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US20170274249A1 - Wearable resistance device with power monitoring - Google Patents

Wearable resistance device with power monitoring
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Publication number
US20170274249A1
US20170274249A1US15/593,138US201715593138AUS2017274249A1US 20170274249 A1US20170274249 A1US 20170274249A1US 201715593138 AUS201715593138 AUS 201715593138AUS 2017274249 A1US2017274249 A1US 2017274249A1
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US
United States
Prior art keywords
training system
resistance
garment
biomechanics
power
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US15/593,138
Inventor
Jacob A. Moebius
Belinko K. Matsuura
David G. Matsuura
Gerard von Hoffmann
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tau Orthopedics LLC
Ford Global Technologies LLC
Original Assignee
Tau Orthopedics LLC
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
Priority claimed from US15/078,250external-prioritypatent/US9656117B2/en
Application filed by Tau Orthopedics LLCfiledCriticalTau Orthopedics LLC
Priority to US15/593,138priorityCriticalpatent/US20170274249A1/en
Publication of US20170274249A1publicationCriticalpatent/US20170274249A1/en
Priority to PCT/US2018/032156prioritypatent/WO2018209144A1/en
Assigned to TAU ORTHOPEDICS, INC.reassignmentTAU ORTHOPEDICS, INC.CERTIFICATE OF CONVERSIONAssignors: TAU ORTHOPEDICS, LLC
Priority to US17/494,250prioritypatent/US20220225894A1/en
Assigned to FORD GLOBAL TECHNOLOGIES, LLCreassignmentFORD GLOBAL TECHNOLOGIES, LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: FERNANDEZ-GALINDO, FRANCISCO, KONSTANTINOV, ALEXEY, ROBERTS, DANIEL PAUL
Abandonedlegal-statusCriticalCurrent

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Abstract

Disclosed is a technical training garment configured for use with modular, interchangeable biomechanics units and or resistance modules. The garment may provide resistance to movement throughout an angular range of motion and or tracks a variety of biomechanical parameters such as stride length, stride rate, angular velocity and power expended by the wearer. The garment may be low profile, and worn by a wearer as a primary garment or beneath or over conventional clothing or athletic uniform. The device may be worn as a supplemental training and or diagnostic tool during conventional training protocols, or as a biomechanics or biometric data capture device during competition.

Description

Claims (42)

What is claimed is:
1. A wearable garment training system for monitoring stride biomechanics at the hip, comprising:
a waist portion;
a left leg portion;
a right leg portion;
a left hip biomechanics unit removably carried by a left connector on the garment and aligned with a rotational axis of the left leg;
a right hip biomechanics unit removably carried by a right connector on the garment and aligned with a rotational axis of the right leg;
wherein the left and right biomechanics units each capture data for enabling the determination of power expended by a wearer throughout a range of motion at the hip.
2. A training system as inclaim 1, wherein at least one of the biomechanics units is configured to capture time and angle data during flexion.
3. A training system as inclaim 1, wherein at least one of the biomechanics units is configured to capture time and angle data during extension.
4. A training system as inclaim 1, wherein at least one of the biomechanics units is configured to measure force applied during flexion.
5. A training system as inclaim 1, wherein at least one of the biomechanics units is configured to measure force applied during extension.
6. A training system as inclaim 1, wherein at least one of the biomechanics units is configured to capture data relating to angular velocity of a wearer's leg throughout the range of motion.
7. A training system as inclaim 1, further comprising a processor, for determining power expended throughout the range of motion.
8. A training system as inclaim 1, further comprising a transmitter, for transmitting data to a remote device.
9. A training system as inclaim 2, further comprising a transmitter, for transmitting time and angle data to a remote device.
10. A training system as inclaim 1, further comprising a left knee biomechanics unit and a right knee biomechanics unit.
11. A training system as inclaim 1, wherein the left and right hip biomechanics units each further comprise rotatable resistance units.
12. A training system as inclaim 1, wherein each biomechanics unit comprises a housing and a femoral lever extending from the housing.
13. A training system as inclaim 1, wherein the garment comprises a compression fabric.
14. A training system as inclaim 13, wherein the fabric comprises a polyester elastane fabric with moisture wicking properties.
15. A training system as inclaim 11, wherein the left and right resistance units each impose a resistance of at least about 5 inch pounds.
16. A training system as inclaim 15, wherein the left and right resistance units each impose a resistance of at least about 10 inch pounds.
17. A training system as inclaim 16, wherein the left and right resistance units each impose a resistance of at least about 15 inch pounds.
18. A training system as inclaim 1, wherein the garment comprises a wearable harness.
19. A training system as inclaim 18, wherein the harness comprises a waist band and left and right leg bands.
20. A training system as inclaim 1, further comprising an ANT+ transmitter.
21. A training system as inclaim 1, wherein each biomechanics unit is configured to capture data for enabling the determination of stride length.
22. A training system as inclaim 1, wherein each biomechanics unit is configured to capture data for enabling the determination of stride rate.
23. A training system as inclaim 1, wherein at least one biomechanics unit comprises a strain gauge.
24. A training system as inclaim 1, wherein at least one biomechanics unit comprises a torque sensor.
25. A training system as inclaim 1, wherein the left and right biomechanics units are configured to capture data reflecting left side and right side asymmetries in performance.
26. A training system as inclaim 25, further comprising a processor and a transmitter, wherein the processor is configured to transmit data reflecting left side and right side asymmetries in power output.
27. A training system as inclaim 25, further comprising a processor and a transmitter, wherein the processor is configured to transmit data reflecting left side and right side asymmetries in stride length.
28. A training system as inclaim 1, further comprising a processor configured to determine power to heart rate ratio.
29. A training system as inclaim 1, further comprising a processor and a transmitter, wherein the processor is configured to transmit data enabling the determination of power to heart rate ratio.
30. A training system as inclaim 1, further comprising a processor configured to determine power to weight ratio.
31. A training system as inclaim 1, further comprising a processor and a transmitter, wherein the processor is configured to transmit data enabling the determination of power to weight ratio.
32. A training system as inclaim 1, further comprising a processor configured to determine efficiency factor.
33. A training system as inclaim 1, further comprising a processor and a transmitter, wherein the processor is configured to transmit data enabling the determination of efficiency factor.
34. A training system as inclaim 1, further comprising a processor and a transmitter, wherein the processor is configured to transmit data reflecting actual distance travelled based in part upon measured stride length.
35. A training system as inclaim 1, further comprising an electronics module carried by the garment, the electronics module comprising a processor and a transmitter.
36. A training system as inclaim 35, wherein the electronics module is in wired communication with at least one biomechanics unit.
37. A training system as inclaim 35, wherein the electronics module is carried by the waist portion.
38. A training system as inclaim 37, wherein the electronics module is removably carried by the waist portion.
39. A wearable garment training system for increasing physiological load and monitoring power exerted to overcome the load, the wearable garment training system comprising a waist portion, a left leg portion, a right leg portion, a left hip resistance unit carried by the garment such that movement of the left leg portion relative to the waist portion is resisted by the left hip resistance unit, a right hip resistance unit carried by the garment such that movement of the right leg portion relative to the waist portion is resisted by the right hip resistance unit, and one or more hardware processors, wherein the one or more hardware processors are configured to:
receive a first measurement of force exerted by a wearer from a left force sensor;
receive a second measurement of force exerted by the wearer from a right force sensor;
apply power processing rules on the first measurement of force and the second measurement of force; and
determine power generated by the wearer based on the application of the power processing rules on the first measurement of force and the second measurement of force.
40. A wearable measurement system as inclaim 39, wherein the one or more hardware processors are further configured to generate a display including an indication of the determined power and transmit the generated display to a computing device.
41. A wearable garment training system for monitoring power expended by a wearer, the wearable garment training system comprising:
a waist portion, a left leg portion, and a right leg portion;
a left hip biomechanics unit carried by a left connector on the garment and aligned with a rotational axis of the left leg;
a right hip biomechanics unit carried by a right connector on the garment and aligned with a rotational axis of the right leg; and
one or more hardware processors, wherein the one or more hardware processors are configured to:
receive a first measurement of time and angular rotation data from a left biomechanics unit;
receive a second measurement of time and angular rotation data from a right biomechanics unit;
apply power processing rules on the first measurement of time and angular rotation data and the second measurement of time and angular rotation data; and
determine power generated by the wearer based on the application of the power processing rules on the first measurement of time and angular rotation data and the second measurement of time and angular rotation data.
42. A wearable measurement system as inclaim 41, wherein the one or more hardware processors are further configured to generate a display including an indication of the determined power and transmit the generated display to a computing device.
US15/593,1382016-03-232017-05-11Wearable resistance device with power monitoringAbandonedUS20170274249A1 (en)

Priority Applications (3)

Application NumberPriority DateFiling DateTitle
US15/593,138US20170274249A1 (en)2016-03-232017-05-11Wearable resistance device with power monitoring
PCT/US2018/032156WO2018209144A1 (en)2017-05-112018-05-10Wearable resistance device with power monitoring
US17/494,250US20220225894A1 (en)2016-03-232021-10-05Wearable resistance device with power monitoring

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US15/078,250US9656117B2 (en)2009-06-192016-03-23Wearable resistance garment with power measurement
US15/593,138US20170274249A1 (en)2016-03-232017-05-11Wearable resistance device with power monitoring

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US15/078,250Continuation-In-PartUS9656117B2 (en)2009-06-192016-03-23Wearable resistance garment with power measurement

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US17/494,250ContinuationUS20220225894A1 (en)2016-03-232021-10-05Wearable resistance device with power monitoring

Publications (1)

Publication NumberPublication Date
US20170274249A1true US20170274249A1 (en)2017-09-28

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US15/593,138AbandonedUS20170274249A1 (en)2016-03-232017-05-11Wearable resistance device with power monitoring
US17/494,250AbandonedUS20220225894A1 (en)2016-03-232021-10-05Wearable resistance device with power monitoring

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US10124205B2 (en)2016-03-142018-11-13Tau Orthopedics, LlcToning garment with modular resistance unit docking platforms
US20190000385A1 (en)*2017-06-302019-01-03James A. MagnascoAdaptive Compression Sleeves and Clothing Articles
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US20190143174A1 (en)*2017-11-152019-05-16Culturit Co., Ltd.Motion training guide system based on wearable sensor and method thereof
US10307644B2 (en)*2013-11-052019-06-04Halcyonic, LLCVirtual competition environment
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WO2019168415A1 (en)*2018-03-022019-09-06Resonance Management And Consulting LimitedA system and method for determining power and propulsion efficiency of a limb during limbed propulsion
US20190278159A1 (en)*2016-05-272019-09-12Swift Design GmbhStrap Retainer for a Camera
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US10702740B2 (en)2018-09-142020-07-07Ts Medical LlcPortable devices for exercising muscles in the ankle, foot, and/or leg, and related methods
US20200405195A1 (en)*2019-06-252020-12-31Trustees Of Dartmouth CollegeComputational fabrics for monitoring human joint motion
WO2021032970A1 (en)*2019-08-192021-02-25Mechatech LimitedJoint motion capture
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US20220126160A1 (en)*2020-10-222022-04-28Soft Sense Life Tech Pte. Ltd.Wearing supply for muscular strength training
US11395954B2 (en)2020-05-082022-07-26Cheer Match Media, LLCMethods and apparatus for emulating live performance routine competition conditions without live competition staging
USD961023S1 (en)2020-02-122022-08-16TS Medical, LLCExcercise device
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US11638852B2 (en)2018-04-062023-05-02TS Medical, LLCPortable devices for exercising muscles in the ankle, foot, and/or leg, and related methods
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USD1012207S1 (en)2020-08-122024-01-23TS Medical, LLCExercise device

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USD1012207S1 (en)2020-08-122024-01-23TS Medical, LLCExercise device
US20220126160A1 (en)*2020-10-222022-04-28Soft Sense Life Tech Pte. Ltd.Wearing supply for muscular strength training

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