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1 SIGN: Multicenter non-inferiority randomised controlled clinical trial.
2 Design: Randomized, controlled clinical trial.
3 a booster aP vaccine dose in this randomized controlled clinical trial.
4 nd, prospective, non-inferiority, randomised controlled clinical trial.
5 s syndrome deserving of a randomized placebo controlled clinical trial.
6 The DCCT was a large multicenter randomized controlled clinical trial.
7 ey have not been validated in a prospective, controlled clinical trial.
8 treatment, through a parallel-group, placebo-controlled clinical trial.
9 tage CHL in a multicenter phase 3 randomized controlled clinical trial.
10 study is a randomized, double-blind, placebo-controlled clinical trial.
11 cessions (REC), in a prospective randomized, controlled clinical trial.
12 ent has never been subjected to a randomized controlled clinical trial.
13 riodontal pockets, in a double-blind placebo-controlled clinical trial.
14 RTICIPANTS: Multicenter, randomized, placebo-controlled clinical trial.
15 Prospective, randomized, multicenter, controlled clinical trial.
16 Eighteen-month, multicenter, randomized, controlled clinical trial.
17 lticenter, randomized, double-blind, placebo-controlled clinical trial.
18 Randomized, double-blind, placebo-controlled clinical trial.
19 spective, 24-month, dose-ranging, paired-eye controlled clinical trial.
20 Prospective randomized controlled clinical trial.
21 be further explored in a randomised, placebo-controlled clinical trial.
22 Randomized, double-masked, placebo-controlled clinical trial.
23 currently being tested in randomized placebo-controlled clinical trials.
24 should be investigated in future randomized controlled clinical trials.
25 rigor analogous to multicenter, randomized, controlled clinical trials.
26 Proof of efficacy awaits randomized, placebo-controlled clinical trials.
27 PDT yielded comparable outcomes as those of controlled clinical trials.
28 38 Dutch volunteers enrolled in 2 randomized controlled clinical trials.
29 This represents the basis for forthcoming controlled clinical trials.
30 , body mass index, or waist circumference in controlled clinical trials.
31 nts, however, has to be further evaluated in controlled clinical trials.
32 nt of the impact of this intervention awaits controlled clinical trials.
33 was higher than previously reported in well-controlled clinical trials.
34 tifications are based on dedicated, strictly controlled clinical trials.
35 nalysis of the VISUAL-1 and VISUAL-2 placebo-controlled clinical trials.
36 6 randomized, double-masked, sham- and laser-controlled clinical trials.
37 are experimentally determined in randomised controlled clinical trials.
38 in depressed patients in randomised placebo-controlled clinical trials.
39 apple were included in an open, randomized, controlled clinical trial: 27 patients consumed daily de
46 studies, with six randomised, double-blind, controlled clinical trials, all of which investigated ve
47 onducted a randomized, double-blind, placebo-controlled clinical trial among pregnant women presentin
49 lementation should be tested in a randomized controlled clinical trial and that the analysis should i
50 rognostic value of NT-proBNP thresholds in a controlled clinical trial and to evaluate the response t
51 mpliant, randomized, double-blinded, placebo-controlled clinical trial, and all patients provided inf
52 udies included randomised controlled trials, controlled clinical trials, and cohort studies; their ov
54 iteria: randomized controlled trials (RCTs), controlled clinical trials, and prospective clinical stu
55 , PsycINFO, the Cochrane Central Register of Controlled Clinical Trials, and the Cochrane Database of
56 not the high efficacy reported in randomised controlled clinical trials are materialising in real-wor
58 cute liver failure, multicenter, randomized, controlled clinical trials are needed to confirm that hy
60 wever, long-term, multicentered, randomized, controlled clinical trials are required to know the clin
62 lable which require evaluation in randomized controlled clinical trials as adjunct therapies for shor
63 s compared to classical double-blind placebo-controlled clinical trials as the basis for precise pers
65 rallel-group, forced dose titration, placebo-controlled clinical trial at 30 sites from May 10, 2011,
66 , multicenter, randomized, active comparator-controlled, clinical trial at multiple locations of the
67 us study, a randomized double-blind, placebo-controlled clinical trial, between August 2003 and Novem
68 c reviews (SRs), randomized clinical trials, controlled clinical trials, case series, and case report
69 the PubMed and Cochrane Central Register of Controlled Clinical Trials (CENTRAL) search engines from
70 ed MEDLINE, the Cochrane Central Register of Controlled Clinical Trials, ClinicalTrials.gov, and rele
73 onducted a randomized, double-blind, placebo-controlled clinical trial comparing apixaban, at a dose
74 (PISTE) trial was a multicentre, randomised, controlled clinical trial comparing intravenous thrombol
77 y cases, do not have support from randomised controlled clinical trials comparing bariatric surgery w
78 e present study was a split-mouth randomized controlled clinical trial comprising 20 chronic periodon
81 domized, double-blind, double-dummy, placebo-controlled clinical trial conducted at 10 university cli
82 ts (FISH) study, a randomized, double-blind, controlled clinical trial conducted at 15 North American
84 : Phase 3, randomized, double-blind, placebo-controlled clinical trial conducted at 91 clinical sites
86 YNDIET study is a 6-mo randomized, parallel, controlled clinical trial conducted in 122 overweight an
88 reated with placebo in 12 randomized placebo-controlled clinical trials conducted mostly in outpatien
89 Phase 1-2, randomized, double-blind, placebo-controlled, clinical trial conducted from 2008 to 2012.
90 trials, quasi-randomized controlled trials, controlled clinical trials, controlled before-after stud
91 trials, quasi-randomized controlled trials, controlled clinical trials, controlled before-and-after
92 trials, quasi-randomized controlled trials, controlled clinical trials, controlled before-and-after
94 he mechanisms of action of novel agents, and controlled clinical trials documenting their efficacy an
95 This retrospective analysis of five placebo-controlled clinical trials does not support a decreased
96 er and neutropenia through observational and controlled clinical trials done by single institutions,
97 uble-masked, randomized, multicenter, active-controlled clinical trial enrolled 224 eyes of 224 patie
100 xtension study of a multicenter, randomized, controlled clinical trial evaluating the effect and long
101 s performed to identify all blinded, placebo-controlled clinical trials evaluating acute selective NS
103 Methods A systematic review of randomized controlled clinical trials evaluating weight loss interv
104 e, there is a paucity of randomised, placebo-controlled clinical trial evidence where the primary out
108 mized, double-blind, 14- to 15-week, placebo-controlled clinical trial, followed by a 1-year open-lab
109 dence, from case reports to large randomized controlled clinical trials, for the possible adverse eff
110 -stratified multicentre, randomised, placebo-controlled clinical trial from Nov 16, 2010, to Sept 12,
111 lished when "at least two blinded randomized controlled clinical trials from two different groups of
119 roup, multicenter, double-blind, randomized, controlled clinical trial in 150 adults after gastrointe
120 trial is a randomized, double-blind, placebo-controlled clinical trial in 160 patients with severe, n
121 pated in a randomized, double-blind, placebo-controlled clinical trial in 2011 and 2012 on the safety
122 We conducted a randomized, double-masked, controlled clinical trial in 225 10- to 18-y-old eligibl
123 ospective, double-blind, randomized, placebo-controlled clinical trial in an ambulatory care and home
124 dy was a pragmatic, single-centre randomised controlled clinical trial in community-dwelling individu
126 hase 1b, double-blinded, randomised, placebo-controlled clinical trial in Kampala, Uganda to examine
127 -center, randomized, double-blinded, placebo-controlled clinical trial in patients undergoing emergen
129 ulticenter randomized, double-blind, placebo-controlled clinical trial in Tasmania and Victoria, Aust
131 a lack of long-term data and data outside of controlled clinical trials in carotid artery stenting.
137 hrough population-based studies and in large controlled clinical trials; inflammatory marker levels a
140 lticenter, double-blind, randomized, placebo-controlled clinical trial involving 114 North American e
142 d be required to mount a randomized, placebo-controlled clinical trial involving premanifest HD indiv
143 ruvada) has demonstrated efficacy in placebo-controlled clinical trials involving men who have sex wi
144 xtends beyond the skin and that a randomized controlled clinical trial is needed to confirm these fin
152 he largest randomized, double-blind, placebo controlled clinical trial, now underway, designed to eva
156 r herpesviruses in this disease is through a controlled clinical trial of an efficacious antiviral dr
158 d as neonates in a double-blind, randomized, controlled clinical trial of caffeine versus placebo und
159 This was a double-blind randomized placebo-controlled clinical trial of creatine monohydrate (10 g/
161 cted a prospective, multicenter, randomized, controlled clinical trial of diabetic patients to invest
164 lticenter, randomized, double-blind, placebo-controlled clinical trial of hydroxyurea in infants (beg
165 In 2013 we conducted a randomized, placebo-controlled clinical trial of live attenuated influenza v
166 st intermediate AMD enrolled in a randomized controlled clinical trial of lutein/zeaxanthin and/or om
170 lticenter, randomized, double-blind, placebo-controlled clinical trial of peanut sublingual immunothe
171 -blinded, placebo-randomized, within-subject controlled clinical trial of single and multiple ascendi
172 ospective, double-blind, randomized, placebo-controlled clinical trial of the effects of 5 smoking ce
173 ples ascertained through the largest placebo-controlled clinical trial of the monoamine oxidase B inh
174 r, randomized, single-masked, sham-injection controlled clinical trial of the safety, tolerability, a
175 tudy was a randomized, double-blind, placebo-controlled clinical trial of vitamin D3 supplementation
181 We carried out two double-blind, placebo-controlled clinical trials of N-methyl-D-aspartate recep
182 a meta-analysis of English language placebo-controlled clinical trials of naloxone, naltrexone, nalm
183 int that should be used in future randomized controlled clinical trials of novel therapies in idiopat
184 6810), two phase 3, double-blind, randomised controlled clinical trials of the HPV-16/18 AS04-adjuvan
185 ase pathogenesis and knowledge provided from controlled clinical trials of these new therapeutic agen
186 oled analysis of weight gain in 8 randomized controlled clinical trials of treatment-naive people liv
187 oled analysis of weight gain in 8 randomized controlled clinical trials of treatment-naive people wit
189 blind, household-cluster-randomized, placebo-controlled clinical trial on Flores island, Indonesia, a
190 randomized, crossover, double-blind, placebo-controlled clinical trial on human immunodeficiency viru
191 o treat mast cell mediator-related symptoms, controlled clinical trials on how they improve quality o
192 d studies were randomized controlled trials, controlled clinical trials, or cohort studies with 10 or
193 IGN: In a multicenter prospective randomized controlled clinical trial, patients with GD were randomi
194 level of evidence of treatments based on the controlled clinical trials performed with each compound
195 This randomized, double-blind, prospective controlled clinical trial (phase 2B) was designed to inv
196 rechallenge, additional data are needed from controlled clinical trials, prospective registries, and
197 th blood pressure (BP) levels and randomized controlled clinical trials providing evidence of stroke
199 stematically reviewed to identify randomized controlled clinical trials (RCTs) in chronic heart failu
200 ual patient data meta-analysis of randomized controlled clinical trials (RCTs) to evaluate whether ba
203 s phase 2, randomised, double-blind, placebo-controlled clinical trial recruited patients aged 18-65
205 ICIPANTS: Multicenter, double-blind, placebo-controlled clinical trial (Renal Optimization Strategies
206 ncludes a review of split-mouth, randomized, controlled clinical trial results that specifically trac
208 as efficacy can change when moving from the controlled clinical trial setting to clinical practice.
210 ants: 29 randomized controlled trials, seven controlled clinical trials, seven consecutive case serie
211 long-term follow-up of a randomized, placebo-controlled, clinical trial (SHEP) of patients aged 60 ye
212 monly used in cystic fibrosis based on short controlled clinical trials showing reductions in pulmona
216 is a large body of evidence from randomized controlled clinical trials supporting the cardiovascular
217 as a prospective, single-blinded, randomized controlled clinical trial testing the hypothesis that he
218 k Trial), a randomized, double-blind, active-controlled clinical trial that enrolled hypertensive ind
219 I) 53 is a randomized, double-blind, placebo-controlled clinical trial that evaluated the safety of s
220 he ICTUS trial was a multicenter, randomized controlled clinical trial that included 1,200 patients w
222 review was conducted to identify randomised controlled clinical trials that assessed the use of poly
223 , prospective, retrospective, and randomized controlled clinical trials that evaluated implant stabil
224 ked, multicenter, randomized, sham injection-controlled clinical trials that evaluated intravitreal l
225 ive search strategies to identify randomized controlled clinical trials that evaluated the effects of
227 ed and inconsistent evidence from randomized controlled clinical trials that greater PAC involvement
228 tudies and post hoc analyses from randomized controlled clinical trials that provided data on the out
230 tudy was a randomized, double-blind, placebo-controlled, clinical trial that accrued subjects from fi
231 Here we show-in two independent randomized controlled clinical trials-that metformin increases circ
232 les from a randomized, double-blind, placebo-controlled clinical trial (the Vitamin D Antenatal Asthm
235 that we discuss need to be validated in well-controlled clinical trials, these new discoveries regard
238 n the context of a randomized, double-blind, controlled clinical trial to assess whether cowpea or co
239 We conducted a randomized, double-blind, controlled clinical trial to determine whether hyperbari
241 STUS (Open-Label, 2x2 Factorial, Randomized, Controlled Clinical Trial to Evaluate the Safety of Apix
242 y (AREDS) is the only large-scale randomized controlled clinical trial to show a 25% beneficial effec
243 orm management of Legionnaires' disease, and controlled clinical trials to ascertain the optimum anti
244 The objective was to combine evidence from controlled clinical trials to assess the effect of n-3 L
245 sed of several histological types, rendering controlled clinical trials to establish the best treatme
246 nge will be to design prospective randomized controlled clinical trials to provide the evidence neces
247 f patients who would have been excluded from controlled clinical trials undergoes carotid artery sten
248 Data from a randomized double-blind placebo-controlled clinical trial undertaken in healthy young ad
249 le-center, randomized, double-blind, placebo-controlled clinical trial was conducted at Siriraj Hospi
252 is 12-week double-blind, randomized, placebo-controlled clinical trial was conducted from February 1,
254 A 12-week, randomized, double-blind, placebo-controlled clinical trial was conducted in 50 unpaid tre
258 lend.A prospective, double-blind, randomized controlled clinical trial was conducted in which childre
262 pective, randomized, placebo, and positively controlled clinical trial was designed to evaluate the c
264 le neutralizing antibody response, a placebo-controlled clinical trial was performed in 48 healthy ad
269 ackground: The aim of the present randomized controlled clinical trial was to assess the bucco-lingua
272 The purpose of this multicenter randomly controlled clinical trial was to compare two acellular d
275 e purpose of this single-masked, randomized, controlled clinical trial was to evaluate the effects of
276 KEEPS, a randomized, double-blinded, placebo-controlled clinical trial, was conducted at nine US acad
277 especified analysis of a randomized, placebo-controlled clinical trial, we compared the differences i
280 In this randomised, double-blind, placebo-controlled clinical trial, we enrolled children and youn
281 In this double-blind, randomized, placebo-controlled clinical trial, we evaluated systemic and muc
282 hich was a randomized, double-blind, placebo-controlled clinical trial, we explored the effectiveness
283 In this randomised, double-blind, placebo-controlled clinical trial, we recruited patients from 78
285 spective, randomized, double-masked, placebo-controlled clinical trials were conducted at 39 ophthalm
290 mplications data are derived from randomized controlled clinical trials, which report a high adverse
292 However, long-term, multicenter randomized, controlled clinical trials will be required to know thei
293 of preliminary studies, ongoing randomized, controlled clinical trials will potentially provide defi
294 conducted a randomized double-blind placebo-controlled clinical trial with 208 opioid-dependent pati