Vascularisation of coralline hydroxyapatite used to replace the enucleated bulb is of critical importance for the uncomplicated implantation of a motility peg connecting the implant with the cosmetic prosthesis. Technetium-99m diphosphopropanedicarboxylic acid (DPD) single-photon emission tomography (SPET) was used to evaluate the rate of vascularisation as well as the time required for completion of vascularisation. Twenty-four patients were enrolled in the study, which was designed to evaluate vascularisation 10 days, 2 months and 4 months after implantation of a coralline implant. Nineteen patients completed the study and the visual impression of the completion of the vascularisation was scored from 0 (no vascularisation) to ++++ (complete vascularisation) for each patient. No tracer accumulation was detected in any patient at the 10-day examination. Increasing vascularisation was demonstrated with time, and full vascularisation of the coralline implant was seen in all but one case by 4 months after implantation. We conclude that vascularisation of ocular coralline hydroxyapatite implants occurs early and is completed by 4 months after implantation in most cases, but should be confirmed at this time by99mTc-DPD SPET. © 1994, Springer-Verlag. All rights reserved.

Vascularisation of ocular coralline hydroxyapatite implants

Busin, Massimo
Investigation
;
1994

Abstract

Vascularisation of coralline hydroxyapatite used to replace the enucleated bulb is of critical importance for the uncomplicated implantation of a motility peg connecting the implant with the cosmetic prosthesis. Technetium-99m diphosphopropanedicarboxylic acid (DPD) single-photon emission tomography (SPET) was used to evaluate the rate of vascularisation as well as the time required for completion of vascularisation. Twenty-four patients were enrolled in the study, which was designed to evaluate vascularisation 10 days, 2 months and 4 months after implantation of a coralline implant. Nineteen patients completed the study and the visual impression of the completion of the vascularisation was scored from 0 (no vascularisation) to ++++ (complete vascularisation) for each patient. No tracer accumulation was detected in any patient at the 10-day examination. Increasing vascularisation was demonstrated with time, and full vascularisation of the coralline implant was seen in all but one case by 4 months after implantation. We conclude that vascularisation of ocular coralline hydroxyapatite implants occurs early and is completed by 4 months after implantation in most cases, but should be confirmed at this time by99mTc-DPD SPET. © 1994, Springer-Verlag. All rights reserved.
1994
Menzel, Christian; Grã¼nwald, Frank; Busin, Massimo; Mã¶nks, Thomas; Hotze, Andreas L.; Schomburg, Axel; Pavics, Laszlo; Biersack, Hans J.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/2418282
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