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- Medical English LInking keywords finder for the PubMed Zipped Archive (ELIZA) -

return kwic search for while out of >500 occurrences
341393 occurrences (No.55 in the rank) during 5 years in the PubMed. [no cache] 500 found
4) While the angular rigidity would enhance the joint stability, the augmented passive moment resistance under compression preloads plays a role in supporting external moments and should as such be considered in the knee joint musculoskeletal models.
--- ABSTRACT ---
PMID:23682906 DOI:10.1080/10255842.2013.795555
2015 Computer methods in biomechanics and biomedical engineering
* Knee joint passive stiffness and moment in sagittal and frontal planes markedly increase with compression.
- Knee joints are subject to large compression forces in daily activities. Due to artefact moments and instability under large compression loads, biomechanical studies impose additional constraints to circumvent the compression position-dependency in response. To quantify the effect of compression on passive knee moment resistance and stiffness, two validated finite element models of the tibiofemoral (TF) joint, one refined with depth-dependent fibril-reinforced cartilage and the other less refined with homogeneous isotropic cartilage, are used. The unconstrained TF joint response in sagittal and frontal planes is investigated at different flexion angles (0°, 15°, 30° and 45°) up to 1800 N compression preloads. The compression is applied at a novel joint mechanical balance point (MBP) identified as a point at which the compression does not cause any coupled rotations in sagittal and frontal planes. The MBP of the unconstrained joint is located at the lateral plateau in small compressions and shifts medially towards the inter-compartmental area at larger compression forces. The compression force substantially increases the joint moment-bearing capacities and instantaneous angular rigidities in both frontal and sagittal planes. The varus-valgus laxities diminish with compression preloads despite concomitant substantial reductions in collateral ligament forces. While the angular rigidity would enhance the joint stability, the augmented passive moment resistance under compression preloads plays a role in supporting external moments and should as such be considered in the knee joint musculoskeletal models.
--- ABSTRACT END ---
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(1)79 the (16)3 it (31)2 environmental (46)2 promoting
(2)14 in (17)3 its (32)2 focusing (47)2 providing
(3)13 no (18)3 most (33)2 for (48)2 receiving
(4)11 a (19)3 others (34)2 further (49)2 serum
(5)6 this (20)3 that (35)2 harvesting (50)2 she
(6)4 at (21)3 there (36)2 increasing (51)2 significant
(7)4 maintaining (22)3 these (37)2 minimising (52)2 similar
(8)4 one (23)3 those (38)2 much (53)2 slightly
(9)4 performing (24)3 women (39)2 negative (54)2 some
(10)4 reducing (25)2 Asians (40)2 numerous (55)2 still
(11)4 retaining (26)2 accounting (41)2 on (56)2 subcutaneous
(12)4 simultaneously (27)2 also (42)2 other (57)2 their
(13)4 they (28)2 controlling (43)2 participants
(14)4 using (29)2 digging/gardening, (44)2 preserving
(15)3 20% (30)2 downregulation (45)2 previous

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--- WordNet output for while --- =>時間と労働, その間に, 時間, する間に, なのに, そのうえ, をのんびりと過す Overview of noun while The noun while has 1 sense (first 1 from tagged texts) 1. (23) while, piece, spell, patch -- (a period of indeterminate length (usually short) marked by some action or condition; "he was here for a little while"; "I need to rest for a piece"; "a spell of good weather"; "a patch of bad weather") --- WordNet end ---