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1 pheral nerve-extrafascicular tissue barrier (perineurium).
2 perineurial glia (analogous to the mammalian perineurium).
3 thelial cells, vascular smooth muscle cells, perineurium).
4 nating Schwann cells and organization of the perineurium.
5 r than that previously reported for the frog perineurium.
6 ning by chemical modulators than is the frog perineurium.
7 l cells lining the blood vessels, and by the perineurium.
8 organization of the endoneurium but not the perineurium.
9 Unlike Dhh nulls, Gli1 nulls have a normal perineurium.
10 in the endoneurium and are surrounded by the perineurium, a cellular sheath comprised of layers of pe
11 ne in CAP amplitude, consistent with a leaky perineurium allowing K+ entry and axonal depolarisation.
13 transition zones and distributes through the perineurium and endoneurium, with ultimate delivery to a
14 racellular matrix, including collagen of the perineurium and epineurium consistent with thermal injur
15 ormation on the K+ permeability of the nerve perineurium and its modulation by experimental treatment
20 function and regulation of claudin-1 in the perineurium as the major sealing component, which could
22 anum was observed in the outer layers of the perineurium, but was not seen to penetrate the endoneuri
25 ensheathment and variations of the endo- and perineurium formed by olfactory nerve fibroblasts are de
26 The calculations showed that the undamaged perineurium had a PK of < 6.3 x 10(-7) cm.s-1, similar t
29 mmalian nerve, and suggests that the opossum perineurium is more resistant to tight junction opening
30 d throughout the three meningeal layers, the perineurium of cranial nerves, and meningeal projections
32 ward the jugular fossa, lamina cribrosa, and perineurium of the cranial nerves to enter the cervical
34 asure the potassium permeability (PK) of the perineurium of the sciatic nerve of frogs Rana temporari
38 used to assess the K(+) permeability of the perineurium, since a change in DC potential (DeltaDC) un
39 as used to assess the K+ permeability of the perineurium, since change in DC potential under these co
40 sociated cells, barrier-forming cells of the perineurium surrounding and protecting nerve fascicles,
43 eaching the axon surface, and hence that the perineurium was exerting a diffusional restriction on K+
44 ctive tissues (pia-arachnoid and endoneurium-perineurium) was also found in the copepod CNS and PNS.
46 een given to another cellular structure, the perineurium, which ensheaths the motor nerve, forming a
47 sing analgesic drugs is often impeded by the perineurium, which functions as a diffusion barrier attr
48 olved nerve in a macrodactylous digit is the perineurium, with additional secondary effects on the ax