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公开(公告)号:US20180125416A1
公开(公告)日:2018-05-10
申请号:US15344811
申请日:2016-11-07
申请人: BTL HOLDINGS LIMITED
发明人: Tomás Schwarz , Ondra Prouza
CPC分类号: A61B5/486 , A61B5/0077 , A61B5/1128 , A61B2017/00057 , A61B2017/00084 , A61B2017/00106 , A61B2090/064 , A61B2562/0219 , A61B2562/0247 , A61B2562/0261 , A61N2/02
摘要: A magnetic stimulation device has components for positioning a patient into a correct treatment position, and for improving patient comfort. The methods may be used for improving the effectiveness of the stimulation by setting a magnetic field generating device in appropriate position by using feedback information.
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公开(公告)号:US20180125395A1
公开(公告)日:2018-05-10
申请号:US15811513
申请日:2017-11-13
IPC分类号: A61B5/11
CPC分类号: A61B5/1121 , A61B5/1071 , A61B5/1107 , A61B5/1114 , A61B5/1116 , A61B5/1118 , A61B5/1122 , A61B5/1124 , A61B5/1127 , A61B5/1128 , A61B5/4533 , A61B5/4538 , A61B5/4585 , A61B5/486 , A61B5/6803 , A61B5/6814 , A61B5/742 , A61B5/744 , A61B5/7445
摘要: An augmented neuromuscular training system and method for providing feedback to a user in order to reduce movement deficits associated with injury risk, prior injury or disease pathology.
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公开(公告)号:US20180122066A1
公开(公告)日:2018-05-03
申请号:US15336475
申请日:2016-10-27
申请人: Xerox Corporation
发明人: Prathosh A. PRASAD , Sanjay BHARADWAJ , Pragathi PRAVEENA , Tejaskumar Dipaklal BENGALI , Satish Prasad RATH , Himanshu Jayantkumar MADHU
CPC分类号: G06T7/0012 , A61B5/0022 , A61B5/0077 , A61B5/024 , A61B5/08 , A61B5/1102 , A61B5/1128 , A61B5/113 , A61B5/742 , G06T5/002 , G06T7/246 , G06T2207/10016 , G06T2207/20024 , G06T2207/30048
摘要: What is disclosed is a system and method for processing a video to extract a periodic signal which was captured by the video imaging device. One embodiment involves the following. First, a video of a subject in a scene is received. The video is acquired by a video imaging device. There is an underlying motion signal in the scene corresponding to cardiac or respiratory function. A time-series signal is generated for each pixel or for each group of pixels in a temporal direction across a plurality of image frames. Time-series signals of interest are selected. The selected time-series signals of interest are then processed to obtain a periodic signal corresponding to cardiac or respiratory function. The present method has a low computational complexity, is robust in the presence of noise, and finds its uses in applications requiring real-time motion quantification of a signal in a video.
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公开(公告)号:US20180121728A1
公开(公告)日:2018-05-03
申请号:US15803499
申请日:2017-11-03
申请人: Richard Wells , Timothy R. Price , Ted Spooner , Dave Van Andel , Travis Dittmer , John Kotwick , Jason Leighton
发明人: Richard Wells , Timothy R. Price , Ted Spooner , Dave Van Andel , Travis Dittmer , John Kotwick , Jason Leighton
CPC分类号: G06K9/00671 , A61B3/0033 , A61B5/0002 , A61B5/015 , A61B5/1112 , A61B5/1116 , A61B5/1118 , A61B5/1128 , A61B5/1495 , A61B5/486 , A61B5/7455 , A61B5/746 , A61B2505/09 , A61B2562/0219 , A61B2562/0247 , G02B27/0093 , G02B27/017 , G02B27/0176 , G06F3/011 , G06F3/017 , G06F3/0487 , G06F19/3418 , G06F19/3481 , G06K9/00342 , G06Q50/22 , G06T19/006 , G16H20/30 , G16H40/63
摘要: Systems and methods for displaying augmented reality clinical movements may use an augmented reality device to display aspects of a clinical movement. The systems and methods may use a motion capture device to capture the clinical movement. A method may include analyzing information about the clinical movement to determine a path of motion representative of at least a portion of the clinical movement. The method may automatically define a path region or a virtual target in an augmented reality environment overlaid on a real environment. The method may display the path region or the virtual target on an augmented reality display.
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公开(公告)号:US09956049B2
公开(公告)日:2018-05-01
申请号:US15428497
申请日:2017-02-09
申请人: MediGuide Ltd.
发明人: Itzhak Shmarak , Gera Strommer , Uzi Eichler
IPC分类号: A61B34/20 , A61B5/11 , A61B5/00 , A61B34/10 , A61B5/113 , A61B6/03 , A61B6/00 , A61B8/08 , A61B8/12 , A61B5/06 , A61B90/00
CPC分类号: A61B34/20 , A61B5/0456 , A61B5/06 , A61B5/061 , A61B5/066 , A61B5/0816 , A61B5/11 , A61B5/1102 , A61B5/1107 , A61B5/1128 , A61B5/113 , A61B5/7207 , A61B5/721 , A61B5/7275 , A61B5/7289 , A61B5/742 , A61B6/032 , A61B6/037 , A61B6/12 , A61B6/503 , A61B6/504 , A61B6/527 , A61B6/541 , A61B6/547 , A61B8/02 , A61B8/0833 , A61B8/0841 , A61B8/0883 , A61B8/0891 , A61B8/12 , A61B8/4245 , A61B8/4254 , A61B8/5276 , A61B34/10 , A61B34/25 , A61B90/10 , A61B90/36 , A61B2017/00699 , A61B2017/00703 , A61B2034/105 , A61B2034/107 , A61B2034/2051 , A61B2034/2055 , A61B2034/2065 , A61B2034/2072 , A61B2034/256 , A61B2090/364 , A61B2090/365 , A61B2090/367 , A61B2090/372 , A61B2090/378 , A61B2090/3958 , A61B2505/05 , A61N5/1067 , G06F19/00
摘要: Apparatus for generating an organ timing signal relating to an inspected organ within the body of a patient, including a medical positioning system, and a processor coupled with the medical positioning system, the medical positioning system including at least one reference electromagnetic transducer placed at a reference location, at least one inner electromagnetic transducer attached to a surgical tool inserted in a blood vessel in the vicinity of the inspected organ, and a medical positioning system processor coupled with the reference electromagnetic transducer and the inner electromagnetic transducer, the medical positioning system processor determining the three-dimensional position of the inner electromagnetic transducer, by processing transmitted electromagnetic signals transmitted from one of the reference electromagnetic transducer and the inner electromagnetic transducer with detected electromagnetic signals detected by the other of the reference electromagnetic transducer and the inner electromagnetic transducer, the medical positioning system processor further generating medical positioning system data sets, each of the medical positioning system data sets including a collection of three-dimensional position coordinate readings demonstrating the motion trajectory of the surgical tool over time, the processor generating the organ timing signal from the medical positioning system data sets by detecting and identifying periodic motion frequencies in the medical positioning system data sets, and filtering the periodic motion frequencies from the medical positioning system data sets.
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公开(公告)号:US20180110597A1
公开(公告)日:2018-04-26
申请号:US15838873
申请日:2017-12-12
CPC分类号: A61C5/77 , A61B5/0037 , A61B5/0088 , A61B5/1111 , A61B5/1128 , A61C9/0006 , A61C9/0053 , A61C13/0004 , A61C13/34 , A61C19/052 , A61C2008/0084 , A61K6/10 , G05B19/4099 , G05B2219/35044 , G05B2219/37555 , G05B2219/45167 , G05B2219/49008 , A61K6/083 , C08L33/08
摘要: A system for fabricating a dental restoration to restore a tooth at a restoration site in a dentition of a patient is disclosed. The dentition includes a restoration dental arch and an opposing dental arch. The restoration dental arch include the restoration site and the opposing dental arch is opposite the restoration dental arch. The system includes an impression apparatus, a motion capture apparatus, an interface apparatus, and a restoration design system. The impression apparatus is configured to capture an impression of the dentition of the patient. The motion capture apparatus is configured to capture a plurality of location data points that represent the locations of the opposing dental arch relative to the restoration dental arch. The interference model generation system is configured to generate an interference model for the restoration site. The restoration design system is for designing a restoration using the interference model.
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公开(公告)号:US20180098827A1
公开(公告)日:2018-04-12
申请号:US15835955
申请日:2017-12-08
IPC分类号: A61C13/00 , A61B5/00 , A61B5/11 , A61C9/00 , A61C13/34 , A61C19/05 , A61K6/10 , G05B19/4099 , A61K6/083 , C08L33/08
CPC分类号: A61C19/05 , A61B5/0037 , A61B5/0088 , A61B5/1111 , A61B5/1128 , A61B5/4542 , A61C9/0006 , A61C9/0053 , A61C13/0004 , A61C13/34 , A61C19/052 , A61K6/083 , A61K6/10 , G05B19/4099 , G05B2219/35044 , G05B2219/37555 , G05B2219/45167 , G05B2219/49008 , Y02P90/265 , C08L33/08
摘要: A system for fabricating a dental restoration to restore a plurality of teeth in a dentition of a patient is described. The dentition includes a restoration dental arch and an opposing dental arch. The restoration dental arch includes a restoration site and the opposing dental arch is opposite the restoration dental arch. The system includes an impression apparatus, a motion capture apparatus, an interference model generation system, and a restoration design system. The impression apparatus is configured to capture an impression of the dentition of the patient. The motion capture apparatus is configured to capture a plurality of location data points that represent the locations of the opposing dental arch relative to the restoration dental arch. The interference model generation system is configured to generate an interference model for the restoration site. The restoration design system is for designing a restoration using the interference model.
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公开(公告)号:US20180092595A1
公开(公告)日:2018-04-05
申请号:US15712217
申请日:2017-09-22
CPC分类号: A61B5/4833 , A61B5/0077 , A61B5/0816 , A61B5/0823 , A61B5/087 , A61B5/097 , A61B5/1123 , A61B5/1128 , A61B5/486 , A61B5/6898 , A61B5/7425 , A61B5/7475 , A61B7/003 , A61B2562/0219 , A61B2576/00 , A61M15/00 , A61M2205/3306 , A61M2205/332 , A61M2205/3375 , A61M2205/3553 , A61M2205/3584 , A61M2205/3592 , A61M2205/502 , A61M2205/52 , A61M2205/583 , A61M2230/62 , G06F3/017 , G06K9/00228 , G06T7/70 , G06T11/00 , G06T2207/10016 , G06T2207/30201 , G09B19/00 , G09B23/00 , G09B23/28 , G09B23/30 , G16H10/20 , G16H10/60 , G16H20/10 , G16H20/60 , G16H20/70 , G16H30/40 , G16H40/67 , G16H50/30 , G16H50/70 , G16H80/00 , H04N5/23219
摘要: Systems and methods are provided for training and monitoring administration of an inhaler medication. The system includes a mobile computing device that is configured to provide an augmented reality training and monitoring aid for asthma patients. In particular, the mobile device is programmed to capture video using a camera and sound recordings using a microphone in order to measure the patient's head position from the video and measure events relating to inhalation and exhalation from the microphone recordings. This real-time data is used to provide real-time testing and monitoring of the patient's technique for using an inhaler and an augmented reality training aid that informs the patients training. In addition, the mobile device is configured to collect background information from the patient relating to the patient's control over his or her asthma and can also interface with a back-end computing system for storing and maintaining related information.
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公开(公告)号:US20180085045A1
公开(公告)日:2018-03-29
申请号:US15466692
申请日:2017-03-22
CPC分类号: A61B5/4023 , A61B5/1114 , A61B5/1117 , A61B5/1128 , A61B5/7203 , A61B5/7225 , A61B5/7235 , A61B5/7278
摘要: A method and system for determining postural balance of the person is provided. The disclosure provides a single limb stance body balance analysis system which will aid medical practitioners to analyze crucial factor for fall risk minimization, injury prevention, fitness and rehabilitation. Skeleton data was captured using Kinect. Two parameters vibration-jitter and force per unit mass (FPUM) are derived for each body part to assess postural stability during SLS. Further, the vibration and force imposed on each joint a first balance score was quantified. A first balance score and a second balance are also calculated by combining vibration index and SLS duration to indicate the postural balance of the person. The vibration index is computed from the vibration profile associated different body segments.
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公开(公告)号:US20180082432A1
公开(公告)日:2018-03-22
申请号:US15560194
申请日:2016-03-16
申请人: Sony Corporation
CPC分类号: G06T7/262 , A61B5/0077 , A61B5/02438 , A61B5/02444 , A61B5/1128 , A61B5/6801 , A61B5/681 , A61B5/7246 , A61B5/7257 , A61B2576/00 , G06T5/003 , G06T7/32 , G06T7/70 , G06T2207/20056 , G06T2207/20201 , G06T2207/30104
摘要: The present technology relates to an information processing apparatus, an information processing method, and a program that can improve the estimation accuracy of a motion amount of an object.A cross-correlation analysis unit performs a cross-correlation analysis between a first image and a second image obtained by capturing the same object as an object of the first image before the first image, a first motion estimation unit estimates a first motion amount corresponding to a motion blur in the first image, and a second motion estimation unit estimates a second motion amount different from the first motion amount between the first image and the second image on the basis of a result of the cross-correlation analysis and an estimation result of the first motion amount. The present technology can be applied to, for example, an apparatus for measuring a pulse.
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