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公开(公告)号:US20240061386A1
公开(公告)日:2024-02-22
申请号:US18384159
申请日:2023-10-26
Applicant: Hayward Industries, Inc.
Inventor: Kevin Potucek , Gregory Fournier , James Murdock , Robert Heon , David Blaine , Craig Horrocks , Kenneth White, JR. , Murat Dymov , Michael Nilsson , Thomas-Eric Béliveau , Deyin Xu , Patrick Mainville , Qiwei Huang , Linnette Rivera
IPC: G05B15/02 , A61H33/00 , G05B19/042 , H04L61/50 , H04L61/5038 , H04L47/70 , E04H4/14
CPC classification number: G05B15/02 , A61H33/005 , G05B19/0421 , H04L61/50 , H04L61/5038 , H04L47/70 , E04H4/14 , A61H2033/0079 , A61H2033/0083 , A61H2201/501 , A61H2201/5012 , A61H2201/5015 , A61H2201/5082 , A61H2201/5084 , A61H2201/5087 , A61H2201/5092 , A61H2201/5097 , G05B2219/21092
Abstract: A system for monitoring and controlling aquatic equipment is provided. The system includes a variable speed pump, a controller configured to determine operational parameters of the variable speed pump and to control operation of the variable speed pump, and a wireless communication system operatively coupled to the controller. The wireless communication subsystem is configured to transmit one or more of the operational parameters of the variable speed pump to a device over a WiFi wireless and/or a Bluetooth wireless connection. The wireless communication subsystem is configured to receive one or more control parameters from the device, and the controller controls operation of the variable speed pump based on the one or more control parameters.
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公开(公告)号:US11893903B2
公开(公告)日:2024-02-06
申请号:US16948823
申请日:2020-10-01
Applicant: ZOLL Medical Corporation
Inventor: Qing Tan , Frederick J Geheb , Gary A Freeman
CPC classification number: G09B23/288 , A61H31/005 , A61N1/3925 , A61N1/39044 , A61N1/3993 , A61H2201/501 , A61H2201/5084 , A61H2230/045
Abstract: An example of a system for assisting a rescuer in providing CPR includes a motion sensor configured to generate signals indicative of chest motion during CPR chest compressions, and a defibrillator including a display screen configured to provide CPR feedback and defibrillation information and a processor configured to receive the signals, generate a compression waveform based on the signals, detect, in the compression waveform, features characteristic of chest compressions, compare the detected features to a predetermined criterion that distinguishes between manually delivered and compressions delivered by an automated compression device, and selectively provide the CPR feedback based on whether the compressions are the manually delivered or the automated compressions, where the selective provision of the CPR feedback includes displaying CPR parameters for the manually delivered compressions, and a removing from the display screen at least one CPR parameter of the CPR parameters for the automated compressions.
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公开(公告)号:US20240024142A1
公开(公告)日:2024-01-25
申请号:US18479640
申请日:2023-10-02
Applicant: Bone Health Technologies, Inc.
Inventor: Daniel R. BURNETT , Shane MANGRUM , Timothy TIGNER , Evan S. LUXON , Marcie HAMILTON , Alex YEE
CPC classification number: A61F5/0003 , A61H23/02 , A61H23/0218 , A61H23/0263 , A61H23/0245 , A61H2205/088 , A61H2201/1623 , A61H2201/164 , A61H2201/165 , A61H2201/5097 , A61H2205/081 , A61H2201/5002 , A61H2201/1635 , A61H2201/5012 , A61H2201/1633 , A61H2201/5005 , A61H2201/1445 , A61H2201/1628 , A61H2201/501 , A61H2201/5061 , A61H2201/5084
Abstract: A wearable apparatus for the treatment or prevention of osteopenia or osteoporosis, stimulating bone growth, preserving or improving bone mineral density, and inhibiting adipogenesis is disclosed where the apparatus may generally comprise one or more vibrating elements configured for imparting repeated mechanical loads to the hip, femur, and/or spine of an individual at a frequency and acceleration sufficient for therapeutic effect. These vibrating elements may be secured to the upper body of an individual via one or more respective securing mechanisms, where the securing mechanisms are configured to position the one or more vibrating elements in a direction lateral to the individual, and the position, tension, and efficacy of these vibrating elements may be monitored and/or regulated by one or more accelerometers.
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公开(公告)号:US11850203B2
公开(公告)日:2023-12-26
申请号:US17660381
申请日:2022-04-22
Applicant: Passy-Muir, Inc.
Inventor: Christy Leslie Ludlow , Larry Lee Hood
CPC classification number: A61H23/00 , A61H9/0078 , A61N5/0622 , A61B5/0205 , A61H2201/0207 , A61H2201/0214 , A61H2201/10 , A61H2201/102 , A61H2201/165 , A61H2201/1609 , A61H2201/5002 , A61H2201/5005 , A61H2201/5035 , A61H2201/5038 , A61H2201/5041 , A61H2201/5043 , A61H2201/5084 , A61H2201/5097 , A61H2205/04 , A61H2230/065 , A61H2230/201 , A61H2230/208 , A61H2230/305 , A61H2230/405 , A61N5/067 , A61N2007/0026
Abstract: A method for enhancing speech control in a subject includes applying a first vibrotactile stimulation and applying a second vibrotactile stimulation to a thyroid area of the subject. The first vibrotactile stimulation has a first vibrating property and the second vibrotactile stimulation has a second vibrating property different than the first vibrating property. Example vibrating properties include vibrating frequency, vibrating frequency range, wave shape, continuousness, frequency phase, and direction of mechanical force. A collar may be configured to position the first vibrational transducer and the second vibrational transducer over a neck of a subject.
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公开(公告)号:US11844625B2
公开(公告)日:2023-12-19
申请号:US17113602
申请日:2020-12-07
Applicant: ZIPLINE MEDICAL, INC.
Inventor: Amir Belson , Edward C. Driscoll, Jr. , Eric Storne , Alan Schaer
IPC: A61B5/00 , A61N5/06 , A61B5/145 , A61M31/00 , A61N7/00 , A61F7/00 , A61B17/08 , A61H23/02 , A61H23/00 , A61N1/00 , A61B5/01 , A61B5/11 , A61B17/00 , A61B90/00
CPC classification number: A61B5/4848 , A61B5/0015 , A61B5/01 , A61B5/1118 , A61B5/1121 , A61B5/14532 , A61B5/14539 , A61B5/14542 , A61B5/6832 , A61B5/746 , A61B17/08 , A61B17/085 , A61F7/007 , A61H23/00 , A61H23/02 , A61H23/0245 , A61M31/002 , A61N1/00 , A61N5/0616 , A61N5/0624 , A61N7/00 , A61B2017/00022 , A61B2017/0073 , A61B2017/00075 , A61B2017/00084 , A61B2017/00221 , A61B2017/00407 , A61B2017/00876 , A61B2017/00893 , A61B2017/086 , A61B2090/064 , A61B2562/0219 , A61B2562/0223 , A61B2562/0261 , A61B2562/0266 , A61F2007/0052 , A61F2007/0056 , A61H2201/0184 , A61H2201/0207 , A61H2201/0214 , A61H2201/0242 , A61H2201/10 , A61H2201/105 , A61H2201/165 , A61H2201/5015 , A61H2201/5058 , A61H2201/5061 , A61H2201/5064 , A61H2201/5084 , A61H2201/5092 , A61H2201/5097 , A61H2230/00 , A61H2230/205 , A61H2230/207 , A61H2230/505
Abstract: A wound or incision closure apparatus comprises a first and second panel. Each of the panels comprises a bottom adhesive layer, a medial substrate layer, and an upper load distribution layer which connect the two panels. A sensory or therapeutic element is disposed adjacent, within, or between two or more of the layers. The sensory or therapeutic element can provide sensing and/or therapy for the incision and/or monitor the incision so that the therapy can be customized and updated.
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公开(公告)号:US20230310250A1
公开(公告)日:2023-10-05
申请号:US18128108
申请日:2023-03-29
Applicant: REGENTS OF THE UNIVERSITY OF MICHIGAN
Inventor: Austin Carr , Christopher Colón , Matthew Rudy , John Ike Smith , Alex Turk , Elliott J. Rouse , William Grundfest , Zachary Grundfest
CPC classification number: A61H1/024 , A61F5/0123 , B25J9/0006 , B25J13/088 , A61H2201/1207 , A61H2201/1253 , A61H2201/1642 , A61H2201/5084 , A63B2071/125
Abstract: The present disclosure provides an exoskeleton mechanism for supporting a joint. The exoskeleton mechanism includes a brace having a first arm and a support arm, the support arm pivotably connected to the first arm. The exoskeleton mechanism further includes a spring secured to the first arm, the spring having a first length at an equilibrium position and a second length at a displaced position, a spring force generated by the spring when the spring is in the displaced position. Additionally, the exoskeleton mechanism has a cable having a first end and a second end, the first end coupled to the support arm and the second end coupled to the spring such that rotation of the support arm relative to the first arm causes the spring to move to the displaced position and the spring force is transferred to the support arm.
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公开(公告)号:US11745079B2
公开(公告)日:2023-09-05
申请号:US17676412
申请日:2022-02-21
Applicant: Pulson, Inc.
Inventor: Jeffery L. Bleich , Paul Mannheimer
IPC: A63B71/00 , A63B71/06 , A61B5/11 , A61B5/0205 , G09B19/00 , A63B24/00 , G09B23/28 , G16H20/30 , A61B5/026 , A61B5/00 , G16H50/30 , A61B5/024 , A61B5/352 , A63B21/002 , A63B23/12 , A63B22/06 , A63B22/02 , A63B22/00 , A63B21/06 , A63B15/00 , A61H3/00 , A61H1/02 , A63B69/00
CPC classification number: A63B71/06 , A61B5/024 , A61B5/0205 , A61B5/026 , A61B5/1118 , A61B5/352 , A61B5/486 , A63B24/0062 , A63B24/0075 , A63B24/0087 , A63B71/0686 , G09B19/00 , G09B19/0038 , G09B23/288 , G16H20/30 , G16H50/30 , A61H1/0255 , A61H1/0274 , A61H3/00 , A61H2201/1633 , A61H2201/1642 , A61H2201/5015 , A61H2201/5064 , A61H2201/5071 , A61H2201/5084 , A61H2201/5092 , A61H2201/5097 , A61H2230/045 , A61H2230/065 , A61H2230/208 , A61H2230/305 , A61H2230/42 , A61H2230/50 , A61H2230/60 , A61H2230/805 , A63B15/00 , A63B21/002 , A63B21/0023 , A63B21/06 , A63B22/0023 , A63B22/0056 , A63B22/0076 , A63B22/0235 , A63B22/0605 , A63B22/0664 , A63B23/1218 , A63B23/1236 , A63B69/0028 , A63B2024/0093 , A63B2024/0096 , A63B2071/0625 , A63B2071/0655 , A63B2071/0663 , A63B2220/10 , A63B2220/17 , A63B2220/30 , A63B2220/40 , A63B2220/56 , A63B2220/62 , A63B2220/805 , A63B2220/806 , A63B2220/833 , A63B2220/836 , A63B2220/89 , A63B2225/50 , A63B2225/54 , A63B2230/045 , A63B2230/062 , A63B2230/207 , A63B2230/425 , A63B2230/50 , A63B2230/60 , A63B2230/75 , A63B2244/20
Abstract: Described herein are systems and methods of guiding a user to achieve musculoskeletal counterpulsation. A method may include receiving a cardiovascular cycle signal from a first sensor; determining a heart rate of the user based on the cardiovascular cycle signal; receiving a rhythmic musculoskeletal activity timing signal from a second sensor; determining an actual musculoskeletal activity cycle (MSKC) to cardiovascular cycle (CC) timing relationship; comparing the actual MSKC to CC timing relationship to a target MSKC to CC timing relationship; providing a recurrent prompt to the user as a timing indication for performance of a rhythmic musculoskeletal activity to guide the user to achieve a musculoskeletal activity cycle rate (MSKR) that approaches the target MSKC to CC timing relationship; and altering a feature of the recurrent prompt based on a determined alignment between the actual MSKC to CC timing relationship and the target MSKC to CC timing relationship.
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公开(公告)号:US11712397B1
公开(公告)日:2023-08-01
申请号:US17877770
申请日:2022-07-29
Applicant: HYTTO PTE. LTD
IPC: A61H19/00
CPC classification number: A61H19/40 , A61H19/30 , A61H2201/5012 , A61H2201/5071 , A61H2201/5082 , A61H2201/5084
Abstract: An online entertainment system for facilitating interaction between a model hosting an online streaming video session and at least one viewer. The model operates an operable adult toy with which the at least one viewer can interact, either directly or indirectly, during the online streaming video session. The system provides the viewer with an interface with which the viewer can engage to participate in a game of chance. A result of the game of chance is used to obtain predetermined feedback parameters, actual feedback obtained from the adult toy during manipulation thereof by the model is compared against the predetermined feedback parameters, and control is performed based on a result of the comparison.
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公开(公告)号:US20230190565A1
公开(公告)日:2023-06-22
申请号:US16754709
申请日:2018-08-19
Applicant: EXOIQ GMBH
Inventor: Bernward Otten , Robert Weidner , Jens Peter Wulfsberg
CPC classification number: A61H1/0281 , A61H1/0244 , A61H1/0274 , B25J9/0006 , A61H2201/0153 , A61H2201/165 , A61H2201/503 , A61H2201/1207 , A61H2201/5061 , A61H2201/5064 , A61H2201/5079 , A61H2201/5084 , A61H2201/5097
Abstract: Provided is a system for muscle strength support. The system includes an exoskeleton which is configured to be attached to a body of a human during use of the system, and a control unit for controlling a supportive force provided by the exoskeleton during use of the system.
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公开(公告)号:US11672984B2
公开(公告)日:2023-06-13
申请号:US16938606
申请日:2020-07-24
Applicant: NATIONAL UNIVERSITY OF IRELAND, GALWAY
Inventor: Gearóid Ó Laighin , Leo Quinlan , Dean Sweeney , Gavin Corley , James Feehilly , Patrick Browne
CPC classification number: A61N1/36067 , A61H3/00 , A61N1/36003 , A61H2003/007 , A61H2201/165 , A61H2201/5023 , A61H2201/5079 , A61H2201/5084 , A61H2230/105
Abstract: A gait management apparatus applies stimulation to a user suffering from a neurological disease (such as Parkinson's Disease) gait dysfunction. Motion sensors are arranged to be worn by a patient, and electrical stimulation electrodes are on the legs for stimulation. A controller receives motion sensing signals, and processes these signals to generate stimulation signals for operation of the electrodes to stimulate limb movement upon detection of a gait abnormality. There may be a user actuator for user actuation of electrical stimulation, and the inputs may be a series of taps. The controller may provide signals to prevent occurrence of freezing of gait when it senses that a patient is walking or has an intention to walk. Also, it may apply stimulation at an intensity level which is insufficient for functional muscle stimulation but sufficiently high to trigger activation of efferent nerves.
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