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1 ghts against the parental wild-type Canton-S stock.
2 ise the use of the limited available vaccine stock.
3 verestimates age at maturity for the western stock.
4 -old carbon from the peatland organic matter stock.
5 n (C) sequestration and contain large soil C stocks.
6 ve-year recovery time doubled benthic carbon stocks.
7 an impact soil GHG emissions and surface SOC stocks.
8 he expense of biodiversity and aboveground C stocks.
9 s effected by modulating soil organic matter stocks.
10 ify anthropogenic influence on forest carbon stocks.
11 nd is directly proportional to the prethaw C stocks.
12 o lower and more variable recruitment to the stocks.
13 y of total C stocks but not of aboveground C stocks.
14 romote a metabolic release of current carbon stocks.
15  required to further eliminate remaining PCB stocks.
16 e reciprocal crosses of two distinct genetic stocks.
17 ential effects of human disturbance on these stocks.
18 ple to its factory using our current cyanide stocks.
19 nd is directly proportional to the prethaw C stocks.
20 igh, a particular problem is bycatch of weak stocks.
21 ity and organic C are combined to estimate C stocks.
22 high levels of biodiversity and large carbon stocks.
23  importance to the oceanic food web and fish stocks.
24 r low emissions scenarios combined with fish stocking.
25 We found sites in river deltas had larger OC stocks (175-504 Mg/ha) than those in nonriverine setting
26 o in vivo haploid inducer males derived from Stock 6, first reported in 1959, followed by colchicine
27 ons such as the Diversity Outbred (DO) mouse stock accumulate large numbers of crossover (CO) events
28 r, the lack of comprehensive estimates of OC stocks across alpine permafrost means that current knowl
29 ve contrasting effects on aboveground carbon stocks across Earth's tropical forests.
30  This sample collection comprises production stocks, agricultural and pharmaceutical products, chemic
31 pertensive medications and 33.8% (32.2-35.4) stocked all four classes that were routinely used.
32 rom numerous water bodies after cessation of stocking also contributed to the recovery.
33 ed variation in sediment organic carbon (OC) stocks among different geomorphological settings (wetlan
34                              Variation in OC stocks among nonriverine sites was high in comparison wi
35 unts in (temporary) sinks such as the in-use stock and ("final") environmental sinks such as soil and
36 unts in (temporary) sinks such as the in-use stock and ("final") environmental sinks such as soil and
37  each of these steps consisting of an in-use stock and a storage stock for devices.
38 rge proportion of ENM are entering an in-use stock and are released from products over time (i.e., ha
39 he fact that many ENM are entering an in-use stock and are released with a lag phase.
40  and disposal of a product explicitly taking stock and flow dynamics into account.
41 s (ENM) are static, ignoring the dynamics of stock and flows of ENMs.
42 s equivalent to 30% of the initial forest C stock and is directly proportional to the prethaw C stoc
43 s equivalent to ~30% of the initial forest C stock and is directly proportional to the prethaw C stoc
44          In January's Guest Editorial, Sarah Stock and Jenny Myers discuss approaches to fetal and ne
45  For over 600,000 wetlands, the total carbon stock and organic carbon density was calculated at 5-cm
46 antities of electronic devices in the in-use stock and storage stock in Switzerland and quantify the
47 uration predetermine levels of phytoplankton stock and thus, influence virioplankton by dictating the
48  reduction of forest productivity and carbon stock and to increased isoprene emissions, which result
49                        Historical effects of stocking and contemporary patterns of climatic variation
50 ound-based measurements of ecosystem-level C stocks and annual fluxes along with disturbance history.
51 ggest a possible relationship between carbon stocks and anthropogenic disturbance.
52 ain challenges to estimate changes in carbon stocks and biodiversity due to degradation and recovery
53  physical interactions, and reagents such as stocks and cDNAs.
54 We also find that PAs maintain larger carbon stocks and continue sequestering carbon in recent years
55 ows occur over time, driven by the growth of stocks and delayed release dynamics.
56  of these data for quantifying forest carbon stocks and dynamics, a new generation of allometric tool
57 cle lifecycle in Switzerland to quantify the stocks and flows of Ag, Au, Pd, Ru, Dy, La, Nd, and Co i
58        Using TropForC-db, we characterized C stocks and fluxes for young, intermediate-aged, and matu
59 good logistical systems for keeping track of stocks and fulfilling requests for specimens.
60 is one of the largest terrestrial carbon (C) stocks and is highly sensitive to climate warming.
61  a focus on the characterization of material stocks and its relation with service delivery is often n
62  flow system comprising all relevant inputs, stocks and outputs of wastes, products, residues, and em
63  that were originally present in the reagent stocks and presumably not altered during synthesis.
64 hts the need to protect both existing carbon stocks and regions, where the sink is growing rapidly.
65 However, we observed large variability among stocks and regions; for example, highly negative trends
66        This public collection of mutant seed stocks and sequence data enables rapid identification of
67 C provides guidelines for determining carbon stocks and sequestration potential, incentivising policy
68 oastal defences from flooding, shifting fish stocks and the emergence of new shipping opportunities i
69                      We also analysed soil N stocks and the natural abundance of (15) N during pastur
70 o pasture (C4 plants) by analysing total SOC stocks and the natural abundance of the stable isotopes
71 tensity in cattle activities to preserve SOC stocks and to reduce C emissions after land-cover change
72      Regional and country-level variation in stocks and trends were mapped and tabulated globally, an
73 ty on the global distribution of soil carbon stocks and turnover times we developed a soil biogeochem
74 growth, which may diminish forest carbon (C) stocks and uptake.
75 rovides a valuable tool for assessing carbon stocks and visualizing the distribution of BGC.
76 lts were highly reproducible for 3 CMV virus stocks and WHO IS (P > .80), tested by three sets of pai
77 eedbacks across the natural system (the fish stock) and human system (the mobile fishing fleet) confo
78 hensive quantitative analysis of generation, stock, and collection of used computers and monitors in
79  the subjects' nasal wash samples, the viral stock, and the influenza virus A/Wisconsin/67/2005 (H3N2
80 /=30 cm dbh), (ii) aboveground forest carbon stocks, and (iii) soil respiration.
81 soils are associated with the highest carbon stocks, and are on the increase, while areas of arable c
82 uating their gut contents, resource standing stocks, and delta(15)N and delta(13)C stable isotopes ac
83                        One way in which fish stocks-and their habitats-can be protected is through th
84  being spurious, temperature effects on this stock are clear, and continuing to ignore them puts the
85                     However, peatland carbon stocks are highly threatened by anthropogenic climate ch
86 forests and the regional drivers of deadwood stocks are unknown.
87 e fat-tail sheep and showcase the indigenous stocks as appropriate genotypes for adaptation planning
88 cal pathway for the remobilization of peat C stocks as well as a major component of the net ecosystem
89 tic defects leading to a depleted follicular stock, as in Fancm(-/-) mice.
90                  This Tier 2-oriented carbon stock assessment provides a scientific method that can b
91 ng toward desirable states: extensiveness of stock assessments, strength of fishing pressure limits,
92  and annual precipitation, and the total SOC stock at the beginning of the trials.
93                        In general, total SOC stocks at 30 cm depth in the forest were similar for bot
94 ighlight the existence of substantial carbon stocks at depth in grassland soils that are sensitive to
95 m process indicators focusing on cold chain, stock availability, and vaccination sessions to better d
96 Here we argue that simulating changes in SOC stocks based on C input that are proportional to crop yi
97 nd spawning location of several pelagic fish stocks based on larval fish samples.
98 rrigenous organic matter in aquaculture feed stocks because it is isotopically district to marine org
99                       A global trend of wild stocks being overfished and in decline, as well as multi
100  account for significant effects of spawning stock biomass and a liver condition index on egg abundan
101 any combination of tree diversity and carbon stocks both require explicit consideration when optimisi
102  since last fire, with a recovery of total C stocks but not of aboveground C stocks.
103 nalyses explore the composition of products' stocks, but a focus on the characterization of material
104             Environmental factors affect all stocks, but attribution of additional mortality to tempe
105 yproduct metals is not limited by geological stocks, but by the rate of primary production of their c
106 , soil moisture, ground water, and reservoir stocks, but the impact of this estimated millennial-scal
107 P concentration decreased by 11% and total P stock by 12% in the top 20 cm of mineral soil following
108  estimate of global tropical peatland carbon stocks by 36 per cent, to 104.7 petagrams of carbon (min
109 ks can be increased, and persistence of weak stocks can be ensured, by using marine reserves rather t
110 ow that for many fisheries, yields of strong stocks can be increased, and persistence of weak stocks
111 7c chromosomes in the Bloomington Drosophila Stock Center have lost sn(X2) by this mechanism on a his
112 clude Arabidopsis reverse genetic resources, stock centers, databases and online tools, cell biology,
113                 Among the 75 pharmacies that stocked cessation medications, 96% had nicotine replacem
114 erally similar in both subregions and soil N stock changes during pasture establishment were correlat
115 iew some of the contributions made by living stock collections to research across all branches of the
116 es have been made using material from living stock collections.
117 tative analyses indicated that (i) the viral stock contained genetic variants that originated and lik
118 ased from this sector in the near-term while stock continues to build up in the system.
119 2 emissions to the atmosphere as ecosystem C stocks decline.
120 s have confirmed a causal link from spawning stock demographic structure through egg and larval distr
121  as an animal welfare criterion to determine stocking density.
122  derived purely from biomass information and stocks derived from complex forest harvest modelling.
123  show agreement between secondary forest SOC stocks derived purely from biomass information and stock
124                                  Sediment OC stocks did not differ between mangrove and saltmarsh hab
125                                           OC stocks did, however, differ between dominant species acr
126 n and mitigate projected increases in carbon stocks driven by elevated CO2 in forests on P-limited so
127 f gross losses of above-ground biomass (AGB) stocks due to deforestation.
128 y (i.e., tree mortality and losses in carbon stocks) due to multiplicative effects of fine fuel loads
129  better understand soil organic carbon (SOC) stock dynamics and its driving and controlling factors c
130                The visualization of material stocks' dynamics demonstrates the pace of product replac
131 , including assessments of vegetative carbon stocks, evapotranspiration, crop production, and househo
132  consisting of an in-use stock and a storage stock for devices.
133  thawing, exposing large carbon and nitrogen stocks for decomposition.
134 to provide unbiased estimates of soil carbon stocks for wetlands at regional and national scales.
135 ed TMCFs, with a detailed analysis of carbon stocks, forest structure and diversity.
136 on early Earth and provided the evolutionary stock from which oxygenic photosynthesis evolved ca. 2.3
137    A "jumping" of the PBDE local atmospheric stocks from the Northwestern European Mediterranean edge
138 trate little to no mobilization of ancient C stocks from this boreal peatland and a relatively large
139 iltration experiments indicated that a fully stocked G. demissa raft would clear an average 1.2 x 10(
140 and the conservation of existing soil carbon stocks, given its multiple benefits including improved f
141 pped six distinct glacial moraines alongside Stocking Glacier in the McMurdo Dry Valleys, Antarctica.
142                                              Stocking Glacier is one of several alpine glaciers in th
143                                At this time, Stocking Glacier was 20-30% larger than today.
144 iversity, and store 55% of the forest carbon stock globally, yet sustained provisioning of these fore
145                              All the reagent stocks had impurity profiles that differentiated them fr
146     The results show that in this period the stock has become heavier, it is traveling less, and it i
147 008, the national dead organic matter carbon stock has increased by 6.7 +/- 2.2 Tg carbon per year, p
148 uction of biofuels from lignocellulosic feed stocks has been hampered by the resistance of plant cell
149 ocery stores and supermarkets, which tend to stock healthier foods.
150          Only 32.7% (32.2-33.3) of all sites stocked high-value medications, and few high-value medic
151   The current project utilised heterogeneous stock (HS) male mice (n = 580) to investigate the geneti
152 ges during the production of the final virus stock in cell culture.
153  the authors estimate that the current DOM C stock in China is 925 +/- 54 Tg and that it grew by 6.7
154 lear, and continuing to ignore them puts the stock in jeopardy.
155 onic devices in the in-use stock and storage stock in Switzerland and quantify the flows between the
156 d stock outperformed an unselected benchmark stock in terms of hygienic behavior, and had improved su
157 ere we estimate that the national DOM carbon stock in the period of 2004-2008 is 925 +/- 54 Tg, with
158 s also suggest that more than half of the Hg stock in the sites with the longest time since fire orig
159 ed only up to 85% of the SHIV-327c challenge stock in vitro, protected 6 out of 7 rhesus macaques aga
160 of deadwood in Central Africa, we quantified stocks in 47 forest sites across Gabon and evaluated the
161 hereas younger peatlands will exceed prethaw stocks in a matter of centuries.
162  to the scarcity of inventories where carbon stocks in aboveground biomass and species identification
163 s the responses of soil organic carbon (SOC) stocks in British semi-natural landscapes to anthropogen
164  the lack of available information on carbon stocks in dead organic matter, including woody debris an
165 een the El Nino/Southern Oscillation and AGB stocks in disturbed regions.
166  canephora var. robusta (Robusta) commercial stocks in each step of the processing chain (green beans
167 % of the above- and belowground vegetation C stocks in Ecuadorian forests.
168  used a chronosequence approach to measure C stocks in forested permafrost plateaus (forest) and thaw
169 migratory and reproductive phenology of fish stocks in relation to climate change is critical for acc
170 ion and to evaluate future changes in carbon stocks in response to environmental perturbations.
171 apparent, with consequences for both C and N stocks in soil.
172 ses of 73% and 56% compared with initial SOC stocks in the 1980s.
173        Results of our work indicate that SOC stocks in the NCP croplands increased significantly, whi
174                                           OC stocks in the surface 1 m averaged 165.41 (SE 6.96) Mg O
175             There were no differences in SOC stocks in the top 30 cm between grassland up to 17 years
176 egies on biodiversity and aboveground carbon stocks in the Yucatan Peninsula, Mexico-a region with a
177 industrial fishing have depleted forage fish stocks in this system [10, 11].
178    As the GPEI will need to rely on residual stocks including with manufacturers through to the last
179 arly 1980s were the main drivers for the SOC stock increase.
180                                              Stocking increased the expected fishery value by an aver
181                                     Deadwood stocks increased significantly with logging (+38 Mg ha(-
182                                  Sediment OC stocks increased with elevation within nonriverine setti
183 s job is to determine whether the price of a stock is likely to go up or down.
184    This problem is most severe when the weak stock is long-lived and has low fecundity and thus requi
185 valuable fishery in the EU but management of stocks is challenging due to difficulties in aging indiv
186 me needed for them to regain their prethaw C stocks is governed by the amount of C that accumulated p
187 depth gradient at Little Cayman (LC) and Lee Stocking Island (LSI), and the microbiome of these sampl
188  on the population structure of torpedo scad stocks it is crucial to provide population data.
189                                 Most other C stocks likewise increased with stand age, while potentia
190 ed at sites in close proximity to historical stocking locations with greater rainbow trout propagule
191 trend of weighted 3-motifs in China's energy stock markets is explored for the networks of co-holding
192  the time that they are main participants in stock markets.
193 h are present, suggesting that reducing fish stocks may not only reduce total algal consumption but c
194                             Average deadwood stocks (measured as necromass, the biomass of deadwood)
195 solved estimates of mangrove sediment carbon stocks; most mangrove carbon is stored belowground.
196     Of the 3362 sites, 8.1% (95% CI 7.2-9.1) stocked no antihypertensive medications and 33.8% (32.2-
197  that high mean age and size in the spawning stock of Barents Sea cod (Gadus morhua) is positively as
198 mostly driven by the production and standing stock of dead organic material and soil development.
199 ss) or 40% (in terms of pieces) of the total stock of electronic devices in 2014.
200 t least 4-5 cm deep to quantify the standing stock of microplastics within marine sediments.
201  stocks, with fluvial sites having twice the stock of OC as seaward sites.
202           The ovarian reserve represents the stock of quiescent primordial follicles in the ovary whi
203                            This review takes stock of the available evidence related to the MDR hypot
204                      In this review, we take stock of the numerous molecular dynamics simulations tha
205 s polio funding declines, it is time to take stock of the resources made available with polio funding
206 ypes, HSCs were less likely to have adequate stock of vaccines, essential cold-chain equipment, or pr
207 contained considerably more C than typical C stocks of 0-1 m.
208                      Historically, important stocks of cod and whiting showed declining trends caused
209 g fishery managers is how to deal with mixed stocks of fish with a range of life histories that resid
210 dex of fish recruitment, averaged over seven stocks of high commercial significance in the North Sea.
211                                              Stocks of immobilized benthic carbon averaged nearly 15
212                                      Herein, stocks of KCN and NaCN were analyzed for trace anions by
213 st on past and prospective quantification of stocks of materials in-use.
214                                         Wild stocks of Pacific salmonids have experienced sharp decli
215  locations, and sustains the world's largest stocks of sockeye salmon along with four other salmon sp
216 y that is similar to the above-ground carbon stocks of the tropical forests of the entire Congo Basin
217 d using different combinations of commercial stocks of triethanolamine (TEA), thionyl chloride, chlor
218 r studies of VZV pathogenesis, for obtaining stocks of virus with high titers, and for isolating VZV
219 bours one of the largest ecosystems and fish stocks on the planet1,2.
220 nd beverage), ownership interests (including stock options, partnership shares), royalty or license p
221 Carbon"), through preservation of existing C stocks or creation of new wetlands to increase future se
222 uring and 12 months before and after a large stock outage resulted in minimal change in the estimated
223 ion of primaquine was predominantly due to 3 stock outages.
224  of selection, the resulting marker-selected stock outperformed an unselected benchmark stock in term
225 linic (adults 17.5%, 95% CI 13.0%-21.9%) and stock outs (adults 16.1%, 95% CI 11.7%-20.4%), were also
226 elevant for LMICs and presents early data on stock-outs and drug substitutions in several countries s
227 ly chains systems (11 of 12 countries), with stock-outs of priority commodities in about 40% of facil
228  of available purchasing options to identify stock-outs worldwide.
229 ame 14 countries to understand the extent of stock-outs, in-country purchasing and usage behavior, an
230 tive operations) to understand the extent of stock-outs, in-country purchasing, usage behavior, and b
231 nd low community participation, and STI drug stock-outs.
232                         Despite cessation of stocking over 40 years ago, hybridization increased over
233 jections about the fate of these soil carbon stocks over the 20(th) century, with models either gaini
234        Current pandemic preparations involve stock- piling oseltamivir, an oral neuraminidase inhibit
235    We assessed rates of change of carbon (C) stock pools, forest structure and tree-size distribution
236 unction of time and remaining volume in meat stocks prepared with wine and beer.
237  previous studies have mainly involved virus stocks produced in mammalian cells.
238 esting fundamental biological change in fish stock productivity at early life stages.
239 rom 2010 to 2014 to study the effects of six stocking rates on CO2 flux, and the results showed that
240 resolution climate predictions and extensive stocking records, we evaluate the spatiotemporal dynamic
241        In a no-change climate scenario these stocks recovered under sustainable management scenarios
242 ty-based resource management program induced stock recovery of the world's largest scaled freshwater
243                    We found four different C stock recovery pathways depending on the selected C pool
244 y production, zooplankton abundance and fish stock recruitment, this study provides strong evidence t
245  removes large and old individuals from fish stocks, reducing mean age and age diversity among spawne
246 ends on understanding how terrestrial carbon stocks respond to varying environmental conditions.
247 direct intranasal inoculation with the viral stock resulted in a selective bottleneck that reduced no
248 ted similar estimates of initial soil carbon stocks (roughly 1,400 Pg C globally, 0-100 cm), but each
249 rap supply by sector are taken from a global stock-saturation model to determine when the amount of c
250  small (<$1 angler day(-1)) compared to fish stocking scenarios (>$4 angler day(-1)).
251 C simian-human immunodeficiency virus (SHIV) stock (SHIV-327c) at 85% and 70%, respectively, and perf
252              Sequences of CpG/UpA-high virus stocks showed no evidence of increased mutational errors
253 ree were particularly influential in whether stock size and fishing mortality are currently in or tre
254 changes in the relationship between spawning stock size and the production of juvenile offspring (rec
255 ymptotically decreases; (ii) total rents and stock size both decline; and (iii) aggregate effort used
256     In addition to comparing aggregate rent, stock size, and fishing effort, we focus on the occurren
257 agement impacts on soil organic carbon (SOC) stocks, soil greenhouse gas (GHG) emissions, and global
258 0 and 21.5 +/- 0.8 per thousand for a NO3(-) stock solution of 19.7 +/- 0.9 per thousand.
259 n-coating method was used to deposit CdSe QD stock solution onto the surface of NiO/ITO electrodes, t
260 .2 and 2.7 +/- 0.3 per thousand for a NO3(-) stock solution value of 2.7 +/- 0.4 per thousand, and de
261 mated method of diluting complex samples and stock solutions using an Arduino-based control unit.
262 ces for multiple interacting natural capital stocks (species) making up an ecosystem.
263 e greatest potential for improving long-term stock status outcomes and should be the focus of efforts
264  from the moment they were acquired as fresh stock, supplying the market, to the physical degradation
265  east and south of Moreton Bay having higher stocks than those located on the sand islands in the nor
266 closely related with above and belowground C stocks than with NPP (ii) total NPP is highest in the SD
267 ith human alleles, producing a collection of stocks that are, in effect, 'humanized' for p53 variants
268 n depends on the development of their in-use stocks, the product lifetimes, and the recycling rates.
269 illennia for a site to recover its prethaw C stocks; the amount of time needed for them to regain the
270 ave the option of choosing specific planting stock to produce specific types of wood for industrial u
271 e fine-scale spatial coverage of sediment OC stocks to 150 cm depth.
272 opulations of most species and larger carbon stocks to persist than would land sharing or any interme
273 ing a possible change in the contribution of stocks to the overall catch by the end of the century.
274 agmentation in 20 SOTR plasma samples, viral stocks (Towne, Merlin, AD169) and the first World Health
275  cod, resulted in a strong increase for this stock under rising temperature scenarios, indicating a p
276 idues despite elevated microbial P compounds stocks under anaerobic paddy-rice management.
277 een the virus in these samples and the viral stock used to inoculate the subjects.
278 ting the advisability of sequencing the HCMV stocks used in experiments.
279                      Typical soil carbon (C) stocks used in global carbon models only account for the
280                                     Deadwood stocks varied spatially with disturbance and forest stru
281 (H3N2) reference strain used to generate the stock virus.
282 are loss-making enterprises, exhibiting high stock volatility.
283 to rapid changes in climate, making many SOC stocks vulnerable to losses by decomposition or disturba
284 of >2 sachets between available and expected stocks) was 4% and 22% of households visited in week 1 a
285                Using data on publicly traded stocks, we track the performance of 1,066 biopharmaceuti
286                                            N stocks were generally similar in both subregions and soi
287 aturally aged wheat (Triticum aestivum) seed stocks were quantified in an untargeted high-resolution
288 amples of 7 Arabica and 6 Robusta commercial stocks were recorded and submitted to multivariate stati
289                  The HN3 batches and reagent stocks were then analyzed for impurities by gas chromato
290 d distal limb bud cells isolated from mutant stocks where various parts of this boundary region were
291 tlands will take longer to recover prethaw C stocks, whereas younger peatlands will exceed prethaw st
292 ults highlight the importance of the storage stock, which accounts for 25% (in terms of mass) or 40%
293 nfection with a cell- and egg-passaged viral stock, which appeared to have adapted during its prepara
294  and depressed zoobenthic immobilized carbon stocks, which has persevered for 10 years since.
295 a novel resource, wild-derived heterogeneous stock (WHS) mice from eight wild strains.
296 NMs in 2020 will increase by 34-40%, and the stock will increase by 28-34%.
297 ler day(-1) in lakes with pH > 6.5 that were stocked with trout species.
298 plicated demographic history, which includes stocking with foreign and native salmon for at least 2 d
299 ngent on the size of the initial soil carbon stock, with considerable losses occurring in high-latitu
300 ology was the most important predictor of OC stocks, with fluvial sites having twice the stock of OC

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