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    • 1. 发明申请
    • USER GUIDANCE SYSTEM AND METHOD, USE OF AN AUGMENTED REALITY DEVICE
    • 用户指导系统和方法,使用现有的现实设备
    • WO2016078919A1
    • 2016-05-26
    • PCT/EP2015/075762
    • 2015-11-05
    • KONINKLIJKE PHILIPS N.V.
    • DJAJADININGRAT, Johan PartomoCHAO, Pei-YinRAIJMAKERS, Jozef Hieronymus Maria
    • G06F19/00
    • G06F19/34G02B27/017G02B2027/0178G06F17/30648G06F19/00G06F19/324G06F19/3462G06T19/006G16H40/20
    • The present disclosure relates to an augmented reality based user guidance system for multi-step medical procedures, the system comprising an augmented reality device (10, 30) comprising a display unit (14, 34) arranged to present artificial information that can be overlaid on an original scene, a sensor unit (18, 38), a processing unit (22, 42), at least one first marker (142, 144, 146, 148) that can be detected by the augmented reality device (10, 30), wherein the at least one first marker (142, 144, 146, 148) is associated with an object (132, 134, 136, 138) to be used in a defined step of the medical procedure, wherein the medical procedure comprises at least one step that requires a user action, wherein the augmented reality device (10, 30) is arranged to monitor a scene and to detect and track the at least one first marker (142, 144, 146, 148), provide user guidance to execute the medical procedure, detect whether user actions comply with the medical procedure, based on a detected state of the at least one first marker (142, 144, 146, 148), and when the augmented reality device (10, 30) detects an erroneous user action, provide corrective user feedback to the user. The disclosure further relates to a corresponding method and to a use of an augmented reality device (10, 30) in a system for user guidance.
    • 本公开涉及一种用于多步骤医疗程序的基于增强现实的用户引导系统,所述系统包括增强现实设备(10,30),其包括显示单元(14,34),所述显示单元(14,34)被布置为呈现可覆盖在 原始场景,传感器单元(18,38),处理单元(22,42),可由增强现实设备(10,30)检测的至少一个第一标记(142,144,146,148) ,其中所述至少一个第一标记(142,144,146,148)与要在所述医疗程序的限定步骤中使用的物体(132,134,136,138)相关联,其中所述医疗程序至少包括 需要用户动作的一个步骤,其中增强现实设备(10,30)被布置成监视场景并且检测和跟踪至少一个第一标记(142,144,146,148),提供用户指导以执行 医疗程序,根据检测者检测用户行为是否符合医疗程序 d)所述至少一个第一标记(142,144,146,148)的状态,并且当所述增强现实设备(10,30)检测到错误的用户动作时,向所述用户提供校正用户反馈。 本公开还涉及用于用户指导的系统中的相应方法和增强现实设备(10,30)的使用。
    • 4. 发明申请
    • PORTABLE MEDICAL APPARATUS FOR INDIVIDUALIZED TREATMENT GUIDANCE BASED ON AN ONLINE STORAGE PROFILE WITH BODY MEASUREMENTS AND METHOD
    • 便携式医疗设备基于在线存储特性与身体测量的个体化治疗指导和方法
    • WO2017055953A3
    • 2017-04-06
    • PCT/IB2016/055431
    • 2016-09-13
    • KONINKLIJKE PHILIPS N.V.
    • CHAO, Pei-YinKNOESTER, JaapDJAJADININGRAT, Johan PartomoKIM, SeYoungVAN LEENGOED, Marleen Johanna JacobaLUI, Wing Lam
    • G06F19/00
    • A portable medical apparatus (70) for real-time individualized treatment guidance for a subject (120) comprises a user interface (72), a communications module (74), and a controller (76). The user interface (72) obtains the subject's identification information. The communications module (74) communicates with at least one of (i) a remote server (78) having stored thereon a cloud-based electronic health record that comprises at least the subject's physical body measurements and (ii) a smartphone (80) located within a given immediate proximity of the portable medical apparatus. The communications module (74) further retrieves, in response to the subject's identification information, the cloud-based electronic health record. The controller (76) generates, in response to the subject's physical body measurements from the cloud-based electronic health record, real-time individualized treatment guidance to be followed by a user (118) of the portable medical apparatus for administering the individualized treatment to the subject (120).
    • 用于对象(120)的实时个性化治疗指导的便携式医疗设备(70)包括用户界面(72),通信模块(74)和控制器(76)。 用户界面(72)获得主体的标识信息。 所述通信模块(74)与以下中的至少一个通信:(i)其上存储有基于云的电子健康记录的远程服务器(78),所述基于云的电子健康记录至少包括所述对象的身体测量结果;以及(ii) 在便携式医疗设备的给定紧邻处。 通信模块(74)响应于主体的标识信息进一步检索基于云的电子健康记录。 响应于来自基于云的电子健康记录的对象的身体测量结果,控制器(76)生成便携式医疗设备的用户(118)要遵循的实时个性化治疗指导以将个性化治疗施用于 主题(120)。
    • 6. 发明申请
    • ELECTRONIC DEVICES FOR, A SYSTEM FOR AND A METHOD OF CONTROLLING ONE OF THE ELECTRONIC DEVICES
    • 用于控制电子设备之一的系统的电子设备及其控制方法
    • WO2014095947A1
    • 2014-06-26
    • PCT/EP2013/077011
    • 2013-12-18
    • KONINKLIJKE PHILIPS N.V.
    • GEURTS, Lucas Jacobus FranciscusDJAJADININGRAT, Johan Partomo
    • H04B13/00H04L9/32
    • H04L67/025G06F3/0481G08C2201/30H04B13/005
    • A first electronic device 110, a second electronic device 130 and a system 100 comprising the first and the second electronic device 110, 130 are provided. Also a method of controlling the first electronic device 100 and a computer program for performing the method are provided. The first electronic device 100 and the second electronic device 130 each comprise a body coupled communication interface 116, 134 and when a user 150 is in the direct vicinity of both body coupled communication interfaces 116, 134, the first electronic device 110 transmits via a body transmission channel 160 identification data 112 to the second electronic device 130. Subsequently the second electronic device 130 obtains on basis of the received identification data a control user interface. The obtained control user interface is presented on a user interface presentor 138 of the second electronic device.
    • 提供了第一电子设备110,第二电子设备130和包括第一和第二电子设备110,130的系统100。 还提供了一种控制第一电子设备100的方法和用于执行该方法的计算机程序。 第一电子设备100和第二电子设备130各自包括主体耦合通信接口116,134,并且当用户150处于两个主体耦合通信接口116,134的直接附近时,第一电子设备110经由主体 传输信道160识别数据112到第二电子设备130.随后,第二电子设备130基于所接收的标识数据获得控制用户界面。 所获得的控制用户界面呈现在第二电子设备的用户界面呈现器138上。
    • 7. 发明申请
    • PATIENT POSITIONING ADAPTIVE GUIDANCE SYSTEM
    • WO2022233638A1
    • 2022-11-10
    • PCT/EP2022/060986
    • 2022-04-26
    • KONINKLIJKE PHILIPS N.V.
    • DJAJADININGRAT, Johan PartomoTALGORN, Elise Claude ValentineLAUTE, NielsKNOESTER, JaapLEE, HyelinBOSMAN, Reinoud
    • G16H30/20G16H50/20G06K9/00G06T7/20A61B5/16G16H20/70G16H30/40G16H20/30
    • The present invention relates to a patient positioning adaptive guidance system (10), comprising: a medical image acquisition unit (20); at least one communication unit (30); at least one camera (40); and a processing unit (50). The medical image acquisition unit is configured to acquire a medical image of a patient. The processing unit is configured to control the at least one communication unit to provide body positioning information to the patient prior to acquisition of the medical image. One or more cameras of the at least one camera is configured to acquire position and movement image data of the patient associated with the provision of the body position information to the patient. The processing unit is configured to determine if the patient has not reached a required position due to a physical or cognitive limitation, the determination comprising utilisation of the body positioning information and the position and movement image data of the patient, wherein a determination is made that the patient has not reached the required position due to a physical limitation based on a determination that the patient has moved in a correct direction, and wherein a determination is made that the patient has not reached the required position due to a cognitive limitation based on a determination that the patient has moved in an incorrect direction or has not undertaken a substantive movement. The processing unit is configured to adapt the body positioning information in at least one first manner based on a determination that the patient has not reached the required position due to a physical limitation. The processing unit is configured to adapt the body positioning information in at least one second manner based on a determination that the patient has not reached the required position due to a cognitive limitation.
    • 9. 发明申请
    • REMOTE ASSISTANCE WORKSTATION, METHOD AND SYSTEM WITH A USER INTERFACE FOR REMOTE ASSISTANCE WITH SPATIAL PLACEMENT TASKS VIA AUGMENTED REALITY GLASSES
    • 具有用户界面的远程援助工作站,方法和系统,用于通过增强现实眼镜进行空间放置任务的远程协助
    • WO2017072616A1
    • 2017-05-04
    • PCT/IB2016/056084
    • 2016-10-12
    • KONINKLIJKE PHILIPS N.V.
    • DJAJADININGRAT, Johan PartomoCHAO, Pei-YinLUI, Wing Lam
    • G06F19/00
    • G06F19/3418G06F19/00G06F19/3481G16H80/00
    • A remote assistance workstation 12 comprises a communications module 54, a user interface (UI) module 52, and a controller 56, for being coupled to a portable device 14 that includes a pair of augmented reality (AR) glasses 36 worn by a first responder to carry out an action using an object with a subject at a scene. The UI module 52 renders a remote assistant graphical user interface (GUI) 100 that includes (i) a first pane 96 for displaying a live video stream of a remote assistance request and (ii) a second pane 98 for displaying a 2D representation of the object at the scene being moveable therein by remote assistant inputs. The GUI 100 renders a corresponding item of 3D virtual content within the first pane relative to a reference point. The controller 56 outputs remote assistance signals to the portable device 14 for displaying the item of 3D virtual content 38 on the AR glasses in a live view of the scene, appearing at a location determined by the remote assistant inputs moving the 2D representation within the second pane 98 for assisting the first responder at the scene.
    • 远程协助工作站12包括通信模块54,用户界面(UI)模块52和控制器56,用于耦合到便携式设备14,便携式设备14包括一对增强现实(AR )由第一响应者佩戴的眼镜36,以使用具有对象的物体在场景处执行动作。 UI模块52呈现远程助理图形用户界面(GUI)100,其包括(i)用于显示远程协助请求的实况视频流的第一窗格96和(ii)用于显示 通过远程助理输入可以在场景中移动对象。 GUI 100在第一窗格内相对于参考点呈现对应项目的3D虚拟内容。 控制器56向便携式设备14输出远程辅助信号,以在场景的实时视图中在AR眼镜上显示3D虚拟内容38的项目,出现在由远程助理输入所确定的位置处,该位置在第二秒钟内移动2D表示 面板98用于在现场协助第一响应者。