20 Years of Conservation

Delaware Bay Shorebird Project Begins 20th Season

By: Dr. Larry Niles, LJ Niles Associates LLC

We begin the 20th year of the Delaware Bay Shorebird Project this year with many of the same team members that helped start the project in 1997. That’s 20 years of studying one of the most intellectually challenging and endlessly fascinating species of wildlife in the world. Few have had the good fortune to do so.

The 2015 Delaware Bay Shorebird Project Team
The 2015 Delaware Bay Shorebird Project Team

Unfortunately, we do not start this year with the same shorebird population. In the last twenty years, the Delaware Bay stopover fell precipitously from its once lofty perch as one of the top three stopovers in the world. Where once we counted over 1.5 million shorebirds, we now see less than 400,000, a sweet number but far less than the bay’s heyday. Red knot numbers have crashed from over 90,000 to a low of only 13,000. Ruddy Turnstones, the virtual working man of shorebirds, fell from 135,000 to just over 16,000. In this time, many intrepid shorebirds came to the bay to find succor provided by a once endless bounty of horseshoe crab eggs only to find empty beaches and no way back to their Arctic home.

 

Much of this was caused by short-sighted decisions made by the commercial fishing industry in the 1990’s, which decided to spend this bay’s natural (and publicly owned) wealth of horseshoe crabs. They needed bait and relentlessly pursued the crabs. Horseshoe crab populations fell to a quarter of their historic number and may have been driven to extinction without the work of the bay’s conservationists who fought bravely and with determination to stop them. Atlantic sturgeon, weakfish, herring, eels, and many of the bay’s once abundant fisheries weren’t so lucky.

crab harvest

Now a new industry, the oyster aquaculture industry, wants to consume another public natural resource, the bay’s intertidal flats. Cultivating oysters on metal racks placed on the bay’s extensive tidal flats is cheap and easy when you can use public trust lands. The expansion got a vital assist from the state agencies who side lined crucial environmental reviews to determine impact to species like the red knot, and required no public hearing, comment period or the involvement of any shorebird experts. This could have been corrected when the red knot was federally listed.

Thousands of red knots, ruddy turnstones sanderling, semi palmated sandpipers use the inter tidal flat near Kimble’s Beach, Delaware Bay. They forage on eggs washed out from the beaches and spread across the flat.
Thousands of red knots, ruddy turnstones, sanderling, semipalmated sandpipers use the inter tidal flat near Kimble’s Beach, Delaware Bay. They forage on eggs washed out from the beaches and spread across the flat.

Unfortunately, the red knot’s federal listing has not helped in this controversial expansion of aquaculture. Instead, it proposed growers should be compensated for economic losses caused by the listing, and allowed the controversial expansion despite the obvious impacts to birds and crabs. Such decisions speak to Desperate Environmentalism, a term coined by Yale School of Forestry’s Joshua Galperin, describing the increasingly fraught position of conservationists who feel they must play ball with politically powerful industries or lose all. This desperate conservation could have been avoided if growers and conservationists worked together to expand aquaculture without significant impacts  because after all everybody loves oysters!

Horseshoe crabs rely on the intertidal flats to forage for marine invertebrate like small clams.
Horseshoe crabs rely on the intertidal flats to forage for marine invertebrate like small clams.

But this dark cloud cannot diminish the progress made by our team and groups like American Littoral Society and Conserve Wildlife Foundation of New Jersey. Just one example is the successful effort to restore horseshoe habitat on 2.7 miles of Delaware Bay horseshoe crab breeding habitat. The effort, funded by National Fish and Wildlife Foundation and the U.S. Fish and Wildlife Service, overcame the damage caused by Hurricane Sandy and prevented what could have been another shorebird disaster. This work has blossomed over the last four years into a network of activities that provides new hope for a long term protection of the bay. This conservation is not desperate but inspirational for hundreds biologists, land managers and volunteers.

Moore’s Beach before and after restoration by the American Littoral Society and Conserve Wildlife Foundation of New Jersey.
Moore’s Beach before and after restoration by the American Littoral Society and Conserve Wildlife Foundation of New Jersey.

So our 20th year is much like our first year, a group of conservation-minded shorebird scientists and volunteers gathering to help these poor birds find a way to make it home.  As with most conservation stories in this time, it’s a David and Goliath story that hopefully has the same result.

Red Knot photo by Al Janerich.
Red Knot photo by Al Janerich.

Dr. Larry Niles has led efforts to protect red knots and horseshoe crabs for over 30 years.

International Migratory Bird Day Series: American Kestrel

CWF is celebrating International Migratory Bird Day all Week Long

by Lindsay McNamara, Communications Manager

CWF’s blog on the American kestrel is the fifth in a series of five to be posted this week in celebration of International Migratory Bird Day (IMBD). IMBD 2016 is Saturday, May 14. This #birdyear, we are honoring 100 years of the Migratory Bird Treaty. This landmark treat has protected nearly all migratory bird species in the U.S. and Canada for the last century.

American Kestrel photo by Robert Lin.
American Kestrel photo by Robert Lin.

In New Jersey, catching a glimpse of an American kestrel is a rare treat! These beautiful, colorful birds of prey are about the size of a mourning dove — they are the smallest falcon in North America. Kestrels are one of two falcon species that nest in New Jersey.

 

American kestrels are opportunistic hunters, feeding on a number of different animals like grasshoppers, lizards, mice, snakes and small birds. Unlike peregrine falcons, kestrels don’t use speed to kill their prey. They perch to see their target and then use a stationary, hovering flight that allows them to dive down short distances to capture their prey. The eyespots of a kestrel make it appear to be “looking” up at its aerial predators, like Cooper’s hawks, causing the predators to move on to find a less “alert-looking” target. The eyespots give kestrels the opportunity to focus on hunting for prey beneath them.

 

Kestrels also hide surplus prey in grass clumps, tree roots, bushes, fence posts, tree limbs, and cavities, to save the food for lean times or to hide it from potential thieves!

 

Kestrels utilize these hunting tactics in open, grassy habitats — especially ones with cavities for nesting and perches for hunting. Kestrels can be seen hovering in grasslands, pastures and parklands or perched along the road on telephone lines.

 

KestrelRangeKestrels can be found in both North and South America, from Alaska and Canada in the north to Argentina in the south. During winter in North America, they will migrate southward from the northernmost portion of their range. They live year-round within New Jersey.

 

Although the American kestrel is widespread, meaning they live year round throughout much of the United States, the northeastern kestrel population is declining. Today, the kestrel is listed as a threatened species in New Jersey.

 

The decline of kestrels in New Jersey is likely due to destruction of grasslands from development. Nesting cavities are also being lost. As humans clean up fields, we remove trees with nest cavities that kestrels use. Kestrels are secondary cavity nesters. They don’t make their own cavity but use existing natural or man-made cavities.

 

Since kestrels nest in buildings and other man-made structures, nest box programs are an effective way to help grow the number of kestrels in areas where nest sites are limited.

 

Conserve Wildlife Foundation of New Jersey, in partnership with the Endangered and Nongame Species Program implemented a nest box installation and monitoring program in 2006. Nest boxes have been placed in areas of habitat determined to be suitable for the birds of prey. The boxes are monitored by biologists during the breeding season. Because kestrels reuse nest sites, particularly if they have successfully raised young, we focus on boxes that have been successful at least once since 2006.

 

The nest box program in New Jersey appears to be successful; we are adding to the population. Since 2006, we have banded over 300 fledglings. You can help too! Next time you see an American kestrel in the Garden State, be sure to submit a Rare Species Sighting form.

 

Learn More:

 

Lindsay McNamara is the Communications Manager for Conserve Wildlife Foundation of New Jersey.

International Migratory Bird Series: Great Blue Heron

CWF is celebrating International Migratory Bird Day all Week Long

by Lindsay McNamara, Communications Manager
CWF’s blog on the great blue heron is the fourth in a series of five to be posted this week in celebration of International Migratory Bird Day (IMBD). IMBD 2016 is Saturday, May 14. This #birdyear, we are honoring 100 years of the Migratory Bird Treaty. This landmark treat has protected nearly all migratory bird species in the U.S. and Canada for the last century.

Great blue heron by Howie Williams (8)
Great blue heron photo by Howie Williams.

Have you seen a great blue heron wading in the marshes of the Garden State? While they are commonly seen along shorelines, river banks, and the edges of marshes, estuaries, and ponds, the breeding population of these wading birds is actually listed as a Species of Special Concern in New Jersey.

 

The term ‘Species of Special Concern’ applies to wildlife species that warrant special attention because of some evidence of decline, inherent vulnerability to environmental deterioration, or habitat modification that would result in their becoming a Threatened species.

 

Great blue heron photo by Howie Williams.
Great blue heron photo by Howie Williams.

Due to its wide distribution, varied diet, and flexibility in nesting near both freshwater and saltwater environments, the great blue heron’s population in North America is stable. However, wetland destruction in New Jersey has caused a decrease in heron populations from their historic numbers. Since the 1950s, habitat loss has occurred at an alarming rate in New Jersey, destroying wetlands critical to breeding herons.

 

Protecting our wetland habitats from disturbance and development will help protect the great blue heron, the largest wading bird in North America. Great blue herons are 46 inches long and have a wingspan of 72 inches. Despite their large size, great blue herons only weigh 5 to 6 pounds, in part because of their hollow bones — a feature all birds share.

 
Great blue herons can hunt during the day and night, thanks to a high percentage of rod-type photoreceptors in their eyes that improve night vision. They eat nearly anything within striking distance, including fish, amphibians, reptiles, small mammals, insects, and other birds. Herons nest in colonies or “rookeries” in tall trees near bodies of water.

 

The oldest great blue heron on record was found in Texas when it was at least 24 years, 6 months old!

 

RangeMapThe great blue heron occurs throughout most of North America, from Alaska and eastern Canada in the north to the northern portion of South America in the south. Northern populations of great blue herons east of the Rockies are migratory.

 

They withdraw from the northernmost portion of their range during the winter, some traveling to the Caribbean, Central America or northern South America. This species breeds throughout New Jersey. They generally do not occur within the northwestern corner of the Garden State during winter. Great blue herons migrate singularly or in small flocks, mainly in daytime.

 

We still have much to learn about the biology and population status of great blue herons in New Jersey. Research needs to be conducted to find additional breeding sites, check existing nesting areas, and determine whether the population might be decreasing or increasing. You can help! Next time you see a great blue heron in the Garden State, be sure to submit a Rare Species Sighting form.

 

Learn More:

 

Lindsay McNamara is the Communications Manager for Conserve Wildlife Foundation of New Jersey.

International Migratory Bird Day Series: Red Knot

CWF is Celebrating International Migratory Bird Day all Week Long

by Lindsay McNamara, Communications Manager

CWF’s blog on the red knot is the third in a series of five to be posted this week in celebration of International Migratory Bird Day (IMBD). IMBD 2016 is Saturday, May 14. This #birdyear, we are honoring 100 years of the Migratory Bird Treaty. This landmark treat has protected nearly all migratory bird species in the U.S. and Canada for the last century.

Red Knot photo by Mark Peck.
Red Knot photo by Mark Peck.

The iconic red knots have returned to New Jersey! These famous, mid-sized shorebirds are state endangered and now federally threatened — the first bird ever listed under the Endangered Species Act with climate change cited as a “primary threat.”

 

Red knots are only 10 inches long but are among the world’s most extreme long distance flyers  traveling vast distances  some over 18,000 miles in the course of their annual migration from Tierra del Fuego, Argentina all the way up to the Canadian Arctic (and back again). During their trip, the red knots make a vital stop at New Jersey’s Delaware Bay.

This map shows the flight path of a red knot that was banded and fitted with a geolocator along New Jersey's Delaware Bay.
This map shows the flight path of a red knot that was banded and fitted with a geolocator along New Jersey’s Delaware Bay.

Each spring in Delaware Bay, throughout the month of May, the largest concentration of horseshoe crabs in the world comes onshore to spawn. At the same time, tens of thousands of shorebirds arrive at the Bay, thin and spent from what has been a non-stop, four-day flight from South America. They are en route on a remarkable round-trip journey from southern wintering grounds to Arctic breeding territory, and Delaware Bay is their most critical stopover on this 8,000-mile trip. The shorebirds need to quickly double their weight to complete their migration north and breed successfully. To refuel at such capacities and in only a ten-day window, high-energy horseshoe crab eggs provide essential nourishment. In recent years, countless horseshoe crab eggs have been lost because of the devastating storms that swept away the beaches they depend on.

 

In the wake of Hurricane Sandy, Conserve Wildlife Foundation and American Littoral Society worked with the U.S. Fish and Wildlife Service, the New Jersey Division of Fish and Wildlife and the New Jersey Recovery Fund to remove 8,000 tons of debris and added 45,000 tons of sand to the beaches just before the annual spring arrival of the red knot in 2013. Additional work after 2012 restored another mile of shoreline, including two new beaches of poor quality even before Sandy. To date, the groups have placed over 85,000 cubic yards of sand and restored seven beaches along New Jersey’s Delaware Bayshore.

 

To restore one of the beaches, Thompsons Beach, our team removed debris from the area, removed rubble from the road leading to the beach, and placed over 40,000 cubic yards of sand onto the beach. We were delighted to learn that in the spring of 2015, Thompsons Beach had the highest abundance of horseshoe crab egg clusters out of all the beaches that our team monitors on Delaware Bay.

Horseshoe crabs spawning at Thompsons Beach in May 2015. Photo by Joe Smith.
Horseshoe crabs spawning at Thompsons Beach in May 2015. Photo by Joe Smith.

But since the early 1990s, there have been major declines in both the number of adult horseshoe crabs and their eggs. The cause is an exploding crab harvest that grew from only tens of thousands in 1990 to over 2 million in 1996. With the decline of their critical food source, shorebird numbers also plummeted  the Delaware Bay shorebird populations remain around 26% of its historic population size. Over 25,500 red knots were seen in 2015 versus over 90,000 in 1989.

 

Conserve Wildlife Foundation and the Endangered and Nongame Species Program (ENSP) of the New Jersey Department of Environmental Protection’s Division of Fish & Wildlife have partnered for 20 years, working to conduct research on Delaware Bay shorebirds in order to prevent further decline. Each year, CWF’s Larry Niles and ENSP’s Amanda Dey lead a team of shorebird experts from around the world – from countries as far as Argentina and New Zealand – to conduct research on shorebirds during their stopover. These experts also follow shorebirds to other locations along their migration, including South America and the Arctic. With scientific research and concerted conservation efforts, our hopes are that someday Delaware Bay’s skies will be once again filled with shorebirds.

Red Knot photo by Mark Peck.
Red Knot photo by Mark Peck.

Last year, nearly every red knot left the bay in good condition, with over 77% reaching weights exceeding 180 grams, the threshold weight required for a successful flight to the Arctic breeding areas. The improvement in the number of red knots reaching 180 grams is a milestone for our shorebird project. The birds left in the best condition recorded since 1998, just as horseshoe crabs were being overharvested. This good news must be tempered by the continued low numbers of birds and horseshoe crabs. We report no improvement in horseshoe crab numbers, so the improvement in the number of red knots making weight is likely a consequence of the restoration of horseshoe crab habitat on Delaware Bay beaches.

 

Because shorebirds don’t only spend their time in Delaware Bay, shorebird scientists must study them throughout the Atlantic Flyway to get the best understanding of their unique ecology. This year, shorebird project team was awarded a 2-year grant to create detailed shorebird habitat maps in the states of Maranhão and Pará, Brazil. This project will set the foundation for conservation planning and action for decades to come at a shorebird wintering site of hemispheric importance that has received little conservation and research attention with regard to shorebirds thus far.

 

Over the last 6 years, CWF also has partnered with the USFWS Monomoy Refuge to develop a better understanding of migratory shorebird use on Cape Cod and at the Refuge. Cape Cod, like Stone Harbor and Brigantine, New Jersey, is an important southbound stopover for red knots. At each location, red knots come from their Arctic breeding areas and either build up weight for a flight to South America, or remain to molt and replace vital primary feathers before moving onto shorter distance wintering areas in Florida and Cuba.

Banded Red Knot photo by Mark Peck.
Banded Red Knot photo by Mark Peck.

Another important piece of CWF’s shorebird research has been the attachment and recovery of geolocators, small devices that track movements through one to two years of battery life. The migratory tracks from recovered geolocators have greatly expanded our understanding of red knot migratory behavior. In CWF’s last two years of research, we focused on capturing juveniles, which move through the Cape in early September. Red knot juvenile #254 was a recapture two years after release on Delaware Bay. It first left Cape Cod and wintered in North Carolina. In their first year, juvenile red knots don’t go to the Arctic to breed and so #254 flew back to Cape Cod to summer. The following fall, it flew to Cuba to winter, then to North Carolina, then to the Arctic. This was the first known track of a juvenile red knot and one of only a few of any avian species! CWF is continuing our geolocator project this year, so follow along on our blog and social media channels to receive updates on cutting-edge red knot research!

 

Learn More:

 

Lindsay McNamara is the Communications Manager for Conserve Wildlife Foundation of New Jersey.

Shorebirds Arrive in New Jersey’s Delaware Bay

The Birds are Back – Red Knots Arrive Along the Bayshore

by David Wheeler, Executive Director

Photo by David Wheeler.
Photo by David Wheeler.

The 2016 mass shorebird migration is officially underway, with the thrilling spectacle of over 1,100 red knots spotted today at North Reeds Beach in Cape May County, New Jersey. A host of other shorebirds, including ruddy turnstones, dunlins, semipalmated sandpipers, and sanderlings, accompanied the red knots at this Delaware Bay hotspot.

 

The famished flocks fed on horseshoe crab eggs, while much larger laughing gulls congregated along the shoreline and a few crabs used the incoming waves to flip themselves over and return to the bay.

Photo by David Wheeler.
Photo by David Wheeler.

Researchers began seeing a large number of shorebirds arriving over the weekend, and today’s sightings are high for such an early date. A number of the red knots wear leg bands, with a few indicating departure points as far south as Argentina and Chile. Such lengthy migrations for those individual birds only add to the intrigue of their early-season arrivals in New Jersey.

 

Some red knots fly over 18,000 miles each year in their migrations from southern South America to the Canadian Arctic, with Delaware Bay serving as an irreplaceable stopover.

Photo by David Wheeler.
Photo by David Wheeler.

Yet these migratory shorebirds have suffered a sharp decline over the past few decades, with red knots dropping by around 75%. The U.S. Fish and Wildlife Service designated the red knot as a federally protected threatened species under the Endangered Species Act in December 2014.

 

A team of international researchers and trained volunteers, led by Dr. Larry Niles, Conserve Wildlife Foundation, and the State Endangered and Nongame Species Program will spend the next month surveying and studying the at-risk shorebirds during their stay in New Jersey.

Infographic used from http://www.fws.gov/northeast/redknot/.
Infographic used from http://www.fws.gov/northeast/redknot/.

 

 

 

Learn More:

 

David Wheeler is Executive Director of Conserve Wildlife Foundation.

Living with ospreys in New Jersey

New document provides guidance to homeowners and landowners with osprey nest issues and focuses on the use of UAVs around active nests

by Ben Wurst, Habitat Program Manager

As the osprey population grows, work to identify, protect and remedy problem nests is crucial to their long term survival. Photo by Kevin Knutsen
An osprey prepares to land on its nest on a chimney along the Jersey Shore. Work to identify, protect and remedy problem nests is crucial to their long term survival. Photo by Kevin Knutsen.

In New Jersey, we’ve seen the osprey population grow to an estimated 600 nesting pairs in 2015. As the population continues to grow, work to identify, protect, and remedy problem nests is crucial for their long term survival. Each year many new young adults return to their natal areas to find suitable areas to construct nests. Ospreys have a high level of site fidelity and usually return to the same areas where they originated (females do tend to wander more). A suitable nest site for an osprey is a high structure near water, usually away from human disturbance. However, ospreys can become more tolerant of disturbance if it can be expected and is not too close to their nest, especially for those birds that nest on tall structures.

Ospreys build large nests which can weight up to 200 lbs. They use sticks, grass, muck, seaweed, eelgrass, reeds, and often trash to build up their nests.

Around 75% of the state population nests on man-made platforms that are designed specifically for them. The other 25% is a mixture of nests built on other man-made structures and a few natural nests. Yes, ospreys do still nest in trees! But, trees that are suitable for them are few and far between. A suitable tree for an osprey is a standing dead tree (snag) or a tree with a top that has broken off. As the population continues to grow and there are fewer nest sites available on platforms and few suitable trees, more nests are being built on man-made structures where problems can arise. Ospreys are being pushed to nest in areas that are not always ideal, like on utility poles, stadium lights, emergency sirens, communication towers, boat lifts, docks, and even houses. Nests on utility poles can cause power outages and sometimes the nest might catch on fire or an adult can be electrocuted. Nests on houses, docks and boat lifts often limit use of such structures unless dealt with properly, but active nests cannot be removed without consulting with experts. 

Osprey builds nest on chimney. Photo by Kevin Knutsen.
Osprey builds nest on chimney. Photo by Kevin Knutsen.

In partnership with NJ Division of Fish and Wildlife’s Endangered and Nongame Species Program, we developed a new guidance document to help address problem nests. “Living with Ospreys in New Jersey: A guide for the removal, relocation, and placement of osprey nests” addresses the laws protecting ospreys, who are protected both federally under the Migratory Bird Treaty Act of 1918 and statewide under the Endangered Species Conservation Act of 1973. Both of these laws protect the nest, adults and the contents of the nest, eggs and young. It also gives guidance on what actions can be taken to access, remove, or relocate an active or inactive osprey nest on any man-made structure, including communication towers. Also included are directions on how to build and install an osprey nesting platform.

Lastly, it also provides some clear guidance on the use of UAVs near active osprey nests. UAV pilots must follow all FAA guidelines and not fly within 1,000 feet of any active osprey nest. To an osprey, a UAV looks like a potential predator. Ospreys will defend their nests and attack any potential predator at nest sites. Simply flying near a nest can add stress to birds and cause adults to fly off nests where their young are vulnerable to predation. Any pilot who flies within this area and pursues or harms an osprey or its young is in direct violation of the Migratory Bird Treaty Act. We ask that all UAV pilots use caution to protect the safety of our ospreys and other birds.

Science in the Mangroves

Update from Brazil: “We are Going to Have to Science the ‘Heck’ Out of This”

by Dr. Larry Niles, LJ Niles Associates LLC

larger view of brazil

 

We came to Brazil to conduct a rigorous scientific study of the wintering population of shorebirds in a place where the land and sea act against any rigorous protocol. It would be easier to just go out and count birds and identify their habitats and prey, but our charge is more difficult.

 

The survey wraps around satellite imagery, strange unintelligible wavelength data coming from satellites hovering over the earth that can be transformed into brilliant and useful maps in the right hands. Those hands belong to Professor Rick Lathrop and his post doc Dan Merchant. Rick leads the Center for Remote Sensing at Rutgers and he and I have collaborated on projects ranging from municipal habitat conservation planning to Arctic red knot habitat mapping. He has created one of the most alarming maps that every person from New Jersey should know about.

nj_landchange450

The mapping of Reentrancias Maranhenses, an internationally recognized site of ecological importance is especially tricky. Our research platform is a 50-foot boat and we will be out of cell and internet contact for much of the time. Our method of collecting data for the mapping was devised by the whole team, but especially with the help Professor David Santos of the University of Maranhao, my colleague Dr. Joe Smith and Humphrey Sitters of the International Wader Study Group.

Our 50-foot catamaran
Our 50-foot catamaran

It focuses on collecting bird and habitat information using randomly selected survey points. In other words, we will try to pick places at random to survey so that when we combine them we will have a sample that represents the entire area, not just the places we surveyed. It’s like trying to figure how many different kinds of chocolates are in a valentine. If you take them all from one side then you might have sampled the chocolate covered cherry section leading to believe they are all one kind. But if you choose chocolates at random than you will find the box includes other kinds,  caramel or fruit or nutty chocolates. This is making me hungry, but you get the point.

 

The area  of our box we is very large, bigger than New Jersey, and it grows and shrinks every day with the tides. So, sampling is tricky business because a sample at low tide, when the tide is out exposing vast areas of intertidal mud and sand flat, is very different than when the tide is high. So we will be classifying habitat, or stratifying it, so we  can focus on limited survey time to get the best sample.

 

Once collected we can start making maps.  All data will be geo referenced – or located precisely  with GPS units – so it can be accurately mapped. With this, we will train the satellite maps to outline the habitat best for shorebirds.

 

All this while exploring areas that have received little scientific scrutiny and under tropical conditions, almost daily rain, a persistent 20 mph wind and summer heat.  Add parasites, mosquitoes and diseases like malaria and one can see this a rugged undertaking.

 

Our crew is up to it.  Besides those mentioned above Mark Peck from Royal Ontario Museum, Danielle Paluto from the Brazilian CEMAVE (a counterpart to our USFWS), Steve Gates a veteran of expedition on other SA trips, shorebird expert Dr. Mandy Dey, Stephanie Feigin from Conserve Wildlife Foundation of New Jersey and the author round out a dream team of bird study in difficult places.

Our crew banding shorebirds in Brazil in 2014.
Our crew banding shorebirds in Brazil in 2014.

 

Learn more:

 

Dr. Larry Niles has led efforts to protect red knots and horseshoe crabs for over 30 years.

 

 

CWF Biologists Travel to Brazil to Study Red Knots

On our Expedition to Study Shorebirds along the Northern Coast of Brazil

By: Dr. Larry Niles, LJ Niles Associates LLC

Ana Paula with Red Knot
Ana Paula with Red Knot

The largest mangrove forest in the world covers the Brazilian coastline at the equator near the mouth of the Amazon river. The forest extends out into the Atlantic in long peninsulas tipped by wind swept and mostly inaccessible beaches. The forest, beaches and their long intertidal mud and sandy low tide flats support the largest wintering population of shorebirds in the hemisphere, perhaps the world. The red knot, a listed species in both North and South America, also uses this remote tropical coast.

Boat Trip Route
Boat Trip Route
Catamaran
Catamaran

 

 

 

With scientists from the U.S., Canada, England and Brazil, we will attempt a large scale mapping of this important habitat using state-of-the-art satellite mapping. We will do this from a 50-foot catamaran and two zodiacs hopping from one mangrove estuary to another and conducting bird surveys targeting key areas over a 150 mile-section of the coast. We will be the first to survey some areas. Our goal is to figure out the main threats to both bird and habitat.

 

 

To understand the importance of this area one has to think about it like a shorebird. Although born in the Arctic they actually spend only a few months there. They spend a few months moving from their nesting area to their wintering area. They spend the rest of their lives, the majority of their year in the wintering area. A threat to the wintering area would be grave.

 

Most of our survey zone is part of the Reentrancias Maranhenses, a protected area of the state of Maranhao, Brazil. Our catamaran captained by William Thomas will leave from a small town near the city of Sao Luis, Brazil. From there we will sail along the coastline moving in and out of the mangrove islands to survey shorebirds, habitat and marine invertebrates. We will “geo reference” all data, or take detailed coordinates so the data can be reproduced on satellite mapping.

Satellite Map
Satellite Map

 

Satellite maps aren’t really maps as most people understand — pictures or drawings of a section of the earth — they are digital files of remotely sensed data, they are only wavelengths of light that must be interpreted to represent actual habitat. We will train the satellite data so that each habitat will be represented by a combination of spectral data — colors in sense.

Environmental disturbance. Photo by Mark Peck.
Environmental disturbance. Photo by Mark Peck.

Once completed, we can relate the habitat maps with information on birds, their prey and equally important, the threats to the birds and prey. For example, shrimp farming is growing in this area. Entrepreneurs are stripping the intertidal zone of mangrove forest, diking the area and then growing shrimp. Once the area accumulates too much waste and chemicals, they abandon the site and move on to damage another mangrove forest. We will determine which areas are of importance to the birds and potential targets for shrimp farmers. But there is more: oil spills, disturbance from tourists, water pollution are among many.

 

Over the next three weeks, we will be reporting on our work on this blog.

Log of Red Knot DbY7 with geolocator.
Log of Red Knot DbY7 with geolocator.

 

Learn more:

 

Dr. Larry Niles has led efforts to protect red knots and horseshoe crabs for over 30 years.

2016: Off to a good start

Jersey City Falcons vocalizing on building ledge

by Ben Wurst, Habitat Program Manager

We’re really excited for the beginning of the peregrine falcon nesting season this year, especially for the pair that calls Jersey City home! We got this great video from Falcon Cam viewer Eric Chandler which shows the pair vocalizing to each other. Peregrine falcons mate for life and this will be the pair’s second nesting season. The first was not productive since they had just paired up and were too busy courting each other to raise any young.

Soon, over the skies of downtown Jersey City, the male will perform bold aerobatic flights over his eyrie (nest site) include loops, tight turns, and swooping dives. He also will provide the female with gifts to show his commitment to her – in the form of food, not a diamond ring. To help strengthen their pair bond (relationship) the male and female perform what is referred to as a “bowing” when they vocalize with a “ee-chupping” call which is seen in this short video.

We are in the process of activating the camera. We will let you know when it begins streaming on our website.

Banding Together: When the Shorebird Met the Biologist

Celebrating World Shorebirds Day, Sunday, September 6

by Lindsay McNamara, Communications Manager

Red Knot Photo by: Jan van der Kam
Red Knot Photo by: Jan van der Kam

As a bird nerd, I’d often look on enviously at photos of biologists posted online holding shorebirds in their “bander’s grip” – the bird’s head in between their index and middle finger, using their thumb and pinky to steady the bird, while allowing its feet to dangle freely.

 
I always wondered: I wish I could do that! Hold a bird in my hands. Yet I never once thought: Wait, how did the bird end up in their hands in the first place?

 
I certainly hadn’t thought biologists run all over the beach chasing after shorebirds like a farmer chasing chickens – I just never thought the process all the way through.

 
This past summer, I was fortunate enough to become part of that process and learned exactly how a shorebird ends up in a biologist’s bander’s grip. The system may surprise you, but the steps have been mastered over nineteen years of practice, each one with shorebird safety as the top priority.

 

Conserve Wildlife Foundation (CWF)’s Delaware Bay Shorebird Project celebrated its 19th year this summer. The team members, led by Drs. Larry Niles of CWF working with Amanda Dey of New Jersey Division of Fish and Wildlife, are all extremely passionate about what they do and care deeply for the shorebirds they are studying and protecting.

 
I arrived at the team’s house on Reeds Beach, along the Delaware Bayshore, early in the morning. Dr. Niles was concerned about the wind and had scoped out the safest beach for the banding that day. Our group of scientists, volunteers, supporters, interns and staff caravanned to Villas and joined our partner, American Littoral Society, at the site. We all picked up large, colorful plastic tubs, which had cloth covers that fit securely over the top of the box. The cloth cover had a Velcro pocket. We were told that these boxes would help in the shorebird “catch” that day. Larry and Mandy gave us instructions for how the banding day would go, safety tips and background information on the Delaware Bay Shorebird Project. We all listened intently and couldn’t wait for the day to begin!

The team waiting with our bins. Photo by Lindsay McNamara
The team waiting with our bins. Photo by Lindsay McNamara.

Well, we waited a bit before the day truly started. Dr. Niles and his team had binoculars with them and sat down in the sand, watching the shorebirds from afar for about an hour and a half. We waited by the cars up near the houses along the beach. The reason for the long wait? Dr. Niles and his team were waiting for the perfect moment to fire the net over top of the shorebirds along the coastline.

Biologists rolling away the net to reveal more shorebirds. Photo by Lindsay McNamara.
Biologists rolling away the net to reveal more shorebirds. Photo by Lindsay McNamara.

Cannons with gun powder charges fire heavy projectiles that carry the net over the birds only at the perfect moment – when birds are catchable and none in danger. Luckily, it was not a “wet catch,” that day, as the net did not go into the water. As soon as the cannon was shot, we all spirited single file carrying our tubs down the beach, following the biologists. The biologists immediately knelt at the base of the net and started picking up birds and shouting their identification and passing them to us, as they went they rolled the net away to reveal more birds.

 
It was very exciting! The idea was to get the birds out from under the net and into our carrying boxes and sealed in with a Velcro flap, as fast as possible, for the safety of everyone involved.

 
Each bin became devoted to the same bird species, so if the first bird that was handed to us was a sanderling, we kept putting only sanderlings in our bin. Once we had several birds in our bin, our pace completely changed. We walked very slowly away from the net, keeping the bin level at all times, towards the path in the sand at the beginning of the beach, to make the journey as safe for the birds as possible. There, biologists had burlap “keeping cages” for the birds to wait in. Birds were also sorted by species into these cages.

 
When every bird was taken out from under the net, and sitting in their temporary burlap enclosure, we formed “circles.” Each circle was composed of about 6 volunteers led by a core banding team member. Once formed birds were handed to us and finally, I learned how to safely hold a shorebird in my very own bander’s grip!

My very own bander's grip! Lindsay McNamara holding a sanderling.
My very own bander’s grip! Lindsay McNamara holding a sanderling.

Each bird received a metal band with a federal identification number, and a green tag with a three letter code. One person in the circle put the band on the bird and passed the bird to the next person, who placed the green tag on each birds’ leg and glued them shut. A recorder took notes on the band number and tag letters. Next, the birds’ wingspan and other data points were measured by other members in the circle. Lastly, the bird was weighed before it was released. During my trip with the banding team, we caught a large number of sanderlings and a few ruddy turnstones, federally listed red knots, and semipalmated plovers.

Banding team supplies. Photo by Lindsay McNamara.
Banding team supplies. Photo by Lindsay McNamara.

Holding a shorebird in my bander’s grip was an amazing experience, but what I enjoyed most of all was taking part in the science of shorebird conservation. I placed the green tags on the shorebirds, which will tell other scientists who may recapture the birds that they once traveled to New Jersey. Our circle helped collect valuable data points, which will be combined with the data from the other years of the Shorebird Project, to assess the health of shorebird populations.

 
I wasn’t just holding a bird, I was helping the bird have a brighter future – and that is the best feeling any bird nerd can have.

 
Today is World Shorebirds Day! You can help shorebirds have a brighter future today by participating in the Global Counting Day Program. Join the hundreds of participants at over 93 locations that will count shorebirds and share their sightings online. Register today!

 

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Lindsay McNamara is the Communications Manager for Conserve Wildlife Foundation of New Jersey.