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1 event endosteal bone formation stimulated by load bearing.
2 chieved and maintained through adaptation to load bearing.
3 ump of the cell, showing that the tether was load-bearing.
4           We have studied the elasticity and load bearing ability of plant tissue at the cellular lev
5 s--play an important role in determining the load-bearing ability of structures ranging from bridges
6                                 Here, we map load-bearing across the mammalian spindle in space-time
7 distinct microtubule-binding activities: the load-bearing activity of the Ndc80 complex and a less we
8 h multiscale self-organization for effective load bearing and energy dissipation.
9  these structures hold great promise as high load bearing and impact-resistant materials due to a uni
10        Diarthrodial joints are essential for load bearing and locomotion.
11  wood fibers, and added silicates yielding a load-bearing and low-subsidence composite.
12                Actin stress fibers (SFs) are load-bearing and mechanosensitive structures.
13 us potential for the development of improved load-bearing and protective engineering materials.
14 on in wet webs and could limit the potential load-bearing applications of silk and its analogues.
15 r the fabrication of high-strength beams for load-bearing applications through the modification of th
16    Individual kinetochore particles maintain load-bearing associations with assembling and disassembl
17 d that this activity is dispensable for both load-bearing attachment formation and checkpoint activat
18 the RZZ complex can inhibit the formation of load-bearing attachments and that this activity of the R
19 plex localization, prevents the formation of load-bearing attachments during most of prometaphase and
20 ing the ability of the Ndc80 complex to form load-bearing attachments to and track with dynamic micro
21 0 complex is capable of forming the dynamic, load-bearing attachments to assembling and disassembling
22 rchestrate chromosome segregation by forming load-bearing attachments to dynamic microtubule tips, an
23 ast, are vital mechanical hubs that maintain load-bearing attachments to microtubules during mitotic
24 ntromeric chromatin and maintains persistent load-bearing attachments to the dynamic tips of spindle
25 ritical issues like compressive strength for load-bearing bone grafts.
26 gradual-resorbability for restoration of low-load-bearing bone.
27  a null mutation of P2X7R have osteopenia in load bearing bones, suggesting that the P2X7R may be inv
28                  Flexible power sources with load bearing capability are attractive for modern wearab
29                             Unusually strong load bearing capability of the Ron Resch pattern was fou
30 ometric and stiffness properties, as well as load bearing capability.
31 ty, CFU, and lactic acid, while matching the load-bearing capability of commercial composites without
32 ed with the system's linkage versatility and load-bearing capability, makes the M13 template an attra
33 tment and that this is required for improved load-bearing capacity and silencing of the spindle assem
34 alysis revealed the cause of increase in the load-bearing capacity to be diminished tensile stresses
35 he interaction of beta GlcY with AGPs in the load-bearing cell layers inhibited root elongation.
36                 In plants, the presence of a load-bearing cell wall presents unique challenges during
37 king of Origami building blocks to construct load-bearing cellular metamaterials.
38 rmation depend on the oriented deposition of load-bearing cellulose microfibrils in the cell wall.
39 ture of bone is known to be important to its load-bearing characteristics, but relatively little is k
40                                       As the load-bearing component of the cell wall, individual cell
41 extracellular matrix (ECM) forms the primary load bearing components in the arterial wall.
42 , wall proteins are unlikely to be important load-bearing components of the plant cell wall.
43  hydrogen bonding by implementing a specific load-bearing connection (i.e. the joint element).
44 The exceptional mechanical properties of the load-bearing connection of tendon to bone rely on an int
45 solution, digital 3-D reconstructions of the load-bearing connective tissues of the monkey ONH confir
46 dels show that IOP-related stress within the load-bearing connective tissues of the optic nerve head
47 s during ambulation at the knee to shift the load-bearing contact location of the joint to a region n
48 In this protocol, we describe a reproducible load-bearing critical-size composite tissue defect compr
49    Inherited defects that weaken the keratin load-bearing cytoskeleton produce phenotypes characteriz
50 uing paradigm of bionic interface for robust load-bearing device.
51      As in primates, the TMJ was found to be load-bearing during mastication, with compressive strain
52  tubular counterparts, delivering a superior load-bearing efficiency and conductive network for reali
53        Our results show that dystrophin is a load-bearing element and its deficiency leads to loss of
54 t abundant biopolymer in the world, the main load-bearing element in plant cell walls, and represents
55          Collagen is the main structural and load-bearing element of various connective tissues, wher
56                                     Finally, load-bearing failure point can be a quantitative measure
57 sents a marked advance in the engineering of load-bearing fibrous tissues, and will find widespread a
58 trices by enabling microtubules to perform a load-bearing function.
59 main results from excellent shielding of the load-bearing H bonds from competing water.
60 ent of the force required to break apart the load-bearing H bonds under locally hydrophobic condition
61      Although the skeleton's adaptability to load-bearing has been recognized for over a century, the
62               Xyloglucan (XG), the principal load-bearing hemicellulose of dicotyledonous plants, has
63 des the distinct advantage of having the key load-bearing hydrogen bonds (H bonds) buried in the hydr
64 scaffolds uniquely combine the potential for load-bearing immediately after implantation in vivo with
65                Furthermore, we show that two load-bearing kinesins are incapable of equally sharing t
66  slows but does not prevent the formation of load-bearing kinetochore-microtubule attachments and red
67 ich Aurora B could regulate the stability of load-bearing kinetochore-microtubule attachments.
68  for growth, because it acts as a continuous load-bearing layer, resisting tension.
69  lead to the development of high-performance load-bearing materials.
70  polymeric interfaces, including structural, load-bearing materials.
71  in cartilage appears operative not only for load-bearing matrix constituents, but also for PRG4 mole
72 ons and ligaments, where it gives them their load-bearing mechanical properties.
73 lose microfibrils (CMFs) as one of the major load-bearing mechanisms of the growing cell wall.
74 rate as a cohesive molecular unit that forms load-bearing microtubule attachments that drive mitotic
75 gen, particularly type I collagen, the major load-bearing molecule of atherosclerotic plaques, render
76 degrade triple-helical collagen, the primary load-bearing molecule of the ECM within human atheroma.
77 the possibility that all catch bonds between load-bearing molecules are "mechanokinetically" tuned to
78                                     The main load-bearing network in the primary cell wall of most la
79                    Cellulose forms the major load-bearing network of the plant cell wall, which simul
80 l surfaces and to tether microfibrils into a load-bearing network, thereby playing a central role in
81 iggered dynamic shear failure of the olivine load-bearing network.
82 ule crosslinker NuMA is needed for the local load-bearing observed, whereas Eg5 and PRC1 are not dete
83 eering approaches within a reproducible, non-load-bearing orthotopic site.
84 toughness enhancement is achieved in a stiff load-bearing polymer network, demonstrating the utility
85 er a liquid crystal display as an example of load-bearing power sources with various form-factor desi
86                        Xyloglucan (XyG) is a load-bearing primary wall component in dicotyledonous an
87   Elastomeric materials are designed to have load bearing properties whereas hydrogels are proposed t
88 l G1-domain, that provide cartilage with its load bearing properties.
89 rusion of the cell edge as a function of the load-bearing properties of integrin-based adhesions, act
90 cific for standing while providing bilateral load-bearing proprioceptive input.
91                               An interfacial load-bearing protein (A. pectinata foot protein-1, apfp-
92 ocus on the mechanical role of the essential load-bearing protein Hec1 [8-11] in mammalian cells.
93 study showed that desmin is an intracellular load-bearing protein that influences airway compliance,
94                     Titin isoform, the major load-bearing protein within muscle cells, was unaltered
95 ously showed that desmin is an intracellular load-bearing protein, which influences airway compliance
96 ation in knee cartilage was identified, with load-bearing regions exhibiting high SZP expression.
97                      Despite the structural, load-bearing role of cellulose in the plant kingdom, cou
98 se observed for other protein domains with a load-bearing role.
99 catenin conformation, and identified a novel load-bearing salt bridge.
100                             Building complex load-bearing scaffolds depends on effective ways of join
101 een cellulose and xylan is important for the load-bearing secondary cell wall of flowering plants.
102  the disc and condylar cartilage function as load-bearing, shock-absorbing, and friction-reducing mat
103 ndibular condylar cartilage functions as the load-bearing, shock-absorbing, lubricating material in t
104                                              Load-bearing soft tissues, e.g., cartilage, ligaments, a
105 ls that shielding water accessibility to the load-bearing strands is a critical molecular determinant
106 e grafts to provide immediate functionality (load bearing, structural support) and long-term regenera
107  measures of mechanical reliability) for any load bearing structure, like a vertical plant stem, is h
108 work, which is considered to be the dominant load-bearing structure in the growing cell walls of non-
109  a cellulose-xyloglucan network as the major load-bearing structure is in need of revision.
110 onal network that functions as the principal load-bearing structure of the primary cell wall.
111  To examine the biomechanical deformation of load bearing structures of the optic nerve head (ONH) re
112                        Tendons are important load-bearing structures, which are frequently injured in
113              These responses are mediated by load-bearing subcellular structures, such as the plasma
114 indicate that the vimentin network acts as a load-bearing superstructure capable of integrating and r
115 with the common depiction of xyloglucan as a load-bearing tether spanning the 20- to 40-nm spacing be
116 trength that allows kinetochores to maintain load-bearing tip attachments during both microtubule ass
117 he leaf epidermis collectively function as a load-bearing tissue that controls organ growth.
118                    Successful engineering of load-bearing tissues requires recapitulation of their co
119 emerged as viable approaches for engineering load-bearing tissues.
120 of structure-function relationships in these load-bearing tissues.
121 ductions that may be achieved in supporting (load-bearing) vehicle parts when the gross vehicle mass
122 ibers in response to a sustained increase in load-bearing work (mechanical overload [MOV]).

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