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CN201469469U - Horseshoe varus orthotic device - Google Patents

Horseshoe varus orthotic device Download PDF

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Publication number
CN201469469U
CN201469469U CN2009201728379U CN200920172837U CN201469469U CN 201469469 U CN201469469 U CN 201469469U CN 2009201728379 U CN2009201728379 U CN 2009201728379U CN 200920172837 U CN200920172837 U CN 200920172837U CN 201469469 U CN201469469 U CN 201469469U
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CN
China
Prior art keywords
ankle
heel member
equinovarus
sole
orthopedic device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2009201728379U
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Chinese (zh)
Inventor
万珏
郭培全
张坤
夏文磊
高山山
杨永强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Paralympic Supplies Appliances Service Department Of Beijing Jishuitan Xinxing Medical Technology Co Ltd
Original Assignee
Paralympic Supplies Appliances Service Department Of Beijing Jishuitan Xinxing Medical Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Paralympic Supplies Appliances Service Department Of Beijing Jishuitan Xinxing Medical Technology Co Ltd filed Critical Paralympic Supplies Appliances Service Department Of Beijing Jishuitan Xinxing Medical Technology Co Ltd
Priority to CN2009201728379U priority Critical patent/CN201469469U/en
Application granted granted Critical
Publication of CN201469469U publication Critical patent/CN201469469U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a horseshoe varus orthotic device, which comprises a sole part, a heel part and an ankle part, wherein the sole part is connected with the ankle part through a connection piece, and the sole part can rotate at a given angle in the axial direction along the heel part through the connection piece. Two sides of the sole part and the ankle part are respectively connected with each other through an ankle joint hinge, and the ankle part can rotate in the axial direction at a given angle along the heel part through the ankle joint hinge; and a towing belt is respectively fixed at two sides on the front part of the sole part, and the other end of the towing belt is fixed on the ankle part, and the length of the towing belt can be adjusted. Different orthotic progresses can be adjusted during the arthotic treatment period. By screwing a reversing-thread connection rod and combining the axial rotation of the connecting piece, the sole part of the orthotic device can be unfolded outwards to a given angle so as to the inward-folding malformation of the front sole. By adjusting the connection distance of the towing belt, the dorsiflexion angle of the ankle joint of the orthotic device can be further adjusted.

Description

The equinovarus orthopedic device
Technical field
This utility model relates to a kind of orthosis, and specifically a kind of orthosis that is used for the treatment of equinvoarus belongs to medical instruments field.
Background technology
Children's's equinvoarus is clinical modal children's's foot deformity, be characterized in receiving in the sufficient first half, in turn over, turn in the calcaneus, the sole of the foot is bent, contracture of Achilles tendon is Horse hoof deformity etc.The neonate sickness rate is 1 ‰~4.5 ‰, and is one-sided more than bilateral.This old complaint can be divided into congenital, posteriority according to pathogenic factor; Can find deformity after the congenital talipes equinovarus birth, therefore diagnosis is not difficult; The posteriority equinvoarus generally can be caused by diseases such as cerebral palsy, spina bifida, wounds.
Have according to the method for age and degree of deformity treatment equinvoarus clinically at present: 1, manual correction method, generally at 6 months with interior or light-dutyer person, utilize massage manipulation to correct in the Forefoot earlier and receive, correct in the astragalus hypozygal again and turn over, the Plantar that corrects ankle joint then bends.Maneuver should be soft, in order to avoid the damage epiphysis.The method for the day after tomorrow equinvoarus or older infant inapplicable.2, the tubular external fixation corrective method of Gypsum Fibrosum: be adapted to year old infant in March to 1, the method is by plaster fixation, keeps foot to stretch the state of abduction in being in.The defective of the method is an inconvenient operation, need change Gypsum Fibrosum per 2 to March one time, because plaster fixation is difficult to observe, is difficult to guarantee that the infant foot is in the back of the body always and stretches the state of abduction simultaneously.3, operative treatment: generally be divided into rear side soft tissue release art in the foot, sufficient mixed lateral column desmopyknosis or triple arthrodesis.As everyone knows, so long as operation just has certain risk, and can bring psychological fear and physiological misery to infant, general infant situation is not very serious, and the doctor seldom selects operative treatment.
At the defective of above-mentioned prior art, those skilled in the art are devoted to study the orthosis at equinvoarus always.Original orthosis is an integrative-structure, is the plastic construction of one from sole to ankle top, and the defective of this structure has a lot, and fixing such as being difficult for, orthopedic effect is not good etc.For the previous period, those skilled in the art propose a kind of equinovarus orthopedic footwear, and it is wide at two ends, the anterior setting-in clamping plate of dumbbell shape shoes body that waist is narrow, and this shoes body front end is long to be adapted to sole length, and the front end both sides are combined with locker.Be provided with traction belt between shoes body rear end and the front end.The foot palm part of infant is contained in front end, and fastens by locker.The rear end is coated on the lower limb fastens.Traction belt is tied a knot mutually and is fastened to adjust the distance between sole and the lower limb.The advantage of this structure is to treat more flexible, convenience compared to prior art.Its defective is can only determine the degree of tightness that shoes body front end and foot coat by locker, but can not adjust the angle of footwear, we know, the pes varus of infant needs in the course of treatment to change RA according to the state of an illness correcting at any time, this orthopedic shoe can not be accomplished to adjust at any time, so treatment cycle is short, as wants to remedy this problem, need do the orthopedic shoe of a lot of models, cost is too high.Another problem is, this orthopedic shoe is made the heel hole at the rear heel position, and this design is not quite reasonable, and heel portion is main force part in active procedure, and the heel hole makes the infant dress uncomfortable easily.A problem is again, and this orthopedic shoe traction belt is fixed by the frenulum mode, is easy to become flexible in orthopedic process, need often tighten, and uses trouble.
In sum, be badly in need of at present a kind ofly can remedying above-mentioned prior art problems, the time easy to use, the equinovarus orthopedic device that orthopedic effect is good.
The utility model content
It is a kind of easy to use, simple in structure that the purpose of this utility model is to provide, and can adjust the equinovarus orthopedic device of treatment angle at any time.
In order to achieve the above object, this utility model adopts following concrete technical scheme:
A kind of equinovarus orthopedic device, described orthosis comprise sole parts, heel member and ankle upper-part; Connect by brace between described sole parts and the heel member, described sole parts can be by this brace around heel member certain angle axial rotation.Described heel member is connected by the ankle joint hinge respectively with ankle upper-part both sides, and described ankle upper-part can center on heel member axial rotation at an angle by the ankle joint hinge; Sole parts front part sides is fixed a traction belt respectively, and the traction belt other end is fixed on the ankle upper-part, and scalable length.
Described sole component shape and human body foot palm part shape adapt, and ankle upper-part and human body ankle shaped upper part adapt, and heel member and human body heel portion shape adapt.Be connected by riveted joint between described brace and sole parts and the heel member.Be connected by riveted joint between ankle joint hinge and heel member and the ankle upper-part.The heel member internal fixation has cover in the foot, and cover is made for cortical material in this foot, and the front portion can be set to tether construction.
Above-mentioned equinovarus orthopedic device comprises that also a positive and negative spiral shell links extension bar, and this connecting rod is individually fixed on the sole parts and heel member of the same side.This positive and negative spiral shell links extension bar and is made up of the swivel nut that is individually fixed in plus thread screw rod, the left-hand thread screw rod on sole parts and the heel member and be set on its two.Two ends and sole parts are equipped with velcro about the described ankle upper-part.Traction belt one end is fixed in sole parts front portion, and this traction belt other end is provided with apart from the hole, but snapping is fixed on the staple of ankle upper-part setting.
Advantage of the present utility model and beneficial effect are:
1. the design of this utility model sole parts, heel member and ankle upper-part, and by making brace and being connected of ankle joint hinge whole orthosis to do suitable adjustment according to the lopsided situation of infant foot.And can in the orthopedic course of treatment, adjust accordingly different orthopedic progresses.Link the axial rotation of extension bar by screwing positive and negative spiral shell, can make orthosis sole parts abduction at an angle, to correct the interior receipts deformity of forefoot in conjunction with brace.By adjusting traction belt snapping distance, can further adjust this orthotic ankle dorsal flexion angle.
2. this utility model is easy to use, is suitable for according to feet shape and makes, and be provided with cover in the foot, and infant is dressed convenient and comfortable.
3. this utility model is simple in structure, and is with low cost, easily accepted by extensive patients, has good market prospect and application prospect.
Description of drawings
Fig. 1 is this utility model structural representation;
Fig. 2 is this utility model upward view.
The specific embodiment
As shown in Figure 1, a kind of equinovarus orthopedic device, described orthosis comprise sole parts 1, heel member 2 and ankle upper-part 3; Connect by brace 4 between described sole parts 1 and the heel member 2, sole parts 1 can be by this brace 4 around heel member 1 certain angle axial rotation.Heel member 2 is connected by ankle joint hinge 5 respectively with ankle upper-part 3 both sides, and described ankle upper-part 3 can center on heel member 2 axial rotation at an angle by ankle joint hinge 5; Sole parts 1 front part sides is fixed a traction belt 6 respectively, and traction belt 6 other ends are fixed on the ankle upper-part 3, and scalable length.
Sole parts 1 shape and human body foot palm part shape adapt, and ankle upper-part 3 adapts with human body ankle shaped upper part, and heel member 2 adapts with human body heel portion shape.
Be connected by riveted joint between brace 4 and sole parts 1 and the heel member 2.Be connected by riveted joint between ankle joint hinge 5 and heel member 1 and the ankle upper-part 3.Heel member 1 internal fixation has cover 11 in the foot, overlaps 11 in this foot and makes for cortical material, and the front portion can be set to tether construction.
Present embodiment equinovarus orthopedic device comprises that also a positive and negative spiral shell links extension bar 7, and this positive and negative spiral shell links extension bar 7 and is individually fixed on the sole parts 1 and heel member 2 of the same side.This positive and negative spiral shell links extension bar 7 and is made up of the swivel nut 73 that is individually fixed in plus thread screw rod 71, the left-hand thread screw rod 72 on sole parts 1 and the heel member 2 and be set on its two.Traction belt 6 one ends are fixed in sole parts 1 front portion, and the other end is provided with apart from hole 61, but snapping is fixed on the staple 31 of ankle upper-part 3 settings.
This utility model orthosis is when the patient wears, by cover 11 in the foot patient's heel is fixed in the heel member 2, patient's sole is placed in the orthotic sole parts 1, be fixed on one's body the patient by velcro, ankle upper-part top and bottom respectively are provided with a velcro, the sole parts are provided with a velcro, by velcro orthosis is fixed on patient's foot, link extension bar 7 and make orthosis sole parts 1 abduction by regulating positive and negative spiral shell, the effect that patient's foot forefoot is applied power makes foot remain on outer exhibition position, to correct the interior receipts deformity of equinvoarus patient forefoot; By regulating the length of traction belt 6, orthotic sole parts 1 are applied a power of prolonging the traction belt direction, make the orthosis ankle dorsal flexion to correct the sagging deformity of equinvoarus patient's toe.
This only is a preferred embodiments of the present utility model, is not this utility model is done any pro forma restriction.Every foundation technical essential of the present utility model all still belongs in the scope of technical solutions of the utility model any simple modification, equivalent variations and modification that above embodiment did.

Claims (10)

1. an equinovarus orthopedic device is characterized in that, described orthosis comprises sole parts, heel member and ankle upper-part;
Connect by brace between described sole parts and the heel member, described sole parts can be by this brace around heel member certain angle axial rotation;
Described heel member is connected by the ankle joint hinge respectively with ankle upper-part both sides, and described ankle upper-part can center on heel member axial rotation at an angle by the ankle joint hinge;
Sole parts front part sides is fixed a traction belt respectively, and the traction belt other end is fixed on the ankle upper-part, and scalable length.
2. equinovarus orthopedic device according to claim 1 is characterized in that, described sole component shape and human body foot palm part shape adapt, and described ankle upper-part and human body ankle shaped upper part adapt, and described heel member and human body heel portion shape adapt.
3. equinovarus orthopedic device according to claim 2 is characterized in that, is connected by riveted joint between described brace and sole parts and the heel member.
4. equinovarus orthopedic device according to claim 3 is characterized in that, is connected by riveted joint between described ankle joint hinge and heel member and the ankle upper-part.
5. equinovarus orthopedic device according to claim 4 is characterized in that, described heel member internal fixation has cover in the foot.
6. equinovarus orthopedic device according to claim 5 is characterized in that, cover is made for cortical material in the described foot, and the front portion can be set to tether construction.
7. according to any described equinovarus orthopedic device in the claim 1 to 6, it is characterized in that comprise that also a positive and negative spiral shell links extension bar, this connecting rod is individually fixed on the sole parts and heel member of the same side.
8. equinovarus orthopedic device according to claim 7 is characterized in that, described positive and negative spiral shell links extension bar and is made up of the swivel nut that is individually fixed in plus thread screw rod, the left-hand thread screw rod on sole parts and the heel member and be set on its two.
9. equinovarus orthopedic device according to claim 8 is characterized in that, described traction belt one end is fixed in sole parts front portion, and this traction belt other end is provided with apart from the hole, but snapping is fixed on the staple of ankle upper-part setting.
10. according to any described equinovarus orthopedic device in the claim 1 to 6, it is characterized in that, be equipped with velcro on the two ends up and down of described ankle upper-part and the sole parts.
CN2009201728379U 2009-08-11 2009-08-11 Horseshoe varus orthotic device Expired - Fee Related CN201469469U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009201728379U CN201469469U (en) 2009-08-11 2009-08-11 Horseshoe varus orthotic device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009201728379U CN201469469U (en) 2009-08-11 2009-08-11 Horseshoe varus orthotic device

Publications (1)

Publication Number Publication Date
CN201469469U true CN201469469U (en) 2010-05-19

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102824240A (en) * 2011-06-16 2012-12-19 曹志洪 Gradual continuous orthotics for children congenital talipes equinovarus
CN103142389A (en) * 2013-03-16 2013-06-12 河北联合大学 Lower limb adductor extension apparatus
CN104146804A (en) * 2014-08-30 2014-11-19 湘潭市中医医院 Orthopedic shoes used after clinical cure of talipes equinovarus
CN105012062A (en) * 2015-08-04 2015-11-04 江苏农林职业技术学院 Ankle foot orthosis
CN105520796A (en) * 2016-01-22 2016-04-27 南国新 Ankle joint deformity correcting device
CN110074907A (en) * 2019-04-29 2019-08-02 上海光韵达数字医疗科技有限公司 A kind of children's ankle orthopedic brace
CN110215270A (en) * 2019-06-05 2019-09-10 赛佳明 A kind of orthopedic guider of equinovarus osteotomy
CN110731845A (en) * 2018-07-20 2020-01-31 首都医科大学附属北京康复医院 three-dimensional orthopedic device for talipes equinovarus and using method thereof
CN112022467A (en) * 2020-06-30 2020-12-04 南京市儿童医院 Adjustable talipes equinovarus orthotic devices based on 3D prints

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102824240A (en) * 2011-06-16 2012-12-19 曹志洪 Gradual continuous orthotics for children congenital talipes equinovarus
CN102824240B (en) * 2011-06-16 2014-03-19 曹志洪 Gradual continuous orthotics for children congenital talipes equinovarus
CN103142389A (en) * 2013-03-16 2013-06-12 河北联合大学 Lower limb adductor extension apparatus
CN104146804A (en) * 2014-08-30 2014-11-19 湘潭市中医医院 Orthopedic shoes used after clinical cure of talipes equinovarus
CN105012062A (en) * 2015-08-04 2015-11-04 江苏农林职业技术学院 Ankle foot orthosis
CN105520796A (en) * 2016-01-22 2016-04-27 南国新 Ankle joint deformity correcting device
CN110731845A (en) * 2018-07-20 2020-01-31 首都医科大学附属北京康复医院 three-dimensional orthopedic device for talipes equinovarus and using method thereof
CN110074907A (en) * 2019-04-29 2019-08-02 上海光韵达数字医疗科技有限公司 A kind of children's ankle orthopedic brace
CN110074907B (en) * 2019-04-29 2024-12-24 武汉中科医疗科技工业技术研究院有限公司 A pediatric ankle orthosis brace
CN110215270A (en) * 2019-06-05 2019-09-10 赛佳明 A kind of orthopedic guider of equinovarus osteotomy
CN112022467A (en) * 2020-06-30 2020-12-04 南京市儿童医院 Adjustable talipes equinovarus orthotic devices based on 3D prints

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Legal Events

Date Code Title Description
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: 20100519

Termination date: 20100811