Changes
On March 10, 2022 at 8:44:36 AM CST, kelsey-friesenumanitoba-ca:
-
Moved Netley-Libau Marsh Reports from organization Netley-Libeau Marsh to organization Aquatics ESI
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Changed value of field
related_programs
to["203ea721-3cd8-42b2-9177-7cfda35e8bc3"]
in Netley-Libau Marsh Reports
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3 | { | 3 | { | ||
4 | "affiliation": "Environment and Climate Change Canada", | 4 | "affiliation": "Environment and Climate Change Canada", | ||
5 | "creatorName": "Watchorn, K. Elise", | 5 | "creatorName": "Watchorn, K. Elise", | ||
6 | "email": "elisewatchorn@hotmail.com", | 6 | "email": "elisewatchorn@hotmail.com", | ||
7 | "nameIdentifier": "", | 7 | "nameIdentifier": "", | ||
8 | "nameType": "Personal" | 8 | "nameType": "Personal" | ||
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10 | ], | 10 | ], | ||
11 | "Identifier": "10.5203/pt3n-8s44", | 11 | "Identifier": "10.5203/pt3n-8s44", | ||
12 | "PublicationYear": "2022", | 12 | "PublicationYear": "2022", | ||
13 | "Publisher": "Enivronment and Climate Change Canada", | 13 | "Publisher": "Enivronment and Climate Change Canada", | ||
14 | "ResourceType": "report", | 14 | "ResourceType": "report", | ||
15 | "Rights": "Creative Commons Attribution 4.0 International", | 15 | "Rights": "Creative Commons Attribution 4.0 International", | ||
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23 | "descriptionType": "Abstract", | 23 | "descriptionType": "Abstract", | ||
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30 | { | ||||
31 | "description": "Inland water features, drainage systems and | ||||
32 | their characteristics. Examples of data you can find here include | ||||
33 | river and lake data, water quality data. \r\n\r\nIn CEOS, related | ||||
34 | research themes include biogeochemistry, Inland lakes and waters, | ||||
35 | modelling, remote sensing and technology, trace metals and | ||||
36 | contaminants.", | ||||
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41 | "name": "freshwater", | ||||
42 | "title": "Freshwater" | ||||
43 | }, | ||||
44 | { | ||||
45 | "description": "Image: \"Earth from Space\" by NASA Goddard | ||||
46 | Photo and Video is licensed under CC BY 2.0", | ||||
47 | "display_name": "Remote Sensing", | ||||
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64 | "metadata_created": "2022-03-07T19:00:10.419801", | 39 | "metadata_created": "2022-03-07T19:00:10.419801", | ||
n | 65 | "metadata_modified": "2022-03-07T19:25:02.324755", | n | 40 | "metadata_modified": "2022-03-10T14:44:35.942299", |
66 | "name": "netlib-marsh-reports", | 41 | "name": "netlib-marsh-reports", | ||
67 | "notes": "Phase II report: A time series analysis based on landsat | 42 | "notes": "Phase II report: A time series analysis based on landsat | ||
68 | imagery.", | 43 | imagery.", | ||
69 | "num_resources": 3, | 44 | "num_resources": 3, | ||
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71 | "organization": { | 46 | "organization": { | ||
72 | "approval_status": "approved", | 47 | "approval_status": "approved", | ||
n | 73 | "created": "2017-07-21T13:16:09.653452", | n | 48 | "created": "2022-03-07T12:38:24.839717", |
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n | 78 | "name": "nlm", | n | 53 | "name": "aquatics-esi", |
79 | "state": "active", | 54 | "state": "active", | ||
n | 80 | "title": "Netley-Libeau Marsh", | n | 55 | "title": "Aquatics ESI", |
81 | "type": "organization" | 56 | "type": "organization" | ||
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101 | { | 76 | { | ||
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105 | "datastore_active": false, | 80 | "datastore_active": false, | ||
106 | "datastore_contains_all_records_of_source_file": false, | 81 | "datastore_contains_all_records_of_source_file": false, | ||
107 | "description": "Netley-Libau Marsh, the largest coastal wetland | 82 | "description": "Netley-Libau Marsh, the largest coastal wetland | ||
108 | adjoining Lake Winnipeg, has been mapped by aerial\r\nphotography in | 83 | adjoining Lake Winnipeg, has been mapped by aerial\r\nphotography in | ||
109 | the past (Grosshans et al 2004; Verbiwski 1986), indicating a trend of | 84 | the past (Grosshans et al 2004; Verbiwski 1986), indicating a trend of | ||
110 | vegetation loss, but\r\na lack of historic aerial photography has | 85 | vegetation loss, but\r\na lack of historic aerial photography has | ||
111 | limited mapping efforts to sporadic intervals. Satellite | 86 | limited mapping efforts to sporadic intervals. Satellite | ||
112 | imagery,\r\nthough of a coarser spatial resolution, has the advantage | 87 | imagery,\r\nthough of a coarser spatial resolution, has the advantage | ||
113 | of high temporal and spectral resolution. Using\r\nLandsat images and | 88 | of high temporal and spectral resolution. Using\r\nLandsat images and | ||
114 | a methodology developed in an earlier phase of this study (Watchorn | 89 | a methodology developed in an earlier phase of this study (Watchorn | ||
115 | 2014), a time\r\nseries of classified vegetation cover maps was | 90 | 2014), a time\r\nseries of classified vegetation cover maps was | ||
116 | produced for twelve years between 1990 and 2013. Water\r\ncover maps | 91 | produced for twelve years between 1990 and 2013. Water\r\ncover maps | ||
117 | were produced for another eight years within this interval, resulting | 92 | were produced for another eight years within this interval, resulting | ||
118 | in a time series\r\nrepresenting 20 years of this 23-year period. This | 93 | in a time series\r\nrepresenting 20 years of this 23-year period. This | ||
119 | time series allowed for an investigation into\r\nrelationships between | 94 | time series allowed for an investigation into\r\nrelationships between | ||
120 | the extent and distribution of Netley\u2019s vegetation community to | 95 | the extent and distribution of Netley\u2019s vegetation community to | ||
121 | underlying\r\nhydrological factors on adjoining Lake Winnipeg and the | 96 | underlying\r\nhydrological factors on adjoining Lake Winnipeg and the | ||
122 | Red River, which can be used to guide future\r\nmarsh remediation | 97 | Red River, which can be used to guide future\r\nmarsh remediation | ||
123 | measures.\r\nThe analysis of this time series indicates that the | 98 | measures.\r\nThe analysis of this time series indicates that the | ||
124 | long-term trend of vegetation loss in Netley-Libau Marsh\r\nhas not | 99 | long-term trend of vegetation loss in Netley-Libau Marsh\r\nhas not | ||
125 | been steady, nor has it been unidirectional. Observed vegetation | 100 | been steady, nor has it been unidirectional. Observed vegetation | ||
126 | change \u2013 both loss and gain \u2013\r\nwas characterised by sudden | 101 | change \u2013 both loss and gain \u2013\r\nwas characterised by sudden | ||
127 | dramatic changes disrupting periods of relative stasis. Lake Winnipeg | 102 | dramatic changes disrupting periods of relative stasis. Lake Winnipeg | ||
128 | water\r\nlevel was identified as the major factor responsible for | 103 | water\r\nlevel was identified as the major factor responsible for | ||
129 | shifting the balance between emergent wetland\r\nvegetation and open | 104 | shifting the balance between emergent wetland\r\nvegetation and open | ||
130 | water. Periods of low water as short as one year had dramatic and | 105 | water. Periods of low water as short as one year had dramatic and | ||
131 | persistent effects\r\non emergent vegetation cover, particularly in | 106 | persistent effects\r\non emergent vegetation cover, particularly in | ||
132 | smaller lakes. Regenerated emergent vegetation was less\r\npersistent | 107 | smaller lakes. Regenerated emergent vegetation was less\r\npersistent | ||
133 | in the large Netley Lake, suggesting that marsh bathymetry is dynamic. | 108 | in the large Netley Lake, suggesting that marsh bathymetry is dynamic. | ||
134 | This study also\r\nidentified that Lake Winnipeg water level and Red | 109 | This study also\r\nidentified that Lake Winnipeg water level and Red | ||
135 | River flow are both contributing factors which influence\r\nthe extent | 110 | River flow are both contributing factors which influence\r\nthe extent | ||
136 | of wet meadows around Netley-Libau Marsh. Decreased river discharges | 111 | of wet meadows around Netley-Libau Marsh. Decreased river discharges | ||
137 | and lake levels were\r\ncorrelated with increasing use of these | 112 | and lake levels were\r\ncorrelated with increasing use of these | ||
138 | regions as hayed or cultivated land. Finally, the interpretation | 113 | regions as hayed or cultivated land. Finally, the interpretation | ||
139 | of\r\nthe cover map time series indicates the connectivity between the | 114 | of\r\nthe cover map time series indicates the connectivity between the | ||
140 | marsh lakes and Lake Winnipeg has\r\nvaried and is presently | 115 | marsh lakes and Lake Winnipeg has\r\nvaried and is presently | ||
141 | increasing. ", | 116 | increasing. ", | ||
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149 | "name": "Water and Vegetation Cover in Netley-Libau Marsh 1990 | 124 | "name": "Water and Vegetation Cover in Netley-Libau Marsh 1990 | ||
150 | \u2013 2013. Phase II Report: A time series analysis based on landsat | 125 | \u2013 2013. Phase II Report: A time series analysis based on landsat | ||
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176 | "name": "Changes in the Emergent Plant Community of Netley-Libau | 151 | "name": "Changes in the Emergent Plant Community of Netley-Libau | ||
177 | Marsh Between 1979 and 2001", | 152 | Marsh Between 1979 and 2001", | ||
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201 | "name": "An Analysis of Digital Wetland Vegetation Map | 176 | "name": "An Analysis of Digital Wetland Vegetation Map | ||
202 | Coverages. Produced Based on Aerial Photography and Satellite Imagry | 177 | Coverages. Produced Based on Aerial Photography and Satellite Imagry | ||
203 | Netley-Libau Marsh, 2001", | 178 | Netley-Libau Marsh, 2001", | ||
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220 | "state": "active", | 195 | "state": "active", | ||
221 | "subjectScheme": "Polar Data Catalogue", | 196 | "subjectScheme": "Polar Data Catalogue", | ||
222 | "tags": [ | 197 | "tags": [ | ||
223 | { | 198 | { | ||
224 | "display_name": "Freshwater quality", | 199 | "display_name": "Freshwater quality", | ||
225 | "id": "0389d405-7ad6-47cf-930f-9c25220c8935", | 200 | "id": "0389d405-7ad6-47cf-930f-9c25220c8935", | ||
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234 | ], | 209 | ], | ||
235 | "title": "Netley-Libau Marsh Reports", | 210 | "title": "Netley-Libau Marsh Reports", | ||
236 | "type": "publication", | 211 | "type": "publication", | ||
237 | "url": null, | 212 | "url": null, | ||
238 | "version": null | 213 | "version": null | ||
239 | } | 214 | } |