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1 sentinel lymph node basin and delineated the lymphatic drainage.
2 urrently hampered by their fast clearance by lymphatic drainage.
3 ic cancer group because of this group's deep lymphatic drainage.
4 k using simpler models without blood flow or lymphatic drainage.
5 at particle translocation does not occur via lymphatic drainage.
6 IPY-cholesterol) was not altered by impaired lymphatic drainage.
7 or IL-7 as a potential autocrine mediator of lymphatic drainage.
8 location into lymphatic spaces and decreased lymphatic drainage.
9 ary fluid flux, interstitial fluid flow, and lymphatic drainage.
10 iogenic therapy in diseases lacking adequate lymphatic drainage.
11                          Because of impaired lymphatic drainage, aberrant mural cell coverage fostere
12                               Restoration of lymphatic drainage after injection of MSCs in a lymphede
13  and examine the purported mechanisms of CNS lymphatic drainage, along with how these may fit into es
14 mpression garments (control) or daily manual lymphatic drainage and bandaging followed by compression
15 olume will decrease by 0.3 mL/min because of lymphatic drainage and by 0.7 mL/min because of the tran
16 s greatly influenced by the kinetics of both lymphatic drainage and enzymatic inactivation.
17 demonstrated to observe discrete patterns of lymphatic drainage and identify individual lymphangions
18 is flares lessens inflammation by increasing lymphatic drainage and subsequent migration of cells and
19 at the initial spread of bacteria occurs via lymphatic drainage and that the acquired T-cell immune r
20 embers following a strict protocol to assess lymphatic drainage and the location and number of SLNs.
21             To identify the pattern of tumor lymphatic drainage and the SLN, lymphoscintigraphy has b
22                                  The role of lymphatic drainage and transport of exosomes is as yet u
23                          All patients showed lymphatic drainage, and in all cases at least 1 sentinel
24     Outcome measures included paw thickness, lymphatic drainage, and lymphatic vessel density as meas
25 vo and can explain impaired blood flow, poor lymphatic drainage, and suboptimal drug delivery previou
26 uid flow across the tumor capillary bed, the lymphatic drainage, and the IFP.
27 findings indicate that lymphangiogenesis and lymphatic drainage are reciprocally related to the sever
28  RA-treated animals had significantly faster lymphatic drainage as measured by indocyanine green clea
29                                         Weak lymphatic drainage at lymphoscintigraphy correlated with
30                                 Insufficient lymphatic drainage could thus exacerbate atherosclerosis
31 e lymphovenous valve morphogenesis, improper lymphatic drainage, defective lymphatic valve maturation
32 on therapy is associated with restoration of lymphatic drainage due to removal of obstructing nodal B
33 atic collaterals, which may provide adequate lymphatic drainage following surgery, thereby reducing t
34                          The results suggest lymphatic drainage for CNS immune responses may be favor
35 is defined as the first lymph node receiving lymphatic drainage from a tumor.
36                           Here, we show that lymphatic drainage from murine B16 melanomas in syngenei
37 mphatic vessels in joints and popliteal LNs, lymphatic drainage from paws to popliteal LNs, and the n
38          We first used 2 models of disrupted lymphatic drainage from skin--1 surgical and the other g
39 etter understanding the normal physiology of lymphatic drainage from the central nervous system and p
40                  There is a unique system of lymphatic drainage from the CNS to the peripheral lymph
41 isms involved in immune-cell trafficking and lymphatic drainage from the CNS, and we take into accoun
42 of VEGF-C/D trap, which also compromised the lymphatic drainage function.
43 sels in all tissues examined and in impaired lymphatic drainage in embryonic skin.
44 d for high-resolution tomographic studies of lymphatic drainage in preclinical disease models.
45 mic treatment with recombinant IL-7 enhanced lymphatic drainage in the skin of WT mice and of mice de
46 he epidermis of the cheek, a site that has a lymphatic drainage into the CLN, resulted in an IgG-domi
47                                              Lymphatic drainage mapping was performed, and lymph node
48           Thus, we suggest that steady-state lymphatic drainage may contribute to peripheral toleranc
49  mural cells and lymphatic vessels, improved lymphatic drainage of the lung, and prevented the attrac
50 ture, fatty tissue, fascial attachments, and lymphatic drainage of the orbital and periorbital region
51                                          The lymphatic drainage of the upper urinary tract is less pr
52                                          The lymphatic drainage of these inflammatory sites remains p
53 environment within LNs associated with tumor lymphatic drainage parallels remodeling seen in primary
54 se experiments thus define a highly specific lymphatic drainage pathway from the conjunctiva.
55                                          The lymphatic drainage pattern of ICG-(99m)Tc-nanocolloid is
56 hoscintigraphy showed features of an unusual lymphatic drainage pattern that most likely represented
57 to study the influence of their placement on lymphatic drainage pattern.
58 ch a tracer deposit is placed influences the lymphatic drainage pattern.
59 imary tumors may be a consequence of complex lymphatic drainage patterns in this region.
60  animal models that these agents can map the lymphatic drainage patterns within axillary nodes draini
61 ensitive, real-time detection and imaging of lymphatic drainage patterns, particle clearance rates, n
62 marily collapsed and tenuous suggesting that lymphatic drainage played a minimal role, and that the b
63                                              Lymphatic drainage plays a beneficial role in controllin
64                      These data suggest that lymphatic drainage plays more important roles in regulat
65                               This increased lymphatic drainage restored macrophage egress from infla
66 SN) detection in malignancies with different lymphatic drainage such as breast cancer, melanoma, and
67 long vessels is likely to substitute for the lymphatic drainage system in other organs.
68 al nervous system is the lack of a classical lymphatic drainage system.
69 ting of a defective vasculature and impaired lymphatic drainage that is associated with increased vas
70 es (LNs), yet the contribution of peripheral lymphatic drainage to adaptive immunity remains poorly u
71                                              Lymphatic drainage to multiple basins (MLBD) is frequent
72 nstrate that tumors initially signal via the lymphatic drainage to stimulate the preferential accumul
73        Here, we examined the contribution of lymphatic drainage to tumor inflammation and immunity us
74                                              Lymphatic drainage transports mycobacteria to abdominal
75  vessels (LVs) were abnormally organized and lymphatic drainage was compromised, transgenic overexpre
76                                              Lymphatic drainage was visualized in all 25 patients usi
77 the kidney and reach the renal lymph node by lymphatic drainage, where resident dendritic cells (DCs)
78  of unrecognized vunerable variations in arm lymphatic drainage within the axilla.

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