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1974 1
1982 1
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Page 1
Lateral lakes of Trolard: anatomy, quantitation, and surgical landmarks. Laboratory investigation.
Tubbs RS, Loukas M, Shoja MM, Apaydin N, Ardalan MR, Oakes WJ. Tubbs RS, et al. J Neurosurg. 2008 May;108(5):1005-9. doi: 10.3171/JNS/2008/108/5/1005. J Neurosurg. 2008. PMID: 18447719
METHODS: Thirty-five adult cadavers were dissected of lateral lacunae. Following quantitation of the lacunae, these structures were measured, as were the distances from them to the coronal and sagittal sutures. ...The majority of lacunae could be identified between …
METHODS: Thirty-five adult cadavers were dissected of lateral lacunae. Following quantitation of the lacunae, these structures …
The relationship of intracranial venous pressure to hydrocephalus.
Portnoy HD, Branch C, Castro ME. Portnoy HD, et al. Childs Nerv Syst. 1994 Jan;10(1):29-35. doi: 10.1007/BF00313582. Childs Nerv Syst. 1994. PMID: 8194060 Review.
Normally, the cortical venous pressure is maintained above CSF pressure by the Starling resistor effect of the lateral lacunae. A similar mechanism is absent in the deep venous system, and thus the pressure in the deep veins is similar to that in the dural sinuses. …
Normally, the cortical venous pressure is maintained above CSF pressure by the Starling resistor effect of the lateral lacunae
Intracranial venous thrombosis complicating oral contraception.
Dindar F, Platts ME. Dindar F, et al. Can Med Assoc J. 1974 Sep 21;111(6):545-8. Can Med Assoc J. 1974. PMID: 4413961 Free PMC article.
Some of the superficial cerebral veins showed focal necrosis of their walls, and the lateral lacunae of the superior sagittal sinus contained proliferating endothelial cells. ...
Some of the superficial cerebral veins showed focal necrosis of their walls, and the lateral lacunae of the superior sagittal …
A subset of arachnoid granulations in humans drain to the venous circulation via intradural lymphatic vascular channels.
Yağmurlu K, Sokolowski J, Soldozy S, Norat P, Çırak M, Tvrdik P, Shaffrey ME, Kalani MYS. Yağmurlu K, et al. J Neurosurg. 2021 Aug 20;136(3):917-926. doi: 10.3171/2021.2.JNS204455. Print 2022 Mar 1. J Neurosurg. 2021. PMID: 34416722
Intradural AGs are located within the leaflets of the dura. The total number of openings from the AGs, lateral lacunae, and cortical veins into the SSS was 45 5.62 per head. ...
Intradural AGs are located within the leaflets of the dura. The total number of openings from the AGs, lateral lacunae, and co …
Cerebrospinal fluid pulse waveform as an indicator of cerebral autoregulation.
Portnoy HD, Chopp M, Branch C, Shannon MB. Portnoy HD, et al. J Neurosurg. 1982 May;56(5):666-78. doi: 10.3171/jns.1982.56.5.0666. J Neurosurg. 1982. PMID: 7069479
During inhalation of 100% O2, transmission of the SAPW across the precapillary resistance vessels into the cerebral venous pulse (as represented by the CSFPW) was nonlinear, while transmission across the lateral lacunae into the sagittal sinus was linear. During int …
During inhalation of 100% O2, transmission of the SAPW across the precapillary resistance vessels into the cerebral venous pulse (as represe …
Effect of intracranial pressure on bridging veins in rats.
Auer LM, Ishiyama N, Hodde KC, Kleinert R, Pucher R. Auer LM, et al. J Neurosurg. 1987 Aug;67(2):263-8. doi: 10.3171/jns.1987.67.2.0263. J Neurosurg. 1987. PMID: 3598685
The present data thus support the concept that cerebral blood flow during intracranial hypertension is not reduced by venous cuffing or compression of the lateral lacunae and bridging veins; by contrast, the arteriovenous pressure difference seems to remain the dete …
The present data thus support the concept that cerebral blood flow during intracranial hypertension is not reduced by venous cuffing or comp …
Access to cerebrospinal fluid absorption sites by infusion into vascular channels of the skull diplö.
Johnston KD, Walji AH, Fox RJ, Pugh JA, Aronyk KE. Johnston KD, et al. J Neurosurg. 2007 Oct;107(4):841-3. doi: 10.3171/JNS-07/10/0841. J Neurosurg. 2007. PMID: 17937232
A significant proportion of cerebrospinal fluid (CSF) absorption is thought to occur via arachnoid granulations in the region of the SSS and especially along the parasagittal dura where arachnoid granulations are surrounded by intradural venous channels (lateral lacunae
A significant proportion of cerebrospinal fluid (CSF) absorption is thought to occur via arachnoid granulations in the region of the SSS and …
Cadaveric dissection identifying the left superior anastomotic vein of Trolard communicating indirectly with the superior sagittal sinus via a lateral lacuna.
Thuy MN, Ramesh R, Soh B, Drummond KJ. Thuy MN, et al. J Clin Neurosci. 2012 Feb;19(2):286-8. doi: 10.1016/j.jocn.2011.07.010. Epub 2011 Nov 10. J Clin Neurosci. 2012. PMID: 22079142
A cadaveric dissection of the calvarium of a 90 year old woman demonstrated a left superior anastomotic vein of Trolard communicating indirectly with the superior sagittal sinus via a left lateral lacunae. This is an anatomical variant contrary to the textbook descr …
A cadaveric dissection of the calvarium of a 90 year old woman demonstrated a left superior anastomotic vein of Trolard communicating indire …
Human arachnoid granulations Part I: a technique for quantifying area and distribution on the superior surface of the cerebral cortex.
Grzybowski DM, Herderick EE, Kapoor KG, Holman DW, Katz SE. Grzybowski DM, et al. Cerebrospinal Fluid Res. 2007 Jul 16;4:6. doi: 10.1186/1743-8454-4-6. Cerebrospinal Fluid Res. 2007. PMID: 17634132 Free PMC article.
The surface AGs were localized in the parasagittal planes that coincide with the region of the lateral lacunae. CONCLUSION: The data obtained on the spatial distribution and en face surface area of AGs will be used in an in vitro model of CSF outflow. ...
The surface AGs were localized in the parasagittal planes that coincide with the region of the lateral lacunae. CONCLUSION: Th …
The empty delta sign: frequency and significance in 76 cases of dural sinus thrombosis.
Virapongse C, Cazenave C, Quisling R, Sarwar M, Hunter S. Virapongse C, et al. Radiology. 1987 Mar;162(3):779-85. doi: 10.1148/radiology.162.3.3809494. Radiology. 1987. PMID: 3809494
The empty delta sign can probably be explained on the basis of the rich dural venous collateral circulation, consisting primarily of lateral lacunae, a vascular mesh (dural cavernous spaces), and meningeal venous tributaries....
The empty delta sign can probably be explained on the basis of the rich dural venous collateral circulation, consisting primarily of late
11 results