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1 zing low-dose effects are needed to meet the demands of 21st century chemical hazard assessment.
2 influent was 151 gN m(-2) d(-1) at an energy demand of 26.1 kJ gN(-1).
3  current density of 50 A m(-2) and an energy demand of 56.3 kJ gN(-1).
4 udy provides estimation tools for the energy demand of a representative set of food process unit oper
5 prefrontal activity scales with the planning demands of a breadth-first search of future paths.
6 n other species in order to rapidly meet the demands of a dynamic environment.
7 ing food production is essential to meet the demands of a growing human population, with its rising i
8 er that is required to meet the biosynthetic demands of a growing tumor.
9 t it is a huge challenge to achieve both the demands of a high energy density as well as a high power
10 across search studies or are specific to the demands of a particular task set.
11  new routes to sustainable fuels to meet the demands of a rapidly rising global population.
12 ledgements 60 References 60 To meet the food demands of a rising global population, innovative strate
13  can be separately modified depending on the demands of a task and odor discrimination.
14 ts of volitional movement from the cognitive demands of a task.
15 lipin is matched to the unique mitochondrial demands of a tissue.
16 of absorbing water from the soil to meet the demands of a transpiring canopy.
17 ology providing adaptability to the specific demands of a wide range of sensing scenarios.
18 cy of evidence acquisition and the real time demands of action itself.
19 ing the increased energetic and biosynthetic demands of activated cells, immune cell metabolism also
20 he intricate balance between the high energy demand of active neurons and the supply of oxygen and nu
21 mically changes according to cell production demands of adjacent villi.
22 to how staff experienced study included: the demands of adjusting to the academic requirements of hig
23 , and we modeled the consequences for energy demands of adult females in the Beaufort and Chukchi sea
24 imization analysis provide evidence that the demands of advanced functional segregation and integrati
25 ries will need to increase again to meet the demands of ageing populations.
26 e CD4 instruments was sufficient to meet the demand of all people living with HIV/AIDS (PLWHA), irres
27 the model is utilized to quantify the energy demand of amino acid and enzyme de novo synthesis in pho
28 ists and oncologists is required to meet the demand of an increasing number of cancer survivors.
29 e effective if we are to meet the increasing demands of an aging patient population in the context of
30 cy programs will need to meet the increasing demands of an aging population and newly insured patient
31 ment to satisfy the metabolic and functional demands of an immune response.
32 gulate nutrient uptake to meet the metabolic demands of an immune response.
33 match effector T cell differentiation to the demands of an infection.
34 anisms can act to reduce the neural feedback demands of an insects flight control strategy.
35 s critical to efficiently meet the energetic demands of an organism.
36  significantly reduced the time and resource demands of analysis and will enable other studies to mor
37                                  To meet the demand of analyzing hundreds to thousands of samples wit
38 e brain has the highest mitochondrial energy demand of any organ.
39 nsmission, and difficulty managing practical demands of ART.
40 -to-Pd price ratio, with swings of Pt and Pd demand of as much as 25% if the future price ratio shift
41 herbivorous fishes reconcile the conflicting demands of avoiding predation vs. foraging within a reef
42 s, and highlights the uniquely high resource demands of beef.
43 networks that are tailored to respond to the demands of both DNA repair and transcription.
44                                  To meet the demands of both researchers and clinicians, we have deve
45                            The higher energy demands of brain communication that hinges upon higher c
46 ere we propose a simple model for the energy demands of brain functional connectivity, which we teste
47 olic fluxes to the rising energy and biomass demands of branching vessels.
48     During tumorigenesis, the high metabolic demand of cancer cells results in increased production o
49                                 The nutrient demands of cancer cannot be met by normal cell metabolis
50 obiome evolves with cancer stage to meet the demands of cancer metabolism.
51 ply of photosynthetic reducing power and the demands of carbon fixation.
52 t these properties are optimized to meet the demands of cardiomyocyte adhesion.
53 Ms may imply greater stress responses to the demands of caring for an infant, or past deficiencies in
54 entiated granulosa cells to keep up with the demand of cells to cover the rapidly increasing surface
55 ip was optimistic while recognizing that the demands of chairmanship are considerable.
56 take and ATP accumulation to meet the energy demands of chemotaxis in activated T cells.
57                               The increasing demand of clinical biomedicine and fast development of n
58 t confirmation in order to meet the exacting demands of clinical diagnostic sequencing.
59 olism to meet the extraordinary biosynthetic demands of clonal expansion; however, the signals that m
60                                 This growing demand of CNTs poses a major public health risk given it
61 omprehensive literature study for the energy demands of CO2 supply, and constructed a database for CO
62 work is one of collectively meeting climatic demands of cold winters or hot summers by using monetary
63                      We also examine how the demands of colonization influence progression to disease
64  and developed new ones to meet the changing demands of computational biology.
65 n investigated in response to the increasing demand of considering contaminant bioavailability in sed
66                Moreover, there is a pressing demand of constructing a much reduced but still relevant
67 ment of feature screening better serving the demands of contemporary genome data.
68 ven exceed the bioenergetic and biosynthetic demands of continuous cell growth.
69 genesis, which, in conjunction with the high demands of contraction, leads to increased oxidative str
70  organ-on-a-chip platforms, able to meet the demand of creating robust preclinical screening models.
71 informatic platforms address the fundamental demands of creating a flexible scientific environment, f
72 r thalamus balances the competing behavioral demands of danger and reward, enabling adaptive respondi
73                                   The energy demands of data centers (DCs) worldwide are rapidly incr
74  neurons can support the evolving behavioral demands of decision-making.
75 the dive response to meet the impending dive demands of depth, duration and exercise [2].
76 ontribute to the resolution of the competing demands of detection and discrimination.
77 ies are thought to have eased the mechanical demands of diet-how often or how hard one had to chew-in
78 e differences may reflect adaptations to the demands of different cell size or range of physiological
79 nables them to fulfill appropriate metabolic demands of different immune cells.
80 age control mechanisms adapt to the distinct demands of different interactional contexts, these predi
81 vation are well characterized, the metabolic demands of differentiated T lymphocytes are largely unex
82 time lighting likely increased the energetic demand of dogwhelks through stress, encouraging foraging
83 is essential for supporting the biosynthetic demands of early NKT cell development.
84         Quantifying and mapping supplies and demands of ecosystem services is essential for continuou
85 ort the increased energetic and biosynthetic demands of effector T cell function.
86 nd offer promise for supplementing the power demands of electrochemical processes with renewable sunl
87                      To meet the high-energy demands of embryogenesis, mature oocytes are furnished w
88 asing in mass to provide the oxygen delivery demands of embryonic growth.
89                               The increasing demand of emerging technologies for high energy density
90  control strategies are proposed to meet the demand of emission reduction goals of different regions.
91 al models is that the distinct computational demands of encoding and retrieval are accommodated by sh
92 esponse used to cope with changing proteomic demands of energy biogenesis and biomass synthesis under
93 long-distance trade routes that serviced the demand of European aristocracy for exotic species as sym
94 hondrial fragmentation to meet the energetic demands of exercise, as well as providing additional sup
95            Despite the technical and ethical demands of experimental chimeras, including human-inters
96 en to develop a system optimized to meet the demands of experimentalists not highly experienced in bi
97  structurally adapted to meet the functional demands of fighting.
98  We show that AtMYB12 not only increases the demand of flavonoid biosynthesis but also increases the
99  the oxidative damage caused by the muscular demands of flight.
100 specialized trait associated with the oxygen demands of flying, their endothermic metabolism and unus
101 tant first step toward understanding how the demands of fundamental memory processes may be met by ch
102                                The computing demands of future data-intensive applications will great
103 ifferent cognitive modes using the different demands of go/no-go and two-alternative choice tasks tha
104 ated systemically via plant hormones and the demand of growing shoot tips for sugars.
105  be better suited to satisfy the high-energy demands of growing urban areas.
106 substitute, to meet the international market demand of Hemidesmus indicus.
107 enefits; increasing the capacity to meet the demands of hemiparetic gait improves endurance for activ
108  functional compromise between the competing demands of immunity and reproduction.
109 er mitochondria in fasting mice adapt to the demand of increased substrate oxidation by increasing th
110  must meet the bioenergetic and biosynthetic demands of increased cell proliferation and also adapt t
111 nel isoforms with activities specific to the demands of individual cells; the roles of ubiquitination
112  relatively free to adjust to the particular demands of individual sequences.
113 th hierarchical porosity capable to face the demands of industrial application.
114 recent decades as a solution to the evolving demands of industrial chemical processes.
115 upported by an understanding of the material demands of infrastructure transition and what reuse and
116 que to regeneration and tailored to meet the demands of injury-induced repair, including barrier form
117                   To meet the extreme oxygen demand of insect flight muscle, tracheal (respiratory) t
118 Despite being relieved from the large carbon demand of isoprene biosynthesis, NE plants redirected on
119 ot sustain the explanatory burden the theory demands of it.
120 esource to bridge the gap between supply and demand of kidneys for transplantation.
121 ctors for large environmental footprints are demands of large living area heated by fossil energy car
122 tive wood is required to meet the mechanical demands of lianescence.
123 nd of lifetime occupation, and interpersonal demand of lifetime occupation), and the risk of postoper
124  vocabulary, cognitive activities, cognitive demand of lifetime occupation, and interpersonal demand
125  of SREBP-1a supports the increased cellular demand of lipids for breast cancer growth.
126 s method will facilitate the study of energy demands of living systems with subcellular resolution.
127 cture of the network with the reactive power demands of loads to produce a node-by-node measure of gr
128  to accommodate the variable and commonplace demands of locomotion, such as turning or navigating irr
129 tention in the near future due to increasing demand of low-cost and disposable biosensors.
130  cell metabolism is essential to support the demands of lymphocyte growth and effector function and m
131                  The growing miniaturization demand of magnetic devices is fuelling the recent intere
132 eting the high biosynthetic and bioenergetic demands of malignant growth.
133            Meeting the complex physiological demands of mammalian life requires strict control of the
134 the energy, technological, and environmental demands of materials science call for focused and effici
135 ning how the hippocampus supports the unique demands of memory encoding and retrieval is fundamental
136  (LPFC) reflects the structure and cognitive demands of memory-guided sensory discrimination tasks.
137 cy depends on the balance between supply and demand of metabolites, which is sensitive to environment
138           We have investigated the metabolic demands of migrating Treg cells in vitro and in vivo.
139 se uptake and ATP production to match energy demands of migration.
140 algae interaction and helped reduce the dose demand of MNPs (e.g., from 0.2 to 0.1 g.g(-1) while the
141 es neuroscientists to meet the computational demands of modern experimental technologies.
142  by fossil energy carriers, as well as large demands of motorized private transportation.
143 ectly, via changes in the mass and metabolic demand of muscle, and directly, via the release of muscl
144  is an intrinsic property of the biochemical demands of N fixation, constraining free-living N fixati
145  amenable alternative to meet the increasing demand of natural antioxidants.
146 nce to the goal depending on the fluctuating demands of navigation.
147 s and blood vessels that match the metabolic demand of neuronal activity with an appropriate supply o
148 to tune neurotransmitter release to meet the demands of neuronal activity is critical to neurotransmi
149 tex that allows the brain to meet the energy demands of neuronal computations?
150 t be insufficient to cover for the energetic demands of neuronal tissue.
151 enance of the synapse and meeting the energy demands of neurons.
152 e a number of innovations aiming to meet the demands of new microbes and better mimic their natural c
153  batteries to meet the ever increasing power demands of next generation technologies.
154 work and set of applications tailored to the demands of next-generation sequencing data and applicabl
155                       However, the competing demands of nonself discrimination and self-recognition p
156                                The estimated demand of NSs towards CHO cell glycosylation can be used
157 nt of CHO glycosphingolipids to estimate the demand of NSs towards CHO cell glycosylation.
158 oductivity of CHO cells, we observe that the demand of NSs towards glycosylation is significant and,
159 urce costs related to the dietary phosphorus demands of nucleic acid production; such costs could fac
160                  Here we review the cellular demands of nucleotide biosynthesis, their metabolic path
161 ish language required to deal with the daily demands of nursing in the UK.
162 ts hold great promise to meet the increasing demand of nutritionally limited populations and to contr
163 ngiogenesis in anticipation of the metabolic demands of oligogenesis, before finally allowing precurs
164 m natural sources, coupled with an estimated demand of one metric ton per annum for the prodrug, prov
165 sone regulation allows females to assess the demands of oogenesis and alter their behavior and metabo
166 ent with bond strengthening, as the electron demand of OR increases.
167 trients that may compete with the fertiliser demands of other crops.
168 etween diverse functional states to meet the demands of our dynamic environment, but fundamental prin
169 lows the mosquito to balance the conflicting demands of parasite killing and metabolic homeostasis in
170                            How the metabolic demand of parasitism affects immune-mediated resistance
171 nate T cell metabolism to meet the metabolic demands of participating in an immune response.
172 lized detection, are not able to meet recent demands of patient-friendly testing and increased reliab
173 n highly controlled cleanrooms to ensure the demands of planetary protection.
174  an increment of 25 mg choline/d to meet the demands of pregnancy is insufficient and show that a hig
175 able to iron deficiency due to the high iron demands of pregnancy.
176 uptake to fuel the bioenergetic and anabolic demands of proliferating cancer cells is well recognized
177 djust their size (timing of division) to the demands of proliferation in varying nutritional environm
178 th tumour growth and to satisfy the anabolic demands of proliferation.
179 thought to be required to meet the metabolic demands of proliferation.
180 ) has been developed to satisfy an increased demand of protein characterisation in terms of folding a
181                           However, such huge demands of quantum resources are hard to meet with curre
182                             With the growing demand of rapid and reliable alcohol detection systems,
183      Cancer cells must satisfy the metabolic demands of rapid cell growth within a continually changi
184 must generate enough blood cells to meet the demands of rapid growth.
185 evels in numerous cancers to meet the folate demand of rapidly dividing cells under low folate condit
186               The biosynthetic and energetic demand of rapidly proliferating cells such as cancer cel
187 cope with the bioenergetics and biosynthetic demands of rapidly dividing cells as well as to counter
188 r bioenergetics and macromolecular synthesis demands of rapidly dividing cells.
189  interconnect, and the increased replication demand of RBF1-depleted larvae is associated with the de
190                   Although the computational demands of reference alignment and expression quantifica
191 ccrue fitness benefits by timing peak energy demands of reproduction to coincide with maximum food ab
192 s seesaw pattern between the neural resource demand of response inhibition and activity related to me
193 asculature (important for the high metabolic demands of retinal neurons).
194                The resulting surge in global demand of Rhodiola plants and salidroside has driven som
195  field, yet they fail to meet the commercial demands of scalability and endurance.
196 ble to capture variations in reported energy demands of selected mining sites (FEE: 0.07 to 0.84 MJ-e
197 tabolic programs to meet the changing energy demands of self-renewing HSCs.
198                          Thus, the differing demands of sensory encoding in the eye and ear generate
199 lication that requires storage and mixing on demand of several mutually incompatible reagents.
200                                Driven by the demands of several emergent technologies, efforts have b
201 ntly, SingleSplice is tailored to the unique demands of single cell analysis, detecting isoform usage
202 his study quantifies the energy and resource demands of small-scale HP projects and presents methods
203 act be an artefact of the inhibitory control demands of some trials of the dot comparison task.
204 onal and synaptic properties to the specific demands of sound localization.
205 ing response captures the high computational demands of sound processing with extreme granularity and
206 language and the adaptations required by the demands of specific languages and their written forms.
207 st-effective solution to meet the increasing demand of stem cell research, tissue engineering, and dr
208                           Based on increased demands of strict vegetarians, an investigation of vitam
209 icant challenge is the juggling of competing demands of study, work and family, and this may have a n
210  study; the experience of juggling competing demands of study, work and family; and the presence or a
211 duce the kinematics, kinetics, and metabolic demand of submaximal effort movement.
212 rtemporal preferences, but the computational demands of such decisions encourage the use of formally
213 xhibit distinctive traits that help meet the demands of such habitats.
214 successfully satisfy the stringent labelling demands of super-resolution SMLM.
215 postoperative complications and the physical demands of surgery.
216                           With the technical demands of surgical specialties, documenting competence
217 nd meeting the bioenergetic and biosynthetic demands of T-cell differentiation, whether metabolism mi
218 ge cohorts in clinical studies increases the demand of technologies able to analyze a large number of
219                                   The steric demand of the alkyl substituents in the BODIPY subunit d
220 n are likely to be offset by the higher flux demand of the CAM cycle.
221 ting, numerous factors affect the supply and demand of the cardiovascular workforce.
222                                       Steric demand of the catalysts was clearly seen by a set-by-set
223                       There is an increasing demand of the food industries and research institutes to
224                                   The steric demand of the ligand was envisioned as a key element to
225 determining step as a function of the steric demand of the metallacycle side chains and the steric cr
226                                   The steric demand of the new ligand class enables a complementary r
227 se of the C-OR bond distance to the electron demand of the OR substituent.
228 hemical catalysis, while reducing the energy demand of the overall process.
229                 The difference in the steric demand of the polymer end-group (Mes vs Et) transferred
230  genomes is important to meet the increasing demand of the research community.
231 tion rate is inversely related to the steric demand of the substrates.
232 al representations are more invariant to the demand of the task, reflecting what an object is, dorsal
233                                   The energy demand of the temperature-vacuum-swing adsorption/desorp
234 beast"--it is either on par with or the most demanding of the domains analyzed here in terms of data
235 imize physiology and behavior to the varying demands of the 24 h day.
236 signaling that is essential for the anabolic demands of the activation and function of DCs.
237  SC activation to meet the high bioenergetic demands of the activation process.
238                                   The energy demands of the adult mammalian heart are met largely by
239 in length is increased, the increased steric demands of the alkyl groups lead to liquidlike, disorgan
240 ctions between alkyl groups; and (iv) steric demands of the alkyl groups.
241 es which are required to adequately meet the demands of the aquaculture sector.
242  structural adaptations to meet the physical demands of the aquatic environment, and aids with ultras
243 ed to address a broad range of physiological demands of the body.
244  complete characterization of the mechanical demands of the bone made through the stride and from mil
245  mount adaptive responses to meet the energy demands of the cell and to compensate for dysfunction in
246 l routes of investigation for addressing the demands of the clinical setting.
247 hods to enhance productivity and to meet the demands of the consumer was discussed in future challeng
248 g stem cells is required to cover the energy demands of the different organ-specific cell types.
249 are, improve heart health, and help meet the demands of the future.
250  research needed to meet growing agriculture demands of the future.
251 ine fisheries that cannot keep pace with the demands of the growing market for these products.
252 d fish are not adequate to meet the nutrient demands of the growing world population, and fish consum
253 city for ATP production with changing energy demands of the heart.
254 n different proportions depend on the steric demands of the hemiaminal protecting group, tetrahydrofu
255     In addition to maintaining the metabolic demands of the individual in the short term, levels of e
256                   However, the computational demands of the joint HMM are substantial and the extent
257 ilation rises in proportion to the metabolic demands of the locomotor muscles.
258 network representations due to computational demands of the method.
259 rnate lipid depots for meeting the energetic demands of the migration journey.
260    Examination of the information-processing demands of the mind-wandering state suggests that it inv
261 ts appear to be responses to the conflicting demands of the mood cycles' being entrained simultaneous
262 s have the potential to meet the high-energy demands of the next generation of batteries.
263               Thus, regardless of the steric demands of the organic substrate, the transition state t
264 cation between tissues to meet the energetic demands of the organism.
265 presumably generated in response to elevated demands of the parasite, potentially consistent with ER
266 es not proactively change with the cognitive demands of the potential response, and (2) perimovement
267                               The low steric demands of the radical-generating [4Fe-4S]/SAM construct
268  control for orthographic and working memory demands of the rhyming task, and for age, education, and
269                              The high steric demands of the substituted bicyclo[3.3.0] ring system pr
270 adaptivity in EM patterns in response to the demands of the task and environment.
271  the sham-lesioned rats when the attentional demands of the task were increased.
272 al choice depends on the actual self-control demands of the task.
273  inference according to the moment-by-moment demands of the task.
274 vel of IPS engagement reflects the cognitive demands of the task.
275 rrow needs to be engaged quickly to meet the demands of the tissues.
276 ddition, we defined the basic conformational demands of the Tomm34-Hsp90 interaction.
277 erformance and reduces uncertainty given the demands of the training task and that the strategy chose
278                     To flexibly adapt to the demands of their environment, animals are constantly exp
279 hrough glycolysis to satisfy the high energy demand of these cells.
280 eflects upon the physiological functions and demands of these enzymes in vivo.
281 ion makers, as well as the interdisciplinary demands of these innovations on researchers and manageme
282 ival and supports the anabolic and energetic demands of these rapidly dividing cells.
283 plained the origin of the exceptional steric demand of this ligand class, the basis for enantioselect
284 e of life, which affects the future clinical demands of this population relative to ongoing surveilla
285 on of cells with DSBs while attending to the demands of tissue growth and repair.
286 o match the changing growth and regeneration demands of tissues.
287 om the knob mitochondria may not fulfill the demands of transduction over the full length of the cili
288 nd kinetic regulator, adapting Hsp90s to the demands of unique cellular and organismal environments.
289 lement them, or because of the computational demands of using Markov Chain Monte Carlo algorithms to
290 vaccination methods to reduce the logistical demands of using separate vaccine preparations in the fi
291 clease recognition probe, and thus avoid the demands of utilizing multiple probes design.
292 sm to meet the bioenergetic and biosynthetic demands of viral propagation.
293  contrast, the left STC was sensitive to the demands of visuospatial processing.
294 ed sliced oyster mushroom covered the weekly demand of vitamin D of an adult.
295 ic ankle work can reduce the total energetic demands of walking, including work required from more pr
296 that significant reduction of initial oxygen demand of wastewater by 61% was observed.
297 will critically impact the future supply and demand of water, leading to large uncertainties for sust
298 extent surface ocean carbon supply meets the demand of water-column biota; the discrepancy between kn
299 us host energy-intensive processes, the most demanding of which is protein synthesis.
300               Nonrenewable cumulative energy demand of wooden buildings is 18% lower, compared to a m

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