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a2026-06-25
en Influence of separating home range and dispersal movements on characterizing corridors and effective distances. -
Modificado el valor del campo
modified
del recurso Acceso al recurso a2026-06-25
(anteriormente2026-06-23
) en Influence of separating home range and dispersal movements on characterizing corridors and effective distances.
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| 82 | "notes": "Understanding connectivity patterns in relation to habitat | 96 | "notes": "Understanding connectivity patterns in relation to habitat | ||
| 83 | fragmentation is essential to landscape management. However, | 97 | fragmentation is essential to landscape management. However, | ||
| 84 | connectivity is often judged from expert opinion or species occurrence | 98 | connectivity is often judged from expert opinion or species occurrence | ||
| 85 | patterns, with very few studies considering the actual movements of | 99 | patterns, with very few studies considering the actual movements of | ||
| 86 | individuals. Path selection functions provide a promising tool to | 100 | individuals. Path selection functions provide a promising tool to | ||
| 87 | infer functional connectivity from animal movement data, but its | 101 | infer functional connectivity from animal movement data, but its | ||
| 88 | practical application remains scanty. We aimed to describe functional | 102 | practical application remains scanty. We aimed to describe functional | ||
| 89 | connectivity patterns in a forest carnivore using path-level analysis, | 103 | connectivity patterns in a forest carnivore using path-level analysis, | ||
| 90 | and to explore how connectivity is affected by land cover patterns and | 104 | and to explore how connectivity is affected by land cover patterns and | ||
| 91 | road networks.We radiotracked 22 common genets in a mixed | 105 | road networks.We radiotracked 22 common genets in a mixed | ||
| 92 | forest-agricultural landscape of southern Portugal. We developed path | 106 | forest-agricultural landscape of southern Portugal. We developed path | ||
| 93 | selection functions discriminating between observed and random paths | 107 | selection functions discriminating between observed and random paths | ||
| 94 | in relation to landscape variables. These functions were used together | 108 | in relation to landscape variables. These functions were used together | ||
| 95 | with land cover information to map conductance surfaces. Genets moved | 109 | with land cover information to map conductance surfaces. Genets moved | ||
| 96 | preferentially within forest patches and close to riparian habitats. | 110 | preferentially within forest patches and close to riparian habitats. | ||
| 97 | Functional connectivity declined with increasing road density, but | 111 | Functional connectivity declined with increasing road density, but | ||
| 98 | increased with the proximity of culverts, viaducts and bridges. | 112 | increased with the proximity of culverts, viaducts and bridges. | ||
| 99 | Functional connectivity was favoured by large forest patches, and by | 113 | Functional connectivity was favoured by large forest patches, and by | ||
| 100 | the presence of riparian areas providing corridors within open | 114 | the presence of riparian areas providing corridors within open | ||
| 101 | agricultural land. Roads reduced connectivity by dissecting forest | 115 | agricultural land. Roads reduced connectivity by dissecting forest | ||
| 102 | patches, but had less effect on riparian corridors due to the presence | 116 | patches, but had less effect on riparian corridors due to the presence | ||
| 103 | of crossing structures. Genet movements were jointly affected by the | 117 | of crossing structures. Genet movements were jointly affected by the | ||
| 104 | spatial distribution of suitable habitats, and the presence of a road | 118 | spatial distribution of suitable habitats, and the presence of a road | ||
| 105 | network dissecting such habitats and creating obstacles in areas | 119 | network dissecting such habitats and creating obstacles in areas | ||
| 106 | otherwise permeable to animal movement. Overall, the study showed the | 120 | otherwise permeable to animal movement. Overall, the study showed the | ||
| 107 | value of path-level analysis to assess functional connectivity | 121 | value of path-level analysis to assess functional connectivity | ||
| 108 | patterns in human-modified landscapes.", | 122 | patterns in human-modified landscapes.", | ||
| 109 | "notes_translated": { | 123 | "notes_translated": { | ||
| 110 | "en": "Understanding connectivity patterns in relation to habitat | 124 | "en": "Understanding connectivity patterns in relation to habitat | ||
| 111 | fragmentation is essential to landscape management. However, | 125 | fragmentation is essential to landscape management. However, | ||
| 112 | connectivity is often judged from expert opinion or species occurrence | 126 | connectivity is often judged from expert opinion or species occurrence | ||
| 113 | patterns, with very few studies considering the actual movements of | 127 | patterns, with very few studies considering the actual movements of | ||
| 114 | individuals. Path selection functions provide a promising tool to | 128 | individuals. Path selection functions provide a promising tool to | ||
| 115 | infer functional connectivity from animal movement data, but its | 129 | infer functional connectivity from animal movement data, but its | ||
| 116 | practical application remains scanty. We aimed to describe functional | 130 | practical application remains scanty. We aimed to describe functional | ||
| 117 | connectivity patterns in a forest carnivore using path-level analysis, | 131 | connectivity patterns in a forest carnivore using path-level analysis, | ||
| 118 | and to explore how connectivity is affected by land cover patterns and | 132 | and to explore how connectivity is affected by land cover patterns and | ||
| 119 | road networks.We radiotracked 22 common genets in a mixed | 133 | road networks.We radiotracked 22 common genets in a mixed | ||
| 120 | forest-agricultural landscape of southern Portugal. We developed path | 134 | forest-agricultural landscape of southern Portugal. We developed path | ||
| 121 | selection functions discriminating between observed and random paths | 135 | selection functions discriminating between observed and random paths | ||
| 122 | in relation to landscape variables. These functions were used together | 136 | in relation to landscape variables. These functions were used together | ||
| 123 | with land cover information to map conductance surfaces. Genets moved | 137 | with land cover information to map conductance surfaces. Genets moved | ||
| 124 | preferentially within forest patches and close to riparian habitats. | 138 | preferentially within forest patches and close to riparian habitats. | ||
| 125 | Functional connectivity declined with increasing road density, but | 139 | Functional connectivity declined with increasing road density, but | ||
| 126 | increased with the proximity of culverts, viaducts and bridges. | 140 | increased with the proximity of culverts, viaducts and bridges. | ||
| 127 | Functional connectivity was favoured by large forest patches, and by | 141 | Functional connectivity was favoured by large forest patches, and by | ||
| 128 | the presence of riparian areas providing corridors within open | 142 | the presence of riparian areas providing corridors within open | ||
| 129 | agricultural land. Roads reduced connectivity by dissecting forest | 143 | agricultural land. Roads reduced connectivity by dissecting forest | ||
| 130 | patches, but had less effect on riparian corridors due to the presence | 144 | patches, but had less effect on riparian corridors due to the presence | ||
| 131 | of crossing structures. Genet movements were jointly affected by the | 145 | of crossing structures. Genet movements were jointly affected by the | ||
| 132 | spatial distribution of suitable habitats, and the presence of a road | 146 | spatial distribution of suitable habitats, and the presence of a road | ||
| 133 | network dissecting such habitats and creating obstacles in areas | 147 | network dissecting such habitats and creating obstacles in areas | ||
| 134 | otherwise permeable to animal movement. Overall, the study showed the | 148 | otherwise permeable to animal movement. Overall, the study showed the | ||
| 135 | value of path-level analysis to assess functional connectivity | 149 | value of path-level analysis to assess functional connectivity | ||
| 136 | patterns in human-modified landscapes.", | 150 | patterns in human-modified landscapes.", | ||
| 137 | "es": "Understanding connectivity patterns in relation to habitat | 151 | "es": "Understanding connectivity patterns in relation to habitat | ||
| 138 | fragmentation is essential to landscape management. However, | 152 | fragmentation is essential to landscape management. However, | ||
| 139 | connectivity is often judged from expert opinion or species occurrence | 153 | connectivity is often judged from expert opinion or species occurrence | ||
| 140 | patterns, with very few studies considering the actual movements of | 154 | patterns, with very few studies considering the actual movements of | ||
| 141 | individuals. Path selection functions provide a promising tool to | 155 | individuals. Path selection functions provide a promising tool to | ||
| 142 | infer functional connectivity from animal movement data, but its | 156 | infer functional connectivity from animal movement data, but its | ||
| 143 | practical application remains scanty. We aimed to describe functional | 157 | practical application remains scanty. We aimed to describe functional | ||
| 144 | connectivity patterns in a forest carnivore using path-level analysis, | 158 | connectivity patterns in a forest carnivore using path-level analysis, | ||
| 145 | and to explore how connectivity is affected by land cover patterns and | 159 | and to explore how connectivity is affected by land cover patterns and | ||
| 146 | road networks.We radiotracked 22 common genets in a mixed | 160 | road networks.We radiotracked 22 common genets in a mixed | ||
| 147 | forest-agricultural landscape of southern Portugal. We developed path | 161 | forest-agricultural landscape of southern Portugal. We developed path | ||
| 148 | selection functions discriminating between observed and random paths | 162 | selection functions discriminating between observed and random paths | ||
| 149 | in relation to landscape variables. These functions were used together | 163 | in relation to landscape variables. These functions were used together | ||
| 150 | with land cover information to map conductance surfaces. Genets moved | 164 | with land cover information to map conductance surfaces. Genets moved | ||
| 151 | preferentially within forest patches and close to riparian habitats. | 165 | preferentially within forest patches and close to riparian habitats. | ||
| 152 | Functional connectivity declined with increasing road density, but | 166 | Functional connectivity declined with increasing road density, but | ||
| 153 | increased with the proximity of culverts, viaducts and bridges. | 167 | increased with the proximity of culverts, viaducts and bridges. | ||
| 154 | Functional connectivity was favoured by large forest patches, and by | 168 | Functional connectivity was favoured by large forest patches, and by | ||
| 155 | the presence of riparian areas providing corridors within open | 169 | the presence of riparian areas providing corridors within open | ||
| 156 | agricultural land. Roads reduced connectivity by dissecting forest | 170 | agricultural land. Roads reduced connectivity by dissecting forest | ||
| 157 | patches, but had less effect on riparian corridors due to the presence | 171 | patches, but had less effect on riparian corridors due to the presence | ||
| 158 | of crossing structures. Genet movements were jointly affected by the | 172 | of crossing structures. Genet movements were jointly affected by the | ||
| 159 | spatial distribution of suitable habitats, and the presence of a road | 173 | spatial distribution of suitable habitats, and the presence of a road | ||
| 160 | network dissecting such habitats and creating obstacles in areas | 174 | network dissecting such habitats and creating obstacles in areas | ||
| 161 | otherwise permeable to animal movement. Overall, the study showed the | 175 | otherwise permeable to animal movement. Overall, the study showed the | ||
| 162 | value of path-level analysis to assess functional connectivity | 176 | value of path-level analysis to assess functional connectivity | ||
| 163 | patterns in human-modified landscapes." | 177 | patterns in human-modified landscapes." | ||
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