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1 ere randomized to receive bolus injection of intracarotid (3-5 mg) or intravenous (10-20 mg) 1% propo
2 s, activation of carotid chemoreceptors with intracarotid administration of 100 nmol sodium cyanide r
3 -1 (HO-1) was studied in the rat brain after intracarotid administration of hyperosmolar mannitol.
4 rent oHSV variants (MSC-oHSV) and found that intracarotid administration of MSC-oHSV, but not of puri
5                                              Intracarotid administration of NAC resulted in high deli
6  reduce cellular glutathione levels prior to intracarotid alkylator administration.
7 out interfering with the CNS cytotoxicity of intracarotid alkylators, even after BSO depletion of CNS
8 al confrontational naming activation with an intracarotid amobarbital (Amytal) injection procedure (I
9           Language lateralization testing by intracarotid amobarbital injection showed no evidence of
10 aging can become a viable alternative to the intracarotid amobarbital procedure (IAP), the current go
11 ion and BRS before and during left and right intracarotid amobarbital procedure (IAP).
12 e focal epilepsies against the results of an intracarotid amobarbital procedure (IAP).
13                Functional MRI (fMRI) and the intracarotid amobarbital test (IAT) are generally congru
14 had bilateral language representation by the intracarotid amobarbital test.
15                                              Intracarotid amobarbital testing (IAT) is currently the
16           Memory profiles were obtained from intracarotid amobarbital testing and non-invasive verbal
17  significantly with memory lateralization by intracarotid amobarbital testing.
18 antly reduced declarative memory capacities (intracarotid amobarbital testing: P < 0.001; verbal memo
19 ing form intracranial electrodes, use of the intracarotid amobarbitol perfusion test, and the role of
20 xplored as alternatives to the more invasive intracarotid amytal procedure.
21     Many studies have compared fMRI with the intracarotid amytal test for establishing language domin
22 itive mapping and may be able to replace the intracarotid amytal test for language and memory lateral
23                                              Intracarotid arterial hyperosmolar mannitol (ICAHM) bloo
24 tes of administration, such as craniotomy or intracarotid arterial infusion of noxious agents causing
25 ments were undertaken to investigate whether intracarotid arterial injection of CsA reduces brain dam
26          A recent study showed that a single intracarotid arterial injection of cyclosporin A (CsA) c
27 al FMT signal was disrupted after unilateral intracarotid artery (ICA) MPTP infusion which reduced ip
28 C6 tumors were significantly increased after intracarotid bradykinin infusion (2.8- and 2.2-fold, res
29 sed permeability across the BTB, compared to intracarotid bradykinin infusion alone.
30  in tumors and normal brain, with or without intracarotid bradykinin infusion, using RIA.
31                                              Intracarotid cold saline infusion (ICSI) is potentially
32 ing responses of the carotid sinus nerves to intracarotid cyanide.
33                                              Intracarotid fluorescein isothiocyanate-BSA infusion was
34 vate their sympathetic nervous system during intracarotid glucose infusion but their brains are gener
35                                    Here, 1 h intracarotid glucose infusions (4 mg/kg/min) selectively
36 lar infusions of mannitol, 60 min unilateral intracarotid glucose infusions at 4 mg/kg/min in awake r
37                                              Intracarotid glucose infusions stimulated c-fos expressi
38 lucose and the insulin secretory response to intracarotid glucose injection are blunted in TRPC3-defi
39 out 10% of PVN neurons with FLI activated by intracarotid glucose.
40 PA administration were used: i.p. injection, intracarotid (i.c.) injection [with and without blood-br
41 apture therapy could be enhanced by means of intracarotid (i.c.) injection of sodium borocaptate (BSH
42                   However, when given by the intracarotid (i.c.) route after only 5 min of recirculat
43 changes in tissue NADH concentrations, after intracarotid (IC) infusion of equal volumes of normal sa
44                          A single unilateral intracarotid infusion of 1-methyl-4-phenyl-1,2,3,6-tetra
45                                              Intracarotid infusion of ALD-401 does not lead to clinic
46 7 days after stroke followed 2 days later by intracarotid infusion of ALD-401 versus sham harvest and
47 n brain tumor microvessel permeability after intracarotid infusion of bradykinin in the RG2 rat gliom
48                                              Intracarotid infusion of bradykinin selectively increase
49                                              Intracarotid infusion of bradykinin selectively increase
50                                              Intracarotid infusion of bradykinin selectively increase
51                                  The coupled intracarotid infusion of mannitol and CsA (10 mg/kg) was
52  mg/kg i.v.), administered following rostral intracarotid infusion of mannitol to disrupt the blood-b
53 ded before and for 4 hours after a 20-minute intracarotid infusion of PACAP-38 (1 ug/ml/kg, 10 ug/ml/
54 ucose were more variable and widespread than intracarotid infusions.
55  neurons displayed an increased discharge to intracarotid injection of both hypertonic NaCl and AngII
56 in vivo single-unit recordings revealed that intracarotid injection of hypertonic NaCl produced a con
57 a nigra of monkeys 4 days after a unilateral intracarotid injection of N-methyl-4-phenyl-1,2,3,6-tetr
58 mma-MSH (1.25 nmol) are not inhibited by the intracarotid injection of SHU9119 (1.25-12.5 nmol) or th
59 ent-derived brain metastases via an improved intracarotid injection protocol that permits tumor cell
60  in unlesioned and MPTP-lesioned (unilateral intracarotid injection) rhesus monkeys following an intr
61                                 In contrast, intracarotid injections of fibroblasts or U87 glioma cel
62 yes of isoflurane-anesthetized piglets using intracarotid injections of sodium fluorescein.
63                                              Intracarotid low dose bradykinin infusion can selectivel
64 avenous CsA dose, or by osmotic opening with intracarotid mannitol.
65 ce bearing intracranial xenografts and in an intracarotid mouse model of multiple brain metastases.
66                                              Intracarotid or intracerebroventricular infusion of hype
67                                     However, intracarotid perfusion of insulin induced the phosphoryl
68                         Using brain cerebral intracarotid perfusion, we found that the transport rate
69 f 13 computed tomography angiography derived intracarotid plaque subcomponents (eg, lipid, intraplaqu
70 inistered at the time of reperfusion via the intracarotid route to maximize their localization in the
71 ffects, which are much more pronounced after intracarotid than after intravenous administration.