WO2002087374A1 - Chausson de pointe - Google Patents

Chausson de pointe Download PDF

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Publication number
WO2002087374A1
WO2002087374A1 PCT/US2002/013777 US0213777W WO02087374A1 WO 2002087374 A1 WO2002087374 A1 WO 2002087374A1 US 0213777 W US0213777 W US 0213777W WO 02087374 A1 WO02087374 A1 WO 02087374A1
Authority
WO
WIPO (PCT)
Prior art keywords
dancer
shoe
foot
liner
cover
Prior art date
Application number
PCT/US2002/013777
Other languages
English (en)
Inventor
Janice S. Bruckner
Original Assignee
Bruckner Janice S
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 Bruckner Janice S filed Critical Bruckner Janice S
Priority to US10/476,034 priority Critical patent/US20050022421A1/en
Priority to EP02766894A priority patent/EP1389924A4/fr
Priority to CA002446611A priority patent/CA2446611A1/fr
Publication of WO2002087374A1 publication Critical patent/WO2002087374A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B5/00Footwear for sporting purposes
    • A43B5/12Dancing shoes
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B23/00Uppers; Boot legs; Stiffeners; Other single parts of footwear
    • A43B23/08Heel stiffeners; Toe stiffeners
    • A43B23/081Toe stiffeners

Definitions

  • This invention relates to the field of footwear, and particularly, to dance shoes, and more particularly, to custom-fitting, asymmetric ballet pointe shoes.
  • movements include dance steps inspired by running, jumping, leaping and physical exertion by a soloist or an interaction between two or more individuals.
  • the end result is a remarkably punishing regimen of movement being associated with virtually any ballet performance.
  • the pursuit of perfection in ballet goes along with a remarkably high incidence of strain and injury. Indeed, the problem is so serious that few dancers are able to practice their profession into middle age.
  • Fatigue of muscles crossing the metatarsal-phalangeal joints is thought to be a causal factor of the foot problems experienced by ballet dancers. Tendonitis of flexor hallucis longus, acute intrinsic muscle spasm, and repetitive muscle strain injuries at midtarsal are common in ballerinas and occur when maneuvering to the pointe position. Fatigue also is thought to be a major factor in fractures to the phalanges, metatarsals, and sesamoid bones as acute fractures usually occur towards the end of a day when the feet of the dancer are very tired.
  • the uneven weight distribution and excessive pressure on the weight bearing toes also results in a number of foot health problems such as stress- induced toe buckling or bending, blistering, skin irritation, painful corns, stress fractures, bunions (a bony enlargement of the big toe joint), and ingrown toenails to mention a few.
  • the unequal weight distribution may cause the dancer's feet to tilt to one side or "sickle out” through lack of balance, resulting in poor technique or "line” in the pointe position. It is common for a ballet dancer to suffer constant pain, discomfort, and disfiguration of the toes in order to compensate for this natural imbalance of pressure on the toes in the pointe position in an effort to maintain acceptable technique or "line.”
  • the traditional blocked ballet slipper is made by hand on a last, using layers of fabrics, cardboard, paper, or leather saturated with glue to form a reinforced toe box joined to a leather or cardboard shank. A reinforcing stiffener frequently is included in the shank.
  • the outer sole is made from leather.
  • An outer fabric or "upper” is sewn to the sole and usually gathered in pleats under the toe.
  • the connection between the toe and sole is not easy to manufacture and can come loose after prolonged use.
  • This type of slipper is labor intensive and expensive to produce, although some improved casting methods have been developed to speed the laminating steps, for example as disclosed in U.S. Pat. No. 4,453,966 to Terlizzi.
  • the traditional ballet slipper requires extensive breaking-in before it is comfortable for use.
  • a ballerina will break in the slipper by manually flexing it, applying force by way of slamming the slipper in a door or bashing it with a hammer, or soaking it in warm water or alcohol. It can take as much as three hours to prepare a single pair of slippers for a performance if they have been manufactured using an epoxy or other durable glue as a laminate. Once the slipper is broken in, it will have an extremely short useful life, usually no more than twenty to forty-five minutes during a performance.
  • the short useful life is attributable to the deterioration of the toe box and or shank caused by the rapid breakdown of the glue used to form the laminates of the toe box.
  • the breakdown can be accelerated by perspiration that occurs during energetic dancing. Once the shank and/or toe box have deteriorated, the slipper is useless because there will be no support for the dancer.
  • a further problem encountered with the traditional ballet slipper is that the outer cover (typically a satin material) is slippery and can contribute to skids and falls when the ballerina is rising to the pointe position.
  • the ballerina usually will darn the toes of the slipper and rub the tips in resin to minimize the chances of slipping. Nevertheless, falls do occur.
  • the pointe shoe also must be wide enough at the metatarsal to allow the foot to spread out when landing from jumps and when passing through the position known as "demi-pointe" in transition from normal stance to en pointe.
  • the present invention satisfies such a need.
  • the invention herein disclosed relates to a customized ballet shoe that enables the achievement of such dance steps while eliminating the pain, deformity, and injury associated with such movements by redistributing the dancer's weight and the forces of landing off of the distal aspect of the toes, as well as by absorbing the shock when a dancer is in pointe position, while at the same time improving the dancer's technique.
  • the present invention provides ballet shoes comprising a shell and a liner.
  • the shell includes a shank and a toe box.
  • the toe box has an inner surface and an outer surface.
  • the liner is shaped to conform to the three-dimensional topography of the dancer's toes and substantially fill the space between the toes of the dancer and the inner surface of the shell.
  • the shell is molded from thermoplastic and the liner is a dense closed cell foam.
  • the ballet shoes of the invention include a cosmetic cover.
  • the shoe of the present invention redistributes the dancer's weight and the ground force reactions associated with dancing en pointe evenly across the toes while translating some of the force away from the distal aspect of the dancer's toes to the rest of the foot.
  • the present invention thus distributes the vertical forces exerted upon the foot of a dancer en pointe in an orthopaedically improved manner.
  • these methods include production of a negative cast taken of the lower forefoot of the dancer en pointe while a balance sustaining environment surrounds the dancer's foot.
  • the dancer's downward vertical force is distributed throughout the balance sustaining environment allowing the dancer to position herself en pointe without requiring her to modify her natural toe position.
  • the negative cast is then used to create a liner for the ballet shoes of the invention. Toe disfiguration that the dancer experiences while en pointe with traditional pointe shoes will not be present in a mold created using a balance sustaining environment.
  • the present invention also provides a removable cosmetic cover for the ballet shoe.
  • a single shell can be used with an assortment of covers and the useful life of the shell of the ballet shoe is extended.
  • the color and design of the cover can be varied according to costume design.
  • Figure 1 A front view of an embodiment of a ballet shoe in accordance with the invention.
  • Figure 2. A front view of an embodiment of a shell of a ballet shoe in accordance with the invention.
  • Figure 3. (A) A front view of an embodiment of a liner of a ballet shoe in accordance with the invention.
  • Figure 4 A side cross-sectional view of an embodiment of a ballet shoe in accordance with the invention as worn by a dancer standing en pointe.
  • a ballet shoe [3] in accordance with the invention comprises shell [9] having a toe box [10] with an inner surface [11] and an outer surface, each surface having a top surface, a left side surface, and a right side surface.
  • toe box [10] is formed from a high temperature plastic, such as, but not limited to, polyethylene or polypropylene. High temperature plastics are very durable and do not require replacing, thereby reducing the total cost of footwear over the lifetime of the dancer's career.
  • Toe box [10] protects the toes, helps contain the phalanges, and translates the forces away from the distal aspect of the toes and onto other parts of the foot.
  • Shank [12] is joined to toe box [10].
  • Shank [12] is preferably a full shank that is sized to extend backward from toe box [10] for a distance equal to the length of the dancer's foot.
  • a half shank or three-quarters shank also may be utilized within the scope of the invention.
  • shank [12] is formed from either carbon-graphite fiber, a flexible plastic, or durable leather. It is understood that a different material that provides the essential dynamically supportive function is still within the scope and spirit of the invention. The ground reaction forces that are translated to the plantar aspect of the foot will be conveyed through this shank.
  • shank [12] is integrally formed with toe box [10].
  • shank [12] and toe box [10] are formed using three-dimensional molds.
  • the shank [12] and toe box [10] are molded simultaneously using single mold to create a unitary structure.
  • a toe platform [4] at the distal surface of toe box [10] provides a flat surface for the dancer's maneuvers en pointe. Ground reaction forces will translate through toe platform [4] and along shell [9] to be borne not only by the toes but also by both the dorsal and plantar aspects of the foot.
  • Figure 3A illustrates a liner [13] of the present invention.
  • Figure 3B illustrates liner [13] as applied to a dancer's foot in the pointe position within a ballet shoe.
  • liner [13] substantially fills the space between the ends of the toes and the inner surface [11] of toe box [10], conforming substantially to the three dimensional surface topography of a dancer's foot.
  • Liner [13] contains the phalanges and provides substantial contact with the phalanges for better weight distribution.
  • the liner [13] includes an optional liner insole [14].
  • the optional liner insole [14] can extend backward for a distance equal to or less than the length of the dancer's foot.
  • liner [13] is designed to redistribute relatively more weight onto the big toe and away from the other toes.
  • the dominant human foot type has the second toe longer than the big toe.
  • This present problems for the pointe dancer as the longer, second toe is in a position to absorb more ground reaction forces than the other toes since it contacts the ground first when en pointe. This situation causes stress fractures of the second metatarsals.
  • liner [13] of the present invention has a build-up [16] under the big toe; thus, the big toe contacts the ground slightly before the second toe and bears more of the force.
  • Build-up [16] and/or relief [17] at the distal ends of the other toes also helps distribute the weight more evenly across the five toes.
  • Liner [13] also is designed to translate some force away from the distal aspect of the toes, through shell [9], to the rest of the dancer's foot.
  • Shell [9] can be designed to be symmetrical along its longitudinal axis allowing the same shell to be used for the dancer's left or right foot.
  • the symmetrical shell can accommodate the asymmetrical shape of the dancer's foot with build-up of the liner [13] to substantially fill the space between the ends of the toes and the inner surface [11] of the symmetrical shell.
  • shell [9] can be designed to be asymmetrical along the longitudinal axis such that the shell is dimensioned to accommodate either the left or right foot of the dancer.
  • Asymmetrically shaped shells are preferably designed to reduce the amount of build-up required for liner [13].
  • shell [9] further comprises a patten [21] for diffusing the dancer's downward vertical forces.
  • the patten [21] is a build-up of material on the outer surface of the toe box [10] to modify the contact area of the shoe with the floor when the dancer is en pointe.
  • the patten [21] of an asymmetrical shell is configured to give the shell a substantially symmetrical appearance.
  • the patten [21] is made from a resilient and durable foam or rubber material, such as, but not limited to, crepe. Crepe is widely used for the bottoms and innersoles of sport, casual, and work shoes.
  • liner [13] material are an important feature of the invention. Cushioning the toes reduces the stress and minimizes the risk of injury while making it more comfortable for the dancer by minimizing the pain of dancing en pointe. The cushioning also muffles noise so that the sound of the shoe contacting the floor will be minimized and the aesthetic aspect of the dance can be preserved.
  • the liner material be dimensionally stable once molded and cured such that there is no flowing or substantial distortion of liner [13], particularly when the foot is disposed in the pointe position.
  • the liner material must also be sufficiently yielding to prevent discomfort.
  • the liner is made from foam.
  • dense foams such as, but not limited to pelite, in particular provide excellent support for distributing and sustaining the vertical forces (e.g., dancer's weight) evenly across all toes with the big toe getting the weight of about twice the other toes, while offering sufficient amount of cushioning so as to prevent the discomfort otherwise experienced from hardened substances.
  • the foam is preferably closed celled. Dense closed cell foam liners of the present invention are very durable and easy to clean.
  • Dense closed cell foam liners do not absorb perspiration, thereby allowing easy maintenance of proper foot hygiene.
  • the liner [13] can be made from other materials having the desired characteristics of resiliency, non-absorption, and the capability of being molded to a three dimensional shape, such as, for example, a rubber material. Liner [13] can be replaced if it gets worn or if the dancer's foot changes shape. In a preferred embodiment, each liner [13] is made to fit an individual dancer's foot. According to an embodiment of the present invention, molding and fitting of liner [13] requires that each foot be cast in a casting material, such as, but not limited to, calcium alginate or plaster of paris, to make a negative impression mold.
  • a casting material such as, but not limited to, calcium alginate or plaster of paris
  • the mold then is filled with a casting material to make a positive impression cast.
  • a metal rod may be inserted into the cast before it sets so the cast can be held in a vice during fabrication of the shoe.
  • the liner is formed directly on the positive mold.
  • the liner material may be heat sensitive and require heating on the positive mold of the foot to get a substantial contact with the phalanges.
  • the liner is molded on the positive mold of the foot to provide three-dimensional cushioning for the toes and a soft insole for the plantar aspect of the foot. A liner is made for each foot to go into each ballet pointe shoe.
  • a preferred method of manufacturing further comprises molding the liner [13] while the dancer positions herself en pointe.
  • a balance sustaining environment surrounds the dancer's foot during the molding process. The balance sustaining environment allows the dancer to position her foot as if she was positioned en pointe on a hard surface, such as a dance floor. Unlike the planar surface of a dance floor, however, the balance sustaining environment contacts a substantial portion of the dancer's foot and distributes the dancer's downward vertical force throughout the balance sustaining environment. This allows the dancer to position herself en pointe without requiring her to modify her natural toe position. Toe disfiguration that the dancer experiences while en pointe with traditional pointe shoes will not be present in a mold created using a balance sustaining environment.
  • the balance sustaining environment should offer sufficient support and be compatible with the molding process.
  • Any particulate solid such as, but not limited to sand, that offers sufficient support to distribute and sustain the vertical forces of a dancer en pointe and does not interfere with the molding process may be used to create a balance sustaining environment.
  • the particulate solid used for the balance sustaining environment has flow characteristics that allow it to conform to the three- dimensional topographical contours of the dancer's foot, but is firm enough to support the dancer.
  • sand in particular provides an excellent balance sustaining environment.
  • the depth of the sand is sufficient to cover a portion of the dancer's lower leg.
  • a thin layer casting material is used when molding with a particular solid to create a balance sustaining environment.
  • an elasticized stocking is placed over the thin layer casting material during the casting process to help contain and apply pressure on the casting material.
  • the use of a thin layer casting material helps capture the contours of the dancer's foot while the dancer is in a weight bearing and balance sustaining environment.
  • the thin layer casting material be integrated with reinforcement material for added strength and easier application when using a thin layer casting and sand to create a balance sustaining environment.
  • Preferred materials such as, but not limited to plaster embedded splinting bandages, provide a strong thin layer casting that does not interfere with the balance sustaining environment and are easy to work with.
  • the elasticized stocking applies pressure to the splinting bandages to assist them in capturing the contours of the dancer's foot.
  • a plastic bag can be used over the thin casting material and elasticized stocking to create a barrier from the sand.
  • the ballet shoe in accordance with the invention is asymmetric relative to the longitudinal axis of the foot.
  • the asymmetry can be camouflaged by adding a build-up of material on the outside of the shells, including, but not limited to, a patten [21].
  • the right and left shoes of each pair are different from each other, i.e., transposed with respect to the longitudinal plane, but generally symmetrical to each other.
  • a cosmetic cover [18] having both an inner layer [2] and an outer layer [20], as shown in Figures 1 and 4, encloses shell [9] and liner [13].
  • Cosmetic cover [18] fits snugly over shank [12] and toe box [10].
  • inner layer [2] sewn into it an opening [1], preferably under a dancer's heel, into which opening the proximal end of shank [12] and optional liner insole [14] may be inserted, thereby sandwiching shank [12] and optional liner insole [14] between inner layer [2] and outsole [15] of cosmetic cover [18], thereby allowing for increased motion between the components of the ballet shoe of the instant invention and thus increased flexibility.
  • inner layer [2] is made of cotton material.
  • inner layer [2] is made of material capable of wi eking moisture away from the dancer's foot to the exterior of cosmetic cover [18].
  • An elasticized strap [7] may be stitched to the throat or border [8] of cosmetic cover [18], stretching across the dancer's midfoot, to help hold the shoe to the dancer's foot.
  • Elastic strap [7] may be a single loop of elastic material. Often the shoes of the present invention are sold without the elastic strap attached, which is later sewn on by the dancer if needed.
  • a fabric lace or drawstring [5] may be threaded through a batting [6] sewn to throat [8] of cosmetic cover. The free ends of the drawstring are preferably located at or near the front end of the shoe.
  • Outer layer [20] of cosmetic cover [18] is made from a variety of suitable materials, including but not limited to silk, satin, or canvas. It is removable and, therefore, can be changed to match different costumes and for laundering. It is anticipated that cosmetic cover [18] will need replacing when the fabric gets worn. In contrast, when the fabric gets worn on a traditional ballet shoe, the shoes must be discarded and a new pair purchased.
  • the instant invention allows for replacement of only cosmetic cover [18] when the fabric becomes worn; the other parts of the shoe of the instant invention, shell [9] and liner [13], are retained. Thus the present invention provides a less expensive alternative to traditional ballet shoes.
  • Cosmetic cover [18] has secured to it an outsole [15] made from a durable, flexible, non-slip material, including, but not limited to, leather, rubber, or fabric, and preferably canvas.
  • Outsole [15] is secured to cosmetic cover [18] by gluing or sewing.
  • outsole [15] extends from the top of toe platform [4] of toe box [10] to the proximal end of shank [12], thereby covering toe platform [4] of toe box [10] and shank [12].
  • Outsole [15] may cover the entire underside of shank [12] or may cover only portions thereof.
  • Outsole [15] obviates the problem of a bare plastic toe box platform, found in the prior art molded plastic slippers, that can induce slips and falls. Outsole [15] also eliminates the need to darn the tips of the shoes as is done with satin-covered, traditional slipper designs. Outsole [15] provides an additional cushioning layer to increase comfort and reduce noise during a performance.
  • the liner [13] and shell [9] are lightweight, compact, transportable, and easy to clean.
  • the present invention provides a durable ballet shoe that requires no "breaking in” and can be custom-fitted to a dancer's foot. This is in contrast to the traditional ballet shoe, which only can be broken in with considerable time and effort, and prior art plastic ballet slippers, which cannot be broken in at all.
  • a preferred manner of using the ballet shoe of the present invention involves simultaneously placing the proximal end of shank [12] and optional liner insole [14] inside opening [1] of inner layer [2] of cosmetic cover [18] followed by liner [13], thereby securing the cosmetic cover [18], shell [9], and liner [13] together to minimize shear and motion during wear.
  • the dancer then slides the foot inside the ballet pointe shoe and laces the pointe shoe in the usual manner.
  • Shell [9] and liner [13] are now in place inside the ballet shoe and will not move out of position. With liner [13] inside the ballet pointe shoe, the dancer has better balance and weight distribution across the tips of the toes and, therefore, experiences improved dance technique.
  • a preferred method of manufacturing a ballet shoe in accordance with the foregoing description comprises the steps of molding a plastic shell having a shank and a toe box from a high temperature plastic.
  • the method of manufacturing further comprises the steps of molding a liner from a dense foam, the liner having an insole and a build-up of material at the distal toe end conforming to the surface topography of a dancer's foot such that the space between the ends of a dancer's toes and the inside surface of the toe box and shank are completely filled.
  • the molding of the custom liner uses a negative plaster mold of a dancer's foot as a last on which the dense foam is formed to provide a custom fit.
  • the negative plaster mold is created while the dancer is positioned en pointe in a balance sustaining environment.
  • the liner is customized to an individual dancer's foot.
  • the shoe is finished by fitting a cosmetic cover having an inner and outer layer and an opening in the inner layer for the insertion of the proximal end of the shank and the liner insole and an elastic strap for holding the shoe to the dancer's foot and by securing an outsole formed from a durable, flexible, non-slip material to the cosmetic cover that extends from the top of the toe platform of the toe box to the proximal end of the shank, thereby covering the toe platform of the toe box and the shank, or portions thereof, are covered.
  • Batting may be sewn to the throat of the cosmetic cover and a cloth lace or drawstring run through it to help hold the shoe on the dancer's foot. Ribbons can be added by the dancer for security or aesthetic purposes.

Abstract

L'invention concerne un chausson de danse asymétrique à ajustement personnalisé comprenant une coquille (9) et une garniture (13) permettant à un danseur de se tenir sur les pointes, et d'exécuter les mouvements extrêmes requis par une chorégraphie de ballet avec un minimum d'inconfort, de douleur et de blessure aux pieds provoqués par différentes manoeuvres aériennes exigées tant par une chorégraphie classique que moderne. Ledit chausson est conçu de façon à répartir régulièrement le poids du danseur et les réactions de forces terrestres, associées à la danse sur les pointes, sur les orteils tout en translatant certaines forces de l'extrémité distale des orteils vers le reste du pied. Ce chausson comprend un couvre-chausson superficiel (18) amovible permettant de faire varier notamment la couleur et la forme en fonction du costume et de remplacer ledit couvre-chausson lorsque le tissu est déchiré, ce qui permet d'allonger la durée de vie du reste du chausson.
PCT/US2002/013777 2001-05-01 2002-05-01 Chausson de pointe WO2002087374A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
US10/476,034 US20050022421A1 (en) 2001-05-01 2002-05-01 Ballet pointe shoe
EP02766894A EP1389924A4 (fr) 2001-05-01 2002-05-01 Chausson de pointe
CA002446611A CA2446611A1 (fr) 2001-05-01 2002-05-01 Chausson de pointe

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US28775201P 2001-05-01 2001-05-01
US60/287,752 2001-05-01

Publications (1)

Publication Number Publication Date
WO2002087374A1 true WO2002087374A1 (fr) 2002-11-07

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Application Number Title Priority Date Filing Date
PCT/US2002/013777 WO2002087374A1 (fr) 2001-05-01 2002-05-01 Chausson de pointe

Country Status (5)

Country Link
US (1) US20050022421A1 (fr)
EP (1) EP1389924A4 (fr)
CA (1) CA2446611A1 (fr)
RU (1) RU2003134643A (fr)
WO (1) WO2002087374A1 (fr)

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EP1325688A1 (fr) * 2002-01-03 2003-07-09 Séverine Zaoui Dispositif de protection de l'avant des pieds, notamment adapté au port de chaussures de danse classique
WO2004107895A1 (fr) * 2003-06-06 2004-12-16 Australian Ballet School Piece rapportee pour chausson de danse
GB2444021A (en) * 2006-06-23 2008-05-28 Loren Beth Taylor An insert to reinforce the toe cavity of footwear
GB2461015A (en) * 2008-02-18 2009-12-23 Claire Louise Wyon Dance shoe
US7707673B2 (en) 2004-09-22 2010-05-04 Tanya Durbin System and method for hardening ballet shoes
WO2011117558A1 (fr) 2010-03-26 2011-09-29 Decathlon Element de protection pour article chaussant notamment chausson de danse
US20110265348A1 (en) * 2010-04-30 2011-11-03 Kelly Susan Schmutte Self-Customized, Moldable, Weight-Distributing Insert for Ballet Pointe Shoes
US8991070B2 (en) 2009-07-16 2015-03-31 Strada Shoe Limitada Shoe and method of making same
ES2705123A1 (es) * 2017-09-21 2019-03-21 Univ Cadiz Zapatilla de punta de ballet
US11278080B2 (en) 2019-01-19 2022-03-22 Lisias Ransan Ballet pointe shoe having toe platform with malleable bumper
US11889886B2 (en) 2017-08-08 2024-02-06 Fox Investments Limited Tuned sole shank component for dance footwear

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JP7005764B2 (ja) * 2019-12-25 2022-01-24 株式会社アシックス 靴のアッパー、及び靴のアッパーの製造方法
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Cited By (12)

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EP1325688A1 (fr) * 2002-01-03 2003-07-09 Séverine Zaoui Dispositif de protection de l'avant des pieds, notamment adapté au port de chaussures de danse classique
WO2004107895A1 (fr) * 2003-06-06 2004-12-16 Australian Ballet School Piece rapportee pour chausson de danse
US7707673B2 (en) 2004-09-22 2010-05-04 Tanya Durbin System and method for hardening ballet shoes
GB2444021A (en) * 2006-06-23 2008-05-28 Loren Beth Taylor An insert to reinforce the toe cavity of footwear
GB2461015A (en) * 2008-02-18 2009-12-23 Claire Louise Wyon Dance shoe
US8991070B2 (en) 2009-07-16 2015-03-31 Strada Shoe Limitada Shoe and method of making same
WO2011117558A1 (fr) 2010-03-26 2011-09-29 Decathlon Element de protection pour article chaussant notamment chausson de danse
US20110265348A1 (en) * 2010-04-30 2011-11-03 Kelly Susan Schmutte Self-Customized, Moldable, Weight-Distributing Insert for Ballet Pointe Shoes
US9314068B2 (en) * 2010-04-30 2016-04-19 Kelly Susan Schmutte Self-customized, moldable, weight-distributing insert for ballet pointe shoes
US11889886B2 (en) 2017-08-08 2024-02-06 Fox Investments Limited Tuned sole shank component for dance footwear
ES2705123A1 (es) * 2017-09-21 2019-03-21 Univ Cadiz Zapatilla de punta de ballet
US11278080B2 (en) 2019-01-19 2022-03-22 Lisias Ransan Ballet pointe shoe having toe platform with malleable bumper

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US20050022421A1 (en) 2005-02-03
RU2003134643A (ru) 2004-12-27
CA2446611A1 (fr) 2002-11-07
EP1389924A4 (fr) 2004-07-21

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