- 関
- convolution、rotation、rotatory、swirling
WordNet
- rolled longitudinally upon itself; "a convolute petal" (同)convoluted
- (mathematics) a transformation in which the coordinate axes are rotated by a fixed angle about the origin
- the act of rotating as if on an axis; "the rotation of the dancer kept time with the music" (同)rotary motion
- a planned recurrent sequence (of crops or personnel etc.); "crop rotation makes a balanced demand on the fertility of the soil"; "the manager had only four starting pitchers in his rotation"
- a single complete turn (axial or orbital); "the plane made three rotations before it crashed"; "the revolution of the earth about the sun takes one year" (同)revolution, gyration
- of or relating to or characteristic or causing an axial or orbital turn (同)revolutionary
- the action of coiling or twisting or winding together
PrepTutorEJDIC
- 《まれ》=convoluted
- 〈U〉〈C〉回転 / 〈U〉〈C〉(地球・天体の)自転 / 〈U〉循環;交替;(作物の)輪作
- (形容詞)回転する(させる) 交代する 循環する 輪番の
- 《複数形で》渦往き[状のもの] / (脳の)回転[部]
- 《文》回旋状の,渦(うず)往き形の / 複雑に入り組んだ;回りくどい
Wikipedia preview
出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2013/11/26 00:01:19」(JST)
[Wiki en表示]
Convolute may refer to:
- Convolution (mathematics and music)
- Circular convolution
- Convolution reverb
- Convolution sampling
- Convolution theorem
- Titchmarsh convolution theorem
- Dirichlet convolution
- Infimal convolute
- Logarithmic convolution
- Vandermonde convolution
- Convolution (computer science)
- Convolutional code (telecommunication)
- Convoluted tubule (anatomy)
- Convolute (botany)
English Journal
- Sequencing-based variant detection in the polyploid crop oilseed rape.
- Wells R1, Trick M, Fraser F, Soumpourou E, Clissold L, Morgan C, Pauquet J, Bancroft I.Author information 1John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.AbstractBACKGROUND: The detection and exploitation of genetic variation underpins crop improvement. However, the polyploid nature of the genomes of many of our most important crops represents a barrier, particularly for the analysis of variation within genes. To overcome this, we aimed to develop methodologies based on amplicon sequencing that involve the incorporation of barcoded amplification tags (BATs) into PCR products.
- BMC plant biology.BMC Plant Biol.2013 Aug 6;13:111. doi: 10.1186/1471-2229-13-111.
- BACKGROUND: The detection and exploitation of genetic variation underpins crop improvement. However, the polyploid nature of the genomes of many of our most important crops represents a barrier, particularly for the analysis of variation within genes. To overcome this, we aimed to develop methodolog
- PMID 23915099
- Simultaneous alignment and clustering of peptide data using a Gibbs sampling approach.
- Andreatta M1, Lund O, Nielsen M.Author information 1Center for Biological Sequence Analysis, Technical University of Denmark, DK-2800 Lyngby, Denmark. massimo@cbs.dtu.dkAbstractMOTIVATION: Proteins recognizing short peptide fragments play a central role in cellular signaling. As a result of high-throughput technologies, peptide-binding protein specificities can be studied using large peptide libraries at dramatically lower cost and time. Interpretation of such large peptide datasets, however, is a complex task, especially when the data contain multiple receptor binding motifs, and/or the motifs are found at different locations within distinct peptides.
- Bioinformatics (Oxford, England).Bioinformatics.2013 Jan 1;29(1):8-14. doi: 10.1093/bioinformatics/bts621. Epub 2012 Oct 24.
- MOTIVATION: Proteins recognizing short peptide fragments play a central role in cellular signaling. As a result of high-throughput technologies, peptide-binding protein specificities can be studied using large peptide libraries at dramatically lower cost and time. Interpretation of such large peptid
- PMID 23097419
- Individual MHCI-Restricted T-Cell Receptors are Characterized by a Unique Peptide Recognition Signature.
- Wooldridge L.Author information Institute of Infection and Immunity, Cardiff University School of Medicine , Heath Park, Cardiff , UK.AbstractEffective immunity requires that a limited TCR repertoire is able to recognize a vast number of foreign peptide-MHCI (peptide-major histocompatibility complex class I) molecules. This challenge is overcome by the ability of individual TCRs to recognize large numbers of peptides. Recently, it was demonstrated that MHCI-restricted TCRs can recognize up to 10(6) peptides of a defined length. Astonishingly, this remarkable level of promiscuity does not extend to peptides of different lengths, a fundamental observation that has broad implications for CD8(+) T-cell immunity. In particular, the findings suggest that effective immunity can only be achieved by mobilization of "length-matched" CD8(+) T-cell clonotypes. Overall, recent findings suggest that every TCR is specific for a unique set of peptides, which can be described as a unique "peptide recognition signature" (PRS) and consists of three components: (1) peptide length preference, (2) number of peptides recognized; and, (3) sequence identity (e.g., self versus pathogen derived). In future, the ability to de-convolute peptide recognition signatures across the normal and pathogenic repertoire will be essential for understanding the system requirements for effective CD8(+) T-cell immunity and elucidating mechanisms which underlie CD8(+) T-cell mediated disease.
- Frontiers in immunology.Front Immunol.2013 Jul 23;4:199. doi: 10.3389/fimmu.2013.00199. eCollection 2013.
- Effective immunity requires that a limited TCR repertoire is able to recognize a vast number of foreign peptide-MHCI (peptide-major histocompatibility complex class I) molecules. This challenge is overcome by the ability of individual TCRs to recognize large numbers of peptides. Recently, it was dem
- PMID 23888160
Japanese Journal
- 1408 データ包絡分析法を用いた多目的近似最適化手法(OS8-2 近似最適化II)
- 荒川 雅生,北山 哲士
- 設計工学・システム部門講演会講演論文集 2010(20), "1408-1"-"1408-7", 2010-10-27
- … We had developed approximate multi-objective optimization method, which is composed by satisficing method, convolute radial basis function network and recommendation of new design variables. … Therefore, it is difficult even for convolute RBF to compose better approximate function although we have better approximation for each objective function. …
- NAID 110008742454
- 2308 畳込みRBFの半径決定方法の一考察(OS8-2 近似最適化II,OS8 設計と最適化)
- 荒川 雅生
- 設計工学・システム部門講演会講演論文集 2009(19), 447, 2009-10-28
- … In our conventional study, we have proposed convolute RBF. … In this study, we are going to propose simple way of setting them in convolute RBF. …
- NAID 110008742377
- 多目的近似最適化手法を用いた足裏アーチサポートの開発(<小特集>第18回設計工学・システム部門講演会)
- 三宅 信一郎,中尾 卓,荒川 雅生
- 日本機械学會論文集. C編 75(756), 2141-2147, 2009-08-25
- … We used convolute RBF as approximation of objective functions, and Genetic Range Genetic Algorithms (GRGAs) as optimizer. …
- NAID 110007340186
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- 関
- clinorotation、convolute、convolution、crop rotation、optical rotation、revolution、revolve、roll、rolling、rotate、rotatory、round、swirling、turn、turning
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- circumflex、convolute、convolution、optical rotation、optical rotatory、revolution、revolve、roll、rolling、rotate、rotation、round、swirling、turn、turning
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- 関
- convolute、revolution、revolve、roll、rolling、rotate、rotation、rotatory、round、swirling、turn、turning
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- 関
- convolute、convolution、rotation、rotatory