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1 zheimer's disease: inseparable partners in a multifactorial disease.
2 wn about the mechanisms driving this complex multifactorial disease.
3 ebral disc (IVD) disease (IDD) is a complex, multifactorial disease.
4 ence for the role of rare variants in common multifactorial disease.
5 enomic variants underlying susceptibility to multifactorial disease.
6 s to compute the probability of developing a multifactorial disease.
7 interaction associated with a common complex multifactorial disease.
8 opathic calcium oxalate stone formation is a multifactorial disease.
9 d be used to address the polygenic nature of multifactorial diseases.
10 orn errors of metabolism and the more common multifactorial diseases.
11 etic variants involved in complex traits and multifactorial diseases.
12 ic disease or are incriminated in polygenic, multifactorial diseases.
13 genetic variants associated with the risk of multifactorial diseases.
14 ogenesis, evolution, and outcomes of complex multifactorial diseases.
15 genetic architecture of other oligogenic and multifactorial diseases.
16 estation of complex traits including common, multifactorial diseases.
17 al validity of predictive testing for common multifactorial diseases.
18 t be more effective in the treatment of such multifactorial diseases.
19 ists will be resolving complex polygenic and multifactorial diseases.
20 to achieve improved therapeutic efficacy in multifactorial diseases.
21 only rare genetic disorders but also complex multifactorial diseases.
22 ith preserved ejection fraction (HFpEF) is a multifactorial disease accounting for a large and increa
26 agenome; and the role of such viral flora in multifactorial diseases and also, possibly, in health.
27 ls, allow us to dissect the genetic basis of multifactorial diseases and to determine the most suitab
31 etics and candidate modifier genes in PXE, a multifactorial disease at the genome-environment interfa
32 l DNA (mtDNA) has been linked to a number of multifactorial diseases, but there is currently no tool
44 of allergic diseases and asthma, as complex, multifactorial diseases driven by interactions between t
45 ty during homeostasis and in certain complex multifactorial diseases (e.g. cancer and autoimmune cond
49 mining the genetic bases of the more common "multifactorial" diseases, however, presents a major chal
50 lated macular degeneration (AMD) is a common multifactorial disease in the elderly with a prominent g
55 monogenic neurological disorders and complex multifactorial diseases, including Alzheimer's disease.
57 naling family is a key player in genetic and multifactorial diseases, including hereditary hemorrhagi
58 apply this approach to venous thrombosis, a multifactorial disease influenced by multiple genetic an
61 though the complexity inherent to polygenic, multifactorial diseases is challenging, several new insi
62 We argue that disease prediction for common multifactorial diseases is greatly improved by consideri
64 directed combination therapies in addressing multifactorial diseases like AD and lay the groundwork f
69 mouse model for the inflammation-associated multifactorial disease of allogeneic bone marrow transpl
73 s to unravel complex genetic traits, such as multifactorial disease or drug response, over the next f
76 Chronic rhinosinusitis (CRS) is a prevalent multifactorial disease process in which bacteria are bel
80 in drug discovery owing to the complexity of multifactorial diseases such as cancer, inflammation, or
83 understand multiple layers of a complex and multifactorial disease, such as allergy, or asthma by in
84 lures of target-specific drug candidates for multifactorial diseases, such as Alzheimer's disease (AD
86 of sizable magnitude, whereas in many common multifactorial diseases, such as diabetes, obesity, and
90 ated macular degeneration (AMD) is a complex multifactorial disease that affects the central region o
92 Periodontitis is a chronic inflammatory and multifactorial disease that affects the periodontal stru
94 mellitus (T2DM) is an increasingly prevalent multifactorial disease that has both genetic and environ
96 logic risk factor for osteoarthritis (OA), a multifactorial disease that is characterized by articula
99 searchers mistakenly consider caries to be a multifactorial disease; they also concentrate mainly on
101 the progression or the development of these multifactorial diseases through diet is an emerging and
102 st genome-wide methylation studies (EWAS) of multifactorial disease traits use targeted arrays or enr
103 FD is a means for simplifying the search for multifactorial disease triggers, and may be helpful in p
104 e genetic tests improves the prediction of a multifactorial disease, we compute likelihood ratios by
108 ation of true genetic associations in common multifactorial disease will require studies comprising t
109 Idiopathic Skeletal Hyperostosis (IDHS) is a multifactorial disease with a high prevalence and that i
111 led novel loci for type 1 diabetes, a common multifactorial disease with a strong genetic component.
114 Age-related macular degeneration (AMD) is a multifactorial disease with genetic and environmental fa
116 et's disease is generally considered to be a multifactorial disease with important genetic and enviro
118 oping review found that Meniere disease is a multifactorial disease with lifelong comorbidities and l
120 ary arterial hypertension (PAH) is a complex multifactorial disease with poor prognosis characterized
123 Age-related macular degeneration (AMD), a multifactorial disease with variable phenotypic presenta