CN216088967U - Summer protective sleeve of external fixator - Google Patents

Summer protective sleeve of external fixator Download PDF

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Publication number
CN216088967U
CN216088967U CN201990000915.9U CN201990000915U CN216088967U CN 216088967 U CN216088967 U CN 216088967U CN 201990000915 U CN201990000915 U CN 201990000915U CN 216088967 U CN216088967 U CN 216088967U
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China
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summer
fabric
protective cover
limb
less
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CN201990000915.9U
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Chinese (zh)
Inventor
叶夫根尼亚·尼古拉耶芙娜·莫斯科文科娃
亚历山大·尼古拉耶维奇·列昂季耶夫
柳德米拉·维亚切斯拉沃夫纳·莱昂特娃
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Russian National Ilizarov Trauma And Orthopedics Research Center
Ye FugenniyaNigulayefunaMosikewenkewa
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Russian National Ilizarov Trauma And Orthopedics Research Center
Ye FugenniyaNigulayefunaMosikewenkewa
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    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)
  • Orthopedics, Nursing, And Contraception (AREA)

Abstract

The application provides a summer protective sheath of external fixator, summer protective sheath is made by the whole soft cloth of individual layer, guarantees the air exchange, is equipped with fixing device in the side of main part cloth, makes with the zip fastener, makes the fabric can keep the state of curling, and the fastener is guaranteed as the rope along the main part edge insertion passageway the take-up of summer protective sheath can closely laminate with four limbs, passageway closelyIs formed by bending and sewing a fabric along the edge, the fabric is made of cotton fiber/synthetic fiber, the density is 80-315 g/square meter, the fabric has waterproof impregnation, the tensile strength is not less than 500N, the wear resistance is not less than 3000 cycles, the hygroscopicity is within the range of 1-18%, and the air permeability is not less than 35dm3/m2And second. Protect the limbs from the adverse effects of the environment, and can be used and sterilized for multiple times.

Description

Summer protective sleeve of external fixator
Relates to medicine, in particular to a reusable protective tool for treating bone diseases by using an external fixator.
Technical Field
The medical appliance can be used as a protective tool in the treatment of a reusable external bone fixator (hereinafter referred to as an external fixator), is used for outdoor and indoor activities in warm seasons, and can also be used as an auxiliary sanitary article for keeping the limbs of a patient under clothes and in an operation warm.
Background
Treatment of the osteosynthesis procedure involves the placement of external fixators on the exposed limb. In this case, the bone anchors, steel pins or bone screws are directed out of the bone through the soft tissue. Therefore, it is necessary to hygienically protect the limb to which the external fixator has been attached from the adverse effects of the external environment. For this purpose, protective sanitary protection sleeves are used.
Disposable sanitary protective covers for external Ilizarov fixators are known (data source [1 ]: patent RU 126905, 7/19/2012). The sanitary protective sleeve [1] is made of a breathable waterproof material layer, and the outer side of the sanitary protective sleeve is a polyethylene film which jointly forms a soft flexible main body. The upper and lower edges of the protective sleeve are provided with a band for tightening the edges of the material surrounding the limbs. The left edge and the right edge of the protective sleeve are provided with 'thread gluing' type magic tape fasteners. The protective cover is provided with strips of water-absorbing (water-absorbing) material which prevent water from entering the interior, these strips being located at the edges of the velcro and at the edges of the zipper. The protective sleeve [1] is disposable and is designed for use by a patient while showering during treatment.
The analogue [1] is not suitable for repeated use, and the protective sleeve material is not allowed to be washed, dried and thermally sterilized for many times. The edge of the flexible cloth adopts a connecting device in a magic tape buckle mode, and when the flexible cloth is used outdoors, the flexible cloth can be quickly out of work due to the degradation of the felt surface and the blockage of the hook surface.
Known protective sheaths (origin [2 ]: patent RU 95514, 12 months 12 and 22 days 2009) are made of single-layer fabric, woven or non-woven material, allowing free air circulation. The method comprises the following steps: the fixing devices on the two opposite (folded) sides of the cloth are designed as zippers to keep the cloth in a folded state; a tensioning member is provided as a cord running along the edge of the fabric (webbing) into the passageway which can tension the sleeve into tight engagement with the limb. The cloth has two tensioning members disposed on opposite sides and holds the sleeve in close proximity to the limb. The protective sleeve can be made in the form of a tube with two straps or a boot for receiving the ankle and the foot, which is closed on one side and has a strap in the region of the lower leg. The cloth of the cylindrical protective sleeve in the unfolded state is rectangular. The cloth of the boot-shaped protective cover in the unfolded state forms the shape of the boot when folded. On one side, the cloth is sewn to form a seam in the foot region. The seam should have a free margin to avoid exposed areas where the edges diverge or come loose of contact.
The protective sleeve [2] refers to a barrier medical article intended to protect the operative limbs of a patient from the invasion of harmful organic pollutants (bacteria, fungi, viruses, prions, parasites, insects, etc.) and inorganic substances (metal dusts and their oxides, various minerals, inorganic salts, plastics, synthetic fibers, etc.). The cloth [2] of woven or non-woven cloth, the like does not have the necessary properties. In order to ensure the protection of the limbs and the comfort of repeated use, besides ensuring the air exchange (free circulation of air), the main body material should have the additional properties of high wear resistance (for multiple washing and daily operations), strength (for contact with the metal parts of the external fixator), sterilization (for heat treatment), portability and the like. The osteosynthesis involves open perforation of soft tissue, possible blood stasis around steel needles and bone screws, biological secretion of wounds and the use of antiseptic ointments, and therefore, fundamentally, the main material must have hygienic properties, exclude moisture, and not accumulate dust. The material of the analog [2] does not have the listed properties (except for free circulation of air). The design of the protective sleeve should ensure that the space in the protective sleeve is sealed, when the protective sleeve is worn on limbs, the protective sleeve is not directly communicated with the outside air, the protective sleeve should be tightly attached to the body, and the shape of the limbs and the existence of the external fixator part should be considered. The cloth for the protective case [2] is rectangular in shape, forming the shape of a boot when rolled up. This shape does not always fit tightly together at the junction of the extremities, such as the groin, elbow, armpit, ankle, and torso. The anatomical shape and cuff of the external fixator article extending from under the protective sleeve are not considered. The rectangular cloth for manufacturing the protective sleeve [2] is not attached to the four limbs, and when the protective sleeve is worn on the upper arm (oxter) or thigh (groin), the edge of the cloth is straight without a cut, and inconvenience is brought to a patient due to excessive suspension of the cloth. Such protective sheaths cannot completely cover the external fixator, which can be complex and varied. The boot sleeve [2] contains a stitch in the foot area, which can cause discomfort because the stitch is felt by the patient, especially when there is a lesion in the foot (e.g., a fistula). In such cases, the presence of the seams is unhygienic and presents difficulties in sterilizing the protective sleeve because the cloth is stacked, and it is much more difficult to remove impurities and biological secretions from the seams than from other parts of the cloth.
Thus, the protective sleeve [ 1; 2] the external fixator elements and the limbs are not sufficiently protected from external influences, cannot be reused, and cannot be cleaned and sterilized by heat treatment.
SUMMERY OF THE UTILITY MODEL
The technical result is a reusable and sterile protective sleeve for protecting the limb and the external fixator mounted thereon from the adverse effects of the environment.
The technical result is that the summer protection cover (hereinafter referred to as protection cover) of the external fixing device is made of single-layer integral soft cloth, ensuring air exchange (air circulation through fabric), comprising: the fixing devices at two sides, namely the zippers, can be folded to keep the main body cloth in a folded state; a string-like tightening member designed to be inserted into a channel along the edge of a fabric (webbing) that allows a protective sleeve to be tightened to fit tightly against a limb, the string-like channel being formed by bending the fabric along the edge and sewing. The fabric is characterized by being made of cotton fibers/synthetic fibers, wherein the cotton fibers/synthetic fibers are formed by blending the cotton fibers and the synthetic fibers, the content of the synthetic fibers is 20-80%, the density is 80-315 g/square meter), the fabric has waterproof impregnation, the tensile strength is not less than 500N, the wear resistance is not less than 3000 cycles, the hygroscopicity is within the range of 1-18%, and the air permeability is not less than 35dm3/m2And (5) the characteristic of seconds.
The sock can be designed as a sleeve with two tension members for receiving the forearm, upper arm, lower leg or thigh.
The protective sleeve can be made in the shape of a cylinder with two tensioning elements for receiving the upper arm.
The sleeve may be formed in a tubular shape with two fasteners for receiving the thigh.
The protective sleeve can be designed cup-shaped (protective sleeve with bottom) for accommodating the forearm and hand or the lower leg and foot, with a single tensioning member.
The protective sleeve can be made in the shape of a boot, closed on one side, for receiving the lower leg and the foot and has a tensioning member in the region of said lower leg.
The protective sleeve can be made in the shape of a boot, closed on one side, for receiving a leg (including thigh, calf, foot) and has a single tightening element.
Technical task
The technical challenge is to protect the limb and the external fixator attached to the limb from adverse environmental effects, to be reusable and to be sterile.
The application provides a summer protective sheath of external fixator is made by the whole soft cloth of individual layer, guarantees the air exchange, is equipped with fixing device in the side of main part cloth, makes with the zip fastener, makes the fabric can keep the crimping state, and the fastener is as the rope along main part edge insert passageway, guarantees the take-up of summer protective sheath can closely laminate with four limbs, and the passageway is sewed up along the edge bending by the fabric and is formed, and the fabric is made by cotton fiber synthetic fiber, and density is between 80 ~ 315 grams per square meter, has waterproof flooding, and tensile strength is not less than 500N, and wearability is not less than 3000 cycles, and the hygroscopicity is in 1 ~ 18% within range, and the gas permeability is not less than 35dm3/m2And second.
Further, the fabric had a density of 120 grams per square meter.
Further, the fabric had a density of 195 grams per square meter.
Further, the density of the fabric was 145 grams per square meter.
Further, the summer protective cover is designed in a cylindrical shape with two fastening members for receiving a forearm, an upper arm, a lower leg or a thigh, and has two rope grooves provided on opposite sides thereof, and the summer protective cover is closely fitted to the limbs from the two opposite open sides.
Further, the summer protection cover is sleeve-shaped, has two fastening members for placing the upper arms, has two rope passages at opposite sides and closely fitting the cloth to the limbs from two opposite open sides, and has an incision at an underarm area for covering the upper arms from the outside, and can closely fit the limbs at the underarm area.
Further, the summer protective sleeve is sleeve-shaped, having two fastening members for receiving the femur, the main body cloth has two rope grooves provided at opposite sides and closely fitting the main body to the limb from two opposite open sides, one side of the main body has a cuff, and the groin cut can completely cover the femur from the outside and closely fit to the limb in a groin area.
Further, the summer protective cover is cupped for receiving the forearms and hands or the lower legs and feet, has a single tension member, is cupped, and has a single cord passage disposed on the open side.
Further, the summer protective cover is made in the shape of a boot, closed on one side, for receiving the lower leg and the foot and for fitting tightly to the limb in the region of the lower leg.
Furthermore, the summer protective sleeve is shaped like a boot and is used for placing a foot, including a femur and a tibia, is closed on one side and is provided with a single tensioning piece, so that the summer protective sleeve can be tightly attached to a rope channel of a limb, completely covers the femur on the outside and is tightly attached to the limb.
Means for solving the problems
The problem solved is that the protective sheath is made of the whole soft cloth of individual layer that guarantees the air exchange, includes: the fixing devices on the two sides of the main body cloth can be folded, and the fixing devices can keep the main body cloth in a folded state; a string-like tightening member designed to be inserted into a channel along the edge of a fabric (webbing) that allows the sleeve to be tightened to fit tightly around a limb, the string-like channel being formed by the fabric being bent along the edge and sewn. The fabric is prepared by blending cotton fiber and synthetic fiber, wherein the content of the synthetic fiber is 20-80%, and the density is 80-315 g/m2) The waterproof coating has waterproof dipping, tensile strength of not less than 500N, wear resistance of not less than 3000 cycles, moisture absorption of 1-18%, and air permeability of not less than 35dm3/m2And (5) the characteristic of seconds.
Positive effects of the application
Protects the limb and the external fixator mounted thereon from adverse environmental effects, and is reusable and sterilizable.
Drawings
FIG. 1 shows a sleeve, tubular, with cuffs in the thigh area, to be worn on a patient's thigh;
FIG. 2 shows a protective sleeve, cylindrical, having a dimple in the calf region, worn on a patient's calf;
FIG. 3 shows a sock, in the form of a sleeve, in the calf region, worn over a patient's calf, under a winter sock;
FIG. 4 shows a protective cover, glass-shaped (hand-side closed), worn over the forearm and hand of a patient;
FIG. 5 shows a protective sleeve, sleeve shape, worn over the patient's upper arm and forearm;
figure 6 shows a protective cover, boot-shaped, with a cord in the ankle area, worn over the patient's lower leg and foot.
Detailed Description
Protective sleeves are a protective technique intended to protect a patient's limb and an external fixator mounted thereon from adverse environmental effects.
The protective sleeve (figure 1; 2; 3; 4; 5; 6) is a single-layer flexible cloth made of a fabric which is formed by mixing cotton fibers and synthetic fibers, wherein the content of the synthetic fibers is between 20 and 80 percent, and the density is between 80 and 315 grams per square meter. The fabric is subjected to waterproof dipping treatment, the tensile strength is not less than 500N, the wear resistance is not less than 3000 cycles, the moisture absorption is within the range of 1-18%, and the air permeability is not less than 35dm3Per square meter, ensure air exchange (air circulation through the fabric). The protective sheath comprises two opposing foldable securing means on the body panel, which are zippers 1 (figures 1; 2; 3; 4; 5; 6) to enable the panel to be held in a rolled condition. The protective sleeve comprises tensioning means in the form of a string 2 (fig. 1; 2; 3; 4; 5; 6) along the edges of the cloth to ensure that the protective sleeve can be brought into close contact with the limb. In special cases, the waterproof impregnated fabric may be made of a mixture of 35% cotton fibers and 65% polyester synthetic fibers, and have a density of 120g/m2(FIG. 1; 2; 3; 4; 5) or a mixture of 33% cotton fibers and 67% polyester synthetic fibers, having a density of 195g/m2(FIG. 6; 8) or a mixture of 50% cotton fibers and 50% polyester synthetic fibers, having a density of 145g/m2And necessary performance is ensured. The shape and performance of the cloth depends on the limb position used: femur (fig. 1), tibia (fig. 2; 3), foot and tibia, upper arm, forearm and hand (fig. 4), forearmAnd an upper arm (fig. 5).
The thigh protective sleeve (figure 1) comprises a zipper 1 which is made into a cylinder shape and is provided with two cords 2. The body cloth has two channels of cords 2 on opposite sides and provides a snug fit of the sleeve to the limb from the two opposite open sides. One side of the cloth has a cuff for the groin area. Complete femoral coverage is provided externally and in close proximity to the limb in the groin area. The waterproof impregnated fabric is prepared by mixing 35% of cotton fiber and 65% of polyester synthetic fiber, and has a density of 120g/m2The required performance is guaranteed. The tear strength of the fabric is not less than 500N, the wear resistance is not less than 3000 cycles, the moisture absorption is within the range of 1-18%, and the air permeability is not less than 35dm3/m2And second.
A protective sleeve (figure 2; 3) for the lower leg and the foot is made into a cylinder shape, a cuff 3 is arranged in the lower leg area, and the protective sleeve comprises a zipper 1, two made tensioning parts and a thread rope 2. The body cloth is provided with a channel for the thread rope to pass through and is positioned on the opening side. The waterproof impregnated fabric is formed by blending 35 percent of cotton fiber and 65 percent of polyester synthetic fiber, and the density is 120g/m2Breaking strength of not less than 500N, wear resistance of not less than 3000 times, hygroscopicity of 1-18%, air permeability of not less than 35dm3/m2And second.
Protective sleeves for the forearms and hands (fig. 4), made in the shape of a cup, (closing on the hand) with tensioning means, a string 2, comprising a zip 1. The main body cloth is provided with a pull rope channel which is positioned at the opening side. The waterproof impregnated fabric is formed by blending 35 percent of cotton fiber and 65 percent of polyester synthetic fiber, and the density is 120g/m2Breaking strength of not less than 500N, wear resistance of not less than 3000 times, hygroscopicity of 1-18%, air permeability of not less than 35dm3/m2And second.
The protective sleeve (figure 5) of the upper arm and the forearm comprises a zipper 1 which is in a cylinder shape and is provided with two pull ropes 2. The main body cloth has two channels for the pull cord 2, one on each of the opposite sides of the cloth, and the cloth fits tightly around the limb from the two opposite open sides. The waterproof impregnated fabric is formed by blending 35 percent of cotton fiber and 65 percent of polyester synthetic fiber, and the density is 120g/m2Breaking strength of not less than 500N and abrasion resistance of not less than 3000 times, moisture absorption of 1-18%, and air permeability of not less than 35dm3/m2And second.
The protective sleeve for the lower leg and the foot is cylindrical, the top part is contracted, one side is closed, and the top part is provided with a rope-shaped tightening piece 2. The waterproof impregnated fabric can be prepared by blending 33% of cotton fiber and 67% of synthetic fiber, and has a density of 195g/m2Tear strength not less than 500N, wear resistance not less than 3000 times, hygroscopicity within 1-18%, air permeability not less than 35dm3/m2And second. The protective sleeve has no seam in sole region, and has improved sanitation, comfort, and easy sterilization.
The protective sheath of upper arm, including zip fastener 1, be the tube-shape, take two stay cords 2, this protective sheath has two passageways that are used for stay cord 2, is located protective sleeve's relative both sides, ensures that protective sleeve from two relative open sides tightly laminate four limbs, and one side of protective sleeve has the cuff, the armpit incision promptly, from the complete upper arm that covers of outside to closely laminate with limbs in the armpit. The waterproof impregnated fabric is formed by blending 50% of cotton fiber and 50% of polyester synthetic fiber, and the density is 145g/m2And has the required performance. The main body is made of light-colored fabric, the tearing strength is not less than 500N, the wear resistance is not less than 3000 cycles, the moisture absorption is within the range of 1-18%, and the air permeability is not less than 35dm3/m2And second.
The protective sleeve (figure 6) for the lower leg and the foot is made into a boot shape, the front surface of the protective sleeve is provided with a zipper 1, one side of the protective sleeve is closed, and two tensioning parts, namely ropes 2, are arranged at the lower leg and the ankle joint. The waterproof impregnated fabric is prepared by mixing 33% of cotton fiber and 67% of polyester synthetic fiber, and has a density of 195g/m2Tensile strength is not less than 500N, wear resistance is not less than 3000 cycles, hygroscopicity is within the range of 1-18%, and air permeability is not less than 35dm3/m2And second. The main cloth has no seam in sole region, and has improved sanitation, comfort and easy sterilization.
The protective sleeve, which comprises the leg for receiving the thigh, calf, foot (without graphical material), is made in the shape of a boot, closed on one side and provided with a tightening element, a string 2. The fabric having cords 2The passageway of (a) is arranged at one side adjacent to the groin area and enables the protective sleeve to be tightly attached to the limb. The groin has a cuff, the groin cut, that completely covers the femur from the outside and is tightly attached to the limb in the groin area. The waterproof impregnated fabric may be formed by mixing 35% of cotton fiber and 65% of polyester synthetic fiber and has a density of 120g/m2A fabric consisting of 33% cotton fibers and 67% polyester synthetic fibers and having a density of 195g/m2(ii) a Or a fabric composed of 50% cotton fiber and 50% polyester synthetic fiber and having a density of 145g/m2Providing the necessary performance.
INDUSTRIAL APPLICABILITY
The protective sleeves described in all embodiments provide complete protection for the limb and the external fixator mounted thereon from the adverse effects of the environment and are reusable and sterilizable.
The preparation is used. The folded side of the main body cloth keeps the cloth in a rolled-up state by tightening the zipper 1. The pull rope 2 is tightened, so that the protective sleeve can be tightened around the limbs, and the cloth is ensured to be tightly combined with the skin. The interior of the sleeve becomes sealed and air can only circulate through the fabric. The free end of the cord 1 is tied or fixed with a holder attached thereto.
The fabric is a single-layer soft integral fabric and is made of a waterproof dipping allergy-free cotton fabric formed by blending cotton fibers and synthetic fibers, the content of the synthetic fibers is 20-80%, and the density is 80-315 g/m2The tensile strength is not less than 500N, the wear resistance is not less than 3000 cycles, the moisture absorption is within the range of 1-18%, and the air permeability is not less than 35dm3/m2And second, protection is provided for the limbs and the external fixator. Proper heat exchange, air exchange between the inside of the protective sleeve and the outside environment, evaporative emissions (the protective sleeve allows the skin to "breathe"), and be reusable. The protective sleeve protects the limbs from sunburn, dust, dirt and insect bites. The protective sleeve has a sleeve according to the design and installation position of the external fixator, so as to ensure that the groin, the armpit and the joint are tightly combined with the limbs and completely cover the limbs outside. Reusable protective sleeves allowing hand and machine washing. It is recommended that the washing temperature be 40 degrees celsius (c) and the ironing temperature not exceed 150 c, i.e. the maximum temperature of the surface should not exceed 150 c. Density, composition and mechanical properties of the fabric, wet-resistant impregnation, together provide resistance to microbial and bacterial contamination, durable antimicrobial treatment, dry cleaning, water washing, ironing. Synthetic fibers impart desirable physical and mechanical properties to the fabric, and cotton fibers provide comfort and desirable hygiene attributes. The main fabric hardly absorbs moisture and dries quickly. The specified fabric density provides the desired dirt resistance, high abrasion resistance and durability. In use, the design of the protective sleeve ensures the required level of sealing inside the protective sleeve, which is tightly integrated with the body, for example in the upper arm and groin area, and takes into account the shape of the limbs and the presence of the external fixator members, since the protective sleeve has cuffs, curvilinear cuts, which take into account the anatomical shape of the body and the presence of the external fixator members.
The protective sleeve is manufactured and used in the center of the courier shaft, Ilizarov, for the treatment of patients. The protective sleeve can protect limbs from being influenced by external environment, and can be repeatedly used and operated daily. Has the necessary wear resistance, strength against external fixer contact, multiple washing, and heat treatment sterilization (ironing).
List of reference symbols
1. Slide fastener
2. Thread rope
3. Cuff
Patent document
Patent document 1: russian 126905 patent
Patent document 2: russian 95514 patent.

Claims (10)

1. A summer protection cover of an external fixator, the summer protection cover is made of single-layer integral soft cloth to ensure air exchange, a fixing device is arranged on the side surface of the main body cloth and made of a zipper to ensure that the fabric can keep a curled state, a fastener is used as a rope inserted into a channel along the edge of the main body to ensure that the summer protection cover is tensioned and can be tightly attached to four limbs, and the channel is formed by bending and sewing the fabric along the edgeThe synthetic fiber is prepared with the density of 80-315 g/square meter, has waterproof impregnation, the tensile strength of not less than 500N, the wear resistance of not less than 3000 cycles, the hygroscopicity of 1-18 percent and the air permeability of not less than 35dm3/m2And second.
2. The summer protective cover of claim 1 wherein the fabric has a density of 120 grams per square meter.
3. The summer protective cover of claim 1 wherein the fabric has a density of 195 grams per square meter.
4. The summer protective cover of claim 1 wherein the fabric has a density of 145 grams per square meter.
5. The summer protective cover of claim 1 configured in a tubular shape with two fasteners for receiving a forearm, upper arm, lower leg or thigh, the summer protective cover having two cable grooves on opposite sides and the summer protective cover being configured to fit snugly about a limb from two opposite open sides.
6. A summer protective cover according to claim 1 which is sleeve shaped having two fasteners for placement of the upper arms, the main body panel having two cord passages on opposite sides and providing a snug fit of the panel to the limb from two opposite open sides, the underarm area being cut to allow external covering of the upper arms, said summer protective cover being conformable to the limb in the underarm area.
7. The summer protective sleeve of claim 1 which is sleeve-shaped having two fasteners for receiving the femur, the body panel having two groves disposed on opposite sides and for engaging the body closely to the limb from two opposite open sides, one side of the body having a cuff, the groin opening being adapted to fully cover the femur from the exterior and engage the limb closely in the groin area.
8. A summer protective cover according to claim 1 made in a cup shape for receiving a forearm and a hand or a lower leg and a foot, having a single tensioning member, made in a cup shape, and having a single cord passage provided on the open side.
9. A summer protective cover according to claim 1 made in the form of a boot, closed on one side, for receiving the lower leg and foot and for snugly fitting the limb in the lower leg area.
10. A summer protective cover according to claim 1 shaped like a boot for placement of a foot including a femur, a tibia, closed on one side and having a single tensioning member to enable the summer protective cover to fit closely to the cable passage of the limb, to cover the femur entirely on the outside and to fit closely to the limb.
CN201990000915.9U 2019-01-08 2019-12-13 Summer protective sleeve of external fixator Active CN216088967U (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
RU2019100049 2019-01-08
RU2019100049 2019-01-08
PCT/RU2019/050242 WO2020145852A1 (en) 2019-01-08 2019-12-13 Summer cover for an external fixator

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Publication Number Publication Date
CN216088967U true CN216088967U (en) 2022-03-22

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WO (1) WO2020145852A1 (en)

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2229575A (en) * 1938-12-12 1941-01-21 Kaplan Aaron Bath protector for artificial limbs
FR877507A (en) * 1941-01-17 1942-12-09 Leakproof casing device to facilitate sterilization of wounds, dermatoses and gynecological conditions, also applicable to wet dressings
FR2630908A1 (en) * 1988-05-04 1989-11-10 Lacaffiniere Jean Yves De Single-use protection devices for dressings and external fixators of the limbs in orthopaedic surgery
US5063919A (en) * 1989-09-05 1991-11-12 Silverberg Doris C Protective sleeve
US20050027227A1 (en) * 2003-04-28 2005-02-03 Cynthia Dumas Disposable, water resistant cover for medical applications
RU174652U1 (en) * 2017-03-30 2017-10-24 Федеральное государственное бюджетное учреждение "Российский научный центр "Восстановительная травматология и ортопедия" имени академика Г.А. Илизарова" Министерства здравоохранения Российской Федерации (ФГБУ "РНЦ "ВТО" им. акад. Г.А. Илизарова" Минздрава России) CASE WARMED ON THE EXTERNAL FIXING DEVICE
RU174651U1 (en) * 2017-03-30 2017-10-24 Федеральное государственное бюджетное учреждение "Российский научный центр "Восстановительная травматология и ортопедия" имени академика Г.А. Илизарова" Министерства здравоохранения Российской Федерации (ФГБУ "РНЦ "ВТО" им. акад. Г.А. Илизарова" Минздрава России) EXTERNAL FIXING CASE FOR STOP

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