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    • 1. 发明授权
    • Methods and systems for generation of personalized health plans
    • 生成个性化健康计划的方法和系统
    • US08762167B2
    • 2014-06-24
    • US13190996
    • 2011-07-26
    • Gil BlanderChristian ReichDavid Lester
    • Gil BlanderChristian ReichDavid Lester
    • G06Q50/22G06Q10/10G06F19/10G06F19/00
    • G06F19/3475G06F19/00G06F19/10G06F19/20G06F19/24G06F19/3481G06Q10/10G06Q50/22
    • Personalized, health and performance programs are generated for individuals based on various biomarkers and performance and lifestyle assessments. In one embodiment, a diagnostic test of blood or other biological specimen(s) is used to determine key biological marker levels. Information and assessments of the user's physical performance, life style and health and wellness goals is also collected and provided to an expert system that matches the biomarker levels and assessments to a knowledgebase of scientific knowledge about biomarker levels and health and fitness outcomes. Personal recommendations and advice on nutrition and exercise is then generated, which may be used to help individuals reach their diet, fitness, and wellness goals and improve their physical and mental performance and well being in measurable ways.
    • 基于各种生物标志物和性能和生活方式评估为个人生成个性化,健康和性能计划。 在一个实施方案中,使用血液或其他生物样本的诊断测试来确定关键的生物标志物水平。 还收集了用户的身体表现,生活方式和健康和健康目标的信息和评估,并将其提供给与生物标志物水平和评估相匹配的专家系统,以及关于生物标志物水平和健康和健身结果的科学知识知识库。 然后产生关于营养和运动的个人建议和建议,这可以用于帮助个人达到他们的饮食,健身和健康目标,并以可衡量的方式改善身体和精神表现以及改善身体健康。
    • 2. 发明申请
    • METHODS AND SYSTEMS FOR GENERATION OF PERSONALIZED HEALTH PLANS
    • 个人健康计划生成方法与系统
    • US20120130732A1
    • 2012-05-24
    • US13190996
    • 2011-07-26
    • Gil BlanderChristian ReichDavid Lester
    • Gil BlanderChristian ReichDavid Lester
    • G06Q50/22
    • G06F19/3475G06F19/00G06F19/10G06F19/20G06F19/24G06F19/3481G06Q10/10G06Q50/22
    • Personalized, health and performance programs are generated for individuals based on various biomarkers and performance and lifestyle assessments. In one embodiment, a diagnostic test of blood or other biological specimen(s) is used to determine key biological marker levels. Information and assessments of the user's physical performance, life style and health and wellness goals is also collected and provided to an expert system that matches the biomarker levels and assessments to a knowledgebase of scientific knowledge about biomarker levels and health and fitness outcomes. Personal recommendations and advice on nutrition and exercise is then generated, which may be used to help individuals reach their diet, fitness, and wellness goals and improve their physical and mental performance and well being in measurable ways.
    • 基于各种生物标志物和性能和生活方式评估为个人生成个性化,健康和性能计划。 在一个实施方案中,使用血液或其他生物样本的诊断测试来确定关键的生物标志物水平。 还收集了用户的身体表现,生活方式和健康和健康目标的信息和评估,并将其提供给与生物标志物水平和评估相匹配的专家系统,以及关于生物标志物水平和健康和健身结果的科学知识知识库。 然后产生关于营养和运动的个人建议和建议,这可以用于帮助个人达到他们的饮食,健身和健康目标,并以可衡量的方式改善身体和精神表现以及改善身体健康。
    • 3. 发明申请
    • NICAM processing method
    • NICAM处理方法
    • US20070076120A1
    • 2007-04-05
    • US11240314
    • 2005-09-30
    • Luciano ZosoAllan ChinDavid Lester
    • Luciano ZosoAllan ChinDavid Lester
    • H04N11/00
    • H04N5/605
    • A NICAM processing method includes receiving and temporarily storing a current frame of A-channel and B-channel input data into a first memory at a first clock rate. Companded A-channel and B-channel data of a previous frame are read from a second memory at a second clock rate and in a manner for interleaving the previous frame companded A-channel and B-channel data into the NICAM standard required interleaved format, wherein the companded A-channel and B-channel data of the previous frame was temporarily stored during a previous frame into the second memory in a format other than an interleaved format according to NICAM standard requirements. The A-channel and B-channel input data of the current frame is companded and stored into the second memory and in the format other than the interleaved format, wherein the companding and storing are performed at a third clock rate during an interval within the current frame that occurs subsequent to both the storing into the first memory and the reading from the second memory.
    • NICAM处理方法包括以第一时钟速率接收和临时存储当前帧的A信道和B信道输入数据到第一存储器中。 以第二时钟速率从第二存储器读取先前帧的压缩A信道和B信道数据,并且以将先前帧压缩的A信道和B信道数据交织到NICAM标准所需交织格式的方式, 其中根据NICAM标准要求,前一帧的压缩的A信道和B信道数据在前一帧中以不同于交织格式的格式临时存储到第二存储器中。 当前帧的A信道和B信道输入数据被压缩并存储到第二存储器中并且以除交织格式之外的格式存储,其中在当前时间间隔内以第三时钟速率执行压扩和存储 在存储到第一存储器中以及从第二存储器读取之后发生的帧。
    • 6. 发明申请
    • NICAM processor
    • NICAM处理器
    • US20070076121A1
    • 2007-04-05
    • US11240315
    • 2005-09-30
    • Luciano ZosoAllan ChinDavid Lester
    • Luciano ZosoAllan ChinDavid Lester
    • H04N11/00
    • H04N5/605
    • A NICAM processor comprises a first memory for temporarily storing a current frame of A-channel and B-channel input data, wherein the current frame data is stored into the first memory at a first clock rate. A second memory temporarily stores companded A-channel and B-channel data of a previous frame in a format other than an interleaved format according to NICAM standard requirements. An interleaving circuit reads the previous frame companded data from the second memory at a second clock rate and in a manner for interleaving the previous frame data into the NICAM standard required interleaved format. A bit stream generator generates a first portion of an output bit stream, multiplexes it with a payload portion, and outputs the output bit stream, wherein the first portion comprises a frame alignment word, control information and additional data, and the payload portion comprises the interleaved data of the previous frame. A companding and storing circuit compands the input data of the current frame and stores the companded data into the second memory at a third clock rate and in the format other than the NICAM interleaved format. The companding and storing circuit is operative during an interval within the current frame, subsequent to the storing into the first memory and the reading from the second memory.
    • NICAM处理器包括用于临时存储A信道和B信道输入数据的当前帧的第一存储器,其中当前帧数据以第一时钟速率存储到第一存储器中。 第二存储器根据NICAM标准要求临时存储除了交织格式之外的格式的前一帧的压缩A信道和B信道数据。 交织电路以第二时钟速率从第二存储器读出先前的帧压缩数据,并且以将先前帧数据交织为NICAM标准所需交错格式的方式。 比特流生成器生成输出比特流的第一部分,将其与有效载荷部分复用,并输出输出比特流,其中第一部分包括帧对准字,控制信息和附加数据,并且有效载荷部分包括 前一帧的交织数据。 压缩和存储电路抑制当前帧的输入数据,并以第三时钟速率和除了NICAM交错格式之外的格式将压缩数据存储到第二存储器中。 压缩和存储电路在当前帧内的间隔期间,在存储到第一存储器中和从第二存储器读取之后可操作。
    • 10. 发明申请
    • Variable interpolator for non-uniformly sampled signals and method
    • 用于非均匀采样信号的可变内插器和方法
    • US20060244644A1
    • 2006-11-02
    • US11394254
    • 2006-03-30
    • Luciano ZosoAllan ChinDavid Lester
    • Luciano ZosoAllan ChinDavid Lester
    • H03M3/00
    • H03H17/0671H03H17/0621H03H17/0657H03H2218/14
    • A variable interpolator (110) has an interpolation factor L for performing an interpolation of an input signal (124), where L is variable and includes a minimum value. The variable interpolator includes a differentiator (110-1), a chopper (112), and an integrator (110-2). The differentiator (110-1) is responsive to a signal on the differentiator input for performing a differentiator portion of the interpolation and for providing a differentiator result signal (134). The chopper is coupled with the differentiator for chopping the differentiator result signal as a function of the minimum value of L, wherein for an interpolator input signal that contains non-uniformly sampled signals in which there exists at least one sample of a shortest duration and at least one sample of a duration that extends beyond the shortest duration, the minimum value of L corresponds to the duration of the sample of shortest duration, and wherein for an interpolator input signal that contains uniformly sampled signals in which the samples are of a fixed duration, the minimum value of L corresponds to the fixed duration. The integrator is responsive to the chopped differentiator result signal for performing an integrator portion of the interpolation and for providing an integrator result signal, corresponding to an output (142) of the variable interpolator.
    • 可变内插器(110)具有用于执行输入信号(124)的内插的内插因子L,其中L是可变的并且包括最小值。 可变内插器包括微分器(110-1),斩波器(112)和积分器(110-2)。 微分器(110-1)响应微分器输入上的信号,以执行插值的微分器部分并提供微分器结果信号(134)。 斩波器与微分器耦合,作为L的最小值的函数斩波微分器结果信号,其中对于包含非均匀采样信号的内插器输入信号,其中存在至少一个具有最短持续时间的样本和 持续时间超过最短持续时间的至少一个样本,L的最小值对应于最短持续时间的样本的持续时间,并且其中对于包含均匀采样的信号的内插器输入信号,其中采样具有固定持续时间 ,L的最小值对应于固定持续时间。 积分器响应于斩波微分器结果信号,以执行内插的积分器部分,并提供对应于可变内插器的输出(142)的积分器结果信号。