Exploring the attachment of the Mediterranean medicinal leech to porous substrates
Biomechanics published in J R Soc Interface (2020)
Abstract
Haematophagous ectoparasites must ensure a reliable hold to their host during blood meals and, therefore, have evolved a broad spectrum of versatile and effective attachment mechanisms. The Mediterranean medicinal leech (Hirudo verbana), for example, uses suction on both smooth and textured air-tight substrates. However, preliminary studies showed that H. verbana is also capable of attaching itself to air-permeable substrates, where suction does not work. Using high-speed videography and mechanical tests, we comparatively investigated the attachment of H. verbana on both smooth and textured air-tight as well as on porous artificial substrates, also considering the influence of mucus on sucker surfaces. In general, the leech-specific locomotion cycle did not differ between the tested surfaces, and the leeches were able to reliably attach to both air-tight and porous substrates. From our results, we conclude that suction is presumably the primary attachment mechanism of H. verbana. However, secondary mechanisms such as mechanical interlocking with surface asperities and pores or capillary forces occurring at the interface between the mucus-covered suckers and the substratum are also employed. In any case, the rich repertoire of applicable attachment principles renders the organs of H. verbana functionally highly resilient.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
High-speed videography and mechanical testing confirm suction is the primary attachment mechanism of Hirudo verbana, supplemented by mechanical interlocking and capillary forces from mucus.
Warum dies für die Hirudotherapie relevant ist
This study investigated the attachment mechanisms of the Mediterranean medicinal leech (Hirudo verbana) on smooth and textured air-tight as well as porous artificial substrates, using high-speed videography and mechanical tests, and also examined the influence of mucus on sucker surfaces. The authors concluded that while suction is presumably the primary attachment mechanism, secondary mechanisms including mechanical interlocking with surface asperities and pores and capillary forces at the mucus-substrate interface are also employed, rendering the attachment organs functionally resilient. This work may be of interest to ASH as it examines biomechanical properties of a medicinal leech species. The abstract's scope is limited to attachment mechanics on artificial substrates.
Zitation
Exploring the attachment of the Mediterranean medicinal leech (Hirudo verbana) to porous substrates.
Kampowski T et al. · Journal of the Royal Society, Interface, 2020
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