Changes
On November 16, 2021 at 11:40:31 AM +0800, Tzu-Hao Lin:
-
Added resource Visualization of Suiyo seamount soundscape to Deep-sea soundscapes of Japan
f | 1 | { | f | 1 | { |
2 | "author": "Tzu-Hao Lin, Chong Chen, Hiromi Kayama Watanabe, Tomonari | 2 | "author": "Tzu-Hao Lin, Chong Chen, Hiromi Kayama Watanabe, Tomonari | ||
3 | Akamatsu, Shinsuke Kawagucci", | 3 | Akamatsu, Shinsuke Kawagucci", | ||
4 | "author_email": null, | 4 | "author_email": null, | ||
5 | "contact_email": "schonkopf@gmail.com", | 5 | "contact_email": "schonkopf@gmail.com", | ||
6 | "contact_person": "Tzu-Hao Lin", | 6 | "contact_person": "Tzu-Hao Lin", | ||
7 | "creator_user_id": "4ed8099e-7518-41c7-8092-cc9c3f0a07eb", | 7 | "creator_user_id": "4ed8099e-7518-41c7-8092-cc9c3f0a07eb", | ||
8 | "data_type": [ | 8 | "data_type": [ | ||
9 | "code", | 9 | "code", | ||
10 | "multimedia", | 10 | "multimedia", | ||
11 | "science" | 11 | "science" | ||
12 | ], | 12 | ], | ||
13 | "end_time": "2020-03", | 13 | "end_time": "2020-03", | ||
14 | "groups": [ | 14 | "groups": [ | ||
15 | { | 15 | { | ||
16 | "description": "", | 16 | "description": "", | ||
17 | "display_name": "03. \u5730\u7406\u8207\u5730\u65b9 / Geography | 17 | "display_name": "03. \u5730\u7406\u8207\u5730\u65b9 / Geography | ||
18 | and places", | 18 | and places", | ||
19 | "id": "e9812826-5fb1-491c-b23c-913426b378b8", | 19 | "id": "e9812826-5fb1-491c-b23c-913426b378b8", | ||
20 | "image_display_url": | 20 | "image_display_url": | ||
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22 | "name": "geography-and-places", | 22 | "name": "geography-and-places", | ||
23 | "title": "03. \u5730\u7406\u8207\u5730\u65b9 / Geography and | 23 | "title": "03. \u5730\u7406\u8207\u5730\u65b9 / Geography and | ||
24 | places" | 24 | places" | ||
25 | }, | 25 | }, | ||
26 | { | 26 | { | ||
27 | "description": "", | 27 | "description": "", | ||
28 | "display_name": "08. \u81ea\u7136\u8207\u7269\u7406\u79d1\u5b78 | 28 | "display_name": "08. \u81ea\u7136\u8207\u7269\u7406\u79d1\u5b78 | ||
29 | / Natural and physical sciences", | 29 | / Natural and physical sciences", | ||
30 | "id": "041eefbf-2eb2-4aff-9aed-5631d17cc465", | 30 | "id": "041eefbf-2eb2-4aff-9aed-5631d17cc465", | ||
31 | "image_display_url": | 31 | "image_display_url": | ||
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33 | "name": "natural-and-physical-sciences", | 33 | "name": "natural-and-physical-sciences", | ||
34 | "title": "08. \u81ea\u7136\u8207\u7269\u7406\u79d1\u5b78 / | 34 | "title": "08. \u81ea\u7136\u8207\u7269\u7406\u79d1\u5b78 / | ||
35 | Natural and physical sciences" | 35 | Natural and physical sciences" | ||
36 | }, | 36 | }, | ||
37 | { | 37 | { | ||
38 | "description": "", | 38 | "description": "", | ||
39 | "display_name": "Asian Soundscape Monitoring Network ", | 39 | "display_name": "Asian Soundscape Monitoring Network ", | ||
40 | "id": "1bcc1993-657e-4e12-933c-63b780064000", | 40 | "id": "1bcc1993-657e-4e12-933c-63b780064000", | ||
41 | "image_display_url": "", | 41 | "image_display_url": "", | ||
42 | "name": "asian-soundscape-monitoring-network", | 42 | "name": "asian-soundscape-monitoring-network", | ||
43 | "title": "Asian Soundscape Monitoring Network " | 43 | "title": "Asian Soundscape Monitoring Network " | ||
44 | }, | 44 | }, | ||
45 | { | 45 | { | ||
46 | "description": | 46 | "description": | ||
47 | 2a\u6f6e\u3001\u6d77\u5cb8\u8cc7\u8a0a\u3001\u6697\u7901\u3002Features | 47 | 2a\u6f6e\u3001\u6d77\u5cb8\u8cc7\u8a0a\u3001\u6697\u7901\u3002Features | ||
48 | and characteristics of salt water bodies (excluding inland waters). | 48 | and characteristics of salt water bodies (excluding inland waters). | ||
49 | Examples: tides, tidal waves, coastal information, reefs.", | 49 | Examples: tides, tidal waves, coastal information, reefs.", | ||
50 | "display_name": "[ISO19115] \u6d77\u6d0b\u8cc7\u8a0a\u985e / | 50 | "display_name": "[ISO19115] \u6d77\u6d0b\u8cc7\u8a0a\u985e / | ||
51 | Oceans", | 51 | Oceans", | ||
52 | "id": "ea43fdab-1e00-449b-88b1-ed15e56120eb", | 52 | "id": "ea43fdab-1e00-449b-88b1-ed15e56120eb", | ||
53 | "image_display_url": "", | 53 | "image_display_url": "", | ||
54 | "name": "oceans", | 54 | "name": "oceans", | ||
55 | "title": "[ISO19115] \u6d77\u6d0b\u8cc7\u8a0a\u985e / Oceans" | 55 | "title": "[ISO19115] \u6d77\u6d0b\u8cc7\u8a0a\u985e / Oceans" | ||
56 | }, | 56 | }, | ||
57 | { | 57 | { | ||
58 | "description": | 58 | "description": | ||
59 | u6d0b\u751f\u6d3b\u3001\u6ebc\u5730\u3001\u68f2\u606f\u5730\u3002Flora | 59 | u6d0b\u751f\u6d3b\u3001\u6ebc\u5730\u3001\u68f2\u606f\u5730\u3002Flora | ||
60 | and/or fauna in natural environment. Examples: wildlife, vegetation, | 60 | and/or fauna in natural environment. Examples: wildlife, vegetation, | ||
61 | biological sciences, ecology, wilderness, sealife, wetlands, | 61 | biological sciences, ecology, wilderness, sealife, wetlands, | ||
62 | habitat.", | 62 | habitat.", | ||
63 | "display_name": "[ISO19115] \u751f\u7269\u751f\u614b\u985e / | 63 | "display_name": "[ISO19115] \u751f\u7269\u751f\u614b\u985e / | ||
64 | Biota", | 64 | Biota", | ||
65 | "id": "234ceb65-658b-46c4-95ad-68d6356523ce", | 65 | "id": "234ceb65-658b-46c4-95ad-68d6356523ce", | ||
66 | "image_display_url": "", | 66 | "image_display_url": "", | ||
67 | "name": "biota", | 67 | "name": "biota", | ||
68 | "title": "[ISO19115] \u751f\u7269\u751f\u614b\u985e / Biota" | 68 | "title": "[ISO19115] \u751f\u7269\u751f\u614b\u985e / Biota" | ||
69 | } | 69 | } | ||
70 | ], | 70 | ], | ||
71 | "id": "c0c7d9a4-c9e0-4a5d-9740-884817af13f7", | 71 | "id": "c0c7d9a4-c9e0-4a5d-9740-884817af13f7", | ||
72 | "isopen": true, | 72 | "isopen": true, | ||
73 | "keywords": [ | 73 | "keywords": [ | ||
74 | "Q686881", | 74 | "Q686881", | ||
75 | "Q1358257", | 75 | "Q1358257", | ||
76 | "Q5250646" | 76 | "Q5250646" | ||
77 | ], | 77 | ], | ||
78 | "language": [ | 78 | "language": [ | ||
79 | "eng" | 79 | "eng" | ||
80 | ], | 80 | ], | ||
81 | "license_id": "cc-by", | 81 | "license_id": "cc-by", | ||
82 | "license_title": "CC-BY 4.0", | 82 | "license_title": "CC-BY 4.0", | ||
83 | "license_url": "https://creativecommons.org/licenses/by/4.0/", | 83 | "license_url": "https://creativecommons.org/licenses/by/4.0/", | ||
84 | "maintainer": null, | 84 | "maintainer": null, | ||
85 | "maintainer_email": null, | 85 | "maintainer_email": null, | ||
86 | "metadata_created": "2021-06-07T06:22:53.324633", | 86 | "metadata_created": "2021-06-07T06:22:53.324633", | ||
87 | "metadata_modified": "2021-08-31T17:05:35.910023", | 87 | "metadata_modified": "2021-08-31T17:05:35.910023", | ||
88 | "name": "deep-sea-soundscapes-of-japan", | 88 | "name": "deep-sea-soundscapes-of-japan", | ||
89 | "notes": "This dataset is an archive of acoustic data associated | 89 | "notes": "This dataset is an archive of acoustic data associated | ||
90 | with the deep-sea soundscapes of Japan. Python codes to visualize the | 90 | with the deep-sea soundscapes of Japan. Python codes to visualize the | ||
91 | audio data are also provided in a notebook based on Google | 91 | audio data are also provided in a notebook based on Google | ||
92 | Colab.\r\n\r\n__Recording Locations__\r\n\r\nFour deep-sea ecosystems | 92 | Colab.\r\n\r\n__Recording Locations__\r\n\r\nFour deep-sea ecosystems | ||
93 | around Japan were recorded. This includes the benthic habitats off | 93 | around Japan were recorded. This includes the benthic habitats off | ||
94 | Sanriku, the twilight zone of Suruga Bay, the hydrothermal vents of | 94 | Sanriku, the twilight zone of Suruga Bay, the hydrothermal vents of | ||
95 | Suiyo Seamount, and the abyssal plains off Minamitorishima | 95 | Suiyo Seamount, and the abyssal plains off Minamitorishima | ||
96 | Island.\r\n\r\n* Off Sanriku: multiple recording locations were | 96 | Island.\r\n\r\n* Off Sanriku: multiple recording locations were | ||
97 | surveyed between July 21 and August 5, 2019 within an area enclosed by | 97 | surveyed between July 21 and August 5, 2019 within an area enclosed by | ||
98 | 39\u00b002.3486\u2019N, 39\u00b024.1055\u2019N, | 98 | 39\u00b002.3486\u2019N, 39\u00b024.1055\u2019N, | ||
99 | 142\u00b008.2092\u2019E, and 142\u00b027.0315\u2019E. The depth range | 99 | 142\u00b008.2092\u2019E, and 142\u00b027.0315\u2019E. The depth range | ||
100 | was between 250-1011 m.\r\n* Suruga Bay: one recording location was | 100 | was between 250-1011 m.\r\n* Suruga Bay: one recording location was | ||
101 | surveyed November 4-5, 2019 at 34\u00b058.3952\u2019N, | 101 | surveyed November 4-5, 2019 at 34\u00b058.3952\u2019N, | ||
102 | 138\u00b043.2089\u2019E. The depth was 1686 m.\r\n* Suiyo Seamount: | 102 | 138\u00b043.2089\u2019E. The depth was 1686 m.\r\n* Suiyo Seamount: | ||
103 | three recording locations were surveyed between August 21-25, 2019 at | 103 | three recording locations were surveyed between August 21-25, 2019 at | ||
104 | 28\u00b034.2715\u2019N, 140\u00b038.6216\u2019E, 1384 m (an active | 104 | 28\u00b034.2715\u2019N, 140\u00b038.6216\u2019E, 1384 m (an active | ||
105 | hydrothermal vent without visible bubbling), 28\u00b034.1438\u2019N, | 105 | hydrothermal vent without visible bubbling), 28\u00b034.1438\u2019N, | ||
106 | 140\u00b038.9641\u2019E, 994 m (caldera rim), and | 106 | 140\u00b038.9641\u2019E, 994 m (caldera rim), and | ||
107 | 28\u00b034.3288\u2019N, 140\u00b038.5758\u2019E, depth 1381 m (an | 107 | 28\u00b034.3288\u2019N, 140\u00b038.5758\u2019E, depth 1381 m (an | ||
108 | active vent orifice).\r\n* Minamitorishima Island: one recording | 108 | active vent orifice).\r\n* Minamitorishima Island: one recording | ||
109 | location was surveyed on March 14, 2020 at 23\u00b005\u2019N, | 109 | location was surveyed on March 14, 2020 at 23\u00b005\u2019N, | ||
110 | 153\u00b050\u2019E, depth 5500 m.\r\n\r\n__Acoustic | 110 | 153\u00b050\u2019E, depth 5500 m.\r\n\r\n__Acoustic | ||
111 | Recorders__\r\n\r\nTwo recording systems were used. The first system, | 111 | Recorders__\r\n\r\nTwo recording systems were used. The first system, | ||
112 | designed to a depth rating of 2000 m, was deployed in Sanriku waters, | 112 | designed to a depth rating of 2000 m, was deployed in Sanriku waters, | ||
113 | Suruga Bay, and Suiyo Seamount. It was composed of a DS-850 digital | 113 | Suruga Bay, and Suiyo Seamount. It was composed of a DS-850 digital | ||
114 | recorder (Olympus, Japan) and a AQH-020D hydrophone (AquaSound Inc., | 114 | recorder (Olympus, Japan) and a AQH-020D hydrophone (AquaSound Inc., | ||
115 | Japan). The AQH-020D hydrophone has a sensitivity of -195 dB re | 115 | Japan). The AQH-020D hydrophone has a sensitivity of -195 dB re | ||
116 | 1V/\u03bcPa and a flat frequency response between 20 Hz and 20 kHz. | 116 | 1V/\u03bcPa and a flat frequency response between 20 Hz and 20 kHz. | ||
117 | \r\nThe second system was designed to 6000 m depth rating (off | 117 | \r\nThe second system was designed to 6000 m depth rating (off | ||
118 | Minamitorishima Island). It was based on an LS-P4 digital recorder | 118 | Minamitorishima Island). It was based on an LS-P4 digital recorder | ||
119 | (Olympus, Japan) and a HTI-94-SSQ hydrophone (High Tech Inc., U.S.A.). | 119 | (Olympus, Japan) and a HTI-94-SSQ hydrophone (High Tech Inc., U.S.A.). | ||
120 | The HTI-94-SSQ hydrophone has a sensitivity of -198 dB re 1V/\u03bcPa | 120 | The HTI-94-SSQ hydrophone has a sensitivity of -198 dB re 1V/\u03bcPa | ||
121 | and a flat frequency response between 2 Hz and 30 | 121 | and a flat frequency response between 2 Hz and 30 | ||
122 | kHz.\r\n\r\n__Configuration of Audio Recording__\r\n\r\n(1) Duty | 122 | kHz.\r\n\r\n__Configuration of Audio Recording__\r\n\r\n(1) Duty | ||
123 | Cycle: continuous. (2) Sampling Rate: 44.1 kHz (off Sanriku, Suruga | 123 | Cycle: continuous. (2) Sampling Rate: 44.1 kHz (off Sanriku, Suruga | ||
124 | Bay, and Suiyo Seamount) and 88.2 kHz (off Minamitorishima Island). | 124 | Bay, and Suiyo Seamount) and 88.2 kHz (off Minamitorishima Island). | ||
125 | (3) Channels: 1 (single input but stereo output). (4) File Format: | 125 | (3) Channels: 1 (single input but stereo output). (4) File Format: | ||
126 | WAV. (5) Audio Gain: High. (6) High Pass Filter: Off.\r\n\r\n__Field | 126 | WAV. (5) Audio Gain: High. (6) High Pass Filter: Off.\r\n\r\n__Field | ||
127 | Deployment__\r\n\r\nAt each deployment, one recorder was fixed at the | 127 | Deployment__\r\n\r\nAt each deployment, one recorder was fixed at the | ||
128 | seafloor. Each deployment lasted for from a few hours to a maximum of | 128 | seafloor. Each deployment lasted for from a few hours to a maximum of | ||
129 | two days. Deployment and recovery of recorders were conducted by free | 129 | two days. Deployment and recovery of recorders were conducted by free | ||
130 | fall camera systems (off Sanriku), Edokko Mark 1 (Suruga Bay and off | 130 | fall camera systems (off Sanriku), Edokko Mark 1 (Suruga Bay and off | ||
131 | Minamitorishima Island), DSV Shinkai 6500 (Suiyo Seamount). | 131 | Minamitorishima Island), DSV Shinkai 6500 (Suiyo Seamount). | ||
132 | Operational noises produced from these deep-sea observation platforms | 132 | Operational noises produced from these deep-sea observation platforms | ||
133 | and research vessels were also recorded. \r\n\r\n__Data | 133 | and research vessels were also recorded. \r\n\r\n__Data | ||
134 | Processing__\r\n\r\nWe used the | 134 | Processing__\r\n\r\nWe used the | ||
135 | [LTSA_gui](https://github.com/schonkopf/long-term-spectrogram) to | 135 | [LTSA_gui](https://github.com/schonkopf/long-term-spectrogram) to | ||
136 | generate long-term spectrograms (LTS) and save the LTS in mat files. | 136 | generate long-term spectrograms (LTS) and save the LTS in mat files. | ||
137 | Each mat file contains median-based LTS and mean-based LTS. | 137 | Each mat file contains median-based LTS and mean-based LTS. | ||
138 | Median-based LTS was obtained by measuring median power spectral | 138 | Median-based LTS was obtained by measuring median power spectral | ||
139 | densities within each 1-min segment. Mean-based LTS was obtained by | 139 | densities within each 1-min segment. Mean-based LTS was obtained by | ||
140 | measuring mean power spectral densities within each 1-min segment. | 140 | measuring mean power spectral densities within each 1-min segment. | ||
141 | Both types of LTS have a frequency resolution of 10 | 141 | Both types of LTS have a frequency resolution of 10 | ||
142 | Hz.\r\n\r\n__Associated Publication__\r\n\r\nChong Chen, Tzu-Hao Lin, | 142 | Hz.\r\n\r\n__Associated Publication__\r\n\r\nChong Chen, Tzu-Hao Lin, | ||
143 | Hiromi Kayama Watanabe, Tomonari Akamatsu, Shinsuke Kawagucci (2021) | 143 | Hiromi Kayama Watanabe, Tomonari Akamatsu, Shinsuke Kawagucci (2021) | ||
144 | Baseline soundscapes of deep-sea habitats reveal heterogeneity among | 144 | Baseline soundscapes of deep-sea habitats reveal heterogeneity among | ||
145 | ecosystems and sensitivity to anthropogenic impacts. [Limnology and | 145 | ecosystems and sensitivity to anthropogenic impacts. [Limnology and | ||
146 | Oceanography, early view.](https://doi.org/10.1002/lno.11911)\r\n", | 146 | Oceanography, early view.](https://doi.org/10.1002/lno.11911)\r\n", | ||
n | 147 | "num_resources": 9, | n | 147 | "num_resources": 10, |
148 | "num_tags": 15, | 148 | "num_tags": 15, | ||
149 | "organization": { | 149 | "organization": { | ||
150 | "approval_status": "approved", | 150 | "approval_status": "approved", | ||
151 | "created": "2019-03-20T13:50:26.711089", | 151 | "created": "2019-03-20T13:50:26.711089", | ||
152 | "description": "[Project | 152 | "description": "[Project | ||
153 | s://meil.biodiv.tw/projects/biodiversity-listening-project)\r\n\r\nThe | 153 | s://meil.biodiv.tw/projects/biodiversity-listening-project)\r\n\r\nThe | ||
154 | ocean is full of sounds that are generated from geophysical events, | 154 | ocean is full of sounds that are generated from geophysical events, | ||
155 | marine animals, and human activities. By using a hydrophone (a | 155 | marine animals, and human activities. By using a hydrophone (a | ||
156 | microphone for underwater use), we can hear chirps of marine mammals, | 156 | microphone for underwater use), we can hear chirps of marine mammals, | ||
157 | choruses of soniferous fish, and pulsed sounds of benthic | 157 | choruses of soniferous fish, and pulsed sounds of benthic | ||
158 | invertebrates. These bioacoustic signals reveal the status of marine | 158 | invertebrates. These bioacoustic signals reveal the status of marine | ||
159 | biodiversity and ecosystem health. On the other hand, the increased | 159 | biodiversity and ecosystem health. On the other hand, the increased | ||
160 | maritime traffic, over-exploitation of marine resources, and the | 160 | maritime traffic, over-exploitation of marine resources, and the | ||
161 | development of renewable energy have led to a global increase in | 161 | development of renewable energy have led to a global increase in | ||
162 | underwater noise. Listening to underwater sounds allows us to remotely | 162 | underwater noise. Listening to underwater sounds allows us to remotely | ||
163 | acquire ecological data of marine biodiversity and investigate the | 163 | acquire ecological data of marine biodiversity and investigate the | ||
164 | changes of biodiversity in response to climate change and | 164 | changes of biodiversity in response to climate change and | ||
165 | anthropogenic development.\r\n\r\nIn this project, we attempt to | 165 | anthropogenic development.\r\n\r\nIn this project, we attempt to | ||
166 | establish a large-scale soundscape monitoring network and characterize | 166 | establish a large-scale soundscape monitoring network and characterize | ||
167 | ecosystem-specific soundscapes by separating sounds from geophonic, | 167 | ecosystem-specific soundscapes by separating sounds from geophonic, | ||
168 | biological, and anthropogenic sources. Based on information retrieval | 168 | biological, and anthropogenic sources. Based on information retrieval | ||
169 | techniques, the acoustic data are transformed into metrics that | 169 | techniques, the acoustic data are transformed into metrics that | ||
170 | describe the quality of acoustic habitat, the behavior of soniferous | 170 | describe the quality of acoustic habitat, the behavior of soniferous | ||
171 | animals, and noise-generating activities. The outcomes will allow | 171 | animals, and noise-generating activities. The outcomes will allow | ||
172 | managers and stakeholders to use soundscape information to monitor the | 172 | managers and stakeholders to use soundscape information to monitor the | ||
173 | trends of marine ecosystems and perform data-driven decision making in | 173 | trends of marine ecosystems and perform data-driven decision making in | ||
174 | conservation management.", | 174 | conservation management.", | ||
175 | "id": "47760d14-e284-4655-b5d0-42d268420f0c", | 175 | "id": "47760d14-e284-4655-b5d0-42d268420f0c", | ||
176 | "image_url": "", | 176 | "image_url": "", | ||
177 | "is_organization": true, | 177 | "is_organization": true, | ||
178 | "name": "oceanbiodiversity", | 178 | "name": "oceanbiodiversity", | ||
179 | "state": "active", | 179 | "state": "active", | ||
180 | "title": "Ocean Biodiversity Listening Project", | 180 | "title": "Ocean Biodiversity Listening Project", | ||
181 | "type": "organization" | 181 | "type": "organization" | ||
182 | }, | 182 | }, | ||
183 | "owner_org": "47760d14-e284-4655-b5d0-42d268420f0c", | 183 | "owner_org": "47760d14-e284-4655-b5d0-42d268420f0c", | ||
184 | "private": false, | 184 | "private": false, | ||
185 | "process_step": "", | 185 | "process_step": "", | ||
186 | "relationships_as_object": [], | 186 | "relationships_as_object": [], | ||
187 | "relationships_as_subject": [], | 187 | "relationships_as_subject": [], | ||
188 | "remarks": "", | 188 | "remarks": "", | ||
189 | "resources": [ | 189 | "resources": [ | ||
190 | { | 190 | { | ||
191 | "cache_last_updated": null, | 191 | "cache_last_updated": null, | ||
192 | "cache_url": null, | 192 | "cache_url": null, | ||
193 | "created": "2021-06-07T06:24:08.361479", | 193 | "created": "2021-06-07T06:24:08.361479", | ||
194 | "datastore_active": false, | 194 | "datastore_active": false, | ||
195 | "datastore_contains_all_records_of_source_file": false, | 195 | "datastore_contains_all_records_of_source_file": false, | ||
196 | "description": "A link to a shared Drive folder of underwater | 196 | "description": "A link to a shared Drive folder of underwater | ||
197 | recordings (WAV) and long-term spectrograms (MAT).", | 197 | recordings (WAV) and long-term spectrograms (MAT).", | ||
198 | "encoding": "", | 198 | "encoding": "", | ||
199 | "format": "", | 199 | "format": "", | ||
200 | "hash": "", | 200 | "hash": "", | ||
201 | "id": "2dfda7a1-5cdd-46eb-9171-0951914b6e61", | 201 | "id": "2dfda7a1-5cdd-46eb-9171-0951914b6e61", | ||
202 | "last_modified": null, | 202 | "last_modified": null, | ||
203 | "mimetype": null, | 203 | "mimetype": null, | ||
204 | "mimetype_inner": null, | 204 | "mimetype_inner": null, | ||
205 | "name": "Audio data", | 205 | "name": "Audio data", | ||
206 | "package_id": "c0c7d9a4-c9e0-4a5d-9740-884817af13f7", | 206 | "package_id": "c0c7d9a4-c9e0-4a5d-9740-884817af13f7", | ||
207 | "position": 0, | 207 | "position": 0, | ||
208 | "resource_type": null, | 208 | "resource_type": null, | ||
209 | "size": null, | 209 | "size": null, | ||
210 | "state": "active", | 210 | "state": "active", | ||
211 | "url": | 211 | "url": | ||
212 | ogle.com/drive/folders/1Xu0jZjFoaunmYyRkFWsrEnWUZ2CQ8bEr?usp=sharing", | 212 | ogle.com/drive/folders/1Xu0jZjFoaunmYyRkFWsrEnWUZ2CQ8bEr?usp=sharing", | ||
213 | "url_type": null | 213 | "url_type": null | ||
214 | }, | 214 | }, | ||
215 | { | 215 | { | ||
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463 | "display_name": "Deep-sea benthic ecosystems", | 488 | "display_name": "Deep-sea benthic ecosystems", | ||
464 | "id": "99d41396-8fae-493c-8e2a-c75c1013cdb9", | 489 | "id": "99d41396-8fae-493c-8e2a-c75c1013cdb9", | ||
465 | "name": "Deep-sea benthic ecosystems", | 490 | "name": "Deep-sea benthic ecosystems", | ||
466 | "state": "active", | 491 | "state": "active", | ||
467 | "vocabulary_id": null | 492 | "vocabulary_id": null | ||
468 | }, | 493 | }, | ||
469 | { | 494 | { | ||
470 | "display_name": "Deep-sea mining", | 495 | "display_name": "Deep-sea mining", | ||
471 | "id": "eff24dea-9ec3-49cb-863b-ba20e123099b", | 496 | "id": "eff24dea-9ec3-49cb-863b-ba20e123099b", | ||
472 | "name": "Deep-sea mining", | 497 | "name": "Deep-sea mining", | ||
473 | "state": "active", | 498 | "state": "active", | ||
474 | "vocabulary_id": null | 499 | "vocabulary_id": null | ||
475 | }, | 500 | }, | ||
476 | { | 501 | { | ||
477 | "display_name": "Geophony", | 502 | "display_name": "Geophony", | ||
478 | "id": "830c5346-a2fd-4463-a3ae-30e83d31b2a3", | 503 | "id": "830c5346-a2fd-4463-a3ae-30e83d31b2a3", | ||
479 | "name": "Geophony", | 504 | "name": "Geophony", | ||
480 | "state": "active", | 505 | "state": "active", | ||
481 | "vocabulary_id": null | 506 | "vocabulary_id": null | ||
482 | }, | 507 | }, | ||
483 | { | 508 | { | ||
484 | "display_name": "Hydrothermal vent", | 509 | "display_name": "Hydrothermal vent", | ||
485 | "id": "b7177ade-b10d-4f03-a5d7-7ca74319cce4", | 510 | "id": "b7177ade-b10d-4f03-a5d7-7ca74319cce4", | ||
486 | "name": "Hydrothermal vent", | 511 | "name": "Hydrothermal vent", | ||
487 | "state": "active", | 512 | "state": "active", | ||
488 | "vocabulary_id": null | 513 | "vocabulary_id": null | ||
489 | }, | 514 | }, | ||
490 | { | 515 | { | ||
491 | "display_name": "Hydrothermal vents", | 516 | "display_name": "Hydrothermal vents", | ||
492 | "id": "4f19dafe-6832-49d9-a883-a0f0e7c161e2", | 517 | "id": "4f19dafe-6832-49d9-a883-a0f0e7c161e2", | ||
493 | "name": "Hydrothermal vents", | 518 | "name": "Hydrothermal vents", | ||
494 | "state": "active", | 519 | "state": "active", | ||
495 | "vocabulary_id": null | 520 | "vocabulary_id": null | ||
496 | }, | 521 | }, | ||
497 | { | 522 | { | ||
498 | "display_name": "Noise impact", | 523 | "display_name": "Noise impact", | ||
499 | "id": "5715e825-bb90-4afc-9238-3198e2dbe63d", | 524 | "id": "5715e825-bb90-4afc-9238-3198e2dbe63d", | ||
500 | "name": "Noise impact", | 525 | "name": "Noise impact", | ||
501 | "state": "active", | 526 | "state": "active", | ||
502 | "vocabulary_id": null | 527 | "vocabulary_id": null | ||
503 | }, | 528 | }, | ||
504 | { | 529 | { | ||
505 | "display_name": "Passive acoustics", | 530 | "display_name": "Passive acoustics", | ||
506 | "id": "3c8394d5-8043-4b75-8266-7dc662e32386", | 531 | "id": "3c8394d5-8043-4b75-8266-7dc662e32386", | ||
507 | "name": "Passive acoustics", | 532 | "name": "Passive acoustics", | ||
508 | "state": "active", | 533 | "state": "active", | ||
509 | "vocabulary_id": null | 534 | "vocabulary_id": null | ||
510 | }, | 535 | }, | ||
511 | { | 536 | { | ||
512 | "display_name": "Twilight zone", | 537 | "display_name": "Twilight zone", | ||
513 | "id": "80895f61-7fa6-49ee-b7e5-5adc216ae7a0", | 538 | "id": "80895f61-7fa6-49ee-b7e5-5adc216ae7a0", | ||
514 | "name": "Twilight zone", | 539 | "name": "Twilight zone", | ||
515 | "state": "active", | 540 | "state": "active", | ||
516 | "vocabulary_id": null | 541 | "vocabulary_id": null | ||
517 | }, | 542 | }, | ||
518 | { | 543 | { | ||
519 | "display_name": "Underwater Noise", | 544 | "display_name": "Underwater Noise", | ||
520 | "id": "5fd7a819-b988-4b8a-b140-8367b47885ae", | 545 | "id": "5fd7a819-b988-4b8a-b140-8367b47885ae", | ||
521 | "name": "Underwater Noise", | 546 | "name": "Underwater Noise", | ||
522 | "state": "active", | 547 | "state": "active", | ||
523 | "vocabulary_id": null | 548 | "vocabulary_id": null | ||
524 | } | 549 | } | ||
525 | ], | 550 | ], | ||
526 | "temp_res": "daily", | 551 | "temp_res": "daily", | ||
527 | "title": "Deep-sea soundscapes of Japan", | 552 | "title": "Deep-sea soundscapes of Japan", | ||
528 | "type": "dataset", | 553 | "type": "dataset", | ||
529 | "url": null, | 554 | "url": null, | ||
530 | "version": null | 555 | "version": null | ||
531 | } | 556 | } |