異名筋
WordNet
- make ones way by force; "He muscled his way into the office"
- animal tissue consisting predominantly of contractile cells (同)muscular_tissue
- one of the contractile organs of the body (同)musculus
- authority or power or force (especially when used in a coercive way); "the senators used their muscle to get the party leader to resign"
PrepTutorEJDIC
- 〈U〉(動物体の組織としての)『筋肉』,筋(きん);〈C〉(体の各部を動かす)筋肉 / 〈U〉力,(特に)筋力,腕力 / 《俗に》(…に)強引に割り込む《+『in on』(『into, through』)+『名』》
- 筋肉の,筋力のある / 力ずくの
UpToDate Contents
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English Journal
- Absence of synergy for monosynaptic Group I inputs between abdominal and internal intercostal motoneurons.
- Ford TW1, Meehan CF2, Kirkwood PA3.
- Journal of neurophysiology.J Neurophysiol.2014 Sep 1;112(5):1159-68. doi: 10.1152/jn.00245.2014. Epub 2014 Jun 11.
- Internal intercostal and abdominal motoneurons are strongly coactivated during expiration. We investigated whether that synergy was paralleled by synergistic Group I reflex excitation. Intracellular recordings were made from motoneurons of the internal intercostal nerve of T8 in anesthetized cats, a
- PMID 24920027
- Finger-thumb coupling contributes to exaggerated thumb flexion in stroke survivors.
- Kamper DG1, Fischer HC2, Conrad MO2, Towles JD3, Rymer WZ3, Triandafilou KM2.
- Journal of neurophysiology.J Neurophysiol.2014 Jun 15;111(12):2665-74. doi: 10.1152/jn.00413.2013. Epub 2014 Mar 26.
- The purpose of this study was to investigate altered finger-thumb coupling in individuals with chronic hemiparesis poststroke. First, an external device stretched finger flexor muscles by passively rotating the metacarpophalangeal (MCP) joints. Subjects then performed isometric finger or thumb force
- PMID 24671534
- Sensorimotor Modulation Differs with Load Type during Constant Finger Force or Position.
- Kirimoto H1, Tamaki H1, Suzuki M2, Matsumoto T3, Sugawara K1, Kojima S4, Onishi H1.
- PloS one.PLoS One.2014 Sep 18;9(9):e108058. doi: 10.1371/journal.pone.0108058. eCollection 2014.
- During submaximal isometric contraction, there are two different load types: production of a constant force against a rigid restraint (force task), and maintenance of position against a constant load (position task). Previous studies reported that the time to task failure during a fatigue task was t
- PMID 25233353
Japanese Journal
- 膝関節伸筋群における総腓骨神経反射の解析方法の再検討とその姿勢依存性への適用
- 笹田 周作,宮尾 淳矢,二橋 元紀 [他],大塚 裕之,小宮山 伴与志
- 日本運動生理学雑誌 18(2), 55-64, 2011-07-30
- … The correlation coefficients between PTP and NRA were more than 0.9 for all muscle. …
- NAID 110008711107
- 出江 紳一
- リハビリテーション医学 : 日本リハビリテーション医学会誌 38(8), 671-681, 2001-08-18
- … Cortical mechanisms for MEP facilitation induced by either voluntary contraction or motor imagery of the tested muscle have been investigated. … Voluntary contraction of the tested muscle increases I waves, but has little effect on the threshold for descending volleys. … On the other hand, voluntary contraction of ipsilateral heteronymous muscles has been shown to have different effects on MEP, background EMG, and H reflexes of the tested muscles. …
- NAID 110001847621
- 出江 紳一
- リハビリテーション医学 38(8), 671-681, 2001
- … Cortical mechanisms for MEP facilitation induced by either voluntary contraction or motor imagery of the tested muscle have been investigated. … Voluntary contraction of the tested muscle increases I waves, but has little effect on the threshold for descending volleys. … On the other hand, voluntary contraction of ipsilateral heteronymous muscles has been shown to have different effects on MEP, background EMG, and H reflexes of the tested muscles. …
- NAID 130003663149
Related Links
- ABSTRACT An electric stimulation of the masseteric nerve elicits a heteronymous H-reflex in the temporal muscle. The characteristics of this reflex response were investigated by analysis of the firing probability changes of single ...
- Relative Strengths of Heteronymous Connections To compare the strength of heteronymous connections to those of simultaneously generated homonymous responses, relative responses of APL, FDI, ADM, Thenars, and BiBr ...
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- 英
- heteronymous muscle
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