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公开(公告)号:US20180071479A1
公开(公告)日:2018-03-15
申请号:US15818290
申请日:2017-11-20
Applicant: AIRSONNET AB
Inventor: Dan Allan Robert KRISTENSSON , Pal Martin Svensson
IPC: A61M16/10 , F24F3/16 , A61G13/10 , A61M16/06 , A61M16/16 , A61M16/00 , A61H33/06 , A61H33/00 , A61H35/00
CPC classification number: A61M16/1075 , A61G13/108 , A61G2203/46 , A61H35/008 , A61H2033/0037 , A61H2033/062 , A61H2201/0107 , A61H2201/0169 , A61H2201/0207 , A61H2201/0214 , A61H2201/0228 , A61H2201/0242 , A61H2201/0285 , A61H2201/50 , A61H2201/5082 , A61H2203/0456 , A61M16/0066 , A61M16/06 , A61M16/0627 , A61M16/107 , A61M16/16 , A61M2205/3368 , A61M2205/3606 , A61M2205/3673 , F24F3/1607 , F24F2221/38
Abstract: The present invention provides a practical method for treating atopic dermatitis. By subjecting patients suffering from atopic dermatitis to filtered temperature controlled laminar air flow disease symptoms have been significantly reduced and even removed. The velocity of the laminar air flow is balanced such that body convections are braked without the generation of draught.
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12.
公开(公告)号:US20180055931A1
公开(公告)日:2018-03-01
申请号:US15661588
申请日:2017-07-27
Applicant: TOYOTA BOSHOKU KABUSHIKI KAISHA
Inventor: Yuko YAMAMOTO , Mao MORIMOTO
CPC classification number: A61K41/00 , A61H99/00 , A61H2201/50 , A61K41/0004
Abstract: The present invention is a method for controlling a regeneration speed of an animal cell that includes a step of grasping tide-generating force and a step of giving a physical or chemical stimulus to the animal cell according to the magnitude of variation in the tide-generating force.
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公开(公告)号:US20180055724A1
公开(公告)日:2018-03-01
申请号:US15804372
申请日:2017-11-06
Applicant: RAPTORS DESIGN, INC.
Inventor: Alexander H. SLOCUM , Folkers E. ROJAS
CPC classification number: A61H15/02 , A61H15/00 , A61H15/0085 , A61H15/0092 , A61H23/0263 , A61H2015/0042 , A61H2015/005 , A61H2015/0057 , A61H2015/0064 , A61H2015/0071 , A61H2201/0153 , A61H2201/0192 , A61H2201/0207 , A61H2201/0214 , A61H2201/0228 , A61H2201/0257 , A61H2201/1261 , A61H2201/1695 , A61H2201/50 , A61H2201/5058 , A61H2201/5084 , A61H2201/5097 , A61H2205/06 , A61H2205/065 , A61H2205/12 , A61H2205/125 , A63B21/0552
Abstract: Disclosed herein is a massage device configured to provide a squeezing pressure. The massage device may include an elastically extensible and bendable connector element and at least two rolling massage elements. A portion of the elastically extensible and bendable connector element and the at least two rolling massage elements form a massaging zone configured to receive one or more body parts. The body parts may include feet, forearms, and the like. Accordingly, the massage device may provide relief for specific conditions such as plantar fasciitis and carpel tunnel syndrome.
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公开(公告)号:US20180036196A1
公开(公告)日:2018-02-08
申请号:US15783755
申请日:2017-10-13
Applicant: Bioness Inc.
Inventor: Joel Behnke , Todd Cushman , Erol Erturk , Arkady Glukhovsky , Kelvin J. Hasseler , Keith McBride , Moshe Olim , Perry Payne , Kenneth A. Regas , William H. Schwiebert , Daniel Scott Weinstein
IPC: A61H3/00 , A63B21/005 , A63B21/00 , A61G7/10 , A63B24/00
CPC classification number: A61G7/1042 , A61G7/1001 , A61G7/1049 , A61H3/008 , A61H2201/50 , A61H2201/501 , A61H2201/5061 , A61H2201/5064 , A61H2201/5079 , A61H2201/5084 , A61H2201/5092 , A61H2201/5097 , A63B21/00181 , A63B21/0058 , A63B21/068 , A63B21/4001 , A63B24/0087 , A63B69/0064 , A63B2022/0094 , A63B2024/0093 , A63B2071/0063 , A63B2071/0081 , A63B2071/0683 , A63B2220/10 , A63B2220/30 , A63B2220/40 , A63B2220/51 , A63B2220/52 , A63B2220/802 , A63B2220/806 , A63B2225/107 , A63B2225/20 , A63B2225/50
Abstract: A body weight support system includes a trolley, a powered conductor operatively coupled to a power supply, and a patient attachment mechanism. The trolley can include a drive system, a control system, and a patient support system. The drive system is movably coupled to a support rail. At least a portion of the control system is physically and electrically coupled to the powered conductor. The patient support mechanism is at least temporarily coupled to the patient attachment mechanism. The control system can control at least a portion of the patient support mechanism based at least in part on a force applied to the patient attachment mechanism.
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公开(公告)号:US09839569B2
公开(公告)日:2017-12-12
申请号:US15471585
申请日:2017-03-28
Applicant: Bioness Inc.
Inventor: Joel Behnke , Todd Cushman , Erol Erturk , Arkady Glukhovsky , Kelvin J. Hasseler , Keith McBride , Moshe Olim , Perry Payne , Kenneth A. Regas , William H. Schwiebert , Daniel Scott Weinstein
CPC classification number: A61G7/1042 , A61G7/1001 , A61G7/1049 , A61H3/008 , A61H2201/50 , A61H2201/501 , A61H2201/5061 , A61H2201/5064 , A61H2201/5079 , A61H2201/5084 , A61H2201/5092 , A61H2201/5097 , A63B21/00181 , A63B21/0058 , A63B21/068 , A63B21/4001 , A63B24/0087 , A63B69/0064 , A63B2022/0094 , A63B2024/0093 , A63B2071/0063 , A63B2071/0081 , A63B2071/0683 , A63B2220/10 , A63B2220/30 , A63B2220/40 , A63B2220/51 , A63B2220/52 , A63B2220/802 , A63B2220/806 , A63B2225/107 , A63B2225/20 , A63B2225/50
Abstract: A body weight support system includes a trolley, a powered conductor operatively coupled to a power supply, and a patient attachment mechanism. The trolley can include a drive system, a control system, and a patient support system. The drive system is movably coupled to a support rail. At least a portion of the control system is physically and electrically coupled to the powered conductor. The patient support mechanism is at least temporarily coupled to the patient attachment mechanism. The control system can control at least a portion of the patient support mechanism based at least in part on a force applied to the patient attachment mechanism.
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公开(公告)号:US20170340513A1
公开(公告)日:2017-11-30
申请号:US15207748
申请日:2016-07-12
Applicant: WELLMIKE TECHNOLOGY CORPORATION
Inventor: Chung-Yang CHEN
CPC classification number: A61H39/04 , A61H1/008 , A61H2201/10 , A61H2201/1207 , A61H2201/50 , A61H2201/5002 , A61H2201/5015 , A61H2201/5035 , A61H2201/5038 , A61N5/0619 , A61N2005/0647 , A61N2005/0651
Abstract: A massage device includes a device body for sleeving a finger or a toe, and a massage assembly located at the device body and further including a power element, a plurality of light-emitting elements and a plurality of transparent protrusive massage bodies. The power element located inside the device body is to provide a power for moving the device body. Each of the light-emitting elements is located on a corresponding light path of a light beam emitted by the corresponding light-emitting element. When the device body sleeves the finger or the toe, the transparent protrusive massage bodies contact the finger or the toe at one acupuncture point at least. When the device body is moved, the transparent protrusive massage bodies massage mechanically the at least one acupuncture point, and the light beam penetrating the corresponding transparent protrusive massage body is to massage optically the at least one acupuncture point.
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公开(公告)号:US20170340506A1
公开(公告)日:2017-11-30
申请号:US15605520
申请日:2017-05-25
Applicant: Carnegie Mellon University
Inventor: Juanjuan Zhang , Steven H. Collins
CPC classification number: A61H3/00 , A61H1/024 , A61H1/0266 , A61H2003/007 , A61H2201/0165 , A61H2201/1215 , A61H2201/1223 , A61H2201/149 , A61H2201/164 , A61H2201/165 , A61H2201/50 , A61H2201/5007 , A61H2201/5058 , A61H2201/5061 , A61H2201/5069 , A61H2230/60 , F16C1/108 , F16C1/12 , G05B6/02 , G05D17/02
Abstract: This document describes systems and methods for controlling an exoskeleton. The system receives a measurement of a first torque applied to a rotational joint coupling a first component to a second component, the first torque being applied by a motor via a cable. The system determines, based on the measurement of the first torque, a first portion of a second torque to apply to the rotational joint. The system determines, based on the measurement of the first torque, a second portion of the second torque to apply to the rotational joint. The system determines a value of the second torque to apply to the rotational joint based on the first portion and the second portion. The system controls the motor for applying the second torque to the rotational joint via the cable.
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公开(公告)号:US20170312165A1
公开(公告)日:2017-11-02
申请号:US15499850
申请日:2017-04-27
Applicant: Eric JOHNSON , Thomas J. FOGARTY , Sylvester LUCATERO , Gilbert LAROYA , James K. WALL , Conrad SALINAS
Inventor: Eric JOHNSON , Thomas J. FOGARTY , Sylvester LUCATERO , Gilbert LAROYA , James K. WALL , Conrad SALINAS
CPC classification number: A61H1/006 , A41D1/005 , A43B7/00 , A61B5/002 , A61B5/0022 , A61B5/02007 , A61B5/02042 , A61B5/0205 , A61B5/021 , A61B5/02141 , A61B5/022 , A61B5/024 , A61B5/0295 , A61B5/418 , A61B5/4238 , A61B5/4255 , A61B5/4836 , A61B5/4842 , A61B5/4848 , A61B5/6812 , A61B5/6824 , A61B5/6828 , A61B5/6829 , A61F5/00 , A61H7/001 , A61H31/004 , A61H31/005 , A61H31/006 , A61H31/008 , A61H2011/005 , A61H2201/0103 , A61H2201/0176 , A61H2201/0192 , A61H2201/1215 , A61H2201/165 , A61H2201/50 , A61H2201/501 , A61H2201/5038 , A61H2201/5046 , A61H2201/5061 , A61H2201/5064 , A61H2201/5069 , A61H2201/5071 , A61H2201/5084 , A61H2201/5089 , A61H2205/06 , A61H2205/067 , A61H2205/084 , A61H2205/10 , A61H2230/045 , A61H2230/065 , A61H2230/208 , A61H2230/255 , A61H2230/305 , A61H2230/505 , A61H2230/60 , A61H2230/625 , A61H2230/655 , A61H2230/85
Abstract: Systems, devices and methods for providing active and/or passive compression therapy to a body part can include a compression device worn over a compression stocking. The compression device can have a pulley based drive train that is driven by a motor to tighten and loosen compression elements, such as compression straps, in a precise, rapid, and balanced manner. Sensors can be used in the compression device and/or compression stockings to provide feedback to modulate the compression treatment parameters.
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19.
公开(公告)号:US20170311847A1
公开(公告)日:2017-11-02
申请号:US15652832
申请日:2017-07-18
Applicant: Wright Therapy Products, Inc.
Inventor: Carol L. Wright , Gregory Yurko
CPC classification number: A61B5/1073 , A61B5/0053 , A61B5/1072 , A61B5/1074 , A61B5/1075 , A61B5/4836 , A61B5/4878 , A61B5/6812 , A61B5/6824 , A61B5/6828 , A61B5/7246 , A61B5/7278 , A61F2002/7615 , A61F2002/762 , A61H9/0078 , A61H9/0092 , A61H2201/50 , A61H2209/00
Abstract: Methods are disclosed for measuring the size of body parts treated by a compression therapy device. Either the volume or circumference of the body part may be measure. The methods my include evacuating an inflatable compression sleeve to a known pressure, inserting the body part into the compression sleeve, inflating the sleeve to a pre-set condition, and then measuring one or more inflation related parameters. The pre-set conditions may include a predetermined pressure, volume, or size of the inflatable cells comprising the sleeve. The inflation related parameters may include the time to fill the cell to a pre-set pressure, the pressure attained after a pre-set time of inflation, or the measure volume of a cell after a pre-set amount of air is introduced into it. The methods may also include deflating the cells from the known inflation state to a second inflation state and measuring similar parameters.
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公开(公告)号:US20170268953A1
公开(公告)日:2017-09-21
申请号:US15529860
申请日:2015-10-02
Inventor: Eung Hyuk LEE , Su Hong EOM , Won Young LEE
CPC classification number: G01M1/122 , A61H3/00 , A61H2201/164 , A61H2201/165 , A61H2201/50 , A61H2201/5061 , A61H2230/625 , B25J13/081 , B25J13/085 , G01L1/20 , G01L1/22
Abstract: Provided are a system and method for estimating the center of gravity of a walking rehabilitation robot, the system being provided with: a sensor module for estimating the point of the center of gravity, and provided with: a sensor unit mounted on a footplate to sense the pressure when a person walks; output means for outputting a voltage value corresponding to preset conditions according to a pressure signal sensed by the sensor module; and estimating means for calculating an angle value corresponding to the voltage value outputted by the output means, and estimating the center of gravity, wherein a body center can be estimated by obtaining an accurate detection using a small-sized system that has a relatively low-cost sensor module installed therein.
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