CN201782750U - Network monitoring system for jaundice of newborn - Google Patents
Network monitoring system for jaundice of newborn Download PDFInfo
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- CN201782750U CN201782750U CN2010202225844U CN201020222584U CN201782750U CN 201782750 U CN201782750 U CN 201782750U CN 2010202225844 U CN2010202225844 U CN 2010202225844U CN 201020222584 U CN201020222584 U CN 201020222584U CN 201782750 U CN201782750 U CN 201782750U
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- jaundice
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Abstract
The utility model belongs to the field of medical instruments, in particular to a network monitoring system for jaundice of the newborn, which comprises a camera, a light shield, a computer, an external network and a remote image analysis terminal, wherein the camera connected with the light shield is used for shooting the skin image of the newborn and transmitting the skin image to the computer; and the computer is connected to the remote image analysis terminal via the external network for performing color analysis to the skin image of the newborn, so to confirm the degree of the jaundice. As the tools adopted in the system, such as the household computer, the color network camera with an illuminating lamp, the external Internet and other equipment including the light shield and the remote image analysis terminal, have already been widely used in the current society, the network monitoring system for the jaundice of the newborn system has strong universality and provides practical screening method for early finding the children patients with pathological jaundice.
Description
Technical field
This utility model belongs to medical instruments field, particularly a kind of neonatal jaundice network monitoring system.
Background technology
Neonate is in postnatal a period of time, owing to hyperbilirubinemia causes neonatal jaundice, clinical its skin that mainly shows as is gradually by xanthochromia, xanthochromia disappears gradually and changes again the normal colour of skin experiencing certain hour and acquiring a certain degree afterwards, the jaundice of most neonate experience is the physiologic jaundice process, and the minorities is the pathological jaundice process.Recent two decades comes, and increases trend gradually along with domestic birth weight is, and particularly is under the situation that increases trend gradually cuing open the palace productive rate, and neonatal jaundice is degree and increases the weight of trend with time lengthening, and the sickness rate of pathological jaundice obviously increases.Usually time that institute observes of staying to be cured after the neonate birth is 2~7 days, the doctor is by range estimation monitoring or instrument monitoring newborn skin xanthochromia situation therebetween, can in time find the part the pathological jaundice infant, but most of pathological jaundice infant be leave hospital the back or owing to the xanthochromia persistent period long the xanthochromia degree is also overweight or disappear after take place once again to be found.Up to now, still the monitoring instrument or the monitoring apparatus that do not have neonatal jaundice for household use, institute's external monitor of neonatal jaundice only only relies on neonate father and mother or ward's visual observations, and this observation overwhelming majority is that non-medical staff is implemented under inexperienced situation, it is later to cause the pathological jaundice infant to be found, or causes neonate father and mother or the unnecessary fear of ward.
The utility model content
The purpose of this utility model is to provide a kind of neonatal jaundice network monitoring system, borrows it to be convenient to implement the neonatal jaundice monitoring in family, helps in time finding the pathological jaundice infant.
This utility model solves the problems of the technologies described above the technical scheme that is adopted: this neonatal jaundice network monitoring system is characterized in that: comprise photographic head, shade, computer, external network and remote image analysing terminal; Described photographic head is connected with shade, be used to take the newborn skin image, photographic head transfers to computer with the newborn skin image of taking, described computer expert crosses external network and is connected to the remote image analysing terminal, the newborn skin image that receives can be transferred to the remote image analysing terminal by means of computer, described remote image analysing terminal will carry out color analysis to the newborn skin image that receives, with definite neonatal jaundice degree, but by means of the feedback information of described computer receiving remote graphical analysis terminal to the newborn skin graphical analysis; Described photographic head is the colored IP Camera that has illuminating lamp; Described shade can be set to cup-shaped form, its upper end is an open mouthful of end, can constitute tight lighttight reversibility with photographic head and be connected and the camera lens and the illuminating lamp shade thereof of photographic head are gone in it, its lower end is a blind end, is provided with water white printing opacity screen in the lower end centre; The blind end of described shade can be set to be the form of dome shape, and it is outstanding and other parts are plane form also can be set to printing opacity screen place; The printing opacity screen of described shade is drawn materials and is water white hard material, and the drawing materials of other parts of shade except that the printing opacity screen is opaque hard material, and its inwall color is set to black or white; The outer surface of described shade blind end except that printing opacity screen zone, can attach one deck and have elasticity and lighttight shading cushion; Described shade also can be set to form in a tubular form, and its upper end be an open mouthful of end, can constitute tight lighttight reversibility with photographic head and be connected and the camera lens and the illuminating lamp shade thereof of photographic head are gone in it, and its lower end be that the opening mouth is held; Can attach one deck around the open mouthful of end periphery in described shade lower end and have elasticity and lighttight shading cushion; Described photographic head is connected with computer by lead or bluetooth; Described external network is the INTERNET network; The illuminating lamp of described photographic head is a 1-10 white LED lamp, or is annular white LED lamp, and illuminating lamp set is by cam lens week, or set in cam lens on one side; Be mounted with the image color analysis software in the described remote image analysing terminal.
The principle that is provided with of the present utility model: in neonatal jaundice monitoring field, existing technology has three kinds, one is for implementing monitoring or diagnosis by the check to neonate blood sample content of bilirubin to jaundice, and it is for differentiating the technology of making a definite diagnosis of physiologic jaundice and pathological jaundice; It is two for implementing monitoring or diagnosis to the newborn skin optical detection to jaundice by percutaneous jaundice monitoring instrument, and it is for differentiating the examination technology of physiologic jaundice and pathological jaundice; It three implements monitoring for by people's naked eyes newborn skin being observed to jaundice, and it is for differentiating the examination technology of physiologic jaundice and pathological jaundice.Percutaneous jaundice monitoring instrument is to realize that according to newborn skin xanthochromia degree physical optics quantizes the instrument that detects, it detects numerical value and neonate blood sample content of bilirubin has good corresponding relation, by people's naked eyes jaundice is implemented monitoring, be subjected to the subjective experience restriction bigger, substantially can not be in family's application implementation.This utility model combines with shade by photographic head and the skin of neonate body surface specific region is implemented dynamic shooting and monitoring, it has got rid of the interference effect of ambient light to aforementioned areas skin, the same IP Camera of selecting for use same producer to make is implemented to take, got rid of the difference of taking on the equipment, again by controlling the concordance of shade intraoral illumination light source, make the picture of the captured same regional skin of different date or times, on color change, has dynamic comparability, by the color analysis software of settling in the remote image analysing terminal, as red, blue, green three primary colors saturation analysis software, color to aforementioned picture carries out quantitative analysis, draws the quantification judged result of xanthochromia degree thus.Clinical research shows: this utility model monitoring method is by surveying the comparison of numerical value with some neonates body surface specific region skin percutaneous jaundice monitoring instrument, and in conjunction with neonate blood sample content of bilirubin test value, set up the examination of the xanthochromia degree color quantization analysis of this utility model monitoring method and judged numerical value, the effective percentage of its examination can reach 96%.
Shading of the present utility model is covered with two kinds form is set, it is to be in the printing opacity screen at outstanding position to push the skin of neonate body surface specific region by this hard transparent and in the lower end with certain dynamics that there is the form of printing opacity screen the lower end, the blood in skin and the subcutaneous tissue being extruded as far as possible, with picture shot will get rid of the influence of blood substantially to the colour of skin; The lower end is that the form of opening port end is captured neonate body surface specific region skin and subcutaneous tissue not to be applied the effect of pushing, with picture shot will not get rid of the influence of blood to the colour of skin.Clinical research shows: with these the two kinds shade shot picture that form is set, analytically can set up examination respectively in color quantization and judge numerical value, and all can reach the examination purpose.
Using method of the present utility model: when this utility model uses, to get the same body surface of neonate specific region skin in the same time of every day dynamically takes, as get neonate forehead or buccal skin, skin of chest, the palm of the hand or arch of the foot skin etc. are located to take, also can choose 2~3 place body surface specific region skin simultaneously dynamically takes, when using the lower end to implement to take as the shade of printing opacity screen, the operator should push this lower end on skin with certain dynamics, because the printing opacity screen is in the most outstanding part in the lower end, it is the most obvious that it presses down the skin dynamics, the lower end other parts are also covered the ambient light directive printing opacity screen in the certain zone of printing opacity screen periphery because of having certain dynamics to contact with skin, and the shading cushion of Tie Fuing then helps strengthening this screening effect thereon; Equally when using the lower end to implement to take for the shade of open mouthful of end, the operator should be with this lower end with less dynamics by being pressed on the skin, cover ambient light and inject in the shade owing to this opening mouth end periphery and skin contact ringwise, the shading cushion that connects in its periphery then helps strengthening this screening effect.The operator determines that by the newborn skin photographic images that observation is presented on the computer monitor ambient light is covered situation and whether the dynamics of pushing is suitable, implement to take pictures in good time, pictures taken is sent to the remote image analysing terminal with the form of Email, using the color analysis software of settling in it in the operator of remote image analysing terminal carries out color analysis and judges the numerical value comparison with examination aforementioned picture, then feedback information is sent to aforementioned computer with the form of Email, to inform the examination judged result.
The beneficial effects of the utility model: household type computer and the external equipment thereof of the utensil that system of the present utility model relied on for being widely used now---have the colored IP Camera of illuminating lamp, exterior I NTERNET network, miscellaneous equipment comprises shade and remote image analysing terminal, former structure is simple and with low cost, the latter is the computer as the household type computer, be mounted with color analysis software in it, whole system has social widespread usage and characteristic of simple structure, use that photographic head and shade are implemented the shooting operation of neonate body surface specific region skin and be simple and easy to do the transmit operation that pictures taken is sent to specified remote image analysing terminal, the color analysis of captured picture can be concentrated by the remote image analysing terminal of special setting and implement analyzing and processing, make this monitoring system have the feasibility of social extensive use thus, neonatal jaundice can be accessed than the more professional and quantized monitoring support of neonate father and mother or ward's simple range estimation, for the timely pathological jaundice infant of finding provides practical examination means, also avoided neonate father and mother or ward simultaneously because of worrying that neonatal jaundice increases the weight of to go to hospital to receive the inconvenience of percutaneous jaundice monitoring instrument mensuration or the check of blood sample content of bilirubin with neonate.
Description of drawings
Fig. 1 is the system architecture figure of the neonatal jaundice network monitoring system that proposes of this utility model.
Fig. 2 is a kind of structural representation of this utility model cup-shaped form shade.
Fig. 3 is a kind of structural representation of this utility model cup-shaped form shade.
Fig. 4 is a kind of structural representation of this utility model cup-shaped form shade.
Fig. 5 is a kind of structural representation of this utility model cup-shaped form shade.
Fig. 6 is a kind of structural representation of this utility model tubular form shade.
Fig. 7 is a kind of structural representation of this utility model tubular form shade.
The specific embodiment
Claims (11)
1. the neonatal jaundice network monitoring system is characterized in that: comprise photographic head, shade, computer, external network and remote image analysing terminal; Described photographic head is connected with shade, be used to take the newborn skin image, photographic head transfers to computer with the newborn skin image of taking, described computer expert crosses external network and is connected to the remote image analysing terminal, the newborn skin image that receives can be transferred to the remote image analysing terminal by means of computer, described remote image analysing terminal will carry out color analysis to the newborn skin image that receives, with definite neonatal jaundice degree, but by means of the feedback information of described computer receiving remote graphical analysis terminal to the newborn skin graphical analysis.
2. neonatal jaundice network monitoring system according to claim 1 is characterized in that: described photographic head is the colored IP Camera that has illuminating lamp.
3. neonatal jaundice network monitoring system according to claim 1, it is characterized in that: described shade can be set to cup-shaped form, its upper end is an open mouthful of end, can constitute tight lighttight reversibility with photographic head is connected and the camera lens and the illuminating lamp shade thereof of photographic head is gone in it, its lower end is a blind end, is provided with water white printing opacity screen in the lower end centre.
4. neonatal jaundice network monitoring system according to claim 3 is characterized in that: the blind end of described shade can be set to be the form of dome shape, and it is outstanding and other parts are plane form also can be set to printing opacity screen place.
5. neonatal jaundice network monitoring system according to claim 3 is characterized in that: the printing opacity screen of described shade is drawn materials and is water white hard material, and the drawing materials of other parts of shade except that the printing opacity screen is opaque hard material.
6. neonatal jaundice network monitoring system according to claim 3 is characterized in that: the outer surface of described shade blind end except that printing opacity screen zone, can attach one deck and have elasticity and lighttight shading cushion.
7. neonatal jaundice network monitoring system according to claim 1, it is characterized in that: described shade also can be set to form in a tubular form, its upper end is an open mouthful of end, can constitute tight lighttight reversibility with photographic head and be connected and the camera lens and the illuminating lamp shade thereof of photographic head are gone in it, its lower end is an open mouthful of end.
8. neonatal jaundice network monitoring system according to claim 7 is characterized in that: can attach one deck around the open mouthful of end periphery in described shade lower end and have elasticity and lighttight shading cushion.
9. neonatal jaundice network monitoring system according to claim 1 is characterized in that: described photographic head is connected with computer by lead or bluetooth.
10. neonatal jaundice network monitoring system according to claim 1 is characterized in that: described external network is the INTERNET network.
11. neonatal jaundice network monitoring system according to claim 2, it is characterized in that: the illuminating lamp of described photographic head is a 1-10 white LED lamp, or be annular white LED lamp, illuminating lamp set is by cam lens week, or set is in cam lens on one side.
Priority Applications (1)
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CN2010202225844U CN201782750U (en) | 2010-06-11 | 2010-06-11 | Network monitoring system for jaundice of newborn |
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CN2010202225844U CN201782750U (en) | 2010-06-11 | 2010-06-11 | Network monitoring system for jaundice of newborn |
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CN201782750U true CN201782750U (en) | 2011-04-06 |
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CN2010202225844U Expired - Fee Related CN201782750U (en) | 2010-06-11 | 2010-06-11 | Network monitoring system for jaundice of newborn |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105466864A (en) * | 2015-12-30 | 2016-04-06 | 中国科学院苏州生物医学工程技术研究所 | Icteric sclera detector based on colorimetric analysis |
CN107928630A (en) * | 2017-12-05 | 2018-04-20 | 河北医科大学第三医院 | A kind of portable multi-function icterometer compared based on color |
-
2010
- 2010-06-11 CN CN2010202225844U patent/CN201782750U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105466864A (en) * | 2015-12-30 | 2016-04-06 | 中国科学院苏州生物医学工程技术研究所 | Icteric sclera detector based on colorimetric analysis |
CN107928630A (en) * | 2017-12-05 | 2018-04-20 | 河北医科大学第三医院 | A kind of portable multi-function icterometer compared based on color |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20110406 Termination date: 20120611 |