優れた光ファイバーケーブルの作製方法をハマグリに問う (To Build Better Fiber Optic Cables, Ask a Clam)

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2024-12-01 アメリカ合衆国・デューク大学

デューク大学とスタンフォード大学の研究チームは、ハートコックル(heart cockle)と呼ばれる二枚貝の殻が、特定の波長の光を内部組織に伝達する独自の構造を持つことを発見しました。この貝殻には、髪の毛ほどの細さの繊維が束状に配置され、光を深部まで導く役割を果たしています。この構造は、光ファイバーケーブルの設計に新たなインスピレーションを与える可能性があります。

<関連情報>

光ファイバを束ねたケーブルと集光レンズを使って、ハコ貝の殻から光共生藻に太陽光を送る Heart cockle shells transmit sunlight to photosymbiotic algae using bundled fiber optic cables and condensing lenses

Dakota E. McCoy,Dale H. Burns,Elissa Klopfer,Liam K. Herndon,Babatunde Ogunlade,Jennifer A. Dionne & Sönke Johnsen
Nature Communications
Published:19 November 2024
DOI:https://doi.org/10.1038/s41467-024-53110-x

優れた光ファイバーケーブルの作製方法をハマグリに問う (To Build Better Fiber Optic Cables, Ask a Clam)

Abstract

Many animals convergently evolved photosynthetic symbioses. In bivalves, giant clams (Cardiidae: Tridacninae) gape open to irradiate their symbionts, but heart cockles (Cardiidae: Fraginae) stay closed because sunlight passes through transparent windows in their shells. Here, we show that heart cockles (Corculum cardissa and spp.) use biophotonic adaptations to transmit sunlight for photosynthesis. Heart cockles transmit 11–62% of photosynthetically active radiation (mean = 31%) but only 5–28% of potentially harmful UV radiation (mean = 14%) to their symbionts. Beneath each window, microlenses condense light to penetrate more deeply into the symbiont-rich tissue. Within each window, aragonite forms narrow fibrous prisms perpendicular to the surface. These bundled “fiber optic cables” project images through the shell with a resolution of >100 lines/mm. Parameter sweeps show that the aragonite fibers’ size (~1 µm diameter), morphology (long fibers rather than plates), and orientation (along the optical c-axis) transmit more light than many other possible designs. Heart cockle shell windows are thus: (i) the first instance of fiber optic cable bundles in an organism to our knowledge; (ii) a second evolution, with epidermal cells in angiosperm plants, of condensing lenses for photosynthesis; and (iii) a photonic system that efficiently transmits useful light while protecting photosymbionts from UV radiation.

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