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Welcome to PolarConnect with Lisa Seff and the Oceanographic Conditions of Bowhead Whale Habitat 2012 PolarTREC Expedition Friday 7 September 2012 7:15 a.m. AKDT (8:15 am PDT, 9:15 am MDT, 10:15 am CDT, 11:15 am EDT)

Participant Introductions Please type in the chat box: ü Name ü Affiliation (School, Institution, Etc.) ü The number of students and adults participating with you in the same location

What is PolarTREC? PolarTREC is a professional development experience in which K-12 teachers are paired with researchers for 2-6 week research experiences in the polar regions. From 2010-2013, nearly 50 teachers from around the United States will join scientists in the Arctic and Antarctica to learn about science, the polar regions, and to share what they have learned with their students and communities.

During the Presentation: Type your question in the text chat box Questions At the End of the Presentation: Raise your hand with the hand button. PolarTREC staff will call on you. Speak loud and clear and directly into the phone to ask your question. Click on the Talk button to speak. Unclick when you are done.

Oceanographic Conditions of the Bowhead Whale Habitat Phil Alatalo Dr. Carin Ashjian Lisa Seff PolarTREC Educator Dr. Steve Okkonen Dr. Bob Campbell

UIC-NARL Barrow Alaska Springs School, East Hampton New York 71 17 44 N 156 45 59 W 40.9638 N, 72.1853 W

PolarTREC Orientation, Fairbanks

Euphausiids (Krill) are a type of zooplankton. zooplankton= animals that wander freely with ocean currents zoo=animals and plankton= wanderers

Arctic Ocean Ecosystem Professional Development May 2012, Barrow

Bowhead Whale Migration Map Courtesy Lori Quakenbush Bowhead whales spend the winter in the Bering Sea and the summer in the Canadian Arctic and migrate between the two regions during spring and fall During their migrations, bowhead whales pass by and often linger near coastal Alaskan villages These villages rely on subsistence hunting of the whales for food and have done so for centuries Whaling is an important part of Iñupiat culture

We have been working in Barrow since 2005. This is our eighth year of fieldwork. Research Goals Why do bowhead whales stop at Barrow during their migrations? Hypothesis: Bowhead whales stop at Barrow in fall because of dense patches of their prey that form there, such as krill. What oceanographic conditions form these patches? How do the ocean conditions, and amount of whale prey, vary inter-annually? How might climate variability change this?

What do whales eat? 40-60 feet Bowhead Whale Photo by Craig George Bowhead Prey 0.6-0.8 inch 0.2-0.4 in Photo by Celia Gelfman Euphausiids or Krill Copepods Photo by Celia Gelfman

How are we doing this? R/V Annika Marie (2005-2011) R/V Ukpik (2012)

CTD How and what are we sampling CTD- Temperature, salinity, pressure, fluorescence (chlorophyll) CTD and rosette Niskin Bottles - water for chlorophyll, nutrient, and microzooplankton samples Acoustic Doppler current profiler - Velocity and acoustic backscatter (not shown) Tucker Trawl Zooplankton (whale prey) Ring Net Zooplankton (whale prey) Niskin Bottle Processing Plankton Sample Tucker Trawl Ring Net

August 14, 2005 August 23, 2006 August 23, 2007 August 23, 2008 Little Ice Lots of Ice No Ice No Ice August 19, 2009 August 24, 2010 August 6, 2011 August 12, 2012 No Ice No Ice No Ice Lots of Ice in Aug. Example of Interannual Differences- Ice Cover Average 2012 2007

Prudhoe Bay, Alaska! Trans-Alaskan Pipeline Co-Captain Mike Flemming The R/V Ukpik! Captain Bill Kopplin

On the cruise from Prudhoe Bay to Barrow we deployed a shallow- water, short-term mooring. Oceanographic moorings measure and record weather in the ocean Hydrophone records marine mammal sounds Acoustic release and buoy mooring recovery equipment ADCP measures/ records ocean current speed and direction Conductivity Temperature sensor measures/records ocean salinity and temperature

Saturday September 3 rd we deployed a deep-water, year-round mooring Building the mooring Chain anchor buoy ADCP Conductivity temperature sensor Acoustic release The mooring is ready to deploy

Home sweet home! Welcome to UIC-NARL.

Setting up the oceanographic equipment.

When the weather s good we plan first, then head out to sea.

Every time an instrument enters the water, is seen on the surface and leaves the water the date and time are noted in both the science sample log and ships log by Dr. Ashjian and Captain Kopplin. ADCP in the water! Niskin Bottle back on deck! ADCP on deck! CTD on deck! Niskin bottle readings are taken at 1, 10 & 40 meters

Plankton Ring Net stop fishing! As I check and concentrate the ring net sample taken from the cod end of the net, Dr. Campbell and Dr. Okkonen prepare and launch the Tucker trawl while Dr. Ashjian works on the Niskin water for chlorophyll, nutrient, and microzooplankton samples.

Tucker Trawl going in the water! Wire angle indicator! Waiting for the messenger to strike the double trip mechanism.

Some organisms brought aboard are noted and released. Basket starfish Brittle starfish, sea cucumbers and other critters it s a benthic Stew! Cyanea (jellyfish)

Tucker trawl on deck Samples removed from the cod ends are concentrated for preservation and then placed in labeled containers for laboratory analysis. Euphausiids (Krill)

Euphausiids (Krill) are the most important item in the diet of the bowhead whale in the fall near Barrow, AK Large up to 25 mm in length Form dense schools or aggregations Thysanoessa raschii

Large copepods in the genus Calanus may also be an important food source for bowheads Calanus glacialis Smaller than Krill, up to 8 mm in length, but they have a much higher fat content Form dense aggregations

Where do the krill and copepods that we see in Barrow come from? Are they from local populations that are native to the Arctic or are they from far away, transported in the currents from the Pacific Ocean? How do we answer this question?

Where did I come from? Neocalanus flemingeri/plumchrus Neocalanus cristatus Calanus hyperboreus Calanus glacialis Neocalanus copepods are from the Pacific Ocean Calanus hyperboreus is from the Arctic Ocean Calanus glacialis is found in the Pacific and the Arctic Oceans

Using Genetics to Understand Populations Krill Thysanoessa raschii Copepods Calanus glacialis/marshallae 70 o N Latitude 60 o N Gulf of St. Lawrence / NW Atlantic 50 o N 180 o W 120 o W 160 o W Longitude 140 o W Oregon Coast How will climate change affect zooplankton populations and ultimately the Arctic marine ecosystem? Will krill colonize the Arctic? Will the smaller copepods from Pacific populations replace the larger Arctic populations?

At the end of the day the all important question is What s for dinner? Healthy choices. not so healthy choices

Teachers: Join PolarTREC! www.polartrec.com/about/join Every teacher can participate in different ways: Following Expeditions Participate in PolarConnect Events Join the Polar Education Email List Take Online Professional Development Courses Become a PolarTREC Teacher!

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Thank You! An archive of the event will be available shortly. http://www.polartrec.com/polar-connect/archive