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1 reducing the number of devices inserted into subcutaneous tissue.
2 onic granulomatous infection of the skin and subcutaneous tissue.
3 pared to placement over the thigh muscle and subcutaneous tissue.
4 ading to a chronic infection in the skin and subcutaneous tissue.
5 promote pathogen expansion in the dermis and subcutaneous tissue.
6 that spans the distance between the bone and subcutaneous tissue.
7  in human and murine FBR compared to control subcutaneous tissue.
8 , although lower ceramide concentrations, in subcutaneous tissue.
9  involving the dermis and often extending to subcutaneous tissue.
10         Nine patients had lesions limited to subcutaneous tissue.
11 with microdialysis probes implanted into the subcutaneous tissue.
12 nique to extract interstitial fluid from the subcutaneous tissue.
13 tial space within striatum and in peripheral subcutaneous tissue.
14 nervous system and sense organs and skin and subcutaneous tissue.
15 itis and lipodystrophy are rare disorders of subcutaneous tissue.
16 ted into brachoradialis muscle and overlying subcutaneous tissue.
17  microsphere+ macrophages, which remained in subcutaneous tissue.
18 lesion revealed bacteria throughout inflamed subcutaneous tissue.
19 ich were capable of noncovalent anchoring to subcutaneous tissues.
20 liver, lymph nodes, brain, and cutaneous and subcutaneous tissues.
21 o observed in lymph nodes, thymus, skin, and subcutaneous tissues.
22 ain compared with tumor vessels derived from subcutaneous tissues.
23 nesis and microcirculation compared with the subcutaneous tissues.
24  pullout force than increased penetration of subcutaneous tissue; 2) that both pullout force and subc
25 fter the insulin injection was different for subcutaneous tissue (3.9 +/- 1.3 mg.dl-1.min-1) and bloo
26       The first involves higher adiposity in subcutaneous tissues (abdomen and thigh), lower liver fa
27 igh, kidney, and liver volumes and abdominal subcutaneous tissue, although differences did not reach
28 se in MCK/L0 mice but TG acyl composition in subcutaneous tissue and BAT reverted to that of WT.
29  Scintigraphy revealed abnormal hot spots in subcutaneous tissue and diaphragmatic pleura of the left
30 gle-cell-level neutrophil behaviour in mouse subcutaneous tissue and ischaemic stroke model.
31 -filled wound compartment formed, bounded by subcutaneous tissue and omentum.
32 B was mainly localized at the injection site subcutaneous tissue and plasma, with no detectable conce
33 to examine the anatomy and dimensions of the subcutaneous tissue and wound compartment.
34 n leading to thickening of the dermis and/or subcutaneous tissues and may cause significant morbidity
35              The ossification is confined to subcutaneous tissues and so resembles the ossification o
36  gonadal adipose tissue (GAT), 90 and 80% in subcutaneous tissue, and 84 and 85% in brown adipose tis
37 ontent (67, 80, 88 and 96%) to represent the subcutaneous tissue, and a type of ballistic gelatine, P
38 nd severity of STIR MRI changes in the skin, subcutaneous tissue, and fascia were not predicted by mo
39           Edema or inflammation in the skin, subcutaneous tissue, and fascia, found on STIR MRI, is c
40 l organs (P = .03), and involvement of skin, subcutaneous tissue, and muscle (P = .002) were also ass
41 in submucosal areas) and, in comparison with subcutaneous tissue, are less likely to give rise to ana
42 /-) mice revealed mineralization in skin and subcutaneous tissue as well as in the kidneys.
43 e as a surrogate for polyelectrolytes in the subcutaneous tissue, assessing the potential role of ele
44      Review of 186 serial allograft skin and subcutaneous tissue biopsies revealed that tertiary foll
45 d (1) superficial wound infection (involving subcutaneous tissue but not extending down to sternal fi
46 in OK) was incubated for 2 and 6 h in bovine subcutaneous tissue chambers in vivo, and ovine strain 8
47   We demonstrate that adult Loa loa worms in subcutaneous tissues, circulating microfilariae (mf) and
48             The overgrowth can involve skin, subcutaneous tissue, connective tissue (including bone),
49 e effects, such as delayed wound healing and subcutaneous tissue damage, in patients with extremity s
50 ted in 41 (63%) patients, including skin and subcutaneous tissue disorders (11 patients, 17%), neutro
51 (39 [15%] vs 69 [27%]; p=0.002), and skin or subcutaneous tissue disorders (86 [33%] vs 110 [42%]; p=
52 ith semaglutide, and others such as skin and subcutaneous tissue disorders (eg, rash, pruritus, and u
53 patients), infections (eight [5%]), and skin-subcutaneous tissue disorders (eight [5%]).
54 verse events (AEs) included nausea, skin and subcutaneous tissue disorders (SSTD), diarrhea, and fati
55 se were mostly (81 [85%]) grade 1-2 skin and subcutaneous tissue disorders.
56 superficial subcutaneous tissue (sSAT), deep subcutaneous tissue (dSAT), and internal adipose tissue
57 port within human tissue matrices, e.g., the subcutaneous tissue, exhibits some resemblance to chroma
58 eck measurements, slower lymphatic drainage, subcutaneous tissue expansion, increased fibrosis, and i
59 Syngeneic transplantation of rat islets into subcutaneous tissue failed to cure streptozocin diabetes
60 is, more serious infections extending to the subcutaneous tissue, fascia, or muscle require complex m
61 he dermis, the fibrotic process affected the subcutaneous tissue, fascia, striated muscles, lungs, an
62 FD affects not only the dermis, but also the subcutaneous tissues, fascia, and other organs, includin
63 pellets also integrated into the surrounding subcutaneous tissue following transplantation in mice as
64                           After 4 weeks, the subcutaneous tissues from TRIP-1 overexpressing cells sh
65 n had adverse events, affecting the skin and subcutaneous tissues, gastrointestinal system, and gener
66  in liver, 37 in bone, and 4 in other sites (subcutaneous tissue, heart, brain, and pancreas).
67 erent organs/systems, especially in skin and subcutaneous tissue, immune system and musculoskeletal a
68 delivery, we therefore assessed the depth of subcutaneous tissue in a population of patients with ana
69 C-MSC sheets easily graft spontaneously onto subcutaneous tissue in immune-deficient mice within 10 m
70 ding diffusive transport in solid tumors and subcutaneous tissue in mice.
71 regulatory T cells causes a dysregulation of subcutaneous tissue in mouse skin.
72 ustom-made implants which were inserted into subcutaneous tissues in rats.
73 n adipose tissue, higher in visceral than in subcutaneous tissue, increased in obesity, and further i
74             The degree of injury to skin and subcutaneous tissue increases with dose.
75 howed significantly higher risks of skin and subcutaneous tissue infection (HR = 1.35, 95% CI = 1.07-
76  frequently associated with brain, skin, and subcutaneous tissue infections than were other Nocardia
77  It is characterized by extensive dermal and subcutaneous tissue invasion and by frequent disseminati
78 insidious onset of massive induration of the subcutaneous tissue involving the limbs, trunk, or butto
79                                              Subcutaneous tissue is a promising site for islet transp
80 ation (p=0.08), and 5-year risk of grade 2-3 subcutaneous tissue late side-effects was 7.6% versus 6.
81 ences in acute or chronic morbidity in skin, subcutaneous tissue, lung, or bone.
82 physical and physiological properties of the subcutaneous tissue may play a crucial role in determini
83 ed multiple hypermetabolic lesions involving subcutaneous tissue, muscle osseous structures, and bone
84 nilateral facial atrophy affecting the skin, subcutaneous tissue, muscles, and sometimes extending to
85  oxygenation distribution between muscle and subcutaneous tissues occur in patients with severe sepsi
86          Tracheal allograft rejection in the subcutaneous tissue occurs in a delayed manner without S
87 small intestine isografts implanted into the subcutaneous tissue of adult recipients, apolipoprotein
88 ty assays, cells were inoculated into dorsal subcutaneous tissue of athymic nude mice.
89 a presenting with prominent xanthomas in the subcutaneous tissue of both elbows who was receiving tre
90     Macroporous scaffolds were placed in the subcutaneous tissue of diabetic male Lewis rats for 7 or
91 g nodules when inoculated into the abdominal subcutaneous tissue of nude mice.
92 (PVA) or polyglycolic acid (PGA) polymers in subcutaneous tissue of streptozocin-diabetic mice either
93 oneal cavity and compared with 800 islets in subcutaneous tissue of streptozocin-diabetic mice.
94 odular lesions in the ears and a lump in the subcutaneous tissue of the left arm.
95                     Injection of SP into the subcutaneous tissue of the third hind toe results in beh
96 adenocarcinoma cells were implanted into the subcutaneous tissues of the flank of 11 rats.
97 nology effectively delivered calcitriol into subcutaneous tissues, offering rapid symptom relief.
98     These data demonstrate the importance of subcutaneous tissue on microneedle performance and the n
99 esence of calcium deposition in the skin and subcutaneous tissues on physical examination.
100 ritoneum, gluteal muscle, inguinal mass, and subcutaneous tissues on the back.
101 rom inflammation and fibrosis of the dermis, subcutaneous tissue, or fascia, leading to significant f
102 A one-time dose of LPS was injected into the subcutaneous tissue overlying calvaria of mice lacking I
103 romonas gingivalis LPS was injected into the subcutaneous tissues overlying mouse calvariae.
104 reparations of these microorganisms into the subcutaneous tissues overlying the calvaria of normal mi
105 ly, mean +/- sem, p <.05), although baseline subcutaneous tissue oxygenation did not vary between gro
106 e at presentation (P = .05), invasion beyond subcutaneous tissues (P = .009), perineural invasion (P
107 litis is an infection of the deep dermis and subcutaneous tissue, presenting with expanding erythema,
108 ay (2.68 +/- 0.75 vs. 1.8 +/- 0.21; tumor-to-subcutaneous tissue [ratio of specific activities], resp
109                        It is an infection of subcutaneous tissues resulting in mass and sinus formati
110  the intraperitoneal site, and 0 of 7 in the subcutaneous tissue site achieved normoglycemia.
111                        Abdominal superficial subcutaneous tissue (sSAT), deep subcutaneous tissue (dS
112 es continuous, depth-sensitive estimation of subcutaneous tissue stiffness through real-time surface
113  reduction in free fluid availability in the subcutaneous tissue surrounding the implant as compared
114 nked foam displays higher compatibility with subcutaneous tissues than the widely used biomaterial-po
115  abdominal circumference and area, abdominal subcutaneous tissue thickness, fractional thigh and arm
116 rst trimester was associated with larger arm subcutaneous tissue thickness.
117  each patient and tunneling them through the subcutaneous tissue to exit from opposite lower abdomina
118 rocedures influence the response of skin and subcutaneous tissues to subsequent procedures.
119 Pa for groups C, B, and S, respectively) and subcutaneous tissue (to 2.0 +/- 0.3, 1.7 +/- 0.5, and 2.
120 neous tissue; 2) that both pullout force and subcutaneous tissue volume were increased by needle rota
121                       Sample collection from subcutaneous tissue was safe, well tolerated, and allowe
122                                    Abdominal subcutaneous tissue was used for staining, quantitative
123 levels of multiple metabolic analytes in the subcutaneous tissue were monitored continuously using su
124 cted tropical disease caused by infection of subcutaneous tissue with Mycobacterium ulcerans.
125  periodic architectural order was present in subcutaneous tissue with rotation, compared with no rota
126 or (C1-INH), leads to unpredictable edema of subcutaneous tissues with potentially fatal complication

 
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