Automated Author Profile

Smolinsky, Jaclyn A.

Current S-Index

2.2

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.4

Average Dataset Index per dataset

Total Datasets

5

Total datasets for this author

Average FAIR Score

40.0%

Average FAIR Score per dataset

Total Citations

4

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Data from: Urban areas affect flight altitudes of nocturnally migrating birds (Version: 1)

  1. Urban areas affect terrestrial ecological processes and local weather, but we know little about their effect on aerial ecological processes. 2. Here, we identify urban from non-urban areas based on the intensity of artificial light at night (ALAN) in the landscape, and, along with weather covariates, evaluate the effect of urbanization on flight altitudes of nocturnally migrating birds. 3. Birds are attracted to ALAN, hence we predicted that altitudes would be lower over urban than over non-urban areas. However, other factors associated with urbanization may also affect flight altitudes. For example, surface temperature and terrain roughness are higher in urban areas, increasing air turbulence, height of the boundary layer, and affecting local winds. 4. We used data from nine weather surveillance radars in the eastern US to estimate altitudes at five quantiles of the vertical distribution of birds migrating at night over urban and non-urban areas during five consecutive spring and autumn migration seasons. We fit generalized linear mixed models by season for each of the five quantiles of bird flight altitude and their differences between urban and non-urban areas. 5. After controlling for other environmental variables and contrary to our prediction, we found that birds generally fly higher over urban areas compared to rural areas in spring, and marginally higher at the mid layers of the vertical distribution in autumn. We also identified a small interaction effect between urbanization and crosswind speed, and between urbanization and surface air temperature, on flight altitudes. We also found that the difference in flight altitudes of nocturnally migrating birds between urban and non-urban areas varied among radars and seasons, but were consistently higher over urban areas throughout the years sampled. 6. Our results suggest that the effects of urbanization on wildlife extend into the aerosphere, and are complex, stressing the need of understanding the influence of anthropogenic factors on airspace habitat.

Authors

  • Cabrera-Cruz, Sergio A. ;
  • Smolinsky, Jaclyn A. ;
  • McCarthy, Kyle P. ;
  • Buler, Jeffrey J.
1 Citation0 Mentions77% FAIR0.7 Dataset Index
10.5061/dryad.4433sp22019

EL_data

No description available

Authors

  • McLaren, James G. ;
  • Buler, Jeffrey J. ;
  • Schreckengost, Tim ;
  • Smolinsky, Jaclyn A. ;
  • Boone, Matthew ;
  • Van Loon, E. Emiel ;
  • Dawson, Deanna K. ;
  • Walters, Eric L.
0 Citations0 Mentions77% FAIR0.3 Dataset Index
10.5061/dryad.18v5d/12018

Data from: Fat, weather, and date affect migratory songbirds’ departure decisions, routes, and time it takes to cross the Gulf of Mexico

Approximately two thirds of migratory songbirds in eastern North America negotiate the Gulf of Mexico (GOM), where inclement weather coupled with no refueling or resting opportunities can be lethal. However, decisions made when navigating such features and their consequences remain largely unknown due to technological limitations of tracking small animals over large areas. We used automated radio telemetry to track three songbird species (Red-eyed Vireo, Swainson’s Thrush, Wood Thrush) from coastal Alabama to the northern Yucatan Peninsula (YP) during fall migration. Detecting songbirds after crossing ∼1,000 km of open water allowed us to examine intrinsic (age, wing length, fat) and extrinsic (weather, date) variables shaping departure decisions, arrival at the YP, and crossing times. Large fat reserves and low humidity, indicative of beneficial synoptic weather patterns, favored southward departure across the Gulf. Individuals detected in the YP departed with large fat reserves and later in the fall with profitable winds, and flight durations (mean = 22.4 h) were positively related to wind profit. Age was not related to departure behavior, arrival, or travel time. However, vireos negotiated the GOM differently than thrushes, including different departure decisions, lower probability of detection in the YP, and longer crossing times. Defense of winter territories by thrushes but not vireos and species-specific foraging habits may explain the divergent migratory behaviors. Fat reserves appear extremely important to departure decisions and arrival in the YP. As habitat along the GOM is degraded, birds may be limited in their ability to acquire fat to cross the Gulf.

Authors

  • Deppe, Jill L. ;
  • Ward, Michael P. ;
  • Bolus, Rachel T. ;
  • Diehl, Robert H. ;
  • Celis-Murillo, Antonio ;
  • Zenzal, Theodore J. ;
  • Moore, Frank R. ;
  • Benson, Thomas J. ;
  • Smolinsky, Jaclyn A. ;
  • Schofield, Lynn N. ;
  • Enstrom, David A. ;
  • Paxton, Eben H. ;
  • Bohrer, Gil ;
  • Beveroth, Tara A. ;
  • Raim, Arlo ;
  • Obringer, Renee L. ;
  • Delaney, David ;
  • Cochran, William W.
1 Citation0 Mentions15% FAIR0.4 Dataset Index
10.5441/001/1.12hv60k62016

Fall Gulf of Mexico crossings by migratory Swainson's thrushes, wood thrushes, and red-eyed vireos (data from Deppe et al 2015)

Approximately two thirds of migratory songbirds in eastern North America negotiate the Gulf of Mexico (GOM), where inclement weather coupled with no refueling or resting opportunities can be lethal. However, decisions made when navigating such features and their consequences remain largely unknown due to technological limitations of tracking small animals over large areas. We used automated radio telemetry to track three songbird species (Red-eyed Vireo, Swainson’s Thrush, Wood Thrush) from coastal Alabama to the northern Yucatan Peninsula (YP) during fall migration. Detecting songbirds after crossing ∼1,000 km of open water allowed us to examine intrinsic (age, wing length, fat) and extrinsic (weather, date) variables shaping departure decisions, arrival at the YP, and crossing times. Large fat reserves and low humidity, indicative of beneficial synoptic weather patterns, favored southward departure across the Gulf. Individuals detected in the YP departed with large fat reserves and later in the fall with profitable winds, and flight durations (mean = 22.4 h) were positively related to wind profit. Age was not related to departure behavior, arrival, or travel time. However, vireos negotiated the GOM differently than thrushes, including different departure decisions, lower probability of detection in the YP, and longer crossing times. Defense of winter territories by thrushes but not vireos and species-specific foraging habits may explain the divergent migratory behaviors. Fat reserves appear extremely important to departure decisions and arrival in the YP. As habitat along the GOM is degraded, birds may be limited in their ability to acquire fat to cross the Gulf.

Authors

  • Deppe, Jill L. ;
  • Ward, Michael P. ;
  • Bolus, Rachel T. ;
  • Diehl, Robert H. ;
  • Celis-Murillo, Antonio ;
  • Zenzal, Theodore J. ;
  • Moore, Frank R. ;
  • Smolinsky, Jaclyn A. ;
  • Schofield, Lynn N. ;
  • Enstrom, David A. ;
  • Paxton, Eben H. ;
  • Bohrer, Gil ;
  • Beveroth, Tara A. ;
  • Raim, Arlo ;
  • Obringer, Renee L. ;
  • Delaney, David ;
  • Cochran, William W.
1 Citation0 Mentions15% FAIR0.4 Dataset Index
10.5441/001/1.12hv60k6/12016

Fall Gulf of Mexico crossings by migratory Swainson's thrushes, wood thrushes, and red-eyed vireos (data from Deppe et al 2015)-reference-data

Approximately two thirds of migratory songbirds in eastern North America negotiate the Gulf of Mexico (GOM), where inclement weather coupled with no refueling or resting opportunities can be lethal. However, decisions made when navigating such features and their consequences remain largely unknown due to technological limitations of tracking small animals over large areas. We used automated radio telemetry to track three songbird species (Red-eyed Vireo, Swainson’s Thrush, Wood Thrush) from coastal Alabama to the northern Yucatan Peninsula (YP) during fall migration. Detecting songbirds after crossing ∼1,000 km of open water allowed us to examine intrinsic (age, wing length, fat) and extrinsic (weather, date) variables shaping departure decisions, arrival at the YP, and crossing times. Large fat reserves and low humidity, indicative of beneficial synoptic weather patterns, favored southward departure across the Gulf. Individuals detected in the YP departed with large fat reserves and later in the fall with profitable winds, and flight durations (mean = 22.4 h) were positively related to wind profit. Age was not related to departure behavior, arrival, or travel time. However, vireos negotiated the GOM differently than thrushes, including different departure decisions, lower probability of detection in the YP, and longer crossing times. Defense of winter territories by thrushes but not vireos and species-specific foraging habits may explain the divergent migratory behaviors. Fat reserves appear extremely important to departure decisions and arrival in the YP. As habitat along the GOM is degraded, birds may be limited in their ability to acquire fat to cross the Gulf.

Authors

  • Deppe, Jill L. ;
  • Ward, Michael P. ;
  • Bolus, Rachel T. ;
  • Diehl, Robert H. ;
  • Celis-Murillo, Antonio ;
  • Zenzal, Theodore J. ;
  • Moore, Frank R. ;
  • Benson, Thomas J. ;
  • Smolinsky, Jaclyn A. ;
  • Schofield, Lynn N. ;
  • Enstrom, David A. ;
  • Paxton, Eben H. ;
  • Bohrer, Gil ;
  • Beveroth, Tara A. ;
  • Raim, Arlo ;
  • Obringer, Renee L. ;
  • Delaney, David ;
  • Cochran, William W.
1 Citation0 Mentions15% FAIR0.4 Dataset Index
10.5441/001/1.12hv60k6/22016