on the collected surgical environment information. In this color wheel template, those tones that are compatible with the surgical environment or can highlight the function of the instrument are selected. These tones can be systematically sorted according to hue to generate an application environment gradient color scale. This color scale will reflect the best to second-best color selection to adapt to different visual needs and functional requirements, and at the same time, according to the specific application of the instrument. For example, high contrast is required for quick identification, or a specific color is required to reduce light reflection. The color wheel template is used again to select appropriate tones. These tones can also be sorted according to hue to generate gradient color levels designed specifically for the instrument. This can ensure that the functionality and visual effect of the instrument in actual use are maximized. The colors in the application environment gradient color level and the instrument design gradient color level are combined to generate several ready-to-execute color groups. These color groups will be visually tested and analyzed in the actual surgical environment. The test content includes the visual impact of the color, its performance under different lighting, and its coordination with the surgical environment. Based on the test results, the final color design scheme is selected.
[0070] The technical solution of the present invention effectively solves the impact of surgical environment conditions and surgical site conditions on instrument visibility. By accurately selecting colors based on surgical environment information and instrument function requirements, surgical efficiency is effectively improved and surgical risks are greatly reduced.
[0071] Further, if Figure 2 As shown in FIG, several alternative color groups are generated according to the application gradient color scale and the instrument design color scale, including:
[0072] S410: Taking each color level of the application environment gradient color level as a base color, and generating a plurality of first color tone variants for each corresponding base color;
[0073] S420: using each color level of the instrument-designed gradient color scale as a base color, and generating a plurality of second hue variants for each corresponding base color;
[0074] S430: The first color variant and the second color variant are used as the color scale of the application environment gradient color scale and the color scale of the instrument design gradient color scale respectively;
[0075] S440: Using the application environment gradient color scale and the instrument design gradient color scale as single-cycle color selections respectively, and generating a plurality of standby execution color groups by combining the two single-cycle color selections.
[0076] As a preferred embodiment of the above embodiment, each color in the application environment gradient color scale is first used as the base color, and each base color is modified to generate several first color variants. These variants include adjusting brightness, saturation, or fine-tuning hue to adapt to the specific needs of the surgical environment. For example, if the base color is a certain blue, its variant may be a brighter or darker blue, or a blue slightly inclined to green or purple, to adapt to the lighting conditions in the operating room. Similarly, each color in the instrument design gradient color scale is used as the base color, and the base color of each color scale is used to generate several second color variants. The generation of these variants is based on the surgical site where the instrument is used and the need to visually stand out from other instruments or backgrounds. The generated first and second color variants are then incorporated into the application environment gradient color scale and the instrument design gradient color scale respectively, expanding and updating the original color scale to include more color options. The updated application environment gradient color scale and instrument design gradient color scale are then used as the basis for single-cycle color selection to perform color combination. This process involves selecting colors from each updated color scale, then combining these colors, and finally forming multiple standby color groups.
[0077] Furthermore, if Figure 3 As shown, each color level of the instrument design gradient color level is used as the base color, and several second color tone variants are generated for each corresponding base color, including:
[0078] S421: Determine the main color of the clip applier according to the surgical environment information and the instrument application function;
[0079] S422: performing color difference comparison on each color level of the gradient color level designed for the instrument and the main color of the clip applier color design, and quantifying the color difference comparison to obtain a quantified contrast color difference;
[0080] S423: attaching a design weight to each instrument design gradient color scale according to the corresponding quantized contrast color difference, and generating a plurality of second color tone variants based on the attached design weight for the base color of each color scale;
[0081] The number of second hue variants generated by the basic color of the color scale with the lowest design weight is 0, and the difference in the number of corresponding second hue variants generated between the basic colors of the color scales is at least 1.
[0082] In this embodiment, based on the collected surgical environment information and instrument application functions, a color is selected as the main design color of the clip applier. This color should be coordinated with the surgical environment and be able to reflect the main color tone of the instrument surgical site. Each color in the instrument design gradient color scale is compared with the main color design color of the clip applier. The color difference results obtained by comparison can be quantified using instruments or software such as a colorimeter and Adobe Photoshop, and converted into specific numerical values. A design weight is added to the base color of each color scale based on the quantified color difference. The smaller the color difference, that is, the closer to the main color, the higher the weight. Based on the assigned weight, a corresponding number of second color tone variants are generated for each basic color. Color scales with low weights may not generate any variants, while color scales with high weights generate more variants, ensuring that the number of variants differs by at least 1 to provide a sufficient range of choices and design flexibility.
[0083] Furthermore, the instrument design gradient color scale is optimized, including:
[0084] In the same surgical environment information, twin clip appliers are selected according to the similarity of instrument application functions, and instrument design gradient color levels corresponding to the twin clip appliers are obtained as twin gradient color levels, and the twin gradient color levels correspond to twin design weights;
[0085] Set the color scale optimization range for the instrument design gradient color scale according to the attached design weight;
[0086] The color scale optimization range is set for the twin gradient color scale according to the twin design weight, and the number of color scales in the color scale optimization range is consistent with that in the color scale optimization range;
[0087] The color scales within the preferred range of the color scale are replaced with the color scales within the optimized range of the color scale, and the gradient color scales designed for the instrument are optimized and updated.
[0088] Specifically, first, in the same surgical environment, one or more twin clip applicators are selected according to the similarity of the instrument application functions. For each selected twin clip applier, the corresponding instrument design gradient color scale is obtained. These color scales contain the corresponding additional design weights for the clip applier model. Based on the existing additional design weights, a color scale optimization range is set for the instrument design gradient color scale currently being optimized. After sorting by weight, the color interval with a high weight is selected as the optimization range. Then, the design weight of the twin clip applier is used to set a color scale preferred range. This means that the color that best matches the current instrument is selected from the color scale of the twin clip applier to form a preferred color scale, and ensure that the number of colors in the color scale preferred range and the color scale optimization range are consistent. Then, the color scale in the color scale preferred range of the twin clip applier is replaced with the color scale in the color scale optimization range of the current instrument. After the replacement is completed, the entire instrument design gradient color scale is updated to reflect the new color selection.
[0089] Furthermore, a visual test analysis was conducted on the candidate color groups, and the candidate color groups were selected as the color design scheme for the clip applier, including:
[0090] Establish visual requirements standards based on surgical environment information, conduct color visibility assessment on the prepared color sets, and test the reflectivity and brightness index of the prepared color sets under the application scenario information conditions;
[0091] Use a high-precision color analyzer to test the color contrast of the prepared color set, evaluate the contrast on the predetermined background color, and measure the color difference;
[0092] Conduct color resolution testing to quantify the effectiveness of the prepared color panel in identifying parts of surgical instruments and evaluate color recognition thresholds;
[0093] The color set for the clip applier is selected based on the color visibility evaluation, color difference and color resolution as the color design scheme.
[0094] As a preferred embodiment of the above embodiment, visual requirements standards are first established based on the collected surgical environment information. These standards should include minimum reflectance and brightness requirements for colors. High-precision equipment, such as a spectrocolorimeter, is used to measure the reflectance and brightness index of the prepared color sets. Then, the prepared color sets are tested in a simulated surgical environment to evaluate the color performance under actual application conditions. Detailed color contrast testing is performed on the prepared color sets using a high-precision color analyzer, such as an industrial-grade spectrocolorimeter, to assess the contrast of each color against a predetermined background color and measure the color differences between the color sets. The effectiveness of the prepared color sets in distinguishing different parts of surgical instruments can then be quantified through methods such as visual contrast testing and color recognition testing. This includes evaluating the ability to recognize various colors against different color backgrounds to ensure that medical staff can quickly identify and use the correct tools, and determining the minimum recognizable threshold between different colors to evaluate the practical application value of the color scheme. Finally, based on the color visibility evaluation, color difference test results, and color resolution test, the prepared color set with the best performance is selected as the final clip applier color design scheme.
[0095] Furthermore, visual testing and analysis of the prepared color sets were performed from multiple visual angles, including evaluation of color visibility, color difference, and color resolution.
[0096] In this embodiment, first, the specific visual requirements of the surgical scene are defined, including lighting conditions, background colors, and possible visual interference factors. Based on this information, test conditions for multiple perspectives are established to simulate different visual environments that may be encountered during actual surgery. Multiple perspectives and distances are designed to simulate the possible observation angles and positions of doctors and nurses during surgery. For example, color recognition tests are performed from straight, side, and top view angles. Multi-perspective visual test data, including various test data such as color visibility, color difference contrast, and color resolution, are collected. All data are cleaned and formatted, and the mean, median, standard deviation, and coefficient of variation are calculated for each test data set. Statistical analysis methods are used to evaluate the consistency and change trend of color performance under different viewing angles. Multivariate analysis, such as principal component analysis, is used to explore the relationship between color visibility, color difference contrast, and color resolution, and how they are affected by viewing angles. Based on this analysis result, color optimization recommendations are formulated.
[0097] Furthermore, a color wheel template is constructed, and the selection range of the color wheel template is determined according to the surgical environment information, including:
[0098] Determine the current surgical environment and surgical site based on surgical environment information and instrument application functions, and obtain the surgical environment color tone and surgical site color tone respectively;
[0099] Based on the standard color wheel, a color wheel template is constructed, which includes the full range of hues;
[0100] Construct a color hue screening database, and obtain standard hues based on the color hue screening database and the relationship between the surgical environment hue and the surgical site hue;
[0101] Based on the color wheel template, standard hues are selected as base points and extended to adjacent hue areas to determine the selection range of the color wheel template. The hues are sorted based on the corresponding selection range of the color wheel template to generate the application environment gradient color scale and the instrument design gradient color scale.
[0102] Specifically, first, the specific conditions of the surgical environment and surgical site are determined based on information such as the type of surgery, the lighting conditions of the operating room, and the color of the surrounding environment. Then, a standard color wheel is used as the basis, including a full range of hues, starting from red, passing through yellow, green, blue, and then returning to red. This color wheel will be used to select and compare different color options. By creating a database to store and manage information on various hues, this database will combine the hue information of the surgical environment and surgical site to help identify and select the standard hue that best matches the surgical environment. After determining the standard hue, on the color wheel template, the standard hue most relevant to the surgical environment and instrument function is selected as the base point, and extended from these base points to the adjacent hue area to determine the selection range on the color wheel. For example, if the base point is blue, it may extend to a certain angle in the cyan and purple directions to form a selection range that includes adjacent hues. Based on the determined selection range of the color wheel template, the hues are sorted in the order of hues, starting from a base point hue and extending to the adjacent hues on both sides, thereby generating the application environment gradient color scale and the instrument design gradient color scale.
[0103] Furthermore, a color hue screening database is constructed, and standard hues are obtained based on the relationship between the color hue screening database and the color hue of the surgical environment and the color hue of the surgical site, including:
[0104] Collecting historical surgical environment information and historical surgical site information, and determining a plurality of historical surgical environment tones and a plurality of historical surgical site tones according to the historical surgical environment information and the historical surgical site information, wherein the historical surgical environment information and the historical surgical site information include a plurality of different surgical environments and surgical sites;
[0105] According to the color wheel template, high-contrast tones that complement the tones of the historical surgical environment and the historical surgical site are selected as standard tones;
[0106] Matching the standard tones of several surgical environments and several surgical sites one by one, obtaining the tone mapping information of the surgical environments and the tone mapping information of the surgical sites, and creating an index relationship;
[0107] The tone mapping information of the surgical environment, the tone mapping information of the surgical site, and the index relationship are integrated to create a tone screening database.
[0108] As a preferred embodiment of the above, historical surgical environment information and surgical site information are first collected, including ambient lighting, background color, common equipment color and characteristics of the surgical site for different types of surgeries, to obtain the surgical environment color tone and the surgical site color tone. A color wheel template is used to select a high-contrast color tone that is complementary to the determined surgical environment color tone and surgical site color tone as the standard color tone. The complementary color is selected to maximize visual recognition efficiency, especially when quickly identifying surgical tools and operating areas. The information of various surgical environments and surgical sites is matched one-to-one with the corresponding standard color tone, and surgical environment color tone mapping information and surgical site color tone mapping information are created. The above mapping information is integrated, and an index relationship is created to quickly retrieve and match the most suitable color scheme. Finally, the surgical environment color tone mapping information, the surgical site color tone mapping information and the index relationship are integrated together to construct a color tone screening database. This database will enable medical equipment designers to quickly access and select the most suitable color scheme according to specific surgical environment and site requirements.
[0109] Example 2
[0110] Based on the same inventive concept as the method for color design of a medical clip applier in the aforementioned embodiment, the present invention also provides a color design system for a medical clip applier, such as Figure 4 As shown, the system includes:
[0111] Application scenario information acquisition module, which collects application scenario information and determines the surgical environment information and instrument application functions based on the application scenario information;
[0112] The environment gradient color scale generation module constructs a color wheel template, determines the selection range of the color wheel template according to the surgical environment information, and sorts the selection range according to the color tone to generate the application environment gradient color scale;
[0113] The instrument gradient color scale generation module determines the selection range of the color wheel template according to the instrument application function, sorts the selection range by hue, and generates the instrument design gradient color scale;
[0114] The gradient color scale design selection module generates several alternative color groups according to the application environment gradient color scale and the instrument design gradient color scale, performs visual test analysis on the alternative color groups, and selects the alternative color group as the clip applier color design scheme.
[0115] The above-mentioned adjustment system in the present invention can effectively implement the color design method of the medical clip applier, and the technical effects that can be achieved are as described in the above-mentioned embodiments and will not be repeated here.
[0116] Furthermore, the gradient color scale design selection module includes:
[0117] an ambient color tone variant extension unit, taking each color level of the applied ambient gradient color level as a base color and generating a plurality of first color tone variants for each corresponding base color;
[0118] An instrument hue variant extension unit takes each color level of the instrument design gradient as a base color and generates a plurality of second hue variants for each corresponding base color;
[0119] A variant unified color scale application unit, wherein the first color tone variant and the second color tone variant are both used as the color scale for applying the environment gradient color scale and the color scale for the instrument design gradient color scale respectively;
[0120] The single-cycle combined color selection unit takes the application environment gradient color scale and the instrument design gradient color scale as single-cycle color selections respectively, and generates a plurality of standby execution color groups by combining the two single-cycle color selections.
[0121] Similarly, the above-mentioned optimization schemes for the system can also respectively achieve the corresponding optimization effects of the method in Example 1, which will not be repeated here.
[0122] Although the present application has been described with reference to specific features and embodiments thereof, it is apparent that various modifications and combinations may be made thereto without departing from the spirit and scope of the present application. Accordingly, this specification and drawings are merely illustrative of the present application as defined herein and are deemed to cover any and all modifications, variations, combinations or equivalents within the scope of the present application. Obviously, those skilled in the art may make various modifications and variations to the present application without departing from the scope of the present application. Thus, the present application is intended to include such modifications and variations as fall within the scope of the present application and its equivalents.
Claims
1. A method for designing the color of a medical clip applier, characterized in that: The method comprises: Collect application scenario information, and determine surgical environment information and instrument application functions based on the application scenario information; Constructing a color wheel template, determining a selection range of the color wheel template according to the surgical environment information, and sorting the selection range according to hue to generate a gradient color scale for the application environment; Determine the selection range of the color wheel template according to the application function of the instrument, and sort the selection range according to the hue to generate the instrument design gradient color scale; A plurality of alternative color groups are generated according to the application environment gradient color scale and the instrument design gradient color scale, and a visual test analysis is performed on the alternative color groups to select the alternative color groups as the clip applier color design scheme.
2. The method for designing the color of a medical clip applier according to claim 1, wherein: Generating a plurality of standby color groups according to the application environment gradient color scale and the instrument design gradient color scale, including: Taking each color level of the application environment gradient color level as a base color, and generating a plurality of first color tone variants for each corresponding base color; Taking each color level of the instrument-designed gradient color scale as a base color, and generating a plurality of second hue variants for each corresponding base color; The first color tone variant and the second color tone variant serve as the color tone scale of the application environment gradient color tone scale and the color tone scale of the instrument design gradient color tone scale respectively; The application environment gradient color scale and the instrument design gradient color scale are respectively used as single-cycle color selections, and a plurality of standby execution color groups are generated by combining the two single-cycle color selections.
3. The method for designing the color of a medical clip applier according to claim 2, wherein: Taking each color level of the instrument-designed gradient color level as a base color, and generating a plurality of second hue variants for each corresponding base color, the method comprises: Determine the main color of the clip applier based on the surgical environment information and the instrument application function; Comparing the color difference of each color level of the instrument design gradient color level with the main color of the clip applier color design, and quantifying the color difference comparison to obtain a quantified contrast color difference; Adding a design weight to each of the instrument design gradient color levels according to the corresponding quantized contrast color difference, and generating a plurality of second color tone variants based on the base color of each color level according to the added design weight; The number of the second hue variants generated by the basic color of the color scale with the lowest design weight is 0, and the difference in the number of the second hue variants generated corresponding to the basic colors of the color scale is at least 1.
4. The method for designing the color of a medical clip applier according to claim 3, wherein: The instrument design gradient color scale is optimized, including: Selecting a twin clip applier based on the similarity of the instrument application functions in the same surgical environment information, and obtaining the instrument design gradient color scale corresponding to the twin clip applier as a twin gradient color scale, wherein the twin gradient color scale corresponds to a twin design weight; Setting a color scale optimization range for the instrument design gradient color scale according to the attached design weight; Setting a color scale preferred range for the twin gradient color scale according to the twin design weight, wherein the color scale preferred range is consistent with the number of color scales in the color scale optimization range; The color scales within the color scale preferred range are replaced with the color scales within the color scale optimization range, and the instrument design gradient color scales are optimized and updated.
5. The method for designing the color of a medical clip applier according to claim 1, wherein: Performing visual testing and analysis on the prepared color set and selecting the prepared color set as a color design scheme for the clip applier includes: Establishing visual requirement standards based on the surgical environment information, and performing color visibility evaluation on the standby color set, testing the reflectivity and brightness index of the standby color set under the application scenario information conditions; Performing a color contrast effect test on the prepared color set using a high-precision color analyzer to evaluate the contrast on a predetermined background color and measure the color difference; Conducting color resolution testing to quantify the effectiveness of the prepared color set in identifying parts of surgical instruments and to evaluate color recognition thresholds; The prepared color set is selected as the clip applier color design scheme based on the color visibility evaluation, color difference and color resolution.
6. The method for designing the color of a medical clip applier according to claim 5, wherein: Visual testing and analysis are performed on the prepared color set from multiple visual angles, including the color visibility evaluation, color difference, and color resolution.
7. The method for designing the color of a medical clip applier according to claim 1, wherein: Constructing a color wheel template and determining a selection range of the color wheel template according to the surgical environment information includes: Determine the current surgical environment and surgical site according to the surgical environment information and the instrument application function, and obtain the surgical environment color tone and the surgical site color tone respectively; A color wheel template is constructed based on a standard color wheel, wherein the color wheel template includes a full range of hues; Constructing a color tone screening database, and obtaining standard color tones according to the color tone screening database and the relationship between the color tones of the surgical environment and the color tones of the surgical site; Based on the color wheel template, the standard hues are selected as base points, extended to adjacent hue areas, and the color wheel template selection range is determined. The hues are sorted based on the corresponding color wheel template selection range to generate application environment gradient color levels and instrument design gradient color levels.
8. The method for designing the color of a medical clip applier according to claim 7, wherein: Constructing a color hue screening database, and obtaining standard hues according to the color hue screening database and the relationship between the surgical environment hue and the surgical site hue, including: Collecting historical surgical environment information and historical surgical site information, and determining a plurality of historical surgical environment tones and a plurality of historical surgical site tones based on the historical surgical environment information and the historical surgical site information, wherein the historical surgical environment information and the historical surgical site information include a plurality of different surgical environments and surgical sites; Selecting high-contrast tones that complement the historical surgical environment tones and the historical surgical site tones as standard tones according to the color wheel template; Matching the plurality of surgical environments and the plurality of surgical sites to each other according to their respective standard tones, obtaining surgical environment tone mapping information and surgical site tone mapping information, and creating an index relationship; The operating environment tone mapping information, the operating site tone mapping information, and the index relationship are integrated to create a tone screening database.
9. A color design system for a medical clip applier, characterized in that: The system comprises: An application scenario information acquisition module collects application scenario information and determines surgical environment information and instrument application functions based on the application scenario information; An environmental gradient color scale generation module constructs a color wheel template, determines a selection range of the color wheel template according to the surgical environment information, and sorts the selection range according to hue to generate an application environment gradient color scale; An instrument gradient color scale generation module determines a selection range of the color wheel template according to the instrument application function, and sorts the selection range according to hue to generate an instrument design gradient color scale; The gradient color scale design selection module generates a plurality of alternative color groups according to the application environment gradient color scale and the instrument design gradient color scale, performs visual test analysis on the alternative color groups, and selects the alternative color groups as the clip applier color design scheme.
10. The medical clip applier color design system according to claim 9, wherein: The gradient color scale design selection module includes: an environmental color tone variant extension unit, which takes each color level of the application environment gradient color level as a base color and generates a plurality of first color tone variants for each corresponding base color; an instrument hue variant extension unit, which takes each color level of the instrument design gradient hue as a base color and generates a plurality of second hue variants for each corresponding base color; a variant unified color scale application unit, wherein the first color tone variant and the second color tone variant serve as the color scales of the application environment gradient color scale and the color scales of the instrument design gradient color scale, respectively; The single-cycle combined color selection unit uses the application environment gradient color scale and the instrument design gradient color scale as single-cycle color selections respectively, and generates a plurality of standby execution color groups by combining the two single-cycle color selections.
Citation Information
Patent Citations
Product color scheme generation method, system, tool and medium
CN118521383A
KR20240002856A