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    • 1. 发明申请
    • BLOOD VESSEL IMAGING AND USES THEREFOR
    • 血管成像及其使用
    • US20090328239A1
    • 2009-12-31
    • US12363283
    • 2009-01-30
    • Raul A. BraunerJohn HeymachGeorge NaumovKongbin Kang
    • Raul A. BraunerJohn HeymachGeorge NaumovKongbin Kang
    • A61K49/00G01N33/00C12Q1/00A61P43/00
    • A61B6/032A61B6/037A61B6/508
    • Methods are disclosed for analyzing representations of one or more structures in the body of a subject (e.g., a human subject or other animal subject) to glean information about the health of the subject or to evaluate the subject's response to a therapy or other condition. Aspects of the invention relate to obtaining structural information from casts (e.g., vascular casts from animal models) and using the information as a reference for evaluating structures in the body of a subject. Methods are disclosed for diagnosing, staging, grading, and monitoring diseases. Methods also are disclosed for targeting treatments, monitoring the effectiveness of therapies, and/or screening or validating therapies based analyzing structures (e.g., vascular structures) in a subject and comparing them to reference structures observed in casts obtained from models (e.g., animal models) of related diseases or conditions.
    • 公开了用于分析受试者(例如,人类受试者或其他动物受试者)体内的一种或多种结构的表现以收集关于受试者健康的信息或评估受试者对治疗或其他状况的反应的方法。 本发明的方面涉及从铸件(例如,来自动物模型的血管形态)获得结构信息,并且使用该信息作为评估受试者体内的结构的参考。 公开了用于诊断,分期,分级和监测疾病的方法。 公开了用于靶向治疗,监测疗法的有效性和/或筛选或验证基于对象的分析结构(例如,血管结构)的治疗方法并将其与从模型(例如动物模型)获得的模型中观察到的参考结构进行比较的方法 )相关疾病或病症。
    • 2. 发明申请
    • Device for determining acceleration
    • 用于确定加速度的装置
    • US20070295090A1
    • 2007-12-27
    • US11489947
    • 2006-07-20
    • Michael NaumovGeorge Naumov
    • Michael NaumovGeorge Naumov
    • G01P15/00
    • G01P15/00G01P15/006G01P15/18
    • The technical solution provided can be implemented with the help of two miniature vessels and even one miniature vessel filled with the flowing media.It is based on determining the pressures difference in particular points, wherein the pressures caused by the cross accelerations and other disturbance factors are considered to be equal, and the ones caused by the acceleration determined are considered to be different.The present solution enables one to determine the acceleration with higher accuracy even with big tilting (practically up to 360°) of the platform, in particular, on the body of a moving object, the acceleration whereof is determined.
    • 所提供的技术方案可以借助两个微型船只,甚至一个装有流动介质的微型船只来实现。 它基于确定特定点的压力差,其中由交叉加速度和其他扰动因素引起的压力被认为是相等的,并且由所确定的加速度引起的压力被认为是不同的。 本解决方案使得即使在平台的大倾斜(实际上高达360°),特别是移动物体的主体上,也可以以更高的精度确定加速度,确定加速度。
    • 5. 发明授权
    • Method for determining true meridian and device for its implementation
    • 确定真实子午线的方法及其实施方法
    • US07865311B2
    • 2011-01-04
    • US11975686
    • 2007-10-22
    • Michael NaumovGeorge Naumov
    • Michael NaumovGeorge Naumov
    • G01C21/10
    • G01C21/12
    • The present technical solution provided allows it to determine true meridian of any movable object. This solution is based on determining true meridian by zero value of linear acceleration induced created by changing the projection of the vector of linear velocity, caused by rotating any heavenly body, in particular, the terrestrial globe. The determination is implemented in compact variant only by the devices located on the movable object without any necessity of using induced radiations, quickly and accurately without any necessity of knowing the coordinates of location and the speed of movement irrespective of weather conditions, transverse accelerations, temperature changes and external magnetic fields influence.
    • 所提供的本技术方案允许它确定任何可移动物体的真实子午线。 该解决方案基于通过改变线性速度向量的投影而产生的线性加速度的零值来确定真实的子午线,这是由于旋转任何天体,特别是地球。 该测定仅通过位于可移动物体上的装置来实现,而不需要快速且准确地使用诱导辐射,而无需知道位置坐标和运动速度,而与天气条件,横向加速度,温度无关 变化和外部磁场影响。
    • 6. 发明申请
    • Method and device for the autonomous determination of wind speed vector
    • 自主确定风速矢量的方法和装置
    • US20090326824A1
    • 2009-12-31
    • US12218186
    • 2008-07-14
    • Michael NaumovGeorge Naumov
    • Michael NaumovGeorge Naumov
    • G01W1/00G06F19/00
    • G01P13/025G01C21/203G01P5/00G01P7/00
    • The present technical solution provided for the autonomous determination of wind speed vector is intended for the accurate determination of wind speed vector as well sea current, only by the means located in a moving object without applying any radiations and gyroscopes, and also without applying any sources of information and reference marks on the Earth and other heavenly bodies.Such determination is proposed for the first time and is if paramount importance for the navigation purposes, in particular, for the determination of ground speed vector of a moving object and also for meteorology. This solution is based on the determination and transformation of the horizontal projections of linear acceleration vector of the moving object by means of the sensors of acceleration developed by the authors previously with applying the value of the course of a moving object and its speeds.
    • 为风速矢量自主确定而提供的本技术方案旨在准确地确定风速矢量以及海流,仅通过位于移动物体中的装置,而不应用任何辐射和陀螺仪,并且还不应用任何来源 在地球和其他天体上的信息和参考标记。 这种确定是第一次提出的,如果对于导航目的至关重要,特别是确定移动物体的地面速度矢量以及气象学的重要性。 该解决方案基于通过作者先前利用移动物体的过程值及其速度开发的加速度传感器来确定和变换移动物体的线性加速度矢量的水平投影。
    • 8. 发明授权
    • Method of keeping given direction and device for its implementation
    • 保持给定方向和方法实施的方法
    • US08161832B2
    • 2012-04-24
    • US12077864
    • 2008-03-24
    • Michael NaumovGeorge Naumov
    • Michael NaumovGeorge Naumov
    • G01C19/02
    • G01C21/18Y10T74/1218Y10T74/1221
    • The present technical solution solves a problem of keeping a given direction by use of an element stabilized in a given plane of inertial space, irrespective of disturbing torques, precessions of gyroscopes, and turns of a movable object in the given plane of inertial space when the current technical solution is used on the movable object. This solution is based on forcing precessions of two one-axis gyrostabilizers in opposite directions. The gyrostabilizers are connected with each other by a connection unit comprising a stabilized element. Since in the present solution low precision gyroscopes can be used, then the proposed solution can be implemented in a small-size version.
    • 本技术方案解决了通过使用在惯性空间的给定平面中稳定的元件来保持给定方向的问题,而不管在惯性空间的给定平面内的干扰转矩,陀螺仪的旋动和可动物体的转动,当 当前的技术方案用于可移动物体。 该解决方案是基于相反方向强制两个单轴陀螺稳定器的进动。 陀螺稳定器通过包括稳定元件的连接单元相互连接。 由于在目前的解决方案中可以使用低精度陀螺仪,所以提出的解决方案可以在小尺寸版本中实现。