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"flow compensated pulse sequence"¿¡ ´ëÇÑ °Ë»ö °á°úÀÔ´Ï´Ù. °Ë»ö °á°ú º¸´Â µµÁß¿¡ Tab ۸¦ ´©¸£½Ã¸é °Ë»ö âÀÌ ¼±Åõ˴ϴÙ.
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  • ¿µ¹®
    ÇѱÛ
  • inspiratory triggering flow
    µé¼ûÀ¯¹ß±â·ù
  • kettle flow
    ÄÉÆ²À¯·®
  • laminar flow
    °áÈ帧, ÃþÆÇ·ù
  • maximal expiratory flow
    Ãִ볯¼ûÀ¯·®, ÃÖ´ëÈ£±â·®
  • maximal midexpiratory flow rate
    ÃÖ°íÁß°£³¯¼ûÀ¯¼Ó, ÃÖ°íÁß°£È£±âÀ¯¼Ó
  • maximum expiratory flow rate
    ÃÖ°í³¯¼ûÀ¯¼Ó, ÃÖ°íÈ£±âÀ¯¼Ó
  • maximum flow rate
    1. ÃÖ°íÀ¯¼Ó 2. ÃÖ°íÈ帧¼Óµµ 3. ÃÖ´ëÀ¯·®
  • maximum midexpiratory flow
    ÃÖ´ëÁß°£³¯¼ûÀ¯·®, ÃÖ´ëÁß°£È£±âÀ¯·®
  • noncyclic electron flow
    ºñȸ·ÎÀüÀÚÈ帧
  • pressure flow study
    ¾Ð·Â¿ä·ù°Ë»ç
  • parabolic flow
    Æ÷¹°¼±È帧
  • proton flow
    ¾ç¼ºÀÚÈ帧, ¾ç¼ºÀÚÀ¯µ¿
  • pulmonary flow resistance
    Æó±â·ùÀúÇ×
  • pulsatile flow
    ¹Úµ¿È帧, ¹Úµ¿Ç÷·ù
  • peak expiratory flow
    Ãִ볯¼ûÀ¯·®
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  • ¿µ¹®
    ÇѱÛ
  • flow rate
    À¯¼Ó, À¯·®
  • flow resistance
    È帧ÀúÇ×, À¯·®ÀúÇ×
  • flow signal
    È帧½ÅÈ£, À¯µ¿½ÅÈ£
  • flow void
    È帧°ø¹é, À¯µ¿°ø¹é
  • flow compensation gradient technique
    È帧º¸»ó±â¿ï±â±â¹ý
  • flow velocity profile
    È帧¼ÓµµºÐÆ÷»ó, À¯¼ÓºÐÆ÷»ó
  • flow void sign
    È帧¼Ò½Ç¡ÈÄ
  • forced expiratory flow
    °­Á¦³¯¼ûÀ¯·®
  • gas flow
    °¡½ºÈ帧, °¡½ºÀ¯·®
  • high intensity proton flow
    °í°­µµ¾çÀÚÈ帧, °í°­µµ¾çÀÚÀ¯µ¿
  • inspiratory triggering flow
    µé¼ûÀ¯¹ß±â·ù
  • kettle flow
    ÄÉÆ²À¯·®
  • laminar flow
    °áÈ帧
  • maximal expiratory flow
    Ãִ볯¼û·®
  • maximum midexpiratory flow
    Ãִ볯¼ûÁß°£À¯·®
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  • ¿µ¹®
    ÇѱÛ
  • polycrotic pulse
    ´Ù´Ü¸Æ(ÒýÓ«Øæ).
  • polycrotic pulse
    ´Ù´Ü¸Æ(ÒýÓ«Øæ)
  • presaturation pulse
    Àü Æ÷È­ ÆÄµ¿
  • pressure pulse
    ¾Ð¸Æ¹Ú(äâØæÚÑ).
  • pulmonary pulse
    Æóµ¿¸Æ¸Æ¹Ú.
  • pulse amplitude
    ¸Æ¹ÚÆø.
  • pulse control unit
    ¸Æ¹Ú Á¶Àý ´ÜÀ§
  • pulse curve =sphymogram
    ¸Æ¹Ú°î¼±(ØæÚÑÍØàÊ).
  • pulse cycle
    ¸Æ¹ÚÁÖ±â(ØæÚÑñ²Ñ¢).
  • pulse deficit
    ¸Æ¹Ú°á¼Õ.
  • pulse deficit
    ¸Æ¹Ú°á¼Õ(ØæÚÑÌÀáß)
  • pulse echo principle
    ÆÞ½º ¿¡ÄÚ ¿ø¸®
  • pulse echo principle
    ÆÞ½º-¿¡ÄÚ ¿ø¸® (ê«×â)
  • pulse echo techinique
    ÆÞ½º-¿¡ÄÚ ±â¹ý (ÐüÛö)
  • pulse echo technique
    ÆÞ½º ¿¡ÄÚ ±â¹ý
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  • ¿µ¹®
    ÇѱÛ
  • co-current flow
    ¹Ù¸¥ È帧, Á¤È帧
  • color Doppler flow mapping
    »ö µµÇ÷¯ Ç÷·ù ÁöµµÈ­
  • color doppler flow mapping
    »ö (ßä) µµÇ÷¯ Ç÷·ùÇ¥½Ã (úì×µøúãÆ)
  • color flow imaging
    »ö Ç÷·ù ¿µ»ó
  • color flow imaging
    »öÇ÷·ù ¿µ»ó (ßäúì×µ ç±ßÀ)
  • color flow mapping
    »ö Ç÷·ù ÁöµµÈ­
  • continuous flow analyzer
    Áö¼Ó¼º À¯µ¿ºÐ¼®±â
  • continuous flow apparatus
    Áö¼Ó¼º ±â·ùÀåÄ¡.
  • continuous-flow resectoscope
    Áö¼Ó¼º À¯µ¿ ÀýÁ¦°æ
  • coronary blood flow
    °ü(»ó)Ç÷·ù(¡­úìêü).
  • coronary flow
    °ü(»ó)Ç÷·ù(ήßÒúìêü).
  • counter current flow
    ¿ªÈ帧, °Å²Ù·Î È帧
  • counter flow
    ´ëÇâ·ù, ¿ª·ù(æ½êü), ¹Ý·ù(Úãêü).
  • cytometry flow
    ¼¼Æ÷°è»ê(¡­Íªß©)
  • diluent flow
    Èñ¼®±â·ù(·®).
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  • ¿µ¹®
    ÇѱÛ
  • signal sequence
    ½ÅÈ£¼­¿­(ãáûÜßíÖª)
  • simple sequence DNA
    ´Ü¼ø¼­¿­(Ó¤âíßíÖª) DNA
  • target sequence
    Ç¥Àû¼­¿­ (øöîÜßíÖª)
  • waterfall sequence
    ÆøÆ÷ ¼­¿­ (øîøÖßíÖª)
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  • ¿µ¹®
    ÇѱÛ
  • turbulent flow
    ¿Í·ù, ³­·ù
  • 90o pulse
    90o ÆÞ½º, 90o ÆÄ
  • blipped echo planar single pulse
    ¼ø°£ ¿¡ÄÚÆò¸é´ÜÀÏÆÞ½º
  • diffusion gradient pulse
    È®»ê°æ»çÆÞ½º
  • echo pulse
    ¿¡ÄÚÆÞ½º
  • fat saturation pulse
    Áö¹æÆ÷È­ÆÞ½º
  • flip angle pulse
    ¼÷ÀÓ°¢ÆÞ½º
  • hard pulse
    ÇϵåÆÞ½º, °æÆÄ
  • magnetization transfer pulse
    ÀÚÈ­Àü´ÞÆÞ½º
  • narrow band pulse
    Á¼ÀºÆøÆÞ½º
  • off-resonance radiofrequence saturation pulse
    ÀÌÅ»°ø¸í °íÁÖÆÄÆ÷È­ÆÞ½º
  • offset-resonance pulse
    ¿ÀÇÁ¼Â°ø¸íÆÞ½º
  • presaturation pulse
    ÀüÆ÷È­ÆÄµ¿
  • pulse
    ¸Æ, ¸Æ¹Ú, ÆÞ½º
  • pulse control unit
    ¸Æ¹ÚÁ¶Àý´ÜÀ§
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LBF Lactobacillus bulgaricus factor; limb blood flow; liver blood flow
MEF maximal expiratory flow; middle ear fluid; midexpiratory flow; migration enhancement factor; mouse e...
MFR mean flow rate; mucus flow rate
MIF macrophage inhibitory factor; melanocyte[-stimulating hormone]-inhibiting factor; maximum inspirator...
MMF maxillomandibular fixation; maximum midexpiratory flow; mean maximum flow; Member of the Medical Fac...
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PDR Pulse-Dose-Rate
IPI inter-pulse interval
SpO2 measure by pulse oximetry
pps pulse-per-second
SPO2 saturation by pulse oximetry
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • flow amount
    À¯·®
  • flow compensation gradient technique
    À¯µ¿ º¸»ó °æ»ç ±â¹ý
  • flow cytometry
    À¯¼Ó ¼¼Æ÷ ºÐ¼®¹ý
  • flow meter
    À¯·®°è, À¯¼Ó°è
    ¾×ü ¶Ç´Â ±âüÀÇ À¯¼ÓÀ» ÃøÁ¤ÇÏ´Â ±â±¸.
  • flow phenomena
    À¯µ¿ Çö»ó
  • flow resistance
    È帧 ÀúÇ×, À¯·® ÀúÇ×
  • flow signal
    À¯µ¿ ½ÅÈ£
  • flow void
    À¯µ¿ °ø¹é
  • flow volume curve
    À¯·®±â·® °î¼±
  • high intensity proton flow
    °í°­µµ ¾çÀÚÀ¯µ¿
  • in-plane flow misregistration
    Æò¸é³» À¯µ¿ ¿Àµî·Ï
  • kettle-flow
    Áõ¹ß ±â·ù
  • laminar flow cabinet
    Ãþ·ù½Ä ¹«±Õ ½ÇÇè´ë
  • laser Doppler flow probe
    ·¹ÀÌÀú Doppler À¯¼Ó Žħ
  • maximum expiratory flow rate
    ÃÖ´ë È£±â À¯·®·ü
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recognition sequence A nucleotide sequence --typically composed of 4, 6, or 8nucleotides -- that is recognised by a restriction endonuclease. Type II enzymes cut (and theircorresponding modification enzymes methylate) within or very near the recognition sequence.
(09 Oct 1997)
regulatory sequence <molecular biology> DNA sequence to which regulatory molecules such as promotors or enhancers bind, thereby altering the expression of the adjacent gene.
(18 Nov 1997)
centromeric sequence <molecular biology> Special sequences of DNA nucleotides found on chromosomes which provide a site for the attachment of spindle fibres during nuclear division (mitosis or meiosis).
(09 Oct 1997)
chi sequence <molecular biology> A specific sequence of nucleotides on a site on the genome of the bacteria Escherichia coli which strongly encourages recombination and crossing over to occur at that site.
(05 Jan 1998)
PEST sequence Amino acid motif that is thought to target cytoplasmic proteins for rapid proteolytic degradation.
(18 Nov 1997)
molecular sequence data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as genbank, european molecular biology laboratory (embl), national biomedical research foundation (nbrf), or other sequence repositories.
(12 Dec 1998)
coding sequence The portion of DNA that codes for transcription of messenger RNA.
See: exon.
(05 Mar 2000)
monotonic sequence A sequence in which each value in a set is greater than the preceding value.
(05 Mar 2000)
complementary sequence <molecular biology> Nucleicacid base sequences that can form a double-stranded structure bymatching base pairs, the complementary sequence to G-T-A-C is C-A-T-G.
(09 Oct 1997)
consensus sequence Of a series of related DNA, RNA or protein sequences, the sequence that reflects the most common choice of base or amino acid at each position. Areas of particularly good agreement often represent conserved functional domains. The generation of consensus sequences has been subjected to intensive mathematical analysis.
(18 Nov 1997)
conserved sequence <molecular biology> A base sequence in a DNA molecule (or an amino acid sequence in a protein) that has remained essentially unchanged throughout evolution.
(10 Nov 1998)
sequence The noun: the order in which subunits appear in a chain, such as amino acids in a polypeptide or nucleotide bases in a DNA or RNA molecule.
The verb: To find out in what order the subunits appear in the chain.
(09 Oct 1997)
sequence alignment The arrangement of two or more amino acid or base sequences from an organism or organisms in such a way as to align areas of the sequences sharing common properties. The degree of relatedness or homology between the sequences is predicted computationally or statistically based on weights assigned to the elements aligned between the sequences. This in turn can serve as a potential indicator of the genetic relatedness between the organisms.
(12 Dec 1998)
sequence analysis A multistage process that includes the determination of a sequence (protein, carbohydrate, etc.), its fragmentation and analysis, and the interpretation of the resulting sequence information. This information is useful in that it: 1) reveals the similarities of homologous genes, thereby providing insight into the possible regulation and functions of these genes; and 2) leads to a better understanding of disease states related to genetic variation. New sequencing methodologies, fully automated instrumentation, and improvements in sequencing-related computational resources contribute to the potential for genome-size sequencing projects.
(12 Dec 1998)
sequence analysis, DNA A multistage process that includes DNA cloning, physical mapping, subcloning, sequencing, and information analysis. New technological advances have led to the automation of certain steps in this process and contribute to the potential for large-scale DNA sequencing efforts.
(12 Dec 1998)
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