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1 l stimulation of the trigeminal ganglion and superior sagittal sinus.
2 ring and firing evoked by stimulation of the superior sagittal sinus.
3 ning along the borders of the transverse and superior sagittal sinuses.
4 hout SANS for all 3 venous sinus structures: superior sagittal sinus (13.40% [8.70% to 17.47%] vs -2.
5 el of craniovascular pain by stimulating the superior sagittal sinus and monitoring trigeminal neuron
6 dural venous sinus thrombosis involving the superior sagittal sinus and right transverse-sigmoid sin
7 meningeal lymphatic vessels (mLVs) along the superior sagittal sinus and sigmoid sinus, as well as a
8 ualization with color Doppler imaging of the superior sagittal sinus and transverse sinuses through t
9 ted cell firing evoked by stimulation of the superior sagittal sinus as well as the background activi
11 ts with a JCH except 1 had thrombosis of the superior sagittal sinus, compared to 49% of patients wit
12 rebrovascular reactivity was assessed in the superior sagittal sinus, evaluating the breath-hold inde
13 il, resulted in a dose-dependent recovery of superior sagittal sinus evoked trigeminocervical nucleus
14 , resulted in a dose-dependent inhibition of superior sagittal sinus evoked trigeminocervical nucleus
15 cat after (i) sham, (ii) stimulation of the superior sagittal sinus, (iii) stimulation of the superi
18 rding electrodes through the jugular vein to superior sagittal sinus is safe and feasible is unknown.
20 e PO2 and on venous oxygen saturation of the superior sagittal sinus (n = 5 rats per group); and 3) t
21 cell firing, elicited by stimulation of the superior sagittal sinus or by microiontophoretic applica
22 s that respond to noxious stimulation of the superior sagittal sinus or to ventrolateral PAG stimulat
25 luation and the semiautomated method for the superior sagittal sinus (rpb = 0.64; P = .02) and the ri
26 mum SUV threshold (SUV), SUV ratio (SUVR) to superior sagittal sinus (SSS) (SUVRsss), SUVR to the pit
27 ular veins in the extracranial plane and the superior sagittal sinus (SSS) and straight sinus in the
28 hypothesized that trigeminal input from the superior sagittal sinus (SSS) can excite C1-C2 spinothal
35 Mean and maximum absolute and relative-to-superior-sagittal-sinus SUVs were extracted from the ent
36 , among the skull fractures extending to the superior sagittal sinus, those of the occipital bone had
37 5 95% CI=1.58 to 84.46, p=0.01) and isolated superior sagittal sinus thrombosis (HR=0.39, 95% CI=0.14
38 sue PO2, and venous oxygen saturation of the superior sagittal sinus values concomitant with diffuse
44 ior sagittal sinus, (iii) stimulation of the superior sagittal sinus with PAG stimulation, or (iv) st