Abstract:
A method and system for providing user-navigable search results returns a resource representation for a resource, such as a web site or other Internet accessible object. The resource representation may be navigable by a user in a manner mirroring navigation of the resource. The resource representation may include a plurality of indicators representing menu links selected from resource links associated with the resource. Selection of an indicator may cause content associated with the indicator, such as resource links and related snippets, to be displayed. A hierarchical arrangement of elements in the resource representation may correspond to a hierarchical arrangement of navigable content in the resource.
Abstract:
A microelectromechanical system (MEMS) device for sensing a magnetic field comprising: a base; a cantilever attached to the base structure at a first end and movable at a second end, the second end oscillating at a predetermined frequency upon application of a current; a magnetic sensor attached to the movable second end; at least one flux concentrator mounted on the base adapted to transfer magnetic flux to the sensor; whereby when the current is applied, the oscillation of the cantilever causes the sensor to oscillate between the lines of flux transferred from the at least one flux concentrator resulting in the shift of the frequency of the sensed magnetic field to the predetermined frequency. The invention further comprises a method of making the MEMS device.
Abstract:
This invention relates to rearranging a cluster map of voxels in an image aiming at the reduction of sub-cluster scatter. The cluster map that includes two or more cluster levels is displayed to the user along with the distribution of the voxels within each respective cluster levels. The aim is to enable the user to evaluate the quality of the cluster map and based on the evaluation to change the distribution of the voxels. Such a change in the distribution will result in an update of the cluster map.
Abstract:
An apparatus includes a scanner (102, 104) and a scanning motion monitor (100). A motion modeler (116) uses data from the scanning motion monitor (100) and the scanner (102, 104) to generate a motion model which describes motion of a region of interest of an object. A treatment planner (112) uses image data from the scanner (102, 104) to establish a treatment plan for the object. A treatment device 114, which operates in conjunction with a treatment motion monitor (108), uses the motion model to compensate for motion of the object during application of the treatment.
Abstract:
The invention describes a method and a system for generating training data (DT) for an automatic speech recogniser (2) for operating at a particular first sampling frequency (fH), comprising steps of deriving spectral characteristics (SL) from audio data (DL) sampled at a second frequency (fL) lower than the first sampling frequency (fH), extending the bandwidth of the spectral characteristics (SL) by retrieving bandwidth extending informationOBE) from a codebook (6), and processing the bandwidth extended spectral characteristics (SLE) to give the required training data (DT). Moreover a method and a system (5) for generating a codebook (6) for extending the bandwidth of spectral characteristics (SL) for audio data (DL) sampled at a second sampling frequency (fL) to spectral characteristics (SH) for a first sampling frequency (fH) higher than the second sampling frequency (fL) are described.
Abstract translation:本发明描述了一种用于产生用于在特定的第一采样频率(f H H)下操作的自动语音识别器(2)的训练数据(D SUB)的方法和系统, 包括以下步骤:从低于第二频率(f L L L)采样的音频数据(D L L L)中导出频谱特性(S L L L) 通过检索带宽扩展信息(SUBE OBE))来扩展频谱特性(S L1> L)的带宽的第一采样频率(f H H H) 码本(6),并且处理带宽扩展频谱特性(S LE LE)以给出所需的训练数据(D SUB T)。 此外,一种用于产生码本(6)的方法和系统(5),用于扩展用于在以下采样的音频数据(D L L)采样的频谱特性(D L L)的带宽的带宽 对于高于第二采样的第一采样频率(f H H H),对频谱特性(S SUB H H)的第二采样频率(f L L) 描述频率(fLL)。
Abstract:
A method and system for providing user-navigable search results returns a resource representation for a resource, such as a web site or other Internet accessible object. The resource representation may be navigable by a user in a manner mirroring navigation of the resource. The resource representation may include a plurality of indicators representing menu links selected from resource links associated with the resource. Selection of an indicator may cause content associated with the indicator, such as resource links and related snippets, to be displayed. A hierarchical arrangement of elements in the resource representation may correspond to a hierarchical arrangement of navigable content in the resource.
Abstract:
A medical information processing and storage system includes a medical images database storing medical images and metadata relevant to the medical images. A processor is configured to perform post-acquisition image processing on medical images. A medical images archiver is configured to store a medical image in the medical images database after the medical image has been processed by the processor. The medical images archiver stores the medical image in the database with processing-descriptive metadata that is descriptive of the post-acquisition image processing performed on the medical image by the processor.
Abstract:
An apparatus includes a scanner (102, 104) and a scanning motion monitor (100). A motion modeler (116) uses data from the scanning motion monitor (100) and the scanner (102, 104) to generate a motion model which describes motion of a region of interest of an object. A treatment planner (112) uses image data from the scanner (102, 104) to establish a treatment plan for the object. A treatment device 114, which operates in conjunction with a treatment motion monitor (108), uses the motion model to compensate for motion of the object during application of the treatment.
Abstract:
Radar sensor having a mixer for mixing a received signal with a reference signal and having a device for compensating interference signals which would overload the mixer, wherein the device for compensating the interference signals has an adjustable reflection point at the reference input of the mixer.
Abstract:
A system, apparatus, and method are based on a priori knowledge of the shape of the input function for defining an input region-if-interest (ROI) in pharmacokinetic modeling. Kinetic parameter estimation requires knowledge of tracer input activity and the present invention provides an automatic way to define an ROI for estimation of an input function that takes into account a priori knowledge of the shape of the input function based on an administered dose.