Abstract:
A pump control system and a torque control valve are disclosed. In one embodiment, the torque control valve includes a sleeve, a spool disposed in the sleeve, and a piston rod disposed through the spool. The spool has a first recess area, a second recess area, and a third recess area. The first and third recess areas each have a port extending into a central bore of the spool. The piston rod includes a groove orifice feature having a spiral groove and is configured such that a fluid flowing from the port in the first recess area to the port in the third recess area must flow through at least a portion of the spiral groove. The fluid flowing through the spiral groove operates to bias the spool in a direction towards the second axial end of the spool.
Abstract:
PAD4 inhibitory compositions and methods for their use in treatment of cancer and autoimmune disease are provided according to embodiments of the present invention.
Abstract:
Sounding Channel Apparatus and Method. According to an example embodiment, a method may include allocating, within a single physical resource unit (PRU), a plurality of channel sounding groups. Wherein each channel sounding group includes a frequency-time domain code division multiplexing (CDM) allocation. The method may also include broadcasting, in a downlink direction to one or more mobile stations in a wireless network, a signal that causes the receiving mobile stations to transmit a channel sounding signal. The method may further include receiving at least one channel sounding signal from at least one of the one or more mobile stations, the channel sounding signal being received in an uplink direction via one or more channel sounding groups. And, the method may include estimating the channel quality, of the channel used by the physical resource unit, based upon the received at least one channel sounding signal.
Abstract:
Various example embodiments are disclosed herein. According to an example embodiment, an apparatus may include a processor which may be configured to: permute subcarriers of a regular band, including subcarriers assigned to mobile station(s) operating in a single carrier mode and subcarriers assigned to mobile station(s) operating in a multiple carrier mode, to generate a first permuted regular band of subcarriers; and permute subcarriers of the first permuted regular band that are assigned to mobile station(s) operating in multiple carrier mode with subcarriers of an adjacent guard band.
Abstract:
A method for determining a location of a mobile station is provided. The mobile station is requested to identify pilot signals monitored by the mobile station. A pilot signal report is received from the mobile station identifying the pilot signals monitored. It is determined that a location of the mobile station cannot be determined according to the identified pilot signals. A resource allocation signal is transmitted to the mobile station. A report is received from at least one assisting station. The report includes information for determining the location of the mobile station. The location of the mobile station is determined according to the information received in the report from the at least one assisting station and the signal received at the base station from the mobile station.
Abstract:
A method of providing delay information in a multi-antenna transmission system is provided. A time delay value is selected from a set of time delay values. A mobile station is informed of information related to the selected time delay value. The same data is transmitted from a first antenna and from a second antenna. The data is transmitted from the second antenna after the data is transmitted from the first antenna according to the selected time delay value. The time delay value is selected based on a deterministic method or a random method.
Abstract:
In one embodiment, the present invention relates to a method of treating a cancer characterized by inhibition of Fas-mediated apoptosis, comprising administering to a patient suffering from the cancer a pharmaceutically-effective amount of a composition comprising a peptide that competitively antagonizes at least one protein-Fas binding selected from the group consisting of herpes virus 8 protein Kl binding to Fas, CD74 binding to Fas, and pi 00 binding to Fas. In a further embodiment, the peptide is selected from the group consisting of peptides having from about 15 to about 35 amino acid residues and comprising at least a portion of the immunoglobulin domain of Kl, peptides having from about 15 to about 35 amino acid residues and comprising at least fifteen consecutive amino acid residues among positions 50-120 of CD74, LVTLLLAGQ ATT A YFL YQQQ, LYQQQGRLDKLTVTSQNLQL, QNLQLENLRMKLPKPPKPVS, and PKPVSKMRMATPLLMQALPM. In another embodiment, the present invention relates to a method of treating a disease characterized by unwanted apoptosis in a mammal, comprising transfecting a cell of the mammal with a nucleic acid molecule encoding CD74. The present invention also relates to the compositions referred to above and their use in manufacture of medicaments for treatment of the diseases described herein.
Abstract translation:在一个实施方案中,本发明涉及治疗特征在于抑制Fas介导的细胞凋亡的癌症的方法,其包括向患有癌症的患者施用药物有效量的组合物,所述组合物包含竞争性拮抗至少一种 蛋白质-Fas结合选自结合Fas的疱疹病毒8蛋白K1,与Fas结合的CD74,以及结合Fas的pi 00。 在另一个实施方案中,肽选自具有约15至约35个氨基酸残基并且包含至少一部分Kl免疫球蛋白结构域的肽,具有约15至约35个氨基酸残基的肽,以及 包括CD74的位置50-120中的至少十五个连续的氨基酸残基,LVTLLLAGQ ATT A YFL YQQQ,LYQQQGRLDKLTVTSQNLQL,QNLQLENLRMKLPKPPKPVS和PKPVSKMRMATPLLMQALPM。 在另一个实施方案中,本发明涉及治疗哺乳动物特征在于不希望的细胞凋亡的疾病的方法,包括用编码CD74的核酸分子转染哺乳动物细胞。 本发明还涉及上述组合物及其在制备用于治疗本文所述疾病的药物中的用途。
Abstract:
The present invention relates to a method for transmitting a signal in a wireless communication system. The method includes channel coding a data stream using a first turbo encoded puncture pattern, and channel coding the data stream using a second turbo encoded puncture pattern. Preferably, the first turbo encoded puncture pattern is a turbo encoded puncture pattern of a first local operator infrastructure (LOI) and the second turbo encoded puncture pattern is a turbo encoded puncture pattern of a second LOI that neighbors the first LOI.
Abstract:
The present invention is related to a method for reducing a peak to average power ratio (PAPR) of a signal in a wireless communication system. PAPR is reduced by modulating a data stream into a plurality of symbols, dividing the plurality of symbols into symbol groups, applying a Fourier transform to each of the symbol groups, applying a delay to at least one of the transformed symbol groups, and calculating a peak to average power ratio of the symbol groups.
Abstract:
A mobile terminal for communicating with a network entity includes a RF module for communicating with the network entity, a display for displaying information to a user, a memory for storing data relating to operation of the mobile terminal, and a processor. The processor may be configured to adjust power control step size of the mobile terminal by receiving signal condition data from the network entity, and adjusting the power control step size based on the signal condition data. The mobile terminal may also be configured to operate with 1xEV-DO systems.