Related Experiment Video
Updated: Jan 19, 2026

Long-term Video Tracking of Cohoused Aquatic Animals: A Case Study of the Daily Locomotor Activity of the Norway Lobster Nephrops norvegicus
Published on: April 8, 2019
European spiny lobster recovery from overfishing enhanced through active restocking in Fully Protected Areas
Alessandro Cau1,2, Andrea Bellodi3,4, Rita Cannas3,4
1Dipartimento di Scienze della Vita e dell'Ambiente, Università di Cagliari, Via Tommaso Fiorelli 1, 09126, Cagliari, Italy. alessandrocau@unica.it.
Abstract:
Fully protected areas (FPAs) help preserving biodiversity and reversing the global decline of fishery resources. Stocks of the European spiny lobster Palinurus elephas (Fabr. 1787), among the most precious gourmet seafood worldwide, are currently facing a dramatic decline. Previous attempts of recovery based on fishery restrictions or active post-larval restocking in marine reserves provided unsuccessful outcomes. Here we present results of a 5-year restocking program carried through a Collaborative Fishery Research (CFR) project, in three ad-hoc established FPAs replenished using below-legal size wild juveniles. Results showed that Catch per Unit Effort (CPUE) in terms of both density and biomass burst (by ca. 300-700%) just 2 years since FPAs establishment, regardless of location. We also report tangible spillover effects (ca. 30-50% increase in density and biomass CPUE outside the FPAs) by the end of the program. Data from a 15-years lasting monitoring of a pilot FPA established in 1998, where the restocking protocol was conducted and protection kept in force once restocking ceased, demonstrated the persistence in time of restocking' benefits. We foster that creation of FPAs assisted with local restocking under oriented CFR programs can represent an option for the recovery of European spiny lobster stocks from overfishing.
Related Concept Videos
05:57Long-term Video Tracking of Cohoused Aquatic Animals: A Case Study of the Daily Locomotor Activity of the Norway Lobster (Nephrops norvegicus)
13:19Enhanced Oil Recovery using a Combination of Biosurfactants
10:12Gross Dissection of the Stomach of the Lobster, Homarus Americanus
10:53Preparation of Acute Brain Slices Using an Optimized N-Methyl-D-glucamine Protective Recovery Method
03:59Preparation of Brain Sections Using a NMDG-Based Protective Recovery Method
10:18A Noninvasive Method For In situ Determination of Mating Success in Female American Lobsters (Homarus americanus)

