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1 all areas that have fenestrated capillaries (circumventricular organs).
2 chlear interdental cells, and neurons of the circumventricular organ.
3 asculosum of the lamina terminalis (OVLT), a circumventricular organ.
4 ice revealed the presence of the drug in the circumventricular organs.
5 s of the hypothalamus, preoptic nucleus, and circumventricular organs.
6 GAL-ir was also observed in several circumventricular organs.
7 is the primary glutamate transporter in the circumventricular organs.
8 n COX 2 mRNA expression were not observed in circumventricular organs.
9 lations containing high levels of ANP and in circumventricular organs.
10 vous system, predominantly gaining access at circumventricular organs.
11 zed in microglia enriched within the sensory circumventricular organs.
13 brain in the meninges, ventricular ependyma, circumventricular organs, along the vasculature, and in
15 eins, IgG immunoreactivity extended from the circumventricular organs and disseminated throughout the
16 e results suggest that activity in forebrain circumventricular organs and in hindbrain putative body
17 the RVLM via a neural connection between the circumventricular organs and paraventricular nucleus of
18 ir cells and/or fibers were also observed in circumventricular organs, and OCT3-ir ependymal cells we
19 ion and activated microglia: proximal to the circumventricular organs at the interface between the br
20 reduced calcineurin activity in the PVN and circumventricular organs, but not rostral ventrolateral
21 at the level of the median eminence (ME), a circumventricular organ (CVO) located in the tuberal reg
22 d the area postrema (AP), two of the sensory circumventricular organs (CVO), are known to play a role
23 , but not in the leaky microvessels of brain circumventricular organs (CVO), or in those of non-CNS t
24 adjacent to fenestrated blood vessels of the circumventricular organs (CVOs) and olfactory epithelium
25 were found in the large blood vessels and in circumventricular organs (CVOs) of saline-injected contr
26 Current hypotheses for osmolality sensors in circumventricular organs (CVOs) of the brain focus on me
27 across the zebrafish choroid plexuses (CPs), circumventricular organs (CVOs), and retinal choroid, an
28 ly in neurons but also in glia located in 10 circumventricular organs (CVOs), olfactory bulbs, hippoc
30 ons by autoradiography except for a group of circumventricular organs (CVOs), which are anatomically
33 e observed that specific areas of the brain (circumventricular organs [CVOs]) consistently showed the
36 altered BBB permeability - for example, into circumventricular organs in the brain or leaky vasculatu
38 y activated ion channel that is expressed in circumventricular organs in the mammalian CNS, which is
39 ied many novel transcripts expressed in this circumventricular organ including receptors for many of
40 tor immunoreactivity was also present in the circumventricular organs including choroid plexus, subfo
41 are readily detected in the proximity to the circumventricular organs, including the lateral and 3(rd
42 g Na(+) channel, whose expression in sensory circumventricular organs is essential to maintain homeos
43 ubfornical organ (SFO), one of the forebrain circumventricular organs, is critical for the hormonal r
44 juxtaposition to the median eminence (ME), a circumventricular organ lacking a blood-brain barrier an
45 he central actions of angiotensin II via the circumventricular organs lead to activation of circulati
47 widespread areas of the brain, although the circumventricular organs may be the most effective loci
48 , the channel is expressed in neurons of the circumventricular organs, neurosensory cells responsive
49 focused on the lateral septal organ (LSO), a circumventricular organ of potential significance in avi
50 cident with detection of the molecule in the circumventricular organs of the brain and activation of
51 ibution of GLAST and GLT-1 expression in the circumventricular organs of the brain, in the meninges,
52 iously, it was shown that neurons in several circumventricular organs of the hypothalamus are activat
54 on, PGE2 injection did not induce Fos in the circumventricular organs or the magnocellular subnuclei
58 re the BBB is 'leaky', i.e. in the 'sensory' circumventricular organs, particularly the organum vascu
61 um laminae terminalis (OVLT) are two sensory circumventricular organs (sCVOs) that play key roles in
63 a, amygdala, nucleus tractus solitarius, and circumventricular organs such as subfornical organ, medi
65 afferent input from the subfornical organ, a circumventricular organ that has been shown to be necess
66 the hypothalamus and in the ependyma and the circumventricular organs that act as an interface betwee
68 ompare the mouse median eminence, one of the circumventricular organs that has naturally leaky blood
69 centrate on the same homeostatic neurons and circumventricular organs that monitor the composition of
70 markedly reduced expression of c-FOS in the circumventricular organ, the organum vasculosum of the l
71 (IL-1R1) signaling within BBB-devoid sensory circumventricular organ, the subfornical organ (SFO) in
74 iginates from hypoactivity of neurons in the circumventricular organs, which exhibit marked functiona
75 pothesis that the subfornical organ (SFO), a circumventricular organ with both osmosensitive elements