2028
|
Mapping the Energetic Costs of Free-Swimming Gilthead Sea Bream (Sparus Aurata), a Key Species in European Marine Aquaculture
|
Alfonso, S.
;
Zupa, W.
;
Spedicato, M.
T.
;
Lembo, G.
;
Carbonara, P.
.
|
2021
|
Biology-Basel
|
Ecology
|
None
|
Italy
|
Laboratory
|
41.08867
|
17.001816
|
Small-Scale
|
Stationary
|
Broad-scale
|
NO
|
Sparus aurata
|
Snapper;
Seabream;
Gilthead seabream;
Australasian snapper;
Silver seabream;
Gilt-head sea bream;
Sea bream
|
Sparidae |
None |
27 |
None |
None |
34 |
Acceleration
Pressure
|
Fish |
|
No |
10.3390/biology10121357 |
2056
|
Calibrating Accelerometer Data, as a Promising Tool for Health and Welfare Monitoring in Aquaculture: Case Study in European Sea Bass (Dicentrarchus Labrax) in Conventional or Organic Aquaculture
|
Carbonara, P.
;
Alfonso, S.
;
Dioguardi, M.
;
Zupa, W.
;
Vazzana, M.
;
Dara, M.
;
Spedicato, M.
T.
;
Lembo, G.
;
Cammarata, M.
.
|
2021
|
Aquaculture Reports
|
Ecology
|
None
|
Italy
|
Laboratory
|
41.08867
|
17.001816
|
Small-Scale
|
Stationary
|
Broad-scale
|
NO
|
Dicentrarchus labrax
|
Seabass;
European bass;
European seabass;
European sea bass
|
Moronidae |
juvenile |
18 |
None |
None |
None |
Acceleration
|
Fish |
|
No |
10.1016/j.aqrep.2021.100817 |
2246
|
Calibrating Accelerometer Tags With Oxygen Consumption Rate of Rainbow Trout (Oncorhynchus Mykiss) and Their Use in Aquaculture Facility: A Case Study
|
Zupa, W.
;
Alfonso, S.
;
Gai, F.
;
Gasco, L.
;
Spedicato, M.
T.
;
Lembo, G.
;
Carbonara, P.
.
|
2021
|
Animals
|
Methodology/analysis
|
None
|
None
|
|
None
|
None
|
None
|
None
|
|
|
|
|
|
|
|
|
|
|
|
|
|
None |
10.3390/ani11061496 |
1897
|
Using Acoustic Telemetry to Assess Behavioral Responses to Acute Hypoxia and Ammonia Exposure in Farmed Rainbow Trout of Different Competitive Ability
|
Gesto, M.
;
Zupa, W.
;
Alfonso, S.
;
Spedicato, M.
T.
;
Lembo, G.
;
Carbonara, P.
.
|
2020
|
Applied Animal Behaviour Science
|
Ecology
|
None
|
Denmark
|
Laboratory
|
57.585387
|
9.980761
|
Small-Scale
|
Stationary
|
Broad-scale
|
NO
|
Oncorhynchus mykiss
|
Rainbow trout;
Steelhead trout;
Redband trout;
Rainbown trout;
Puget sound steelhead
|
Salmonidae |
juvenile |
10 |
None |
None |
None |
Acceleration
|
Fish |
|
No |
10.1016/j.applanim.2020.105084 |
2450
|
Surgical Implantation of Electronic Tags Does Not Induce Medium-Term Effect: Insights From Growth and Stress Physiological Profile in Two Marine Fish Species
|
Alfonso, S.
;
Zupa, W.
;
Manfrin, A.
;
Fiocchi, E.
;
Dioguardi, M.
;
Dara, M.
;
Lembo, G.
;
Carbonara, P.
;
Cammarata, M.
.
|
2020
|
Animal Biotelemetry
|
Tagging effects
|
None
|
Italy
|
Laboratory
|
41.088644
|
17.001857
|
Small-Scale
|
Neither
|
|
|
Dicentrarchus labrax
|
Seabass;
European bass;
European seabass;
European sea bass
|
Moronidae |
None |
9 |
None |
None |
None |
Acceleration
Acceleration
|
Fish |
|
No |
10.1186/s40317-020-00208-w |
2450
|
Surgical Implantation of Electronic Tags Does Not Induce Medium-Term Effect: Insights From Growth and Stress Physiological Profile in Two Marine Fish Species
|
Alfonso, S.
;
Zupa, W.
;
Manfrin, A.
;
Fiocchi, E.
;
Dioguardi, M.
;
Dara, M.
;
Lembo, G.
;
Carbonara, P.
;
Cammarata, M.
.
|
2020
|
Animal Biotelemetry
|
Tagging effects
|
None
|
Italy
|
Laboratory
|
41.088644
|
17.001857
|
Small-Scale
|
Neither
|
|
|
Sparus aurata
|
Snapper;
Seabream;
Gilthead seabream;
Australasian snapper;
Silver seabream;
Gilt-head sea bream;
Sea bream
|
Sparidae |
None |
5 |
None |
None |
None |
Acceleration
Acceleration
|
Fish |
|
No |
10.1186/s40317-020-00208-w |
2451
|
Behavioral and Physiological Responses to Stocking Density in Sea Bream (Sparus Aurata): Do Coping Styles Matter?
|
Carbonara, P.
;
Alfonso, S.
;
Zupa, W.
;
Manfrin, A.
;
Fiocchi, E.
;
Pretto, T.
;
Spedicato, M.
T.
;
Lembo, G.
.
|
2019
|
Physiology & Behaviour
|
Ecology
|
None
|
Italy
|
Laboratory
|
41.088644
|
17.001857
|
Small-Scale
|
Stationary
|
|
|
Sparus aurata
|
Snapper;
Seabream;
Gilthead seabream;
Australasian snapper;
Silver seabream;
Gilt-head sea bream;
Sea bream
|
Sparidae |
None |
36 |
None |
None |
None |
Acceleration
|
Fish |
|
No |
10.1016/j.physbeh.2019.112698 |