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公开(公告)号:US11147532B2
公开(公告)日:2021-10-19
申请号:US14118244
申请日:2012-06-06
Applicant: Ameet Kumar Jain , Francois Guy Gerard Marie Vignon
Inventor: Ameet Kumar Jain , Francois Guy Gerard Marie Vignon
Abstract: An imaging system and method include a medical device (102) having a tracking element (106) mounted thereon. An array (109) of transducers is spaced apart from one another for exchanging energy in a subject between tracking element and the array of transducers. A trilateration module (104) is configured to interpret signals sensed between tracking element and the array of transducers to compute times of flight of signals associated with the transducers in the array such that a position of tracking element is determined in at least two dimensions to locate a position of the medical device in a visual image.
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公开(公告)号:USD917734S1
公开(公告)日:2021-04-27
申请号:US29721561
申请日:2020-01-21
Applicant: Vedant Kakarania , Nikhil Sainath Reddy V , Ravi Prakash V S V S B , Paras Kumar Jain
Designer: Vedant Kakarania , Nikhil Sainath Reddy V , Ravi Prakash V S V S B , Paras Kumar Jain
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公开(公告)号:US10588595B2
公开(公告)日:2020-03-17
申请号:US14128139
申请日:2012-06-19
Applicant: Francois Guy Gerard Marie Vignon , Ameet Kumar Jain , Jean-Luc Robert
Inventor: Francois Guy Gerard Marie Vignon , Ameet Kumar Jain , Jean-Luc Robert
Abstract: A device and method for initializing an ultrasound beamformer to image an object based on a tool-pose-estimation of the object include an ultrasound imaging array and an object. The ultrasound imaging array operates with the beamformer. The object has a sensor external to the ultrasound imaging array. The tool-pose-estimation includes an estimation of the location and/or the orientation of the object. The tool-pose-estimation of the object is derived by a processor that receives an output of the sensor disposed on the object external to the imaging array that operates with the beamformer. The processor supplies the tool-pose-estimation to the beamformer to initialize the beamformer using the tool-pose-estimation for operating the imaging array.
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公开(公告)号:US10376179B2
公开(公告)日:2019-08-13
申请号:US14113035
申请日:2012-04-19
Applicant: Vijay Parthasarathy , Ameet Kumar Jain , Charles Ray Hatt, III , Amish N. Raval
Inventor: Vijay Parthasarathy , Ameet Kumar Jain , Charles Ray Hatt, III , Amish N. Raval
IPC: A61B5/05 , A61B5/06 , A61B8/08 , A61B6/12 , A61B6/00 , A61B8/00 , G06T15/08 , A61M25/01 , A61B34/20 , A61B17/00 , A61B90/00
Abstract: A system employs an interventional tool (30), ultrasound imaging system and a multi-planar reformatting module (40). The interventional tool (30) has one or more image tracking points (31). The ultrasound imaging system includes an ultrasound probe (20) operable for generating an ultrasound volume image (22) of a portion or an entirety of the interventional tool (30) within an anatomical region. The multi-planar reformatting imaging module (40) generates two or more multi- planar reformatting images (41) of the interventional tool (30) within the anatomical region. A generation of the two multi-planar reformatting images (41) includes an identification of each image tracking point (31) within the ultrasound volume image (22), and a utilization of each identified image tracking point (31) as an origin of the multi-planar reformatting images (41).
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公开(公告)号:US20180322004A1
公开(公告)日:2018-11-08
申请号:US15968401
申请日:2018-05-01
Applicant: Nishant Kumar Jain , Rohan Narayan Murty , George Peter Nychis , Harsh Gupta , Yoongu Kim
Inventor: Nishant Kumar Jain , Rohan Narayan Murty , George Peter Nychis , Harsh Gupta , Yoongu Kim
IPC: G06F11/07
Abstract: According to at least one aspect, a system is provided. The system comprises at least one hardware processor; and at least one non-transitory computer-readable storage medium storing processor executable instructions that, when executed by the at least one hardware processor, cause the at least one hardware processor to perform: monitoring execution of a first computer program configured to control a second computer program to perform a task at least in part by controlling the second computer program, through a graphical user interface (GUI) and/or an application programming interface (API) for the second computer program, to perform at least one action in furtherance of the task; detecting at least one anomaly in the execution of the first computer program; and outputting the detected at least one anomaly in the execution of the first computer program.
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公开(公告)号:US09993304B2
公开(公告)日:2018-06-12
申请号:US13997800
申请日:2012-01-10
Applicant: Pingkun Yan , Vijay Parthasarathy , Robert Manzke , Ameet Kumar Jain
Inventor: Pingkun Yan , Vijay Parthasarathy , Robert Manzke , Ameet Kumar Jain
CPC classification number: A61B34/20 , A61B6/12 , A61B8/0883 , A61B8/466 , A61B8/483
Abstract: An image-guided system includes an X-ray imaging device for generating one or more X-ray images illustrating a tool within an anatomical region, and an ultrasound imaging device for generating an ultrasound image illustrating the tool within the anatomical region. The image-guided system further includes a tool tracking device for visually tracking the tool within the anatomical region. In operation, the tool tracking device localizes a portion of the tool as located within the ultrasound image responsive to an identification of the portion of the tool as located within the X-ray image(s), and executes an image segmentation of an entirety of the tool as located within the ultrasound image relative to a localization of the portion of the tool as located within the ultrasound image.
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公开(公告)号:US09675304B2
公开(公告)日:2017-06-13
申请号:US14127673
申请日:2012-06-07
Applicant: Ameet Kumar Jain
Inventor: Ameet Kumar Jain
CPC classification number: A61B6/12 , A61B6/466 , A61B6/481 , A61B6/504 , A61B6/507 , A61B34/20 , A61B2034/2061 , A61B2090/364 , A61B2090/376
Abstract: A method, system, and program product are provided for providing a live 3D image of a body lumen. The 3D shape of a flexible surgical tool in the body lumen is determined using optical shape sensing. An x-ray image is taken of the body lumen, with at least one of the body lumen and the surgical tool being radiopaque. The determined 3D surgical tool shape is registered to the x-ray image.
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公开(公告)号:US09358213B2
公开(公告)日:2016-06-07
申请号:US12595838
申请日:2008-04-19
Applicant: Girish Kumar Jain , Chandrashekhar Kandi , Vishwanath Nande
Inventor: Girish Kumar Jain , Chandrashekhar Kandi , Vishwanath Nande
CPC classification number: A61K9/2886 , A61K9/2027 , A61K9/2059 , A61K9/2846 , A61K9/2866 , A61K9/4808 , A61K9/4891 , A61K9/5026 , A61K9/5047 , A61K9/5073 , A61K9/5078 , A61K31/381 , A61K47/585
Abstract: The present invention relates to pharmaceutical compositions of duloxetine or pharmaceutically acceptable salts thereof, and processes for their preparation.
Abstract translation: 本发明涉及度洛西汀或其药学上可接受的盐的药物组合物及其制备方法。
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公开(公告)号:US09232924B2
公开(公告)日:2016-01-12
申请号:US14007334
申请日:2012-03-29
Applicant: Xin Liu , Ameet Kumar Jain
Inventor: Xin Liu , Ameet Kumar Jain
CPC classification number: A61B6/12 , A61B6/4441 , A61B6/487 , A61B6/547 , A61B34/20 , A61B2090/367 , A61B2090/376 , A61B2090/3966 , F04C2270/041
Abstract: A method, system, and program product are provided for x-ray pose recovery during an endoscopic procedure. An x-ray image is taken with a C-arm at a first pose, capturing a region of an endoscope with fiducials thereon. The C-arm is moved from the first pose to a second pose at another viewing angle while maintaining the position of the endoscope. Another x-ray image is taken with the C-arm at the second C-arm pose, capturing the region of the endoscope with the fiducials thereon. The location of the fiducials on each x-ray image is determined using segmentation. An iterative optimization is performed using the locations of the fiducials in the two x-ray images to form two-dimensional projections of the three dimensional curve of the region of the endoscope with fiducials thereon to determine the three-dimensional translation and rotation of the C-arm from the first x-ray pose to the second x-ray pose.
Abstract translation: 提供了一种方法,系统和程序产品,用于内窥镜过程中的x射线姿态恢复。 以C形臂以第一姿势拍摄x射线图像,在其上捕获具有基准的内窥镜的区域。 在维持内窥镜的位置的同时,C臂在另一个视角从第一姿势移动到第二姿态。 以C臂在第二C臂姿势拍摄另一X射线图像,以其上的基准捕获内窥镜的区域。 使用分割确定每个X射线图像上的基准点的位置。 使用两个x射线图像中的基准点的位置来执行迭代优化,以形成具有基准的内窥镜区域的三维曲线的二维投影,以确定C的三维平移和旋转 从第一个x射线姿势到第二个x射线姿势。
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公开(公告)号:US09197980B2
公开(公告)日:2015-11-24
申请号:US13591343
申请日:2012-08-22
Applicant: Rajesh S. Pazhyannur , Kent K. Leung , Sri Gundavelli , Sudhir Kumar Jain
Inventor: Rajesh S. Pazhyannur , Kent K. Leung , Sri Gundavelli , Sudhir Kumar Jain
CPC classification number: H04W4/00 , H04L12/4625 , H04L12/4641 , H04W80/045
Abstract: Multi-operator networking techniques are provided for allowing two or more operators to share a wireless local area network (WLAN). In particular, mobile access gateway functionality is integrated in a wireless network controller of a WLAN that is accessible to first and second operators. Operator-specific tunnels are created through the network for each of the first and second operators that link a core network of each of the first and second operators with an associated client device. Packets are then forwarded between the core networks of the first and second operators and their associated client devices via the operator-specific tunnels.
Abstract translation: 提供多运营商网络技术,用于允许两个或多个运营商共享无线局域网(WLAN)。 具体地,移动接入网关功能被集成在WLAN的无线网络控制器中,其可由第一和第二运营商访问。 运营商特有的隧道是通过网络为第一和第二运营商的每个运营商创建的,这些运营商将第一和第二运营商中的每一个的核心网络与相关联的客户端设备相链接。 然后,分组将通过运营商特定的隧道在第一和第二运营商的核心网络及其相关联的客户端设备之间转发。
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