RELATIONSHIP BETWEEN OCULAR PULSE PRESSURES AND RETINAL VESSEL VELOCITIES

Citation
G. Michelson et J. Harazny, RELATIONSHIP BETWEEN OCULAR PULSE PRESSURES AND RETINAL VESSEL VELOCITIES, Ophthalmology, 104(4), 1997, pp. 664-671
Citations number
26
Categorie Soggetti
Ophthalmology
Journal title
ISSN journal
01616420
Volume
104
Issue
4
Year of publication
1997
Pages
664 - 671
Database
ISI
SICI code
0161-6420(1997)104:4<664:RBOPPA>2.0.ZU;2-Q
Abstract
Purpose: The authors quantified the relationship between ocular pulse pressures and retinal vessel velocities. Method: The blood velocity in the ophthalmic artery (OA), the central retinal vein (CRV), and arter y (CRA) was measured by pulsed Doppler sonography (4-Mhz probe). The p ulse curve of the intraocular pressure (IOP) was evaluated by pneumoto nometry. With multichannel data acquisition and storage software, the velocity pulse curve of the OA, the CRV and CRA, the IOP-pulse curve, the arterial blood pressure, and the electrocardiogram were recorded s imultaneously in real-time mode. The relationships between the pulse c urves of the blood velocity in the OA, the CRV and CRA, and the IOP we re calculated off-line. The onset time, the time of half maximum, and the time to the maximum of the pulse curves were evaluated. A relative retinal venous outflow resistance index (R') was calculated by R' = D elta IOP/Delta V-crv. We examined 23 eyes of 23 healthy subjects. The mean age of the group was 46 +/- 16 years. Results: In all eyes, the o utflow in the CRV was pulsatile and ran in synchrony with the IOP puls ation. The CRV velocity- and IOP-pulse curve showed a significant mean delay of 0.024 second compared with the CRA and OA velocity-pulse cur ve. The relative resistance index R' for venous outflow was 1.0 +/- 0. 44 mmHg/cm/seconds. Conclusions: In all eyes, the authors found a sign ificant linear relationship between the blood velocity in the CRV and the IOP pulsation. The CRV velocity- and [OF-pulse curve were signific antly delayed compared with the CRA and OA velocity-pulse curve.