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Related Experiment Video

Updated: Apr 28, 2026

Three-Dimensional Reconstruction of Orbital Fractures
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[Porous orbital implants].

B Cleres1, H W Meyer-Rüsenberg

  • 1Augenklinik, St.-Josefs-Hospital, Universität Witten-Herdecke, Dreieckstr. 17, 58097, Hagen, Deutschland, cleresb@kkh-hagen.de.

Der Ophthalmologe : Zeitschrift Der Deutschen Ophthalmologischen Gesellschaft
|June 20, 2014
PubMed
Summary
This summary is machine-generated.

Coralline hydroxyapatite porous orbital implants are used for eye replacement. Current research indicates no single implant type is superior due to varied study designs and follow-up periods.

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Area of Science:

  • Ophthalmology
  • Biomaterials Science
  • Surgical Innovation

Context:

  • The development of porous orbital implants for eye replacement began in the early 1980s with coralline hydroxyapatite.
  • Numerous modified porous implants have since been introduced, offering various designs and materials.

Purpose:

  • To review the available literature on porous orbital implants for eye replacement.
  • To assess the long-term safety and comparative efficacy of different orbital implant types.
  • To identify factors influencing implant exposure rates.

Summary:

  • A comparison of different porous orbital implant types is challenging due to heterogeneous study designs and follow-up durations.
  • No specific implant type has been definitively identified as superior in existing literature.
  • Key factors influencing implant exposure appear to be implant coating, surgical technique, and patient tissue condition.

Impact:

  • Highlights the need for standardized research methodologies in evaluating orbital implant safety and efficacy.
  • Provides insights into critical factors for surgeons to consider when selecting and implanting orbital devices.
  • Informs future development of improved porous orbital implants with reduced complication rates.