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Updated: Jun 3, 2026

Design and Use of an Apparatus for Quantifying Bivalve Suspension Feeding at Sea
Published on: September 5, 2018
Feeding selectivity drives fine microplastic uptake and persistence in sand bubbler crab Scopimera globosa on an
Tomo Inoue1, Masahiro Horinouchi2, Koetsu Kon3
1Graduate School of Marine Science and Technology, Tokyo University of Marine Science and Technology, 4-5-7 Konan, Minato, Tokyo, 108-8477, Japan.
Abstract:
Microplastics (MPs) are widespread in coastal ecosystems. However, field evidence on the uptake of fine MPs by deposit feeders remains limited. We investigated the occurrence, size composition, and biological processing of MPs in the sand bubbler crab, Scopimera globosa, on a sandy tidal flat in the Tama River estuary (Tokyo Bay, Japan). Field surveys were conducted in the spring, summer, and autumn of 2024 to quantify MPs in surface sediments, crab-produced sand pellets, and crab tissues, and laboratory experiments were conducted to test ingestion size selectivity and elimination using fluorescent polystyrene beads. Sediment MP abundance did not significantly vary seasonally, whereas MP abundance increased in both sand pellets and crab tissues in the autumn. The mean size of MPs in sand pellets (25.1-28.1 μm) was larger than that in sediments (19.5-23.2 μm) and crab tissues (17.8-23.1 μm), consistent with particle sorting during feeding. In the laboratory, crabs preferentially ingested small MPs (10-20 μm), despite an equal supply of three size classes. Following exposure to fine MPs, internal MP counts decreased over time and were described by an exponential decay model, yielding an elimination half-life of 1.39 days and estimated times to 90% and 99% elimination of 4.61 and 9.21 days, respectively. These results indicate that MP burdens in S. globosa are governed by feeding activity and size-selective ingestion, and cannot be inferred from sediment MP loads alone.

