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1 ely isotropic (NITI) model depicting corneal biomechanics.
2  reproduction can be fully explained through biomechanics.
3 gels, simulating their natural substrate and biomechanics.
4 for morphogenesis, wound healing, and tissue biomechanics.
5 nomic nervous system (ANS) mediated by vocal biomechanics.
6 lenge for functional anatomy, physiology and biomechanics.
7 t arrays, which are the standard in cellular biomechanics.
8 ardial cell delivery to normalize myocardial biomechanics.
9  genotype and dietary protein source on bone biomechanics.
10 s are surprisingly robust to changes in limb biomechanics.
11 lls are less differentiated in terms of cell biomechanics.
12 ng IOP corrected and uncorrected for corneal biomechanics.
13 nstraints were dissociated from natural limb biomechanics.
14 unt for measurement error induced by corneal biomechanics.
15 e to make rapid estimates of IOP-related ONH biomechanics.
16 improve and validate numerical models of ONH biomechanics.
17 g, to our knowledge, new insights into their biomechanics.
18 tation is needed to fully understand scleral biomechanics.
19 ween the cell-substrate sensing and the cell biomechanics.
20 change in high-order aberrations and corneal biomechanics.
21 are related to normal enthesis structure and biomechanics.
22 rogress made in addressing key challenges in biomechanics.
23 ss of protective sensation and abnormal foot biomechanics.
24 le beads adjacent to the syrinx to alter its biomechanics.
25 litate studies of insect wing morphology and biomechanics.
26 because of its influence on optic nerve head biomechanics.
27 running velocity (v(max)) and the underlying biomechanics.
28 ge deformations for applications in vascular biomechanics.
29 imary rat vascular smooth muscle cell (VSMC) biomechanics.
30 vely evaluated in the context of imaging and biomechanics.
31  a powerful tool for studying red blood cell biomechanics.
32 collagen leading to compromised wound tissue biomechanics.
33 icroscopy to quantify impairment to cellular biomechanics.
34 fferent morphology, neural constitution, and biomechanics.
35  cytoskeleton, leading to injurious cellular biomechanics.
36 C) suspensions and analyses of flow-mediated biomechanics.
37  solely through in situ modulation of tissue biomechanics.
38 st closely recapitulating native aortic root biomechanics.
39 ion QPM to study nuclear and plasma membrane biomechanics.
40 al challenges in the field of cardiovascular biomechanics.
41 f feedbacks between gene expression and cell biomechanics.
42 r studying bacterial-endothelial interaction biomechanics.
43 ates of cellulose biosynthesis and cell wall biomechanics.
44 anatomy,(8) reproduction,(9) energetics,(10) biomechanics,(10) osteohistology,(11) palaeobiogeography
45 ometry and stiffness remains debated in foot biomechanics(12,13), podiatry(14,15) and palaeontology(4
46 re needed to apply CST on evaluating corneal biomechanics after refractive surgeries.
47 on appeared to impact only visual acuity and biomechanics after the combined procedure.
48 on of post-myocardial infarction ventricular biomechanics after therapy with an angiogenic tissue-eng
49 ations suggest an idiothetic function: their biomechanics allow trident whiskers to derive continuous
50  is associated with an alteration of corneal biomechanics and a novel missense variant in PRDX3.
51   Footprints preserve direct records of gait biomechanics and behavior but they have been rare in the
52  is a complex disease whose etiology bridges biomechanics and biochemistry.
53  physiology, morphology, anatomy, chemistry, biomechanics and biotic interactions.
54 l of coronary artery sheds light on vascular biomechanics and can be extend to diseased vessels for b
55      The interactions between altered tissue biomechanics and cellular signaling that sustain progres
56 at facilitates the real-world testing of its biomechanics and control strategies.
57 s review article provides an overview on hip biomechanics and discusses strategies for hip imaging mo
58 ng interpretation of their biology including biomechanics and early ontogeny.
59       Our findings have implications for the biomechanics and evolution of theropod locomotion.
60 determined by extrinsic factors such as limb biomechanics and feedback delays, but another possibilit
61 th an emphasis on recent new developments in biomechanics and genetic dissection of behavior, and the
62                            Insights into the biomechanics and genetics of the cornea may allow us to
63 cle presents the integration of brain injury biomechanics and graph theoretical analysis of neuronal
64 ine-glutamate-valine-lysine (PEVK) region to biomechanics and growth of the heart.
65 ironment requires understanding both walking biomechanics and how the nervous system regulates moveme
66 es (Nature) to accommodate the changing limb biomechanics and influences from sensorimotor training (
67 dentify causal relationships between corneal biomechanics and intraocular pressure measurements, whic
68 plications for understanding stem cell niche biomechanics and its impact on tissue regeneration.
69 ore generate valuable insights into cellular biomechanics and its role in pathophysiology.
70 al replacements with lower morbidity, better biomechanics and lower costs.
71 , spanning tissue to molecular levels, using biomechanics and magnetic microneedle technology, and sh
72 rphometrics were employed to analyse chewing biomechanics and mandible morphology to, firstly, establ
73                                          The biomechanics and mechanobiology of tendons and ligaments
74                           The model combines biomechanics and metabolic scaling to show how maximum m
75  can move relative to the braincase, but the biomechanics and motion dynamics of cranial kinesis in b
76  as energetics are critical in understanding biomechanics and movement ecology and also scale up to i
77    We resolved a possible mechanism based on biomechanics and nitrogen allocation; cycads with high l
78      Matching the activity of the genes with biomechanics and physiology is an effective way to use c
79 will provide the next step in imaging animal biomechanics and physiology.
80 eal surgery and the understanding of corneal biomechanics and posterior corneal pathology such as acu
81 f the sclera may significantly influence ONH biomechanics and potentially contribute to age-related s
82 owing athletes with shoulder pain relates to biomechanics and prevention.
83 Dysthyroidism may directly influence corneal biomechanics and represents a clinically relevant factor
84 inearities, the majority of studies of plant biomechanics and structural dynamics focus on the linear
85 ing the evolutionary changes of craniofacial biomechanics and the interaction of food processing meth
86 pact of such neosinuses on valvular and root biomechanics and the potential influence on long-term du
87           Hormonal changes affecting corneal biomechanics and topography during pregnancy could be th
88 ate RDT function, understanding regional RDT biomechanics and ultrastructure is required.
89 l including subsyringeal pressure, syringeal biomechanics and upper-vocal-tract filtering to the song
90 tal microstructural data for coronary artery biomechanics and we consider it seminal for structural m
91 ally predisposed isthmic conditions, altered biomechanics, and age-dependent bone loss, which leads t
92 n suggests a direct link between morphology, biomechanics, and ecology.
93 cal injury on FBLN5 content, elastic fibers, biomechanics, and histomorphology of the vaginal wall in
94                                    Yet, axon biomechanics, and its relation to the ultrastructure tha
95 nt of specialties such as electrophysiology, biomechanics, and ophthalmology.
96 herent to control of the vocal tract and its biomechanics, and some of which reflects the contextual
97                                     Vascular biomechanics are important to define differences between
98 echanisms, simulations of the evolving wound biomechanics are seldom benchmarked against measurements
99 nt embryos is associated with altered tissue biomechanics, as indicated by greater neuropore widening
100       The MyoRobot enables automated complex biomechanics assessment in muscle research.
101 obot 2.0 for facilitated single muscle fiber biomechanics assessment.
102 rate the ability of the system to assay clot biomechanics associated with common antiplatelet treatme
103 revious studies have investigated the injury biomechanics at the micro- and mesoscale of concussion,
104  new 1D mathematical model quantifying canal biomechanics based on the morphology, dynamics of the in
105                 This paper presents BioPARR (Biomechanics based Prediction of Aneurysm Rupture Risk),
106 atory and can thus help develop more refined biomechanics-based hypotheses.
107 ural brain biomechanics to obtain not only a biomechanics-based understanding of injury, but also neu
108       Dimensionless numbers are important in biomechanics because their constancy can imply dynamic s
109 ure of the ACL changed the cartilage contact biomechanics between 0 degrees and 60 degrees of flexion
110 dels are important tools to study concussion biomechanics but are impractical for real-world use beca
111 s slightly alters whole-body and calf muscle biomechanics but may not improve running economy.
112 onicities (sodium = 141 mEq/L) affected sRBC biomechanics by decreasing sRBC deformability, increasin
113 iciency alters the in vivo cartilage contact biomechanics by shifting the contact location to smaller
114 e analyzer provides a new measure of corneal biomechanics called corneal hysteresis.
115 artilage with physiologic stratification and biomechanics can be grown in vitro by recapitulating som
116               Since abnormal lower extremity biomechanics can have an etiological role in stress frac
117  has become an exemplar of the ways in which biomechanics can regulate immune cell activation and eff
118 ing structure (micro-computed tomography and biomechanics), cellularity (osteoblasts and osteoclasts)
119 uggests that natural selection for optimized biomechanics combined with sexual selection for mating a
120                Micro-computed tomography and biomechanics confirmed bone fragility of OVX-Diet rats,
121 g the past two decades suggest that abnormal biomechanics contribute to active dysregulation of chond
122 cal properties of their environment, but how biomechanics contributes to intercellular signaling rema
123 visual acuity (BDVA), corneal tomography and biomechanics (corneal hysteresis [CH] and corneal resist
124                       This phenotype-through-biomechanics correlation is further explored in vivo usi
125 ons differ structurally, we hypothesize that biomechanics could be a pertinent imaging proxy for diff
126 o assess whether neural tissue structure and biomechanics could predict functional loss in glaucoma;
127                               Abnormal brain biomechanics create barrier alterations at the brain-CSF
128 l muscles disrupts locomotory kinematics and biomechanics, demonstrating that CLHM-1 has a physiologi
129 -aspiration scores and changes in swallowing biomechanics determined by videofluoroscopy.
130 arative vertebrate morphology, paleontology, biomechanics, developmental biology, and systematics.
131 onema arabicum (Brassicaceae), linking fruit biomechanics, dispersal aerodynamics, pericarp-imposed d
132 toplasty for non keratoconic patients, graft biomechanics does not return to average values even 2 ye
133      In this Review we discuss key roles for biomechanics during development to directly shape tissue
134 ss (1) the interactions of valve biology and biomechanics (eg, correlations of function with structur
135  The inability to recapitulate native tissue biomechanics, especially tensile properties, hinders pro
136 ging evidence from paleoanthropology, speech biomechanics, ethnography, and historical linguistics th
137 heral mechanosensation has evolved with limb biomechanics, evolutionarily tuning the neuromechanical
138 ctive tissues is a key determinant of tissue biomechanics, experimental characterization of scleral f
139        Additionally, the resultant organized biomechanics facilitates automated extraction of contrac
140 h frequency of long unmyelinated fibres) and biomechanics factors.
141 synchrotron X-ray tomography and analyses of biomechanics, finite element models and tooth microwear
142                     We draw on the fields of biomechanics, fluid dynamics, and robotics to demonstrat
143                                 Invertebrate biomechanics focuses on mechanical analyses of non-verte
144 e changes in rat vascular smooth muscle cell biomechanics following statin-mediated cholesterol deple
145      Here, we analyze walking energetics and biomechanics for adult chimpanzees and humans to investi
146 nosaurs are strongly associated with feeding biomechanics, forming the jaw joint and supporting the j
147 erse as tribology, geology, optoelectronics, biomechanics, fracture mechanics, and nanotechnology.
148 essential to measuring behavioral effects in biomechanics, genetics, ethology, and neuroscience.
149 d from basic science research in biology and biomechanics has continuously contributed to that.
150 in rescued the negative effects of injury on biomechanics, histomorphology, and elastic fibers.
151 odel to test an unsolved problem in dinosaur biomechanics: how fast a huge biped like T. rex could tu
152 estigated the effects of toe springs on foot biomechanics in a controlled experiment in which partici
153 s, our work highlights the prominent role of biomechanics in determining the emergent features of amo
154 s required for better understanding vascular biomechanics in health and disease.
155 ving our fundamental understanding of tissue biomechanics in healthy and diseased conditions.
156 ulleys are important determinants of orbital biomechanics in humans.
157                                    Diastolic biomechanics in infants are not homogeneous.
158  glaucoma; (2) To evaluate the importance of biomechanics in making such predictions.
159 rate binding specificity in kinetic analysis biomechanics in peptide aptamers and GO sheets.
160 ovide new insights into the role of 3D niche biomechanics in regulating SC fate choice.
161 sly shown to have less collagen and impaired biomechanics in tendon and bone.
162 llular fluid tonicity with IVFs affects sRBC biomechanics in the microcirculation, where vaso-occlusi
163 s work has suggested a major role of scleral biomechanics in the pathogenesis of glaucoma.
164                        To review the role of biomechanics in the pathogenesis of lower-extremity oste
165   Our data suggest a wide variability in ONH biomechanics in the subjects examined in this study.
166 us emerged as a promising mean for assessing biomechanics in vivo.
167 se analyzer provides measurements of corneal biomechanics, including corneal hysteresis.
168        Abnormal sickle red blood cell (sRBC) biomechanics, including pathological deformability and a
169                        Current literature on biomechanics indicates that the maximum shoulder externa
170 y the ways in which abnormal cell and tissue biomechanics induce cardiac myocyte injury and alter cel
171 ng history may be a mechanism whereby spinal biomechanics interacts with the spine's proprioceptive s
172                                      Cardiac biomechanics intricately affect long-term heart function
173                 To understand the functional biomechanics involved in these challenging movements, th
174  due to oxygen-dependent changes in red cell biomechanics is a key driver of pathology.
175 -mediated cholesterol management on cellular biomechanics is not fully understood.
176 njections, modifying ergonomics, performance biomechanics, lifestyle, stress, health, personality and
177 be shown whether and how the altered scleral biomechanics may affect the rate of glaucoma progression
178 ant implications in valvular development, as biomechanics may play a larger role in stimulating valvu
179                                              Biomechanics measurements of ECM are usually performed o
180            Informed by the prominent role of biomechanics, mechanical stimuli have been harnessed to
181 njuries and an understanding of the anatomy, biomechanics, mechanisms of injury, and patterns of inju
182 s novel method of describing musculoskeletal biomechanics might further improve the applications of d
183  function, we apply a multiscale biophysical biomechanics model of the heart to measure the plausibil
184 d the electrocoupling mechanisms of cellular biomechanics modulation by an electrical stimulation in
185                                          The biomechanics of a motor plant constrain the behavioral s
186                        To study the cellular biomechanics of acini morphogenesis and homeostasis, we
187 lled with increasing sophistication, but the biomechanics of actual semicircular duct systems has rar
188                                          The biomechanics of animal limbs has evolved to meet the fun
189        Our mathematical model describing the biomechanics of anther opening incorporates the bilayer
190  of buzz pollination requires a study of the biomechanics of bee vibrations and their transmission on
191 nt analysis (DLFEA) to learn the deformation biomechanics of bioprosthetic aortic valves directly fro
192 s) play an important role in determining the biomechanics of cell walls and in mediating cell-to-cell
193  the elementary processes that determine the biomechanics of collagen fibrils in connective tissues a
194 ls, however, have not been utilized to study biomechanics of complex eukaryotic cells either due to l
195 echanical characterization of time-dependent biomechanics of corneal regions.
196 m, we quantified the nonlinear pseudoelastic biomechanics of developing AV cushions, and found that b
197                                          The biomechanics of dislocation and the pathophysiology of l
198 a technique for in situ visualization of the biomechanics of DNA structural networks using 4D electro
199 used a computational approach to analyze the biomechanics of epithelial cell aggregates-islands, stri
200 eveloped that could be utilized to study the biomechanics of feeding and bite force as well the effec
201 urn and push-off power, negatively impacting biomechanics of gait.
202 role of calcified-cartilage stiffness on the biomechanics of healthy and pathological joints.
203 ly faster than others, driven by the precise biomechanics of licking and functional organization of t
204  standing therapies aimed at determining the biomechanics of lower limb joint force actions and postu
205 live-imaged mouse embryos to investigate the biomechanics of mammalian spinal closure.
206                      Here we investigate the biomechanics of mandible strikes in O. bauri and find th
207                         Here, we explore the biomechanics of microtubule polymers using multiscale co
208 important model system for investigating the biomechanics of morphogenesis.
209 k of in vivo labeling and imaging tools, the biomechanics of mouth opening have remained completely u
210 od gases and respiration, the physiology and biomechanics of movement, and general physiology concept
211 rcuits can only be understood by considering biomechanics of muscles, bodies, and the exterior world.
212 gh knowledge of the anatomy, physiology, and biomechanics of normal bone and cartilage serves as a pr
213 ion of the ONH; quantify the morphometry and biomechanics of ONH tissues in vivo; and identify potent
214 , is applicable to the advanced study of the biomechanics of other skeletal systems.
215 tebrate biomechanics, or for that matter the biomechanics of plants and fungi.
216                                          The biomechanics of posterior embryonic growth must be dynam
217 amental insights into the microstructure and biomechanics of RBCs, and demonstrate that the two-step
218 ur knowledge, a new platform for probing the biomechanics of red blood cells.
219               Here we compare the mandibular biomechanics of S. melilutra using engineering-based per
220 formation that animals actively acquire: the biomechanics of sensory acquisition directly determines
221                Studies of the physiology and biomechanics of small ( approximately 1 cm) organisms ar
222                                          The biomechanics of sound production forms an integral part
223 operties of the interfibrillar matrix in the biomechanics of tendon.
224      A challenge to the investigation of the biomechanics of the aqueous vein-perilimbal sclera tissu
225 cytoskeletal orientation, thus impacting the biomechanics of the cell and aortic function.
226 cytoskeletal orientation, thus impacting the biomechanics of the cell.
227 together with increased understanding of the biomechanics of the cornea, has resulted in many refract
228 s to describe the normal imaging anatomy and biomechanics of the elbow, the most commonly used MRI pr
229                                          The biomechanics of the esophageal wall and its relationship
230 egeneration, which are caused by the altered biomechanics of the foot.
231  years as a result of new discoveries in the biomechanics of the hip joint and the rapid developments
232 atient characteristics such as adiposity and biomechanics of the knee could also have relevance to th
233                       We first show that the biomechanics of the limb constrains musculotendon length
234                               Given that the biomechanics of the sclera and lamina cribrosa probably
235                  Here we compare the rostral biomechanics of the spinosaurs Baryonyx walkeri and Spin
236 d that dentin pull-out was partly due to the biomechanics of the test and did not necessarily mean su
237  have a profound impact on vaginal FBLN5 and biomechanics of the vaginal wall.
238 own in some regions of the rabbit skull, the biomechanics of the whole cranium during mastication hav
239 tor exploration that helps animals probe the biomechanics of their limbs, build motor synergies, and
240          However, the cellular and molecular biomechanics of these processes are not understood.
241                                          The biomechanics of this biphonation are not well-understood
242  research on the genetics, biochemistry, and biomechanics of this material has facilitated a thorough
243 ata contribute to improved understanding the biomechanics of TKRs and show the capabilities of the ro
244 his paper we present an investigation of the biomechanics of touch using the model organism C. elegan
245 different hallmarks of cancer, understanding biomechanics of tumor growth and remodeling benefits the
246 osacral transitional vertebrae can alter the biomechanics of weight transfer at the affected spinal s
247                The effect of changes in VSMC biomechanics on aortic function was assessed using an ex
248       (2020) investigate the roles of matrix biomechanics on early stages of vasculogenesis by using
249  indicates the important role of aortic arch biomechanics on heart-brain coupling.
250 y of treatment interventions targeting joint biomechanics or biologic events that promote OA onset an
251 e-dependent performance of active or passive biomechanics, or automated control over length-tension o
252 fferent in aim and technique from vertebrate biomechanics, or for that matter the biomechanics of pla
253 ogous to mechanical "templates" of locomotor biomechanics, our models serve as "control templates" fo
254 logies with regard to the latest research on biomechanics, pathophysiology, neurocognitive effects, a
255 dopsis mutant rescued a growth and cell wall biomechanics phenotype, demonstrating that the function
256 r tissue engineering and is governed by both biomechanics (physical forces) and context (microenviron
257 parative analyses of fruit and seed anatomy, biomechanics, physiology, and environmental responses to
258                                     Cellular biomechanics play a pivotal role in the pathophysiology
259                                              Biomechanics plays a pivotal role in articular cartilage
260 d by investigating hypotheses concerning ONH biomechanics posited in the literature.
261 ere also unaffected by real modifications of biomechanics produced by selectively damaging a muscle w
262 uous manual protocols to characterize muscle biomechanics properties and offered automated data analy
263  in the context of speech motor learning and biomechanics, proposing that stereotypies could provide
264 reaction is promoted by calcium ions but its biomechanics remain poorly understood.
265 heel height, whose effects on foot and ankle biomechanics remain understudied.
266 and hardware requirements increase, limiting biomechanics research potential, as reflected by only fe
267 l hydrodynamics and model-based estimates of biomechanics reveal that mutants affecting similar biolo
268 sformations caused by both motor control and biomechanics shape the statistics of natural vestibular
269 L framework can eliminate the time-consuming biomechanics simulations, while predicting valve deforma
270 the highest velocity events, indicating that biomechanics, such as vibrissa resonance, shape signals
271 rk was to introduce an approach to model ONH biomechanics that combines the ease of use and speed of
272 omplex interplay between neural circuits and biomechanics that give rise to muscle synergies will be
273 of a comprehensive description of lower-limb biomechanics that includes consideration of joint mechan
274 neal flap in LASIK, as well as to review the biomechanics that support this approach.
275 E is a plugin for FEBio (Finite Elements for Biomechanics) that simulates cell-matrix interactions du
276 an understanding of the relationship between biomechanics, the tissue microenvironment, and the cellu
277 2 mEq/L) resulted in optimal changes in sRBC biomechanics, thereby reducing the risk for vaso-occlusi
278              Following an overview of impact biomechanics, this review will evaluate the following: i
279        Advancing our understanding of spinal biomechanics through Finite Element Analysis (FEA) is es
280                Locomotion inextricably links biomechanics to ecology as animals maneuver through mech
281                                   Harnessing biomechanics to improve differentiation, maintenance, an
282 networks from physics-based structural brain biomechanics to obtain not only a biomechanics-based und
283 two solids is central to fields ranging from biomechanics to seismology.
284 c scaling relations, based on metabolism and biomechanics, to quantify how trees use resources, fill
285 ies between dietary reconstructions based on biomechanics, tooth morphology, and dental microwear.
286  hemodynamic efficacy, cardioprotection, and biomechanics under acute or continuous infusions of the
287 elity 3D computational model of brain injury biomechanics was developed and the contours of strain an
288 ties, membrane packing, and endothelial cell biomechanics was investigated computationally and experi
289                  Following euthanasia, femur biomechanics were assessed by 3-point bending and femora
290  hemodynamic efficacy, cardioprotection, and biomechanics were assessed under IV osmotic pump infusio
291  extracellular matrix evaluation, and tissue biomechanics were evaluated on the explanted tissue.
292  adult myopia patients and evaluated corneal biomechanics were included.
293 s more thoughtful interpretations of balance biomechanics when attempting to characterize an individu
294 emity osteoarthritis is mediated by aberrant biomechanics, which can be assessed using gait analyses
295 goal is to capture the field of invertebrate biomechanics, which has blossomed from having a primary
296 ing and running have fundamentally different biomechanics, which makes developing devices that assist
297 es that O. tugenensis shared distinctive hip biomechanics with australopiths, suggesting that this co
298 ctra enabled us to correlate the microtubule biomechanics with dynamic structural transitions at the
299  outline long-term challenges in integrating biomechanics with genetic analysis of developing embryos
300 vides a new method for examining single-cell biomechanics with high throughput.

 
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