WO2018161268A1 - 一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法 - Google Patents

一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法 Download PDF

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Publication number
WO2018161268A1
WO2018161268A1 PCT/CN2017/075926 CN2017075926W WO2018161268A1 WO 2018161268 A1 WO2018161268 A1 WO 2018161268A1 CN 2017075926 W CN2017075926 W CN 2017075926W WO 2018161268 A1 WO2018161268 A1 WO 2018161268A1
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breast
chest
user
size
category
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PCT/CN2017/075926
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English (en)
French (fr)
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王忠堂
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厦门波耐模型设计有限责任公司
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Priority to CN201780003426.4A priority Critical patent/CN108366636B/zh
Priority to JP2019570602A priority patent/JP2020510271A/ja
Priority to PCT/CN2017/075926 priority patent/WO2018161268A1/zh
Priority to EP17899774.8A priority patent/EP3594889A4/en
Publication of WO2018161268A1 publication Critical patent/WO2018161268A1/zh
Priority to US16/565,439 priority patent/US20200000165A1/en

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    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41HAPPLIANCES OR METHODS FOR MAKING CLOTHES, e.g. FOR DRESS-MAKING OR FOR TAILORING, NOT OTHERWISE PROVIDED FOR
    • A41H1/00Measuring aids or methods
    • A41H1/02Devices for taking measurements on the human body
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41HAPPLIANCES OR METHODS FOR MAKING CLOTHES, e.g. FOR DRESS-MAKING OR FOR TAILORING, NOT OTHERWISE PROVIDED FOR
    • A41H1/00Measuring aids or methods
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/107Measuring physical dimensions, e.g. size of the entire body or parts thereof
    • A61B5/1072Measuring physical dimensions, e.g. size of the entire body or parts thereof measuring distances on the body, e.g. measuring length, height or thickness
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/107Measuring physical dimensions, e.g. size of the entire body or parts thereof
    • A61B5/1075Measuring physical dimensions, e.g. size of the entire body or parts thereof for measuring dimensions by non-invasive methods, e.g. for determining thickness of tissue layer
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/107Measuring physical dimensions, e.g. size of the entire body or parts thereof
    • A61B5/1077Measuring of profiles
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T1/00General purpose image data processing
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T5/00Image enhancement or restoration
    • G06T5/73Deblurring; Sharpening
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T7/00Image analysis
    • G06T7/0002Inspection of images, e.g. flaw detection
    • G06T7/0012Biomedical image inspection
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/107Measuring physical dimensions, e.g. size of the entire body or parts thereof
    • A61B5/1079Measuring physical dimensions, e.g. size of the entire body or parts thereof using optical or photographic means
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/43Detecting, measuring or recording for evaluating the reproductive systems
    • A61B5/4306Detecting, measuring or recording for evaluating the reproductive systems for evaluating the female reproductive systems, e.g. gynaecological evaluations
    • A61B5/4312Breast evaluation or disorder diagnosis
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • G06Q30/0601Electronic shopping [e-shopping]
    • G06Q30/0621Item configuration or customization
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T2207/00Indexing scheme for image analysis or image enhancement
    • G06T2207/20Special algorithmic details
    • G06T2207/20112Image segmentation details
    • G06T2207/20132Image cropping
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T2207/00Indexing scheme for image analysis or image enhancement
    • G06T2207/30Subject of image; Context of image processing
    • G06T2207/30196Human being; Person

Definitions

  • the invention relates to a method for measuring and measuring the size of a human breast, a selection and implementation method of underwear size.
  • the women's underwear size rule was established in 1935 to promote industrial scale production and meet most of the needs.
  • the underwear size rule simplifies the measurement and calculation of the chest, reducing the number of cups and styles, but the female breast type is ever-changing, resulting in inaccurate measurement results and incorrect selection.
  • the underwear strap is made of elastic material, the length measurement method is simple, and the user can adjust it by himself, but the size of the underwear cup is not quite suitable.
  • the shape of the female breast is different, the breast volume is close, the same cup underwear, the hemispherical or teardrop-shaped breast user fits; and the user of the disc-shaped breast, the breast tissue is distributed beyond the cup, causing part of the breast tissue not to be contained in the cup At the same time, there is an empty cup at the front end of the cup; for the user of the tubular breast or the apparently sagging breast, the breast tissue is squeezed by the underwear to induce breast disease;
  • Female breasts are asymmetrical in both sides, common in developmental or genetic factors. The disease is completely or partially removed on one side. The measurement size is average on both sides, causing one side of the breast to be squeezed by the cup and the other side of the breast to be empty. phenomenon;
  • the relative position of the breast on the chest wall the breast is generally located on the 2nd to 6th ribs of the chest wall, and the same volume of breasts, if the breast attachment position is shifted upward, it is visually large, if the breast attachment position is shifted downward, then Visually, it appears to be too small.
  • the attachment position of the breast is shifted upwards, the participation of the pectoralis major muscle is large, the breast attachment position is shifted downward, and the participation of the pectoralis major muscle is small;
  • Insufficient representation of underwear size and cup type data Select a certain number of models in the crowd to measure, 3D scan, extract data, design underwear size and cup series.
  • the object of the present invention is to provide a method for measuring and measuring the size of a human breast, a selection and implementation method of the underwear size, and a chest measurement solution for the user to obtain a more accurate underwear size, which is convenient for the user to select a suitable underwear.
  • a human body chest size measurement and measurement method, underwear size selection and implementation method the user uploads the measured chest measurement parameters to the server, and the server analyzes the received chest measurement parameters and matches them with the database matrix.
  • the result obtained after the matching is the corresponding underwear size result;
  • the chest measurement parameters include upper chest circumference, lower chest circumference, underarm circumference, underarm skin fat thickness, unilateral breast arc length and width, breast convexity, breast shape category Body size index BMI, breast softness category;
  • the database matrix is constructed from underarm skin fat thickness, breast shape category, body shape index BMI, breast softness category;
  • the underwear size is Lxy(z1:z2)Rxy( Z1:z2), where L is the left breast, R is the right breast;
  • x is the length of the strap;
  • y is the one-sided cup model;
  • z1 is the one-sided breast width;
  • z2 is the one-sided breast crown, the strap length Determined by a lower chest circumference parameter, the breast
  • the chest measurement parameter further includes a 2D or 3D photo of the breast, and when the server analyzes the received chest measurement parameter, the server identifies, enhances, cuts, and submits the breast in the 2D or 3D photo of the breast.
  • the breast shape category and the body type are compared and analyzed, the credibility of the chest parameter is determined by the user, and the parameters are corrected.
  • Step 1 The user measures the breast sagging state parameter, and uploads the drooping state parameter to the server through the smart terminal;
  • the parameters of the sagging state of the breast include drooping and no sagging.
  • the breast is not drooping;
  • the horizontal line of the nipple coincides with or falls below the lower boundary line of the breast, the breast is drooping;
  • Step 2 The server sends a measurement method of the chest measurement parameter that needs to be measured by the user according to the breast sagging state parameter submitted by the user, and the chest measurement parameter includes an upper chest circumference, a lower chest circumference, an underarm circumference, an underarm skin fat thickness, Unilateral breast arc length and width, breast crown, breast shape category, body shape index BMI, breast softness category;
  • the soft ruler passes the plane of the most prominent point of the bilateral nipple or the chest, and the circumference of the human trunk is one week;
  • the soft ruler passes over the wrinkle plane of the bilateral breasts, and surrounds the circumference of the human trunk for one week;
  • the fat thickness of the underarm skin is the junction of the midline of the underarm and the horizontal line of the nipple.
  • the index finger and the thumb pick up the local full-thickness skin and subcutaneous soft tissue, and the distance between the thumb and the index finger is measured.
  • the breast When measuring the length and width of the unilateral breast, the breast is pushed from the outside to the inside with one hand, and the dividing line between the breast and the front chest wall is obtained. The breast is pushed from the medial side to the outside with one hand, and the dividing line between the breast and the lateral chest wall is obtained.
  • the length between the two junction points of the measured nipple is the length of the breast, and the straight line distance between the two junction points is Breast width
  • Breast convexity refers to the direct measurement of the vertical distance from the base of the nipple to the chest wall in a slight forward slightly pulled state
  • the breast morphology category includes disc-shaped, hemispherical, drop-shaped, conical, tubular, and bird's beak;
  • Body shape index BMI is the square of body weight (Kg) / height (m), which are lean, standard, overweight and obese, respectively, used to judge the user's body;
  • Step 3 The user uploads the measured chest measurement parameters to the server through the intelligent terminal, and the upper chest circumference, the lower chest circumference, the armpit chest circumference, the underarm skin fat thickness, the unilateral breast arc length and width, the breast convexity, and the breast shape.
  • the category, body type index BMI, and breast softness category parameters are uploaded to the server, and the uploaded parameters are average values of multiple measurements;
  • Step 4 The server analyzes the received chest measurement parameters, and then matches the database matrix, and the matching result is the corresponding underwear size result;
  • the database matrix is constructed by subcutaneous skin fat thickness, breast morphology category, body shape index BMI, and breast softness category;
  • the server analyzes the four parameters of the underarm skin fat thickness, breast shape category, body shape index BMI and breast softness category provided by the user, and then analyzes the underarm skin fat thickness, breast shape category, body shape index BMI and breast.
  • the softness category is matched with the data in the database matrix, and the size of the cup is adjusted according to the matching result to obtain the final underwear size result;
  • Step 5 The server picks up the underwear size result and sends it to the user's smart terminal.
  • the size of the underwear obtained by the user is Lxy(z1:z2)Rxy(z1:z2), wherein L left breast, R right breast; x strap length; y single side cup model; z1 single side breast width; z2 single side Breast convexity.
  • Step 6 The user feeds the wearing condition of the corresponding size underwear to the server through the smart terminal;
  • the user purchases or customizes the underwear according to the recommended size. Under actual wearing conditions, the user wears the wearing effect of the underwear size to the server through the smart terminal;
  • Step 7 the server performs optimization processing of the database according to the feedback information of the user
  • the database is optimized by modifying the parameters.
  • the invention uploads the measured chest measurement parameters to the server through the user intelligent terminal, and the server analyzes, classifies and matches the chest measurement parameters to obtain the corresponding underwear size, and sends the obtained underwear size to the intelligent terminal to realize
  • the size of the underwear includes the length of the strap, cup, breast width and breast convexity, so that users can choose a more comfortable underwear.
  • Figure 1 is a schematic view showing the measurement of the chest circumference, the lower chest circumference and the underarm circumference of the armpit;
  • Figure 2 is a schematic view showing the measurement of the fat thickness of the skin under the armpit
  • Figure 3A is a schematic diagram 1 of one-side breast arc length and width measurement
  • Figure 3B is a schematic diagram 2 of one-side breast arc length and width measurement
  • Figure 3C is a schematic view of the measurement of the arc length of the single side
  • Figure 3D is a schematic diagram of single-sided breast width measurement
  • Figure 4 is a schematic view of the measurement of the chest circumference in the lying position
  • Figure 5 is a schematic diagram showing the measurement of the arc length of a single breast in a lying position
  • Figure 6 is a schematic diagram of the upper chest circumference measurement of the chest sagging
  • Figure 7 is a schematic view showing the measurement of the unilateral breast arc length of the chest sagging
  • Figure 8 is a category of breast morphology
  • Figure 9A is a breast asymmetry category 1
  • Figure 9B is a breast asymmetry category 2
  • Figure 9C is a breast asymmetry category three
  • Figure 9D is a breast asymmetry category 4.
  • Figure 9E is a breast asymmetry category five
  • Figure 10A is a schematic view of the sagging breast
  • Figure 10B is a schematic view of the breast sagging two
  • Figure 10C is a schematic view of the sagging of the breast
  • Figure 10D is a schematic view of the breast sagging four
  • Figure 11 is a schematic view showing direct measurement of breast convexity
  • Figure 12 is a flow chart of obtaining an underwear size
  • Figure 13 is a flow chart of the chest measurement parameter processing.
  • the present invention discloses a method for measuring and measuring a chest size of a human body, a method for selecting and implementing an underwear size, and uploading the measured chest measurement parameter to a server through a user intelligent terminal, and the server
  • the chest measurement parameters are analyzed, classified and matched to obtain the corresponding underwear size, and the obtained underwear size is sent to the intelligent terminal to provide the user with accurate underwear size
  • the underwear size includes the strap length, the cup, the breast width and the breast. Convex, convenient for users to choose a more comfortable underwear.
  • the specific method of the present invention is:
  • Step 1 The user measures the breast sagging state parameter, and uploads the drooping state parameter to the server through the smart terminal;
  • the sagging state parameters include sagging and no sagging, when the horizontal line 1 of the nipple is higher than the lower boundary line 2 of the breast, the breast is sagging; when the horizontal line 1 of the nipple coincides with or is lower than the breast At the lower boundary line 2, the breast is sagging.
  • Step 2 The server sends a measurement method of the chest measurement parameter that needs to be measured by the user according to the breast sagging state parameter submitted by the user, and if necessary, may send a measurement schematic diagram to the user, so that the measurement of the user can be more intuitive;
  • the chest measurement parameters that the user needs to measure include upper chest circumference, lower chest circumference, underarm circumference, underarm skin fat thickness, unilateral breast arc length and width, breast crown, breast shape category, body shape index BMI, breast softness category, and breast. 2D or 3D picture.
  • the user needs to remove the upper body clothing when measuring the measurement parameters of each chest, and select one position from the standing position of the straight shoulders of the feet, the forward tilt position of the body trunk and the flat position.
  • they can be measured by themselves or assisted by others as shown in Fig. 1 to Fig. 5; for the sagging of the breasts as shown in Figs. 10A to 10D, as shown in Fig. 6 and Fig. 7, the user needs to hold the hands.
  • Lifting the breast to the sagging part of the breast is higher than the fold under the breast, and the measurement is assisted by others.
  • the soft ruler when standing, use the soft ruler to measure the upper bust.
  • the soft ruler needs to pass the plane of the most prominent point of the bilateral nipple or chest.
  • the circumference of the human body is one week, and the obtained circumference is the upper bust.
  • the soft ruler is over the wrinkled plane of the bilateral breasts, and the circumference of the human body is one week.
  • the obtained circumference is the lower bust; when the standing position is measured under the armpit, the hands are squatted, the soft ruler needs to pass the bilateral underarm plane, surround the human body.
  • One week of the trunk the circumference obtained is the underarm bust.
  • the underarm bust is used to determine the development of the chest muscles and the bra parameters for making the all-inclusive package of the breast.
  • the upper chest circumference, lower chest circumference and underarm circumference are maximal after a full meal or at the maximum deep inspiratory end, and the fasting or maximum amplitude end-tidal is a minimum. However, in the actual measurement process, the upper chest circumference, the lower chest circumference and the underarm circumference should be measured 2 hours after the meal, and the uniform breathing state is measured.
  • Figure 2 is a schematic diagram of the measurement of the fat thickness of the underarm skin.
  • the thickness of the underarm skin fat refers to the junction of the midline of the lower jaw and the horizontal line of the nipple.
  • the index finger and the thumb pick up the local full-thickness skin and subcutaneous soft tissue. The distance between the thumb and the index finger.
  • 3A-3D are schematic diagrams of measurement of arc length and width of a single side breast.
  • the breast When measuring, the breast is pushed from the outside to the inside by one hand, and the boundary line between the breast and the front chest wall is obtained, and the breast is pushed from the inside to the outside with one hand to obtain the breast.
  • the tissue boundary line 4 between the lateral chest wall, the nipple horizontal line, the boundary line between the breast and the front chest wall 3, the boundary point between the breast and the lateral chest wall tissue boundary line 4, and the length between the two junction points of the measured nipple is the breast arc. Long, the straight line distance between the two junction points is the breast width.
  • Measuring the unilateral breast arc length, breast width, combined with the breast shape can obtain the approximate breast volume, the breast volume can be measured by breast augmentation or breast reduction effect, weight loss or fattening effect, breast tumor or abscess growth rate, or Guide the selection of the cup, and the unilateral breast arc length and breast width can be measured with the help of daily soft feet.
  • Figure 11 is a schematic illustration of direct measurement of breast crown, which refers to the direct measurement of the vertical distance from the base of the nipple to the chest wall in a slightly forward, slightly pulled state.
  • the breast shape category includes a disc shape, a hemisphere shape, a drop shape, a cone shape, a tube shape, and a bird's beak shape, and the breast shape can be submitted by the user.
  • the breast softness can be assessed semi-quantitatively, such as: very soft, soft, moderate, and tough.
  • the body shape index BMI is determined by the square of the body weight (Kg) / height (m) to determine the user's slim or obese body.
  • Step 2 The user uploads the measured chest measurement parameters to the server through the smart terminal.
  • the user inputs the measured chest measurement parameters to a smart terminal such as a mobile phone or a computer, and transmits the data to the server through the intelligent terminal, and the uploaded parameter may be an average of multiple measurements. For example, in practical applications, each parameter value is measured three times, and then the average value of three measured values is uploaded to the server through the smart terminal, or each parameter is measured three times and three times of the measured values are uploaded through the smart terminal. To the server, the average value is taken by the server.
  • step 3 the server analyzes and classifies the received chest measurement parameters, and then matches the database matrix, and the matching result is the corresponding underwear size result.
  • the database matrix is composed of a subcutaneous skin fat thickness, a breast shape category, a body shape index BMI, and a breast softness category; the database matrix is constructed by collecting actual measured values of corresponding categories of people dispersed in various types of documents with high reliability; The actual measured value also includes the measured data submitted by the user to the server through the smart terminal; the credibility of the various types of documents is determined by the authority of the document, the size of the data sample, and the diversity of the human population.
  • the underwear size includes the length of the strap, the cup, the width of the breast and the convexity of the breast.
  • the length of the strap is determined by the lower chest parameters provided by the user.
  • the cup is determined by the user's upper chest parameter, lower chest circumference, and breast length parameters, and the breast width is determined.
  • the breast width provided by the user is then determined and the breast crown is determined by the breast crown parameter provided by the user.
  • the cup spacing is adjusted from 2.54 cm or 1 inch to 1.27 cm or 0.5 inch, and the cup size is still expressed by ABCDEFGHI, but half yard can appear.
  • the server analyzes the four parameters of the underarm skin fat thickness, breast shape category, body shape index BMI and breast softness category provided by the user.
  • the server recognizes, enhances, cuts, and submits the target breast in the 2D and 3D photos, such as the breast shape category, the body type, the degree of sagging and sagging, Whether there is a chest deformity, perform a comparative analysis, determine the credibility of the user to submit the chest parameters, and correct the parameters.
  • the analyzed subcutaneous skin fat thickness, breast shape category, body shape index BMI and breast softness category are matched with the data in the database matrix, and the size of the cup is corrected according to the matching result to obtain the final underwear size result.
  • the thickness of the underarm skin fat reflects the thickness of the breast and back fat. If the thickness of the fat layer is less than 1 inch, the conventional algorithm can be used to reach 1 inch or more. For every 1 inch of the user, the length of the strap can be shortened by 1 inch and the size of the cup is increased by half. code. Under the premise of not affecting the wearing comfort of the user, the effect of wrapping the underwear is increased, and the large movement of the breast during exercise is reduced.
  • the breast softness can be assessed semi-quantitatively, such as: very soft, soft, moderate, and tough.
  • the softness of the breast is determined by the proportion of the breast component. It is mainly adipose tissue, soft, and mainly to the breast tissue, it is tough.
  • the size of the cup can be appropriately reduced.
  • the size of the cup can be appropriately increased to increase the wrapping effect of the underwear and reduce the size of the breast during exercise without affecting the wearing comfort of the user. The amplitude moves.
  • step 4 the server picks up the underwear size result and sends it to the user's smart terminal.
  • the server When the server sends the corresponding underwear size result to the user intelligent terminal, it can send some necessary prompts. Necessary tips include warnings of abnormal results, reminding users to re-measure, or personalizing custom underwear recommendations, or consulting underwear design experts, orthopedic surgeons.
  • the underwear size obtained by the user is Lxy(z1:z2)Rxy(z1:z2), wherein L is the left breast, R is the right breast, x is the length of the strap, and y is the single.
  • 75B (15:7.5)/32B (6:3), indicating that the left and right breasts are close in size.
  • 75B (15:7.5), unit centimeter, strap length 75cm, B cup, breast width 15cm, breast crown 7.5cm; 32B (6:3), unit inch, strap length 32inch, B cup, breast width 6inch, breast convex Degree 3inch.
  • L75A (12.5:5.0) R75D (17.5:10.0) / L32A (5:2) R32D (7:4) indicating bilateral breast asymmetry.
  • L75A (12.5:5.0) R75D (17.5:10.0) unit centimeter, strap length 75cm, L left breast A cup, breast width 12.5cm, breast crown 5.0cm, R right breast D cup, breast width 17.5cm, Breast convexity is 10.0cm.
  • L32A (5:2) R32D (7:4) in inches, strap length 32inch, L left breast A cup, breast width 5inch, breast crown 2inch, R right breast D cup, breast width 7inch, breast crown 4inch.
  • the length of the strap is 72.5cm (31inch); B + indicates that the cup size is larger than the B cup, and has not yet reached the C cup; the breast width is 12.5cm (5inch), and the breast convexity is 7.5cm (3inch).
  • Step 5 The user feeds the wearing condition of the corresponding size underwear to the server through the smart terminal;
  • the user purchases or customizes the underwear according to the recommended size.
  • the user feeds the wearing condition to the server through the smart terminal as a result of the fit, large size and small size of the user.
  • Step 6 The server performs optimization processing of the database according to the feedback information of the user.
  • the artificial intelligence includes machine learning, deep machine learning, multi-task learning; so-called optimization database It means that as the amount of user data increases, the database will be divided into more levels, resulting in more hierarchical databases; the increase or decrease of measurement parameters, or the modification of the weight of each parameter means that the current measurement parameter items will be adjusted according to the usage. And adjust the participation of each parameter in calculating the size.

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Abstract

一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,其通过用户智能终端将测量得到的胸部计量参数上传至服务端,服务端对该胸部计量参数进行分析、分类和匹配得到对应的内衣尺码,并将得到的内衣尺码发送到智能终端,以实现为用户提供精准的内衣尺码,该内衣尺码包括了背带长度、罩杯、乳房宽度和乳房凸度,方便用户选择更为合身的内衣。

Description

一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法 技术领域
本发明涉及一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法。
背景技术
女性内衣尺码规则1935年确立至今,促进工业化规模生产,满足大部分需求。该内衣尺码规则使得胸部测量及计算简化,减少杯型和款式的数量,但女性胸型千变万化,导致测量结果不准确,选码错误。
数年前调查结果发现,超过八成女性穿戴的内衣尺码不对。数字听起来很夸张。女性每天都在穿内衣,总会找到合身的内衣吧!事实上,从青春发育期、青年期、中老年期、老年期,整个生命周期来看,目前绝大多数女性都经历过或仍在经历着内衣尺码穿错的困惑。
虽然内衣背带采用弹性材料,长度测量方法简单,结合自己松紧偏好,用户可以自行调节,但内衣罩杯尺码不合身相当常见。主要表现:
(1)女性乳房形态各异,乳房体积接近,同样罩杯内衣,半球形或水滴形乳房用户合身;而圆盘状乳房的用户,乳房组织分布范围超出罩杯,导致部分乳房组织没有包含在罩杯内,同时,罩杯前端出现空杯现象;管状乳房或明显下垂乳房的用户,乳房组织受到内衣挤压,诱发乳腺疾病;
(2)女性乳房双侧大小不对称,常见于发育或遗传因素,疾病单侧完全或部分切除,测量尺码为双侧为平均值,导致一侧乳房受罩杯挤压,另一侧乳房空杯现象;
(3)女性乳房双侧高度不对称,通常测量的尺码偏大,罩杯对乳房的包裹性不够;
(4)中老年女性群体,普遍存在不同程度乳腺下垂,导致测量的尺码数值偏小,穿戴内衣罩杯偏小,致使部分乳房组织移位到腋下,腋窝局部软组织堆积,俗称'副乳'形成;
(5)乳房位于胸壁的相对位置:乳房一般位于胸壁的第2~6肋,同样体积的乳房,如果乳房附着位置偏上移,则视觉上显得偏大,如果乳房附着位置偏下移,则视觉上显得偏小,另外,乳房附着位置偏上移,胸大肌参与度大,乳房附着位置偏下移,胸大肌参与度小;
(6)不同品牌,尺码规格差异:不但有欧版、日版区别,品牌厂商不同,尺码也不尽相同,而用户购买时,因属贴身衣服,试穿又有限制,不太可能在各种状态下长时间试穿,进一步减少选对尺码概率;
(7)内衣尺码及杯型数据代表性不足:人群中选择一定数量的系列模特,进行测量、3D扫描,提取数据,设计内衣尺码及杯型系列。
造成女性内衣穿着不合身、选错尺码,根本原因在于1935年启用,并沿用至今的内衣测量、计量标准过于简陋,内衣设计生产者即便想制作更多尺码的内衣,也无更优的尺码参照体系。
鉴于以上,提出一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,纠正经典测量方案及表述方式之不足,实现女性个体化精准胸部测量,方便用户选择到更合身内衣。
发明内容
本发明的目的是提供一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,为用户提供胸部测量方案,以获得更为精准的内衣尺码,方便用户选择合身的内衣。
为实现上述目的,本发明采用的技术方案是,
一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,用户通过将测量得到的胸部计量参数上传至服务端,服务端对接收到的胸部计量参数进行分析,并将其与数据库矩阵进行匹配,匹配后得到的结果为对应的内衣尺码结果;所述胸部计量参数包括上胸围、下胸围、腋下胸围、腋下皮肤脂肪厚度、单侧乳房弧长及宽度、乳房凸度、乳房形态类别、体型指数BMI、乳房柔软度类别;所述数据库矩阵由腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI、乳房柔软度类别构建而成;所述内衣尺码为Lxy(z1:z2)Rxy(z1:z2),其中,L为左侧乳房,R为右侧乳房;x为背带长度;y为单侧罩杯型号;z1为单侧乳房宽度;z2为单侧乳房凸度,所述背带长度由下胸围参数确定,所述乳房宽度由乳房宽度参数确定,所述乳房凸度由乳房凸度参数确定,所述罩杯由上胸围、下胸围、乳房弧线长度确定后由数据库矩阵修正得到。
所述胸部计量参数还包括乳房的2D或3D照片,服务端对接收到的胸部计量参数进行分析时,服务端对乳房的2D或3D照片中的乳房的识别、增强、切割,与用户提交的乳房形态类别、体型类别进行比对分析,判断用户提交胸部参数的可信度,并校正参数。
其包括以下具体步骤:
步骤1、用户测量乳房下垂状态参数,并将下垂状态参数通过智能终端上传至服务端;
乳房下垂状态参数包括下垂和无下垂,当乳头的水平线高于乳房的下交界线时,乳房为无下垂;当乳头的水平线重合于或低于乳房的下交界线时,乳房为下垂;
步骤2、服务端根据用户提交的乳房下垂状态参数向用户发送其他需用户测量的胸部计量参数的测量方法,所述胸部计量参数包括上胸围、下胸围、腋下胸围、腋下皮肤脂肪厚度、单侧乳房弧长及宽度、乳房凸度、乳房形态类别、体型指数BMI、乳房柔软度类别;
当乳房下垂状态参数为无下垂时,
所述上胸围为站立位时,软尺过双侧乳头或胸部最突出点的平面,环绕人体躯干一周的周长;
所述下胸围为站立位时,软尺过双侧乳房下皱襞平面,环绕人体躯干一周的周长;
腋下胸围为站立位时,双手掐腰,软尺过双侧腋下平面,环绕人体躯干一周的周长;
腋下皮肤脂肪厚度为腋下腋中线与乳头水平线交界点,食指与拇指掐起局部全层皮肤及皮下软组织,测量获得的拇指与食指间距离;
单侧乳房弧长及宽度在测量时,单手由外侧向内侧推动乳房,获得乳房与前胸壁间组织分界线,单手由内侧向外侧推动乳房,获得乳房与侧胸壁间组织分界线,获取乳头水平线、乳房与前胸壁间组织分界线、乳房与侧胸壁间组织分界线交界点,测量过乳头的前述两个交界点间长度即为乳房弧长,前述两个交界点间直线距离即为乳房宽度;
乳房凸度指在轻度向前轻微牵拉状态下直接测量乳头基底部到胸壁的垂直距离;
乳房形态类别包括圆盘状、半球状、水滴状、圆锥状、管状、鸟嘴状;
乳房柔软度可以半定量评定,分为:非常柔软、柔软、适中、坚韧;
体型指数BMI由体重(Kg)/身高(m)的平方,其分别为偏瘦、标准、偏胖和肥胖,用以判断用户的身材;
当乳房下垂状态为下垂时,测量上胸围、下胸围、腋下胸围和单侧乳房弧长及宽度时,双手向上托起胸部进行测量;
步骤3、用户通过智能终端将测量得到的胸部计量参数上传至服务端,将上胸围、下胸围、腋下胸围、腋下皮肤脂肪厚度、单侧乳房弧长及宽度、乳房凸度、乳房形态类别、体型指数BMI、乳房柔软度类别参数上传到服务端,上传的各参数为多次测量的平均值;
步骤4,服务端对接受到的胸部计量参数进行分析,然后与数据库矩阵进行匹配,匹配得到的结果为对应的内衣尺码结果;
所述数据库矩阵由腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI、乳房柔软度类别构建而成;
服务端将用户提供的腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI以及乳房柔软度类别四个参数进行分析,接着将分析过后的腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI以及乳房柔软度类别与数据库矩阵中的数据进行匹配,根据匹配的结果调整罩杯的大小,得到最终的内衣尺码结果;
步骤5,服务端调取内衣尺码结果并发送到用户的智能终端;
用户获得的内衣尺码为Lxy(z1:z2)Rxy(z1:z2),其中,L左侧乳房,R右侧乳房;x背带长度;y单侧罩杯型号;z1单侧乳房宽度;z2单侧乳房凸度。
其还包括以下步骤:
步骤6、用户将相应尺码内衣的穿着情况通过智能终端反馈到服务端;
用户按照推荐尺码选购或定制内衣,实际穿着状况下,用户对内衣尺码穿着效果通过智能终端将该穿着情况反馈到服务端;
步骤7、服务端根据用户的反馈信息进行数据库的优化处理;
依据用户的反馈资料及用户测量参数数据,通过修改参数优化数据库。
本发明通过用户智能终端将测量得到的胸部计量参数上传至服务端,服务端对该胸部计量参数进行分析、分类和匹配得到对应的内衣尺码,并将得到的内衣尺码发送到智能终端,以实现为用户提供精准的内衣尺码,该内衣尺码包括了背带长度、罩杯、乳房宽度和乳房凸度,方便用户选择更为合身的内衣。
附图说明
图1为站立位上胸围、下胸围和腋下胸围测量示意图;
图2为站立位腋下皮肤脂肪厚度的测量示意图;
图3A为单侧乳房弧长和宽度测量示意图一;
图3B为单侧乳房弧长和宽度测量示意图二;
图3C为单侧乳房弧长测量示意图;
图3D为单侧乳房宽度测量示意图;
图4位卧位上胸围测量示意图;
图5位卧位单侧乳房弧长测量示意图;
图6位胸部下垂者上胸围测量示意图;
图7为胸部下垂者单侧乳房弧长测量示意图;
图8为乳房形态类别;
图9A为乳房不对称类别一;
图9B为乳房不对称类别二;
图9C为乳房不对称类别三;
图9D为乳房不对称类别四;
图9E为乳房不对称类别五;
图10A为乳房下垂示意图一;
图10B为乳房下垂示意图二;
图10C为乳房下垂示意图三;
图10D为乳房下垂示意图四;
图11为乳房凸度直接测量示意图;
图12为内衣尺码获得流程图;
图13为胸部计量参数处理流程图。
具体实施方式
为详尽本发明之技术内容、结构特征、所达成目的及功效,以下将例举实施例并配合说明书附图进行详细说明。
参照图1至图13所示,本发明揭示了一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,其通过用户智能终端将测量得到的胸部计量参数上传至服务端,服务端对该胸部计量参数进行分析、分类和匹配得到对应的内衣尺码,并将得到的内衣尺码发送到智能终端,以实现为用户提供精准的内衣尺码,该内衣尺码包括了背带长度、罩杯、乳房宽度和乳房凸度,方便用户选择更为合身的内衣。本发明的具体方法为:
步骤1、用户测量乳房下垂状态参数,并将下垂状态参数通过智能终端上传至服务端;
参照图10A至图10D所示,乳房下垂状态参数包括下垂和无下垂,当乳头的水平线1高于乳房的下交界线2时,乳房为无下垂;当乳头的水平线1重合于或低于乳房的下交界线2时,乳房为下垂。
步骤2、服务端根据用户提交的乳房下垂状态参数向用户发送其他需用户测量的胸部计量参数的测量方法,必要时,可以向用户发送测量示意图,使用户的测量能够更加直观;
用户需要测量的胸部计量参数包括上胸围、下胸围、腋下胸围、腋下皮肤脂肪厚度、单侧乳房弧长及宽度、乳房凸度、乳房形态类别、体型指数BMI、乳房柔软度类别以及乳房2D或3D图片。
用户在测量各个胸部计量参数时需除去上身衣物,从双脚平肩直站立位、身体躯干前倾位和平卧位中任选一个体位进行测量。对于乳房无下垂者,可以参照图1至图5所示自行测量或者由他人协助测量;对于如图10A至图10D所示的乳房下垂者,参照图6和图7所示,用户需双手托举乳房至乳房下垂部分全部高于乳房下皱襞,由他人协助完成测量。
参照图1,站立位时,采用软尺测量上胸围,软尺需过双侧乳头或胸部最突出点的平面,环绕人体躯干一周,所得的周长即为上胸围;站立位测量下胸围时,软尺过双侧乳房下皱襞平面,环绕人体躯干一周,所得到的周长即为下胸围;站立位测量腋下胸围时,双手掐腰,软尺需过双侧腋下平面,环绕人体躯干一周,得到的周长即为腋下胸围。腋下胸围用于判断胸部肌肉发育情况,以及制作乳房全包包裹的胸罩参数。
上胸围、下胸围和腋下胸围在饱餐后或最大幅度深吸气末为极大值,空腹或最大幅度呼气末为极小值。但在实际测量过程中,上胸围、下胸围和腋下胸围均应当以进餐后2小时,均匀呼吸状态测量值为准。
图2为腋下皮肤脂肪厚度的测量示意图,如图2所示,腋下皮肤脂肪厚度指腋下腋中线与乳头水平线交界点处,食指与拇指掐起局部全层皮肤及皮下软组织,测量获得的拇指与食指间距离。
图3A-图3D为单侧乳房弧长和宽度测量示意图,测量时,单手由外侧向内侧推动乳房,获得乳房与前胸壁间组织分界线3,单手由内侧向外侧推动乳房,获得乳房与侧胸壁间组织分界线4,获取乳头水平线、乳房与前胸壁间组织分界线3、乳房与侧胸壁间组织分界线4交界点,测量过乳头的前述两个交界点间长度即为乳房弧长,前述两个交界点间直线距离即为乳房宽度。测量单侧乳房弧长、乳房宽度,结合乳房形态,可以获得近似乳房的体积,获得乳房体积可以衡量隆乳术或缩乳术效果、减肥或增肥效果、乳房肿瘤或脓肿的增长速度,或指导选择罩杯,而单侧乳房弧长、乳房宽度可以借助日常软尺即可完成测量
图11为乳房凸度直接测量示意图,所述乳房凸度指在轻度向前轻微牵拉状态下直接测量乳头基底部到胸壁的垂直距离。
参照图8所示,所述乳房形态类别包括圆盘状、半球状、水滴状、圆锥状、管状、鸟嘴状,该乳房形态可由用户自行判断提交。
所述乳房柔软度可以半定量评定,比如分为:非常柔软、柔软、适中、坚韧。
体型指数BMI由体重(Kg)/身高(m)的平方,判断用户的身材苗条或肥胖。
步骤2、用户通过智能终端将测量得到的胸部计量参数上传至服务端。
用户将测量得到的胸部计量参数输入到手机、电脑等智能终端上,并通过智能终端将这些数据传送给服务端,上传的参数可以是多次测量的平均值。例如在实际应用中,每一个参数值都测量三遍,然后将三次测量值的平均值通过智能终端上传至服务端,也可以是每个参数测量三次并将三次的测量值均通过智能终端上传至服务端,由服务端取其平均值。
步骤3,服务端对接受到的胸部计量参数进行分析并分类,然后与数据库矩阵进行匹配,匹配得到的结果为对应的内衣尺码结果。
所述数据库矩阵由腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI、乳房柔软度类别组成;该数据库矩阵由收集散布于各类文献可信度较高的相应类别人群的实际测量数值构建;所述实际测量数值也包括用户通过智能终端提交到服务端的实测数据;所述各类文献可信度由文献权威性、数据样本量大小、人类种群国家多样性确定。
内衣尺码包含了背带长度、罩杯、乳房宽度和乳房凸度,背带长度由用户提供的下胸围参数确定,罩杯由用户提供的上胸围参数、下胸围、乳房弧线长参数共同确定,而乳房宽度则由用户提供的乳房宽度确定,乳房凸度由用户提供的乳房凸度参数确定。其中,罩杯间隔由2.54厘米或1英寸,调整为1.27厘米或0.5英寸,罩杯大小仍用ABCDEFGHI表示,但可以出现半码。
服务端将用户提供的腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI以及乳房柔软度类别四个参数进行分析。当用户提交乳房的2D或3D照片时,服务端对2D、3D照片中目标乳房的识别、增强、切割,与用户提交的测量资料,比如乳房形态类别、体型类别、有无下垂及下垂程度、有无胸部畸形,进行比对分析,判断用户提交胸部参数的可信度,并校正参数。
接着将分析过后的腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI以及乳房柔软度类别与数据库矩阵中的数据进行匹配,根据匹配的结果修正调整罩杯的大小,得到最终的内衣尺码结果。
腋下皮肤脂肪厚度反映了胸部、背部脂肪厚度,脂肪层厚不超过1英寸,则采用常规算法,达到1英寸以上,每超过1英寸的用户,背带长度可以适当缩短1英寸、罩杯尺码增加半码。不影响用户穿着舒适性的前提下,增加内衣的包裹效果,减少运动中乳房的大幅度移动。
所述乳房柔软度可以半定量评定,比如分为:非常柔软、柔软、适中、坚韧。乳房柔软度由乳房成分比例决定,以脂肪组织为主,则柔软,以乳腺组织为主,则坚韧。脂肪组织为主的用户,罩杯尺码可以适当缩小,乳腺组织为主的用户,罩杯尺码可以适当增大,达到不影响用户穿着舒适性的前提下,增加内衣的包裹效果,减少运动中乳房的大幅度移动。
步骤4,服务端调取内衣尺码结果并发送到用户的智能终端。
服务端调取对应的内衣尺码结果发给用户智能终端时,可以发送一些必要提示。必要提示包括对异常结果警示,提醒用户重新测量,或个性化定制内衣的建议,或咨询内衣设计专家、整形外科专家。
如图9A至图9E所示,用户获得的内衣尺码为Lxy(z1:z2)Rxy(z1:z2),其中,L为左侧乳房,R为右侧乳房;x为背带长度;y为单侧罩杯型号;z1为单侧乳房宽度;z2为单侧乳房凸度。当双侧乳房不对称时,内衣尺码结果中的左右侧尺寸分别表述,内衣尺码结果可以选用cm或者inch两种单位表示。
例如75B(15:7.5)/32B(6:3),表明左右双侧乳房大小形态接近。75B(15:7.5),单位厘米,背带长度75cm,B罩杯,乳房宽度15cm,乳房凸度7.5cm;32B(6:3),单位英寸,背带长度32inch,B罩杯,乳房宽度6inch,乳房凸度3inch。
L75A(12.5:5.0)R75D(17.5:10.0)/L32A(5:2)R32D(7:4),表明双侧乳房不对称。L75A(12.5:5.0)R75D(17.5:10.0),单位厘米,背带长度75cm,L左侧乳房A罩杯,乳房宽度12.5cm,乳房凸度5.0cm,R右侧乳房D罩杯,乳房宽度17.5cm,乳房凸度10.0cm。L32A(5:2)R32D(7:4),单位英寸,背带长度32inch,L左侧乳房A罩杯,乳房宽度5inch,乳房凸度2inch,R右侧乳房D罩杯,乳房宽度7inch,乳房凸度4inch。
72.5B+(12.5:7.5)/31B+(5:3),表明左右双侧乳房大小形态接近。背带长度72.5cm(31inch);B+表明罩杯尺寸比B杯大,尚未达到C杯;乳房宽度12.5cm(5inch),乳房凸度7.5cm(3inch)。
步骤5、用户将相应尺码内衣的穿着情况通过智能终端反馈到服务端;
用户按照推荐尺码选购或定制内衣,实际穿着状况下,用户对尺码合身、偏大、偏小的结果,通过智能终端将该穿着情况反馈到服务端。
步骤6、服务端根据用户的反馈信息进行数据库的优化处理。
依据用户的反馈资料及用户测量参数数据,借助人工智能,优化数据库,或增减测量参数,或修改各个参数的权重;所述人工智能包括机器学习、深度机器学习、多任务学习;所谓优化数据库指随着用户数据量增大,数据库将划分更多的层级,产生更多的分层数据库;所述增减测量参数,或修改各个参数的权重指依据使用情况,将调整目前的测量参数项目,并调整各个参数在计算尺码时参与度。
以上所述,仅是本发明实施例而已,并非对本发明的技术范围作任何限制,故凡是依据本发明的技术实质对以上实施例所作的任何细微修改、等同变化与修饰,均仍属于本发明技术方案的范围内。

Claims (4)

  1. 一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,其特征在于:用户通过将测量得到的胸部计量参数上传至服务端,服务端对接收到的胸部计量参数进行分析,并将其与数据库矩阵进行匹配,匹配后得到的结果为对应的内衣尺码结果;所述胸部计量参数包括上胸围、下胸围、腋下胸围、腋下皮肤脂肪厚度、单侧乳房弧长及宽度、乳房凸度、乳房形态类别、体型指数BMI、乳房柔软度类别;所述数据库矩阵由腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI、乳房柔软度类别构建而成;所述内衣尺码为Lxy(z1:z2)Rxy(z1:z2),其中,L为左侧乳房,R为右侧乳房;x为背带长度;y为单侧罩杯型号;z1为单侧乳房宽度;z2为单侧乳房凸度,所述背带长度由下胸围参数确定,所述乳房宽度由乳房宽度参数确定,所述乳房凸度由乳房凸度参数确定,所述罩杯由上胸围、下胸围、乳房弧线长度确定后由数据库矩阵修正得到。
  2. 根据权利要求1所述的一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,其特征在于:所述胸部计量参数还包括乳房的2D或3D照片,服务端对接收到的胸部计量参数进行分析时,服务端对乳房的2D或3D照片中的乳房的识别、增强、切割,与用户提交的乳房形态类别、体型类别进行比对分析,判断用户提交胸部参数的可信度,并校正参数。
  3. 根据权利要求1或2所述的一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,其特征在于:其包括以下具体步骤:
    步骤1、用户测量乳房下垂状态参数,并将下垂状态参数通过智能终端上传至服务端;
    乳房下垂状态参数包括下垂和无下垂,当乳头的水平线高于乳房的下交界线时,乳房为无下垂;当乳头的水平线重合于或低于乳房的下交界线时,乳房为下垂;
    步骤2、服务端根据用户提交的乳房下垂状态参数向用户发送其他需用户测量的胸部计量参数的测量方法,所述胸部计量参数包括上胸围、下胸围、腋下胸围、腋下皮肤脂肪厚度、单侧乳房弧长及宽度、乳房凸度、乳房形态类别、体型指数BMI、乳房柔软度类别;
    当乳房下垂状态参数为无下垂时,所述上胸围为站立位时,软尺过双侧乳头或胸部最突出点的平面,环绕人体躯干一周的周长;
    所述下胸围为站立位时,软尺过双侧乳房下皱襞平面,环绕人体躯干一周的周长;
    腋下胸围为站立位时,双手掐腰,软尺过双侧腋下平面,环绕人体躯干一周的周长;
    腋下皮肤脂肪厚度为腋下腋中线与乳头水平线交界点,食指与拇指掐起局部全层皮肤及皮下软组织,测量获得的拇指与食指间距离;
    单侧乳房弧长及宽度在测量时,单手由外侧向内侧推动乳房,获得乳房与前胸壁间组织分界线,单手由内侧向外侧推动乳房,获得乳房与侧胸壁间组织分界线,获取乳头水平线、乳房与前胸壁间组织分界线、乳房与侧胸壁间组织分界线交界点,测量过乳头的前述两个交界点间长度即为乳房弧长,前述两个交界点间直线距离即为乳房宽度;
    乳房凸度指在轻度向前轻微牵拉状态下直接测量乳头基底部到胸壁的垂直距离;
    乳房形态类别包括圆盘状、半球状、水滴状、圆锥状、管状、鸟嘴状;
    乳房柔软度可以半定量评定,分为:非常柔软、柔软、适中、坚韧;
    体型指数BMI由体重(Kg)/身高(m)的平方,其分别为偏瘦、标准、偏胖和肥胖,用以判断用户的身材;
    当乳房下垂状态为下垂时,测量上胸围、下胸围、腋下胸围和单侧乳房弧长及宽度时,双手向上托起胸部进行测量;
    步骤3、用户通过智能终端将测量得到的胸部计量参数上传至服务端,将上胸围、下胸围、腋下胸围、腋下皮肤脂肪厚度、单侧乳房弧长及宽度、乳房凸度、乳房形态类别、体型指数BMI、乳房柔软度类别参数上传到服务端,上传的各参数为多次测量的平均值;
    步骤4,服务端对接受到的胸部计量参数进行分析,然后与数据库矩阵进行匹配,匹配得到的结果为对应的内衣尺码结果;
    所述数据库矩阵由腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI、乳房柔软度类别构建而成;
    服务端将用户提供的腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI以及乳房柔软度类别四个参数进行分析,接着将分析过后的腋下皮肤脂肪厚度、乳房形态类别、体型指数BMI以及乳房柔软度类别与数据库矩阵中的数据进行匹配,根据匹配的结果调整罩杯的大小,得到最终的内衣尺码结果;
    步骤5,服务端调取内衣尺码结果并发送到用户的智能终端;
    用户获得的内衣尺码为Lxy(z1:z2)Rxy(z1:z2),其中,L左侧乳房,R右侧乳房;x背带长度;y单侧罩杯型号;z1单侧乳房宽度;z2单侧乳房凸度。
  4. 根据权利要求3所述的一种人体胸部尺寸测量计量方法、内衣尺码选择及实现方法,其特征在于:其还包括以下步骤:
    步骤6、用户将相应尺码内衣的穿着情况通过智能终端反馈到服务端;
    用户按照推荐尺码选购或定制内衣,实际穿着状况下,用户对内衣尺码穿着效果通过智能终端将该穿着情况反馈到服务端;
    步骤7、服务端根据用户的反馈信息进行数据库的优化处理;
    依据用户的反馈资料及用户测量参数数据,通过修改参数优化数据库。
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