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Patent · US10248200B2 · B2 · US

Wearable devices, wearable robotic devices, gloves, and systems, methods, and computer program products interacting with the same

(11) Publication number
US10248200B2
(21) Application number
15/123,236
(22) Filing date
2015-02-27
(30) Priority date
2014-03-02
(43) Publication date
2019-04-02
(45) Date of grant
2019-04-02
(51) IPC
A61B 5/00; A61B 5/22; A61F 2/58; A61F 5/01; A61H 1/02; B25J 13/02; G06F 3/01
(52) CPC
  • G06F Electric digital data processing: 3/014, 3/016
  • A61B Diagnosis; surgery; identification: 5/0022, 5/225, 5/6806
  • A61F Filters implantable into blood vessels; prostheses; devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents; orthopaedic, nursing or contraceptive devices; fomentation; treatment or protection of eyes or ears; bandages, dressings or absorbent pads; first-aid kits: 2/583, 5/0102, 5/013
  • A61H Physical therapy apparatus, e.g. devices for locating or stimulating reflex points in the body; artificial respiration; massage; bathing devices for special therapeutic or hygienic purposes or specific parts of the body: 1/0288
  • B25J Manipulators; chambers provided with manipulation devices: 13/025
(73) Assignee
UNIV DREXEL
(72) Inventors
COHEN ANDREW; DION GENEVIEVE; WINTER MARK; WAIT ERIC; KOERNER MICHAEL
(54) Title
Wearable devices, wearable robotic devices, gloves, and systems, methods, and computer program products interacting with the same
(57) Abstract

One aspect of the invention provides a wearable device including: at least one compliant region adapted and configured to be placed over a joint of a subject and at least two flexible but less compliant regions coupled to opposite ends of the compliant region. Another aspect of the invention provides a wearable robotic device including a wearable device as described herein and at least one actuator adapted and configured to move the flexible but less compliant regions relative to each other.

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Claims (18)

  1. A wearable device comprising: at least one compliant textile region adapted and configured to be placed over a joint of a subject; and at least two flexible but less compliant textile regions coupled to opposite ends of the compliant region located on either side of the joint and encircling the joint; wherein the at least two flexible but less compliant textile regions are steam hardened.
  2. The wearable device of claim 1, wherein the at least one compliant textile region comprises a textile including one or more fibers selected from the group consisting of: natural fibers, cotton, wool, silk, hemp, flax, animal hair, jute, modal, cellulose, bamboo, piña, ramie, nettles, milkweed, seaweed, metals, manufactured fibers, azlon, acetate, triacetate, viscose, lyocell, glass, graphite carbon, carbon fiber, carbon nanotube, liquid crystal, ceramics, polyesters, aramids, para-aramids, meta-aramids, aromatic polyesters, rayon, acrylics, modacrylics, polyacrylonitrile, polylactides (PLAs), polyamides, polyamide 6, polyamide 6.6, rubber lastrile, lastol, polyethylene (PE), high-density polyethylene (HDPE), polyethylene terephthalate (PET), polypropylene (PP), polytetrafluoroethylene (PTFE), vinyl, vinyon, vinylidene chloride, polyvinylidene chloride (PVDC), polybenzimidazole (PBI), novoloid, melamine, anidex, nytril, elastoester, nylon, spandex/elastane, olefins, biosynthetic polymers, and blends of the same.
  3. The wearable device of claim 1, wherein the at least one compliant textile region comprises an elastomer.
  4. The wearable device of claim 1, wherein the at least one compliant textile region is capable of elongation between 160% and about 180%.
  5. The wearable device of claim 1, wherein the at least two flexible but less compliant textile regions-include one or more fibers selected from the group consisting of: natural fibers, cotton, wool, silk, hemp, flax, animal hair, jute, modal, cellulose, bamboo, piña, ramie, nettles, milkweed, seaweed, metals, manufactured fibers, azlon, acetate, triacetate, viscose, lyocell, glass, graphite carbon, carbon fiber, carbon nanotube, liquid crystal, ceramics, polyesters, aramids, para-aramids, meta-aramids, aromatic polyesters, rayon, acrylics, modacrylics, polyacrylonitrile, polylactides (PLAs), polyamides, polyamide 6, polyamide 6.6, rubber lastrile, lastol, polyethylene (PE), high-density polyethylene (HDPE), polyethylene terephthalate (PET), polypropylene (PP), polytetrafluoroethylene (PTFE), vinyl, vinyon, vinylidene chloride, polyvinylidene chloride (PVDC), polybenzimidazole (PBI), novoloid, melamine, anidex, nytril, elastoester, nylon, spandex/elastane, olefins, biosynthetic polymers, and blends of the same.
  6. The wearable device of claim 1, wherein the at least two flexible but less compliant textile regions are capable of elongation between 91% and 111%.
  7. The wearable device of claim 1, wherein the at least one compliant textile region and at least two flexible but less compliant textile regions are made from the same textile material.
  8. A wearable robotic device comprising: at least one compliant textile region adapted and configured to be placed over a joint of a subject; and at least two flexible but less compliant textile regions coupled to opposite ends of each compliant textile region and encircling the joint; and at least one actuator adapted and configured to move the flexible but less compliant textile regions relative to each other.
  9. The wearable robotic device of claim 8, wherein the at least one actuator facilitates a movement of the joint selected from the group consisting of: flexion, extension, abduction, and adduction.
  10. The wearable robotic device of claim 8, wherein the actuator includes an artificial tendon.
  11. The wearable robotic device of claim 8, wherein the actuator includes elements selected from the group consisting of: a piston, a DC motor, a stepper motor, a linear actuator, an electroactive polymer (EAP), and a pneumatic muscle.
  12. The wearable robotic device of claim 8, wherein the joint is selected from the group consisting of: a hand joint, an elbow joint, a wrist joint, a shoulder joint, a sternoclavicular joint, a vertebral joint, a temporomandibular joint, a sacroiliac joint, a hip joint, a knee joint, an ankle joint, and a foot joint.
  13. The wearable robotic device of claim 8, wherein the subject is a human.
  14. The wearable robotic device of claim 8, wherein the subject is a canine.
  15. The wearable robotic device of claim 8, wherein the wearable device is a glove.
  16. The wearable robotic device of claim 15, wherein the glove includes a plurality of fingers and each finger is associated with at least one actuator.
  17. The wearable robotic device of claim 8, further comprising: one or more force sensors adapted and configured to detect movement by the subject.
  18. The wearable robotic device of claim 8, further comprising: a pair of force sensors positioned on opposite sides of a subject's bone.

Description

Despite the increasing availability of three-dimensional (3-D) images in a variety of fields such as medicine, science, and gaming, 3-D images remain challenging for users to comprehend, manipulate, and interact with. Moreover, current wearable robotics devices have large form factors that limit their suitability for real-world use.

A wearable device includes at least one compliant region adapted and configured to be placed over a joint of a subject and at least two flexible but less compliant regions coupled to opposite ends of the compliant region. The at least one compliant regions may include a textile. The at least one compliant region may include a textile including one or more fibers such as natural fibers, cotton, wool, silk, hemp, flax, animal hair, jute, modal, cellulose, bamboo, piña, ramie, nettles, milkweed, seaweed, metals, manufactured fibers, azlon, acetate, triacetate, viscose, lyocell, glass, graphite carbon, carbon fiber, carbon nanotube, liquid crystal, ceramics, polyesters, aramids, para-aramids, meta-aramids, aromatic polyesters, rayon, acrylics, modacrylics, polyacrylonitrile, polylactides (PLAs), polyamides, polyamide 6, polyamide 6.6, rubber lastrile, lastol, polyethylene (PE), high-density polyethylene (HDPE), polyethylene terephthalate (PET), polypropylene (PP), polytetrafluoroethylene (PTFE), vinyl, vinyon, vinylidene chloride, polyvinylidene chloride (PVDC), polybenzimidazole (PBI), novoloid, melamine, anidex, nytril, elastoester, nylon, spandex/elastane, olefins, biosynthetic polymers, and blends of the same.

Citations (15)

  • EP2624238A1
  • US2006094989A1
  • US2007226873A1
  • US2011105978A1
  • US2012204322A1
  • US2013072829A1
  • US2013226350A1
  • US2013291282A1
  • US2014039367A1
  • US4084267A
  • US4861645A
  • US7967679B2
  • US8029414B2
  • US8362882B2
  • US9375382B2
Record as JSON
{
  "publication_number": "US10248200B2",
  "country": "US",
  "kind": "B2",
  "title": "Wearable devices, wearable robotic devices, gloves, and systems, methods, and computer program products interacting with the same",
  "abstract": "One aspect of the invention provides a wearable device including: at least one compliant region adapted and configured to be placed over a joint of a subject and at least two flexible but less compliant regions coupled to opposite ends of the compliant region. Another aspect of the invention provides a wearable robotic device including a wearable device as described herein and at least one actuator adapted and configured to move the flexible but less compliant regions relative to each other.",
  "claims": [
    "1. A wearable device comprising: at least one compliant textile region adapted and configured to be placed over a joint of a subject; and at least two flexible but less compliant textile regions coupled to opposite ends of the compliant region located on either side of the joint and encircling the joint; wherein the at least two flexible but less compliant textile regions are steam hardened.",
    "2. The wearable device of claim 1, wherein the at least one compliant textile region comprises a textile including one or more fibers selected from the group consisting of: natural fibers, cotton, wool, silk, hemp, flax, animal hair, jute, modal, cellulose, bamboo, piña, ramie, nettles, milkweed, seaweed, metals, manufactured fibers, azlon, acetate, triacetate, viscose, lyocell, glass, graphite carbon, carbon fiber, carbon nanotube, liquid crystal, ceramics, polyesters, aramids, para-aramids, meta-aramids, aromatic polyesters, rayon, acrylics, modacrylics, polyacrylonitrile, polylactides (PLAs), polyamides, polyamide 6, polyamide 6.6, rubber lastrile, lastol, polyethylene (PE), high-density polyethylene (HDPE), polyethylene terephthalate (PET), polypropylene (PP), polytetrafluoroethylene (PTFE), vinyl, vinyon, vinylidene chloride, polyvinylidene chloride (PVDC), polybenzimidazole (PBI), novoloid, melamine, anidex, nytril, elastoester, nylon, spandex/elastane, olefins, biosynthetic polymers, and blends of the same.",
    "3. The wearable device of claim 1, wherein the at least one compliant textile region comprises an elastomer.",
    "4. The wearable device of claim 1, wherein the at least one compliant textile region is capable of elongation between 160% and about 180%.",
    "5. The wearable device of claim 1, wherein the at least two flexible but less compliant textile regions-include one or more fibers selected from the group consisting of: natural fibers, cotton, wool, silk, hemp, flax, animal hair, jute, modal, cellulose, bamboo, piña, ramie, nettles, milkweed, seaweed, metals, manufactured fibers, azlon, acetate, triacetate, viscose, lyocell, glass, graphite carbon, carbon fiber, carbon nanotube, liquid crystal, ceramics, polyesters, aramids, para-aramids, meta-aramids, aromatic polyesters, rayon, acrylics, modacrylics, polyacrylonitrile, polylactides (PLAs), polyamides, polyamide 6, polyamide 6.6, rubber lastrile, lastol, polyethylene (PE), high-density polyethylene (HDPE), polyethylene terephthalate (PET), polypropylene (PP), polytetrafluoroethylene (PTFE), vinyl, vinyon, vinylidene chloride, polyvinylidene chloride (PVDC), polybenzimidazole (PBI), novoloid, melamine, anidex, nytril, elastoester, nylon, spandex/elastane, olefins, biosynthetic polymers, and blends of the same.",
    "6. The wearable device of claim 1, wherein the at least two flexible but less compliant textile regions are capable of elongation between 91% and 111%.",
    "7. The wearable device of claim 1, wherein the at least one compliant textile region and at least two flexible but less compliant textile regions are made from the same textile material.",
    "8. A wearable robotic device comprising: at least one compliant textile region adapted and configured to be placed over a joint of a subject; and at least two flexible but less compliant textile regions coupled to opposite ends of each compliant textile region and encircling the joint; and at least one actuator adapted and configured to move the flexible but less compliant textile regions relative to each other.",
    "9. The wearable robotic device of claim 8, wherein the at least one actuator facilitates a movement of the joint selected from the group consisting of: flexion, extension, abduction, and adduction.",
    "10. The wearable robotic device of claim 8, wherein the actuator includes an artificial tendon.",
    "11. The wearable robotic device of claim 8, wherein the actuator includes elements selected from the group consisting of: a piston, a DC motor, a stepper motor, a linear actuator, an electroactive polymer (EAP), and a pneumatic muscle.",
    "12. The wearable robotic device of claim 8, wherein the joint is selected from the group consisting of: a hand joint, an elbow joint, a wrist joint, a shoulder joint, a sternoclavicular joint, a vertebral joint, a temporomandibular joint, a sacroiliac joint, a hip joint, a knee joint, an ankle joint, and a foot joint.",
    "13. The wearable robotic device of claim 8, wherein the subject is a human.",
    "14. The wearable robotic device of claim 8, wherein the subject is a canine.",
    "15. The wearable robotic device of claim 8, wherein the wearable device is a glove.",
    "16. The wearable robotic device of claim 15, wherein the glove includes a plurality of fingers and each finger is associated with at least one actuator.",
    "17. The wearable robotic device of claim 8, further comprising: one or more force sensors adapted and configured to detect movement by the subject.",
    "18. The wearable robotic device of claim 8, further comprising: a pair of force sensors positioned on opposite sides of a subject's bone."
  ],
  "description_excerpt": "Despite the increasing availability of three-dimensional (3-D) images in a variety of fields such as medicine, science, and gaming, 3-D images remain challenging for users to comprehend, manipulate, and interact with. Moreover, current wearable robotics devices have large form factors that limit their suitability for real-world use.\n\nA wearable device includes at least one compliant region adapted and configured to be placed over a joint of a subject and at least two flexible but less compliant regions coupled to opposite ends of the compliant region. The at least one compliant regions may include a textile. The at least one compliant region may include a textile including one or more fibers such as natural fibers, cotton, wool, silk, hemp, flax, animal hair, jute, modal, cellulose, bamboo, piña, ramie, nettles, milkweed, seaweed, metals, manufactured fibers, azlon, acetate, triacetate, viscose, lyocell, glass, graphite carbon, carbon fiber, carbon nanotube, liquid crystal, ceramics, polyesters, aramids, para-aramids, meta-aramids, aromatic polyesters, rayon, acrylics, modacrylics, polyacrylonitrile, polylactides (PLAs), polyamides, polyamide 6, polyamide 6.6, rubber lastrile, lastol, polyethylene (PE), high-density polyethylene (HDPE), polyethylene terephthalate (PET), polypropylene (PP), polytetrafluoroethylene (PTFE), vinyl, vinyon, vinylidene chloride, polyvinylidene chloride (PVDC), polybenzimidazole (PBI), novoloid, melamine, anidex, nytril, elastoester, nylon, spandex/elastane, olefins, biosynthetic polymers, and blends of the same.",
  "cpc": [
    "G06F 3/014",
    "A61B 5/0022",
    "A61B 5/225",
    "A61B 5/6806",
    "A61F 2/583",
    "A61F 5/0102",
    "A61F 5/013",
    "A61H 1/0288",
    "B25J 13/025",
    "G06F 3/016"
  ],
  "ipc": [
    "A61B 5/00",
    "A61B 5/22",
    "A61F 2/58",
    "A61F 5/01",
    "A61H 1/02",
    "B25J 13/02",
    "G06F 3/01"
  ],
  "assignees": [
    "UNIV DREXEL"
  ],
  "inventors": [
    "COHEN ANDREW",
    "DION GENEVIEVE",
    "WINTER MARK",
    "WAIT ERIC",
    "KOERNER MICHAEL"
  ],
  "filing_date": "2015-02-27",
  "publication_date": "2019-04-02",
  "grant_date": "2019-04-02",
  "priority_date": "2014-03-02",
  "application_number": "US-201515123236-A",
  "family_id": "54055976",
  "citations": [
    "EP2624238A1",
    "US2006094989A1",
    "US2007226873A1",
    "US2011105978A1",
    "US2012204322A1",
    "US2013072829A1",
    "US2013226350A1",
    "US2013291282A1",
    "US2014039367A1",
    "US4084267A",
    "US4861645A",
    "US7967679B2",
    "US8029414B2",
    "US8362882B2",
    "US9375382B2"
  ]
}

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