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1 oughout the epithelia of the respiratory and alimentary tract.
2 ted into the dynamic microenvironment of the alimentary tract.
3 ll as influence on physiology outside of the alimentary tract.
4  cells of the kidney, respiratory tract, and alimentary tract.
5 long the vertical and horizontal axes of the alimentary tract.
6 g those found on the mucosal surfaces of the alimentary tract.
7  normal growth and development of the infant alimentary tract.
8 sed NGF content in the hyperplastic diabetic alimentary tract.
9  the epithelial cells of the rat and porcine alimentary tract.
10  role of beta-CGRP in the homeostasis of the alimentary tract.
11 ze the urethra and partition the urinary and alimentary tracts.
12 as 398, distributed as follows: abdomen 102, alimentary tract 63, breast 54, endoscopic 51, vascular
13 lerance to many antigens flowing in from the alimentary tract, a tolerance that likely makes the live
14 ns is a component of the normal flora of the alimentary tract and also is found on the mucocutaneous
15 o organisms that abound and replicate in our alimentary tract and cover our skin and the mucosa linin
16 11 supports mucous membrane integrity of the alimentary tract and decreases the systemic inflammatory
17 ar more breast operations and fewer abdomen, alimentary tract and laparoscopic procedures compared to
18 ifying at 10 years performed more abdominal, alimentary tract and laparoscopic procedures compared to
19 d potentially act as signal molecules in the alimentary tract and may explain, at least partly, the p
20 cans, a component of the normal flora of the alimentary tract and mucocutaneous membranes, is the lea
21 n has been shown to alkalinize the pH of the alimentary tract and potentially augment pancreatic enzy
22 olonizing the mucosa lining our orifices and alimentary tract and proliferating in fluids and cells w
23  to the different environments of a sand fly alimentary tract and the acidic mammalian host cell phag
24 ertain epithelial cells throughout the human alimentary tract and to have a unique localization in th
25 iary Association, Society for Surgery of the Alimentary Tract, and European Association for Endoscopi
26 e endoscopic procedures and fewer abdominal, alimentary tract, and laparoscopic procedures than urban
27 nses, decreased number of C. albicans in the alimentary tract, and reduced numbers of orogastric infe
28 ompass all such connections that involve the alimentary tract, and they can be congenital or acquired
29      The flies' bodies, the flies' dissected alimentary tracts, and excreta on the petri dishes were
30 lysaccharide utilization loci in three human alimentary tract-associated Bacteroidetes, expansions th
31  2009 in the European Pan-European Trials in Alimentary Tract Cancer (PETACC)-8 randomized phase 3 cl
32 es from the PETACC-3 (Pan-European Trails in Alimentary Tract Cancers) clinical trial were used to as
33 in contrast to adult mice, were resistant to alimentary tract colonization by Candida albicans for 5-
34                                              Alimentary tract colonization by VRE occurred commonly i
35 versely, nontransgenic control rats survived alimentary tract colonization with the Hly+ strain, and
36 Surgical Oncology/Society for Surgery of the Alimentary Tract consensus guidelines defined LA and bor
37                                          The alimentary tract contains a diffuse endocrine system com
38  a supercharged jejunal flap may reestablish alimentary tract continuity.
39 sympathetic ganglia innervating the diabetic alimentary tract coupled with intact receptor expression
40                     Helminths colonizing the alimentary tract dramatically increase the Treg activity
41                                              Alimentary tract duplications can present diagnostic and
42 s wild-type and mutant strains colonized the alimentary tracts equally well and were able to transloc
43 ention of virions in regions of the vector's alimentary tract from which they subsequently can be ege
44 s had no growth, whereas the contents of the alimentary tract grew expected flora.
45                                 Although the alimentary tract has been identified as the primary repl
46 igestion process simulated in the artificial alimentary tract, including the stomach, small intestine
47 lity of poliovirus to replicate in the mouse alimentary tract is not solely due to the absence of vir
48  has a specialized bamboo diet, to which its alimentary tract is poorly adapted.
49 r (GC), an aggressive malignant tumor of the alimentary tract, is a leading cause of cancer-related d
50 sorders of eyes, skin, ears, respiratory and alimentary tracts, kidneys, bones, and joints, and traum
51 axenic cockroaches (no microorganisms in the alimentary tract) lacked 12 major fecal VCAs, and 24 of
52 ng of how neural-cancer interactions promote alimentary tract neoplasia.
53 i (AGF, Neocallimastigomycota) reside in the alimentary tract of herbivores.
54 lly macrophages, of vertebrate hosts and the alimentary tract of sand fly vectors.
55 cording to their development site inside the alimentary tract of the sand fly insect vector.
56 nized and persisted, in pure culture, in the alimentary tracts of both mouse strains for the entire s
57    The numbers of C. albicans present in the alimentary tracts of euthymic bg/bg-nu/+ mice were signi
58                                          The alimentary tracts of germfree mice were colonized with C
59 i (AGF, Neocallimastigomycota) reside in the alimentary tracts of herbivores where they play a centra
60                                          The alimentary tracts of these orally immunized mice remaine
61 m the 1980s on, experience with this complex alimentary tract operation increased, and high-volume ce
62                      Epithelial cells of the alimentary tract play a central role in mucosal immunoph
63 indicate that absorption within the proximal alimentary tract precludes its delivery to the distal gu
64 ly regarded as benign dwellers of the insect alimentary tract, represent a relatively obscure group w
65 athologies including segmental distention of alimentary tract, retention of urine in renal pelvis, di
66                                       In the alimentary tract, stimulation of 5-HT4 receptors has a p
67 ated in various segments of canine abdominal alimentary tract (stomach, duodenum, small bowel, and co
68                              Diseases of the alimentary tract such as celiac disease, inflammatory bo
69 d the protein repertoire in cells lining the alimentary tract, the first line of defense.
70 ion of several organ responses including the alimentary tract, urinary bladder, heart and adrenal gla
71  breakdown during their transit in the human alimentary tract, which has been assumed to occur throug
72 This occurred only after colonization of the alimentary tract with normal gut microflora, which induc