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1 or further mechanistic studies and potential clinical implication.
2 (-)ALCL, and in 29% of all ALCL cases with a clinical implication.
3 obesity have potential short- and long-term clinical implications.
4 ecture is a central biological question with clinical implications.
5 i for acute coronary syndrome with effective clinical implications.
6 cation, is of public health significance and clinical implications.
7 hat modulation of miRNA export has potential clinical implications.
8 brain activity would have enormous basic and clinical implications.
9 important role of central plasticity and its clinical implications.
10 ticular focus on the functional and possible clinical implications.
11 umour metabolism and epigenetics and outline clinical implications.
12 y genomic alterations in ILBC with potential clinical implications.
13 control may have significant theoretical and clinical implications.
14 d antitumour immunity and may have important clinical implications.
15 ovel therapeutic intervention with important clinical implications.
16 reast fibroepithelial tumors, with potential clinical implications.
17 nhibition of UGGT1 or p97 may have important clinical implications.
18 al burden of skin disease and have important clinical implications.
19 titute a fundamental question with important clinical implications.
20 ting and fundamental question with important clinical implications.
21 tify novel methylation-driven subgroups with clinical implications.
22 solves this important problem with potential clinical implications.
23 molecular mechanisms, and the biological and clinical implications.
24 f PEDF as a key regulator of GSC and suggest clinical implications.
25 phoid cell death could thus have significant clinical implications.
26 amics and the origins of ITH, with important clinical implications.
27 of pro-apoptotic ligands and have important clinical implications.
28 the development of OA and may have potential clinical implications.
29 pplications, these findings have substantial clinical implications.
30 basic biological principles and has profound clinical implications.
31 standing their interaction is likely to have clinical implications.
32 AF, and discusses device-detected AF and its clinical implications.
33 remains a clinical dilemma with significant clinical implications.
34 our understanding of its pathophysiology and clinical implications.
35 dopamine-serotonin opponency with potential clinical implications.
36 ction, and neoplasia' (XMEN) disease and its clinical implications.
37 ns vary across the life course has important clinical implications.
38 nd treatment response, all of which may have clinical implications.
39 high risk for late recurrence and assess its clinical implications.
40 /colistin and polymyxin B, and highlight the clinical implications.
41 sis for this aberrant elevation has profound clinical implications.
42 ut COPD, and its radiological correlates and clinical implications.
43 isease progression could lead to significant clinical implications.
44 aim is to create an LRG for every locus with clinical implications.
45 diated pulmonary inflammation with important clinical implications.
46 ab treatment, which has both mechanistic and clinical implications.
47 ypass (CPB) surgery with potential important clinical implications.
48 ommon somatic lesions in bladder cancer with clinical implications.
49 ks in different cancer types, with potential clinical implications.
50 results, sometimes with strikingly different clinical implications.
51 c disorders and may consequently have direct clinical implications.
52 ress susceptibility, these insights may have clinical implications.
53 romote IL-17A production with as yet unknown clinical implications.
54 the inhibition of glutaminolysis could have clinical implications.
55 g loss of function (LoF) of human genes have clinical implications.
56 nate the hematopoietic system have important clinical implications.
57 t knowledge of CTC biology and the potential clinical implications.
58 sted acceleration of healing has significant clinical implications.
59 sease perception or diagnosis with potential clinical implications.
60 cific conditions, which likely has important clinical implications.
61 e DEGs and the pathways may potentially have clinical implications.
62 o our understanding of tumor biology and its clinical implications.
63 can help to inform their interpretations and clinical implications.
64 bclinical, THV thrombosis may have important clinical implications.
65 el of liver regeneration and reflects on the clinical implications and areas for further study sugges
66 logical, and diagnostic issues, and identify clinical implications and areas for future research.
74 his article reviews these discoveries, their clinical implications and the recent associated literatu
76 ular hypertension at 10 years have important clinical implications, and as such this information shou
78 er age, with special emphasis on etiologies, clinical implications, and innovative concepts in the ma
79 The authors discuss the pathophysiology, clinical implications, and pertinent preclinical data an
80 We discuss pathophysiological mechanisms, clinical implications, and pharmacological and non-pharm
81 There are limited data on the incidence, clinical implications, and predisposing factors of trans
88 of in vivo lipid peroxidation with important clinical implications as a breath biomarker of bacterial
89 This information has potentially important clinical implications as well as relevance for public he
94 force of microbial community structure, have clinical implications because of the frequent occurrence
100 t tumors within the same organism have major clinical implications, especially in the context of surg
101 east cancer (TNBC) phenotype, which may have clinical implication for providing novel biomarker(s) of
103 catenin and PKM2 inhibition which would have clinical implication for the cancer development and new
104 d survival of CD8(+) T cells, with potential clinical implications for adoptive cell transfer and vac
106 of Parkinson's disease, these findings have clinical implications for behavioural symptoms and cogni
107 mechanisms imposed by PLN and SLN could have clinical implications for both heart and skeletal muscle
111 complete immune suppression provides strong clinical implications for cell therapy-assisted minimiza
116 to Li-Fraumeni Syndrome (LFS) has important clinical implications for diagnosis, surveillance, and t
117 isuse-driven neuronal atrophy which may have clinical implications for disease management, including
118 s necessary to understand whether these have clinical implications for early detection of pancreatic
119 opsychological phenotype in ALS-FTD may have clinical implications for early diagnosis, disease manag
120 ully protect against GvHD and have important clinical implications for future clinical trials testing
121 in future in vivo experiments to clarify the clinical implications for hemostat use in post-surgical
122 tic) effects of scopolamine could have great clinical implications for humans; however, rats and mice
126 take and its distribution and excretion have clinical implications for its bioavailability and uptake
128 lveolar macrophages and might have important clinical implications for local immunity and immunopatho
130 ions to enable immune attack on tumors, with clinical implications for molecular markers to modify em
133 in CKD stage reclassification that has major clinical implications for predicting adverse outcomes af
134 of our four-pronged approach therefore have clinical implications for predicting which patients are
135 onal restart, a process that has significant clinical implications for relapsed staphylococcal infect
137 mechanisms underlying these concepts; their clinical implications for stratification of T2D manageme
140 a signature of consciousness, with potential clinical implications for the detection of awareness in
144 1 are strong predictors of ESRD, indicating clinical implications for the management of chronic HCV.
145 insulin signaling in liver and has potential clinical implications for the management of various hepa
146 aling in adult cardiomyocytes with potential clinical implications for the prevention of cardiotoxici
147 processes, findings that may have important clinical implications for the treatment of disorders suc
149 l helminths to reduce DTH responses may have clinical implications for the use of skin test-based dia
150 ering and robust suppressor function and has clinical implications for the use of Tregs as cellular t
151 in a new era of understanding with potential clinical implications for those who suffer with IBM.
152 isms underlying walking adaptation, and have clinical implications for treating walking impairments a
153 pendent of the hematopoietic lineage and has clinical implications for treatment of osteopetrosis.
156 scles synergies, and may also have important clinical implications for understanding movement dysfunc
157 on of functional brain networks and may have clinical implications for understanding the actions of a
158 scular function in humans may have important clinical implications for understanding the mechanisms u
160 rcuitry in vivo in humans may have important clinical implications given the comorbidity between majo
162 king viral antigens (P < .001) has important clinical implications, implicitly linked to the immunosu
163 teps following HMPV entry and have important clinical implications.IMPORTANCE Human metapneumovirus (
166 the perioperative period will have important clinical implications in attenuating metastatic disease
167 bring new focus to SMOC2 by highlighting its clinical implications in both human and veterinary medic
168 and MAGEA1-FBXW7 interactions have potential clinical implications in breast and ovarian cancer treat
169 anism of action of B7-H1 in T cells and have clinical implications in cancer immunotherapy when anti-
172 L-6- and IL-10-producing monocytes, may have clinical implications in HIV-infected patients that are
173 sively detected myocardial fibrosis (MF) has clinical implications in hypertrophic cardiomyopathy, th
174 rmal serotonergic synapse may have important clinical implications in sensory dysfunctions, such as t
176 ns for cancer initiation and progression and clinical implications in the context of prolonged immuno
177 ion of liver fibrosis, this finding has many clinical implications in the etiology, prognosis and tre
178 borate these findings, they may have further clinical implications in the laboratory workup of uveiti
179 er, the results of this study have potential clinical implications in the prevention of AKI in at-ris
182 esearch suggests that this heterogeneity has clinical implications, in silico determination of the cl
183 breast cancer subtypes is proposed, and the clinical implications include a need for combinatorial t
186 tanding of human CSF flux and open important clinical implications, including concepts for drug deliv
189 rding food IgE sensitization is novel, and a clinical implication might be that even food sensitizati
190 lial barrier, a role that may have important clinical implications not only for digestive diseases, s
191 iated with activation of HSP72 has potential clinical implications not only for type 2 diabetes but a
192 s the EMT and metastasis of NPC cells, and a clinical implication of EBV-miR-BART7-3p as a potential
194 ements, our study has expanded the potential clinical implication of SD-OCT in evaluation of a variet
197 purpose of this study is to investigate the clinical implication of these markers in clinical-radiol
198 R, and ascertain factors associated with and clinical implications of a lack of improvement in exerci
199 iation on the intestinal microbiota, and the clinical implications of a modified microbial balance af
203 cell transplantation (HCT) to determine the clinical implications of donor-recipient HLA matching.
204 ders to reference in order to understand the clinical implications of each patient's genetic makeup.
205 monitoring and its level of evidence or the clinical implications of early detection of serious diso
207 spective presents these current concepts and clinical implications of epigenetic ITH, and the experim
208 uncertainty in key parameters (including the clinical implications of false-negative results), the ex
212 uld stimulate a careful re-evaluation of the clinical implications of HPV mutation rates, transmissio
213 To determine the proportion and potential clinical implications of inherited variants detected usi
217 ticle by Tayari et al that suggests studying clinical implications of long noncoding RNAs as possible
219 sms of mTOR in autophagy regulation, and the clinical implications of mTOR inhibitors in disease trea
220 pe study may be justified to investigate the clinical implications of multiple crypts, especially if
231 HBsAg and HBsAb positivity, and analyse the clinical implications of possible mutations in rt and HB
232 address the experimental, translational, and clinical implications of proteomics as applied to cardio
234 ore investigation is necessary, examines the clinical implications of randomized and observational cl
235 c processes, key findings in this specialty, clinical implications of research, and methodological is
237 g different MDRO species, with the potential clinical implications of such interactions remaining lar
240 onal, and clinical scientists to address the clinical implications of the AGI, with a particular emph
241 eries examines the biological mechanisms and clinical implications of the cascade of events caused by
246 There are significant differences in use and clinical implications of the test on the basis of race,
261 iated with normal healing and we discuss the clinical implications of this hypothesised treatment.
262 c definition of chronic pain and discuss the clinical implications of this new definition as well as
263 rimentally confirmed at 7 Tesla (T), and the clinical implications of this new paradigm are illustrat
264 e prevalence, natural history, and potential clinical implications of this nonfamilial subgroup of HC
268 the underlying molecular mechanisms and the clinical implications of this pharmacogenetic associatio
270 damental principles, recent discoveries, and clinical implications of this promising field of researc
275 sed the incidence, potential predictors, and clinical implications of THV thrombosis as determined by
277 tiple tumor types, and discuss the potential clinical implications of tumor clonal heterogeneity.
278 healthy controls and investigated long-term clinical implications of vitamin B-6 deficiency in stabl
279 d encourage shared decision making about the clinical implications of whether to pursue transplantati
280 by homologous recombination and the possible clinical implication on malignant melanoma therapy with
281 ebral amyloid angiopathy (CAA) has important clinical implications, our understanding of it and abili
283 s-initiated herpesvirus replication may have clinical implications, particularly for herpesviruses th
284 in vitro and in vivo, thus raising profound clinical implications, particularly with respect to canc
287 n of the inflammatory response has important clinical implications regarding fluid resuscitation and
288 ation and functions of hDBR1, with immediate clinical implications regarding the regulation of hDBR1
289 standing of their regulation has progressed; clinical implications remain at a preliminary stage.
291 ough tumor-associated B cells with important clinical implications.Resistance to BRAFV600E inhibitors
293 ulmonary disease (COPD) and it has important clinical implications, such as reduced exercise toleranc
294 ntributes to the pathogenesis of ACS and the clinical implications that arise from these new pathogen
295 persistent pain, the present findings offer clinical implications that may serve to guide future stu
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