MLchartDataset catalogue

Patent · US9662526B2 · B2 · US

Active movement training devices, methods, and systems

(11) Publication number
US9662526B2
(21) Application number
14/692,082
(22) Filing date
2015-04-21
(30) Priority date
2014-04-21
(43) Publication date
2017-05-30
(45) Date of grant
2017-05-30
(51) IPC
A63B 23/04; A63B 21/00; A61B 5/00; A61B 5/11; A61B 5/22; A63B 22/02; A63B 24/00; A63B 69/00; G06F 19/00
(52) CPC
  • A63B Apparatus for physical training, gymnastics, swimming, climbing, or fencing; ball games; training equipment: 21/00181, 2022/0094, 2023/003, 2024/0093, 2071/065, 21/00076, 21/0058, 21/023, 21/152, 21/4009, 21/4015, 21/4025, 21/4034, 21/4047, 22/0235, 22/0242, 2209/10, 2220/51, 2220/54, 24/0087, 69/0064
  • A61B Diagnosis; surgery; identification: 2505/09, 2562/0252, 5/112, 5/1121, 5/22, 5/4848, 5/6823, 5/6828, 5/6829, 5/6835, 5/7246
  • 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: 1/0262, 1/0266, 2201/0119, 2201/1215, 2201/1409, 2201/149, 2201/1619, 2201/164, 2201/165, 2201/1676, 2201/5061, 2201/5066, 2203/0406, 2203/0425
  • G06F Electric digital data processing: 19/3481
  • G16H Healthcare informatics, i.e. information and communication technology [ICT] specially adapted for the handling or processing of medical or healthcare data: 20/30
(73) Assignee
Columbia University in the City of New York
(72) Inventors
Sunil K. Agrawal; Damiano ZANOTTO; Paul Stegall
(54) Title
Active movement training devices, methods, and systems
(57) Abstract

A rehabilitation machine can have a chassis with actuators positioned behind a patient area. The actuators can have supports projecting toward the patient area and can have respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture. The actuators can also have motors, transition elements, and linkages connected to apply moments through the adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller. The actuators can be confined to a space, largely behind the patient, such that free arm swing is permitted when the patient is attached.

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Claims (25)

  1. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being confined to a space, largely behind the patient, such that free arm swing is permitted when the patient is attached.
  2. The machine of claim 1, further comprising a pelvic adapter projecting forward and shaped and positioned to receive the hips of a patient.
  3. The machine of claim 2, wherein the actuators are supported on a movable subframe.
  4. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic translation.
  5. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic rotation.
  6. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic translation and pelvic rotation.
  7. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including vertical pelvic translation.
  8. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic rotation and vertical translation.
  9. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including vertical pelvic translation and pelvic rotation.
  10. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including motion of the pelvis through all six of translation and rotation axes.
  11. The machine of claim 1, wherein the actuators include a subchassis carrying motors and first transmission elements movably mounted to the subchassis.
  12. The machine of claim 1, wherein the chassis includes an open frame to accommodate a treadmill thereunder.
  13. The machine of claim 12, wherein the actuators include a subchassis carrying motors and first transmission elements movably mounted to the frame and a parallelogram linkage that carries the thigh adapter.
  14. The rehabilitation machine according to claim 1, wherein the actuators are entirely outside of reach of the patient's arms when the patient is attached to the respective adapters of the supports in a normal walking position.
  15. The rehabilitation machine according to claim 1, wherein the actuators are configured to project a kinematic equivalent of a patient's legs from joints located behind the patient to the adapters, such that all the joints of the kinematic mechanism corresponding to at least the hip are located remote from and behind the patient, and out of the range of a normal walking swing of the connected patient's arms.
  16. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being at least partially confined to a space behind the patient, such that free arm swing is permitted when the patient is attached, wherein the chassis includes an open frame to accommodate a treadmill thereunder, the actuators include a subchassis carrying motors and first transmission elements movably mounted to the frame and a parallelogram linkage that carries the thigh adapter, and the parallelogram linkage carries second transmission elements that connect to the first transmission elements, the second transmission elements driving linkages depending from the parallelogram linkage with ranges of motion to apply moments to the calf adapter and the foot adapter.
  17. The machine of claim 16, wherein the controller is configured to provide an assistive or resistive mode by driving the motors in such a way that a patient resisting or assisting programmed forces transmitted to the adapters may impede or advance the programmed motion of the adapters to a predefined degree.
  18. The machine of claim 17, wherein the mechanical impedance forces required so as to impede or assist the forces transmitted to the adapters include the inertia of linkages and transmission elements but not the motors, the motors being carried by the subchassis.
  19. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being at least partially confined to a space behind the patient, such that free arm swing is permitted when the patient is attached, wherein the actuators include a subchassis that is linked to motors supported on a fixed frame, first transmission elements being movably mounted to the subchassis and motive forces conveyed from the motors through flexible transmission couplings.
  20. The machine of claim 19, wherein the flexible transmission couplings include multiple zero-backlash links.
  21. The machine of claim 19, wherein the flexible transmission couplings include constant velocity joints.
  22. The machine of claim 19, wherein the first transmission elements include joints and links that kinematically mirror the movements of the hip and knee and are projected directly from behind.
  23. The machine of claim 19, wherein the first transmission elements include timing belts and pulleys.
  24. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being confined to a space, largely behind the patient, such that free arm swing is permitted when the patient is attached, wherein the actuators are configured to apply controlled forces to the pelvis, hip, knee and ankle joints simultaneously to control four degrees of freedom at the pelvis including vertical rotation, anterior/posterior, superior/inferior and lateral motions and four degrees of freedom at each leg including hip adduction/abduction, hip and knee flexion/extension, and ankle plantar/dorsiflexion.
  25. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators applying moments through said adapters to each leg according to signals from a controller, wherein the actuators, apart from the adapters, are confined to a space behind the patient, such that uninhibited normal arm swing is permitted when the patient is attached.

Description

With an aging population comes the increased need for improved rehabilitation technologies for disabilities caused by brain and spinal cord injury, stroke and other neurological and orthopedic conditions. For stroke victims, intense physiotherapy is often required to regain and improve ambulatory and brain functions. As the population ages, the need for rehabilitation therapy has increased dramatically. Patients suffering from brain and spinal cord injury, stroke or other neurological and orthopedic conditions may benefit from mobility assistance and therapeutic devices. Current attempts at gait therapy improve function, but are labor intensive and limited by the demands and availability of physical therapists. The success of treatment is limited by the physical demands and availability of physical therapists. Robotic devices have been proposed for gait rehabilitation and can potentially reduce the physical burden on healthcare providers and the financial burden on patients.

The disclosed subject matter includes a treadmill-based bilateral exoskeleton for gait therapy applications that can simultaneously apply controlled forces to the pelvis, knee and ankle joints. In embodiments, the technology provides twelve total degrees of freedom in the pelvis and legs to facilitate symmetric recovery and expand available therapeutic training regimens for gait therapy. Disclosed technology may also be used to evaluate/track gait, motor control and recovery of function.

Citations (6)

  • US20140088729A1
  • US8608674B2
  • US20080249438A1
  • US8147436B2
  • US9351855B2
  • US20110245738A1
Record as JSON
{
  "publication_number": "US9662526B2",
  "country": "US",
  "kind": "B2",
  "title": "Active movement training devices, methods, and systems",
  "abstract": "A rehabilitation machine can have a chassis with actuators positioned behind a patient area. The actuators can have supports projecting toward the patient area and can have respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture. The actuators can also have motors, transition elements, and linkages connected to apply moments through the adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller. The actuators can be confined to a space, largely behind the patient, such that free arm swing is permitted when the patient is attached.",
  "claims": [
    "1. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being confined to a space, largely behind the patient, such that free arm swing is permitted when the patient is attached.",
    "2. The machine of claim 1, further comprising a pelvic adapter projecting forward and shaped and positioned to receive the hips of a patient.",
    "3. The machine of claim 2, wherein the actuators are supported on a movable subframe.",
    "4. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic translation.",
    "5. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic rotation.",
    "6. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic translation and pelvic rotation.",
    "7. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including vertical pelvic translation.",
    "8. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including lateral pelvic rotation and vertical translation.",
    "9. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including vertical pelvic translation and pelvic rotation.",
    "10. The machine of claim 2, wherein the pelvic adapter is movably supported to permit movement thereof in a confined range including motion of the pelvis through all six of translation and rotation axes.",
    "11. The machine of claim 1, wherein the actuators include a subchassis carrying motors and first transmission elements movably mounted to the subchassis.",
    "12. The machine of claim 1, wherein the chassis includes an open frame to accommodate a treadmill thereunder.",
    "13. The machine of claim 12, wherein the actuators include a subchassis carrying motors and first transmission elements movably mounted to the frame and a parallelogram linkage that carries the thigh adapter.",
    "14. The rehabilitation machine according to claim 1, wherein the actuators are entirely outside of reach of the patient's arms when the patient is attached to the respective adapters of the supports in a normal walking position.",
    "15. The rehabilitation machine according to claim 1, wherein the actuators are configured to project a kinematic equivalent of a patient's legs from joints located behind the patient to the adapters, such that all the joints of the kinematic mechanism corresponding to at least the hip are located remote from and behind the patient, and out of the range of a normal walking swing of the connected patient's arms.",
    "16. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being at least partially confined to a space behind the patient, such that free arm swing is permitted when the patient is attached, wherein the chassis includes an open frame to accommodate a treadmill thereunder, the actuators include a subchassis carrying motors and first transmission elements movably mounted to the frame and a parallelogram linkage that carries the thigh adapter, and the parallelogram linkage carries second transmission elements that connect to the first transmission elements, the second transmission elements driving linkages depending from the parallelogram linkage with ranges of motion to apply moments to the calf adapter and the foot adapter.",
    "17. The machine of claim 16, wherein the controller is configured to provide an assistive or resistive mode by driving the motors in such a way that a patient resisting or assisting programmed forces transmitted to the adapters may impede or advance the programmed motion of the adapters to a predefined degree.",
    "18. The machine of claim 17, wherein the mechanical impedance forces required so as to impede or assist the forces transmitted to the adapters include the inertia of linkages and transmission elements but not the motors, the motors being carried by the subchassis.",
    "19. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being at least partially confined to a space behind the patient, such that free arm swing is permitted when the patient is attached, wherein the actuators include a subchassis that is linked to motors supported on a fixed frame, first transmission elements being movably mounted to the subchassis and motive forces conveyed from the motors through flexible transmission couplings.",
    "20. The machine of claim 19, wherein the flexible transmission couplings include multiple zero-backlash links.",
    "21. The machine of claim 19, wherein the flexible transmission couplings include constant velocity joints.",
    "22. The machine of claim 19, wherein the first transmission elements include joints and links that kinematically mirror the movements of the hip and knee and are projected directly from behind.",
    "23. The machine of claim 19, wherein the first transmission elements include timing belts and pulleys.",
    "24. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators having motors, transition elements, and linkages connected to apply moments through said adapters to achieve, for each leg, hip adduction/abduction, hip flexion/extension, knee flexion/extension, and foot plantar flexion/dorsiflexion according to signals from a controller; the actuators being confined to a space, largely behind the patient, such that free arm swing is permitted when the patient is attached, wherein the actuators are configured to apply controlled forces to the pelvis, hip, knee and ankle joints simultaneously to control four degrees of freedom at the pelvis including vertical rotation, anterior/posterior, superior/inferior and lateral motions and four degrees of freedom at each leg including hip adduction/abduction, hip and knee flexion/extension, and ankle plantar/dorsiflexion.",
    "25. A rehabilitation machine, comprising: a chassis with actuators positioned behind a patient area; the actuators having supports projecting toward the patient area and having respective adapters shaped to engage the legs of a patient at the thigh, the calf, and the foot while the patient is in a standing or walking posture; the actuators applying moments through said adapters to each leg according to signals from a controller, wherein the actuators, apart from the adapters, are confined to a space behind the patient, such that uninhibited normal arm swing is permitted when the patient is attached."
  ],
  "description_excerpt": "With an aging population comes the increased need for improved rehabilitation technologies for disabilities caused by brain and spinal cord injury, stroke and other neurological and orthopedic conditions. For stroke victims, intense physiotherapy is often required to regain and improve ambulatory and brain functions. As the population ages, the need for rehabilitation therapy has increased dramatically. Patients suffering from brain and spinal cord injury, stroke or other neurological and orthopedic conditions may benefit from mobility assistance and therapeutic devices. Current attempts at gait therapy improve function, but are labor intensive and limited by the demands and availability of physical therapists. The success of treatment is limited by the physical demands and availability of physical therapists. Robotic devices have been proposed for gait rehabilitation and can potentially reduce the physical burden on healthcare providers and the financial burden on patients.\n\nThe disclosed subject matter includes a treadmill-based bilateral exoskeleton for gait therapy applications that can simultaneously apply controlled forces to the pelvis, knee and ankle joints. In embodiments, the technology provides twelve total degrees of freedom in the pelvis and legs to facilitate symmetric recovery and expand available therapeutic training regimens for gait therapy. Disclosed technology may also be used to evaluate/track gait, motor control and recovery of function.",
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  "assignees": [
    "Columbia University in the City of New York"
  ],
  "inventors": [
    "Sunil K. Agrawal",
    "Damiano ZANOTTO",
    "Paul Stegall"
  ],
  "filing_date": "2015-04-21",
  "publication_date": "2017-05-30",
  "grant_date": "2017-05-30",
  "priority_date": "2014-04-21",
  "application_number": "US-201514692082-A",
  "family_id": "54321116",
  "cited_by_count": 12,
  "citations": [
    "US20140088729A1",
    "US8608674B2",
    "US20080249438A1",
    "US8147436B2",
    "US9351855B2",
    "US20110245738A1"
  ]
}

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