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    • 1. 发明授权
    • Compression and storage of projection data in a computed tomography system
    • 计算机断层摄影系统中投影数据的压缩和存储
    • US08045811B2
    • 2011-10-25
    • US12352116
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06K9/36
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A computed tomography system has a stationary part, a rotatable part mounted for rotation around an object to be examined and an interface between the stationary part and the rotatable part. The rotatable part includes an x-ray source, a sensor array for detecting x-rays passing through the object to produce projection data samples, a compressor that compresses the projection data samples and a storage device that stores the compressed samples. The storage device on the rotatable part can include one or more solid state drives. For image reconstruction, the compressed samples are retrieved from the storage device, transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed samples and provides decompressed samples to the image reconstruction processor. This abstract does not limit the scope of the invention as described in the claims.
    • 计算机断层摄影系统具有静止部分,可旋转部分安装成围绕待检查物体旋转,以及固定部分和可旋转部分之间的界面。 可旋转部分包括X射线源,用于检测通过物体的X射线以产生投影数据样本的传感器阵列,压缩投影数据样本的压缩器和存储压缩样本的存储装置。 可旋转部件上的存储装置可以包括一个或多个固态驱动器。 对于图像重建,从存储设备检索压缩样本,通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩样本,并将解压缩的样本提供给图像重构处理器。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 2. 发明申请
    • COMPRESSION AND STORAGE OF PROJECTION DATA IN A COMPUTED TOMOGRAPHY SYSTEM
    • 计算机图像系统中投影数据的压缩和存储
    • US20100128949A1
    • 2010-05-27
    • US12352116
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06K9/60G06K9/00
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A computed tomography system has a stationary part, a rotatable part mounted for rotation around an object to be examined and an interface between the stationary part and the rotatable part. The rotatable part includes an x-ray source, a sensor array for detecting x-rays passing through the object to produce projection data samples, a compressor that compresses the projection data samples and a storage device that stores the compressed samples. The storage device on the rotatable part can include one or more solid state drives. For image reconstruction, the compressed samples are retrieved from the storage device, transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed samples and provides decompressed samples to the image reconstruction processor. This abstract does not limit the scope of the invention as described in the claims.
    • 计算机断层摄影系统具有静止部分,可旋转部分安装成围绕待检查物体旋转,以及固定部分和可旋转部分之间的界面。 可旋转部分包括X射线源,用于检测通过物体的X射线以产生投影数据样本的传感器阵列,压缩投影数据样本的压缩器和存储压缩样本的存储装置。 可旋转部件上的存储装置可以包括一个或多个固态驱动器。 对于图像重建,从存储设备检索压缩样本,通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩样本,并将解压缩的样本提供给图像重构处理器。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 3. 发明授权
    • Compression and storage of projection data in a rotatable part of a computed tomography system
    • 在计算机断层摄影系统的可旋转部分中压缩和存储投影数据
    • US08151022B2
    • 2012-04-03
    • US12352322
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06F13/12G06F13/38G06K9/36G06K9/46
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A method and apparatus compress projection data and store the compressed projection data in a rotatable part that is mounted for rotation within a stationary part. The data acquisition source, compressor and storage device are connected to the rotatable part. The compressor compresses projection data samples provided by the data acquisition source to form compressed packets. The compressed packets are stored in the storage device, for example one or more solid state drives mounted on the rotatable part. A data access array contains information related to the location of the stored compressed packets. Compressed packets are retrieved and transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed packets to form decompressed samples of the corresponding projection data. This abstract does not limit the scope of the invention as described in the claims.
    • 一种方法和装置压缩投影数据并将压缩的投影数据存储在安装成在静止部分内旋转的可旋转部分中。 数据采集​​源,压缩机和存储设备连接到可旋转部件。 压缩器压缩由数据采集源提供的投影数据样本以形成压缩分组。 压缩的数据包被存储在存储设备中,例如一个或多个安装在可旋转部件上的固态驱动器。 数据访问阵列包含与存储的压缩数据包的位置有关的信息。 压缩的数据包被检索并通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩数据包,形成相应投影数据的解压缩样本。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 4. 发明申请
    • COMPRESSION AND STORAGE OF PROJECTION DATA IN A ROTATABLE PART OF A COMPUTED TOMOGRAPHY SYSTEM
    • 计算机图像系统可旋转部分的投影数据的压缩和存储
    • US20100128998A1
    • 2010-05-27
    • US12352322
    • 2009-01-12
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • Albert W. WegenerCarl R. CrawfordYi Ling
    • G06K9/46
    • G06T9/00H04N19/15H04N19/17H04N19/196
    • A method and apparatus compress projection data and store the compressed projection data in a rotatable part that is mounted for rotation within a stationary part. The data acquisition source, compressor and storage device are connected to the rotatable part. The compressor compresses projection data samples provided by the data acquisition source to form compressed packets. The compressed packets are stored in the storage device, for example one or more solid state drives mounted on the rotatable part. A data access array contains information related to the location of the stored compressed packets. Compressed packets are retrieved and transferred across the interface to the stationary part. A decompressor at the stationary part decompresses the received compressed packets to form decompressed samples of the corresponding projection data. This abstract does not limit the scope of the invention as described in the claims.
    • 一种方法和装置压缩投影数据并将压缩的投影数据存储在安装成在静止部分内旋转的可旋转部分中。 数据采集​​源,压缩机和存储设备连接到可旋转部件。 压缩器压缩由数据采集源提供的投影数据样本以形成压缩分组。 压缩的数据包被存储在存储设备中,例如一个或多个安装在可旋转部件上的固态驱动器。 数据访问阵列包含与存储的压缩数据包的位置有关的信息。 压缩的数据包被检索并通过接口传输到固定部分。 固定部分的解压缩器解压缩接收到的压缩数据包,形成相应投影数据的解压缩样本。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 6. 发明申请
    • ADAPTIVE COMPRESSION OF COMPUTED TOMOGRAPHY PROJECTION DATA
    • 计算机图像投影数据的自适应压缩
    • US20100070836A1
    • 2010-03-18
    • US12208839
    • 2008-09-11
    • Albert W. WegenerYi Ling
    • Albert W. WegenerYi Ling
    • G06F17/30G06F11/00
    • G06T9/00A61B6/032A61B6/4078A61B6/4233A61B6/56
    • A compression subsystem for a computed tomography system compresses projection data to for efficient data transfer and storage. The compression includes applying an attenuation profile to an array of projection data samples. The attenuation profile is a function of sample coordinates and determines attenuation values applied to the samples. The attenuated samples are encoded and packed for data transfer. Alternatively, difference operators are applied to the attenuated samples and the differences are encoded. The average number of bits per compressed sample is monitored and the attenuation profiles can be modified to achieve a desired number of bits per compressed sample. The compressed samples are decompressed prior to image reconstruction processing. Decompression includes decoding the compressed samples and applying a gain profile to the decoded samples to restore the original dynamic range. This abstract does not limit the scope of the invention as described in the claims.
    • 用于计算机断层摄影系统的压缩子系统压缩投影数据以进行有效的数据传输和存储。 压缩包括将衰减分布应用于投影数据样本阵列。 衰减曲线是样本坐标的函数,并确定应用于样本的衰减值。 衰减的样本被编码和打包用于数据传输。 或者,将差分运算符应用于衰减的样本,并对差异进行编码。 监视每个压缩样本的平均位数,并且可以修改衰减曲线,以实现每个压缩样本所需的位数。 在图像重建处理之前对压缩样本进行解压缩。 解压缩包括对压缩样本进行解码并将增益曲线应用于解码样本以恢复原始动态范围。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 7. 发明授权
    • Edge detection for computed tomography projection data compression
    • 计算机断层摄影投影数据压缩的边缘检测
    • US07916830B2
    • 2011-03-29
    • US12208835
    • 2008-09-11
    • Albert W. WegenerYi Ling
    • Albert W. WegenerYi Ling
    • A61B6/00
    • G06T9/20A61B6/032H03M7/30H04N19/124H04N19/15H04N19/162H04N19/172H04N19/46H04N19/593H04N19/80H04N19/85H04N19/91
    • A compression subsystem for a computed tomography system compresses projection data to for efficient data transfer and storage. The compression includes detecting edges in the projection data corresponding to the object being imaged to set boundaries for compression operations. The edge detection compares difference samples to positive and negative thresholds to determine the boundaries. The projection samples or the difference samples are compressed between the boundaries. The boundaries are encoded and included in the compressed data. The compressed samples are decompressed prior to image reconstruction processing. Decompression includes decoding the compressed samples and the boundary values. This abstract does not limit the scope of the invention as described in the claims.
    • 用于计算机断层摄影系统的压缩子系统压缩投影数据以用于有效的数据传输和存储。 压缩包括检测与被成像对象相对应的投影数据中的边缘,以设置用于压缩操作的边界。 边缘检测将差分样本与正和负阈值进行比较,以确定边界。 投影样本或差分样本在边界之间被压缩。 边界被编码并包含在压缩数据中。 在图像重建处理之前对压缩样本进行解压缩。 解压缩包括对压缩样本和边界值进行解码。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 8. 发明授权
    • Adaptive compression of computed tomography projection data
    • 计算机断层摄影投影数据的自适应压缩
    • US07852977B2
    • 2010-12-14
    • US12208839
    • 2008-09-11
    • Albert W. WegenerYi Ling
    • Albert W. WegenerYi Ling
    • A61B6/00
    • G06T9/00A61B6/032A61B6/4078A61B6/4233A61B6/56
    • A compression subsystem for a computed tomography system compresses projection data to for efficient data transfer and storage. The compression includes applying an attenuation profile to an array of projection data samples. The attenuation profile is a function of sample coordinates and determines attenuation values applied to the samples. The attenuated samples are encoded and packed for data transfer. Alternatively, difference operators are applied to the attenuated samples and the differences are encoded. The average number of bits per compressed sample is monitored and the attenuation profiles can be modified to achieve a desired number of bits per compressed sample. The compressed samples are decompressed prior to image reconstruction processing. Decompression includes decoding the compressed samples and applying a gain profile to the decoded samples to restore the original dynamic range. This abstract does not limit the scope of the invention as described in the claims.
    • 用于计算机断层摄影系统的压缩子系统压缩投影数据以用于有效的数据传输和存储。 压缩包括将衰减分布应用于投影数据样本阵列。 衰减曲线是样本坐标的函数,并确定应用于样本的衰减值。 衰减的样本被编码和打包用于数据传输。 或者,将差分运算符应用于衰减的样本,并对差异进行编码。 监测每个压缩样本的平均位数,并且可以修改衰减曲线,以实现每个压缩样本所需的位数。 在图像重建处理之前对压缩样本进行解压缩。 解压缩包括对压缩样本进行解码并将增益曲线应用于解码样本以恢复原始动态范围。 该摘要并不限制如权利要求中所述的本发明的范围。
    • 9. 发明申请
    • FREQUENCY DOMAIN COMPRESSION IN A BASE TRANSCEIVER SYSTEM
    • 基站收发系统中的频域压缩
    • US20120176966A1
    • 2012-07-12
    • US13343636
    • 2012-01-04
    • Yi Ling
    • Yi Ling
    • H04W4/00
    • H04B1/40H04L25/03H04L27/2615H04L27/2628H04L27/2647H04W88/085
    • A method and apparatus provide signal compression for transfer over serial data links in a base transceiver system (BTS) of a wireless communication network. For the uplink, an RF unit of the BTS applies frequency domain compression of baseband signal samples, resulting from analog to digital conversion of received analog signals followed by digital downconversion, forming compressed coefficients. After transfer over the serial data link, the baseband processor then applies frequency domain decompression to the compressed coefficients prior to normal signal processing. For the downlink, the baseband processor applies frequency domain compression of baseband signal samples and transfers the compressed coefficients to the RF unit. The RF unit applies frequency domain decompression to the compressed coefficients prior to digital upconversion and digital to analog conversion, generating the analog signal for transmission over the antenna. This abstract does not limit the scope of the invention as described in the claims.
    • 一种方法和装置为无线通信网络的基站收发器系统(BTS)中的串行数据链路提供信号压缩。 对于上行链路,BTS的RF单元对基带信号样本进行频域压缩,由接收到的模拟信号的模数转换产生的数字下变频,形成压缩系数。 在通过串行数据链路传输之后,基带处理器在正常信号处理之前对压缩系数进行频域解压缩。 对于下行链路,基带处理器对基带信号样本进行频域压缩,并将压缩的系数传送到RF单元。 RF单元在数字上变频和数模转换之前对压缩系数应用频域解压缩,产生用于通过天线传输的模拟信号。 该摘要并不限制如权利要求中所述的本发明的范围。