Experimental cerebral vasospasm after subarachnoid hemorrhage. Participation of adrenergic nerves in cerebral vessel wall.
نویسندگان
چکیده
Distribution and morphology of nerves in basilar-artery-induced vasospasm were investigated electronmicroscopically. Small cored vesicles were transformed, decreased and disappeared gradually after development of vasospasm induced by blood-CSF mixture incubated 5--10 days. These changes were not induced by fresh arterial blood, lysed platelets in saline and mechanical stimulation. In the portion with severe vasospasm induced by incubated blood-CSF mixture, nerve distribution was rich and uniform in all portions of the adventitia. In the portion with slight vasospasm, nerves were extremely scanty in the innermost area of the adventitia, within 10 mu from the outer edge of the media. The severity of experimental vasospasm became definitely lighter and the duration shorter after bilateral cervical sympathectomy. These findings indicate that nerves, especially the adrenergic axon in the innermost area of the adventitia, may play an important role on the genesis of late vasospasm. The difference in nerve distribution may be a factor influencing individual differences in frequency or severity of vasospasm.
منابع مشابه
ANATOMIC CORRELATION BE TWEEN INTIMAL PATHOLOGY AND CEREBRAL VASOSPASM FOLLOWING SUBARACHNOID HEMORRHAGE
Subarachnoid hemorrhage (SAH) resulting from a ruptured intracranial aneurysm can induce cerebral vasospasm with subsequent reduction in cerebral blood flow (CBF). The present study examines the pathological alterations in the wall of human cerebral arteries at autopsy, especially with regard to intimal pathology, following aneurysmal SAH. Arterial segments from the circle of Willis were fi...
متن کاملExperimental Cerebral Vasospasm after Subarachnoid Hemorrhage Participation of Adrenergic Nerves in Cerebral Vessel Wall
Correcting for cerebrospinal fluid and blood glucose contamination (see Footnote 1) to obtain net tissue glucose content: net tissue content = (2.22) (6 X 0.105) = 1.59 E = 2 jimol/min per g -r1.59 jimol/g = 1.26 min Table 2 predicts that the integral of brain glucose specific activity is about 95% that of the plasma integral at 10 min. If greater accuracy is required or if a shorter time were ...
متن کاملExperimental Cerebral Vasospasm after Subarachnoid Hemorrhage Participation of Adrenergic Nerves in Cerebral Vessel Wall
Correcting for cerebrospinal fluid and blood glucose contamination (see Footnote 1) to obtain net tissue glucose content: net tissue content = (2.22) (6 X 0.105) = 1.59 E = 2 jimol/min per g -r1.59 jimol/g = 1.26 min Table 2 predicts that the integral of brain glucose specific activity is about 95% that of the plasma integral at 10 min. If greater accuracy is required or if a shorter time were ...
متن کاملExperimental Cerebral Vasospasm after Subarachnoid Hemorrhage Participation of Adrenergic Nerves in Cerebral Vessel Wall
Correcting for cerebrospinal fluid and blood glucose contamination (see Footnote 1) to obtain net tissue glucose content: net tissue content = (2.22) (6 X 0.105) = 1.59 E = 2 jimol/min per g -r1.59 jimol/g = 1.26 min Table 2 predicts that the integral of brain glucose specific activity is about 95% that of the plasma integral at 10 min. If greater accuracy is required or if a shorter time were ...
متن کاملExperimental Cerebral Vasospasm after Subarachnoid Hemorrhage Participation of Adrenergic Nerves in Cerebral Vessel Wall
Correcting for cerebrospinal fluid and blood glucose contamination (see Footnote 1) to obtain net tissue glucose content: net tissue content = (2.22) (6 X 0.105) = 1.59 E = 2 jimol/min per g -r1.59 jimol/g = 1.26 min Table 2 predicts that the integral of brain glucose specific activity is about 95% that of the plasma integral at 10 min. If greater accuracy is required or if a shorter time were ...
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ورودعنوان ژورنال:
- Stroke
دوره 10 6 شماره
صفحات -
تاریخ انتشار 1979