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    • 1. 发明申请
    • Medicinal product order processing system
    • 药品订单处理系统
    • US20060136266A1
    • 2006-06-22
    • US11015735
    • 2004-12-20
    • Lionel TarassenkoNeil TownsendPhilip Jones
    • Lionel TarassenkoNeil TownsendPhilip Jones
    • G06F19/00
    • G06Q50/24G06F19/328G06Q10/087G16H10/60
    • A repeat prescription ordering system for allowing patients requiring resupply of medication or medical products to access a server using a portable communications and data processing device such as a smart phone or personal digital assistant. The server supplies to the patient a list of medication and medical products which they are authorized to order. The patient can select the products required, and the order is logged by the server and allocated to a supplier for completion of the order. The server maintains an estimate of the amount of medication or medical product held by the patient, this being based on the prescribed dosage regimen and information entered by the patient on their usage and, optionally, on checks on their own health. The patient may be alerted when the estimate indicates that their supplies are running low. The estimate is allowed to go below zero, this implying a possible departure from the prescribed medication regimen.
    • 一种重复的处方订购系统,用于允许需要补充药物或医疗产品的患者使用诸如智能电话或个人数字助理的便携式通信和数据处理设备访问服务器。 服务器向患者提供他们有权订购的药物和医疗产品清单。 患者可以选择所需的产品,服务器记录订单并分配给供应商以完成订单。 服务器维持对患者持有的药物或医疗产品的量的估计,这是基于规定的剂量方案和由患者输入的用于其使用的信息,并且可选地基于对自身健康的检查。 当估计表明他们的供应量很低时,可能会提醒病人。 估计允许低于零,这意味着可能会偏离规定的药物治疗方案。
    • 4. 发明申请
    • System and Method for Communicating Environmentally-Based Medical Advice
    • 用于沟通环境医学咨询的制度与方法
    • US20090265186A1
    • 2009-10-22
    • US12084952
    • 2006-11-10
    • Lionel TarassenkoWilliam Ross CobernPatrick Eugene McSharry
    • Lionel TarassenkoWilliam Ross CobernPatrick Eugene McSharry
    • G06Q50/00
    • G06Q50/24G06F19/3418G06Q50/22G16H50/80
    • A method and system for delivering advice to patients suffering from respiratory conditions based on changes in environment, such as weather or air quality changes. This system includes a patient specific model which uses input environmental data to predict changes in the patient's condition. The model is developed from an analysis of patient's responses to a variety of environmental triggers, and can be refined with time. The model can include only those specific triggers appropriate to a patient, can include the delay between the change in environment and change in condition of the patient, and can be run with data which is geographically localized to the patient's location. Conveniently the models can be run on personal devices held by the patients, such as mobile telephones, which are in communication with a server and/or a provider of environmental data.
    • 一种方法和系统,用于根据环境变化(如天气或空气质量变化)向患有呼吸道状况的患者提供咨询。 该系统包括使用输入环境数据来预测患者状况变化的患者特定模型。 该模型是从对患者对各种环境触发因素的反应的分析而开发的,可以随着时间的推移而改进。 该模型可以仅包括适合于患者的那些特定触发器,可以包括环境变化和病人状态改变之间的延迟,并且可以在地理位置定位于患者位置的数据上运行。 方便地,模型可以在患者持有的个人设备上运行,例如与服务器和/或环境数据提供者通信的移动电话。
    • 7. 发明授权
    • Method of biomedical signal analysis including improved automatic segmentation
    • 生物医学信号分析方法包括改进的自动分割
    • US08332017B2
    • 2012-12-11
    • US12517127
    • 2007-11-30
    • Lionel TarassenkoAlan PattersonIain Guy Strachan
    • Lionel TarassenkoAlan PattersonIain Guy Strachan
    • A61B5/04
    • A61B5/0452A61B5/7203A61B5/7267
    • A method of analysing biomedical signals, for example electrocardiograms, by using a Hidden Markov Model for subsections of the signal. In the case of an electrocardiogram two Hidden Markov Models are used to detect respectively the start and end of the QT interval. The relationship between the QT interval and heart rate can be computed and a contemporaneous value for the slope of this relationship can be obtained by calculating the QT/RR relationship for all of the beats in a sliding time window based on the current beat. Portions of electrocardiograms taken on different days can efficiently and accurately be compared by selecting time windows of the ECGs at the same time of day, and looking for similar beats in those time windows.
    • 通过使用隐马尔科夫模型来分析生物医学信号(例如心电图)来分析信号的子部分的方法。 在心电图的情况下,使用两个隐马尔可夫模型分别检测QT间隔的开始和结束。 可以计算QT间隔和心率之间的关系,并且可以通过基于当前节拍计算滑动时间窗口中的所有节拍的QT / RR关系来获得该关系的斜率的同期值。 通过在一天的同一时间选择ECG的时间窗口,并在这些时间窗口中寻找类似的节拍,可以有效和准确地比较在不同日期拍摄的部分心电图。
    • 9. 发明申请
    • NOVELTY DETECTION WITH MISSING PARAMETERS
    • 用错误的参数进行新颖的检测
    • US20110265026A1
    • 2011-10-27
    • US13122801
    • 2009-10-09
    • Lionel TarassenkoAlistair Hann
    • Lionel TarassenkoAlistair Hann
    • G06F3/048
    • G06K9/6284A61B5/02055A61B5/021A61B5/0245A61B5/0816A61B5/145A61B5/6843A61B2560/0276G06F19/00G06F19/36G06K9/00536G16H50/70
    • A method of obtaining a consistent evaluation of the state of the system which has been monitored by measurement of multiple parameters of that system. The multiple parameters are used to calculate a single dimensional value based on the distance between the current state and normal states of the system using a Parzen Windows probability function. Consistent single dimensional values regardless of the dimensionality of the original data set can be obtained by finding a relationship between the single dimensional value and the probability of status of the system. Different relationships are obtained for different dimensionalities of data sets. Sensor malfunction can also be detected by testing the probability of the state implied by measuring all of the available parameters against the probability of the state implied by ignoring different individual ones of the parameters. A significant disparity in the two probabilities indicate possible sensor malfunction.
    • 通过测量该系统的多个参数来监测系统状态的一致评估的方法。 多个参数用于使用Parzen Windows概率函数基于系统的当前状态和正常状态之间的距离来计算单维值。 可以通过发现单维值与系统状态概率之间的关系来获得与原始数据集的维度无关的一致的单维值。 对于数据集的不同维度,获得不同的关系。 也可以通过测量所有可用参数的概率来检测传感器故障,这是通过忽略不同个体参数隐含的状态的概率来检测的。 两个概率的显着差异表明可能的传感器故障。
    • 10. 发明授权
    • Method and system for analysing tachometer and vibration data from an apparatus having one or more rotary components
    • 用于从具有一个或多个旋转部件的设备分析转速计和振动数据的方法和系统
    • US07640802B2
    • 2010-01-05
    • US10552745
    • 2004-04-08
    • Dennis KingKen AstleyLionel TarassenkoPaul AnuzisPaul HaytonStephen King
    • Dennis KingKen AstleyLionel TarassenkoPaul AnuzisPaul HaytonStephen King
    • G01M19/00G01D21/02G01H17/00G01P3/44G01M15/14
    • G01H1/003
    • A method of analysing tachometer and vibration response data from an apparatus having one or more rotary components is provided. The method comprises the steps of: providing vibration response data and corresponding tachometer data from the apparatus for a period over which a rotary component of the apparatus varies in rotational speed, the tachometer data being for that component; repeatedly performing at intervals throughout the period the sub-steps of: determining a forcing frequency of the component from the tachometer data and a corresponding vibration response frequency of the apparatus from the vibration response data, comparing the forcing and vibration response frequencies to determine the relative phase difference between the frequencies, and determining the corresponding amplitude of the vibration response from the vibration response data; and plotting the relative phase differences and vibration amplitudes on a polar diagram. The plot trajectory is characteristic of the behavior of the apparatus over the period.
    • 提供了一种从具有一个或多个旋转部件的装置分析转速计和振动响应数据的方法。 该方法包括以下步骤:提供来自装置的振动响应数据和相应的转速计数据,其中装置的旋转部件以其旋转速度变化的时间段,转速计数据用于该部件; 在整个时期间隔间隔重复执行以下子步骤:根据振动响应数据确定来自转速表数据的部件的强制频率和相应的振动响应频率,比较强制和振动响应频率以确定相对 频率之间的相位差,并根据振动响应数据确定振动响应的对应振幅; 并绘制极坐标图上的相对相位差和振幅。 剧情轨迹是该时期设备行为的特征。