I've always had a hankering for one of these
backpack-style camera bags, but have been put off by the outrageous
price of those on offer by the 'big name' accessory manufacturers.
This problem has disappeared recently, since
Amazon released a selection of gear bags under their generic “Basics”
label. This one is the medium-sized version retailing at STG £21.49
incl VAT and free delivery which - in this case – was ordered on
Thursday evening and arrived first thing Monday morning.
Predictably
enough, the bag is made of ballistic nylon and polyester in an
unrelieved black both inside and out, apart from some snazzy
zip-pulls with Amazon logos in orange. This anonymity is one of the
product's big (but unadvertised) selling points: The conspicuous
branding of bags by the likes of Canon, Nikon, Lowepro or Hama is the
equivalent of attaching a sign that says “Please steal this bag, it
has lots of expensive stuff in it.”
There is no indication as to country of
manufacture. (That'll be China, then.) The stitching and other
assembly is of good quality, though not outstanding, and the weight
(empty) is commendably light at just a tad over 800g.
Inside is a single main compartment measuring 360
x 300 x 135 mm. This is enough space for two SLR camera bodies and a
selection of lenses. The central portion will carry a camera with
300mm lens in situ – something my present everyday carry bag
won't accommodate. Velcro dividers enable the layout to be tailored
as you need it – in my arrangement, I was able to fit my 20x60
spotting scope in there as well. The interior is lined but the zips
have no protection, so this backpack would be showerproof but
probably not fully waterproof without a rain cover.
Inside the lid are two zipped pockets, also lined,
with - joy of joys - transparent facings so that small items can be
easily located within them. Lowepro take note. Exterior to the lid
are two more divisions: the inner one is not quite deep enough for a
laptop but an iPad or similar-sized tablet would certainly fit,
perhaps with a bit of extra foam padding for peace of mind. There
are two side pockets (with flaps) for odds and ends, and straps on
one side that might secure a tripod - if it was a small and light
one.
The rigging is good: ventilated mesh at back and
padded shoulder straps. A narrow strap with Fastex clip is attached
to these but its purpose is not entirely clear: it is too short to be
used as a chest strap unless your chest is a lot smaller than mine.
Further down, I was pleased to find hip pads and a nice broad waist
strap – useful for belt-carrying of binoculars, GPS pouch or other
accessories which would then stay with the bag when taken off.
All in all, the “Amazon Basics backpack for SLR
Cameras” does (almost) everything that its pricier competitors will
do – and for far less cash up front. Good value, but not for heavy
use in the Amazon. (Or any other rainforest.)
Some things are easier than others. Getting your
local Renault dealer to only charge for servicing work that they've
actually done is quite easy. Climbing Mount Everest is fairly
easy.
Telling one of the world's most eminent ornithologists
that he has made a series of mistakes in his data analysis is far
from easy. Fortunately, Rob Bierregaard was very good about this, and
we have been able to sort out the known facts of this rather sad
story, and draw certain conclusions from it all.
Osprey Cap'n
Liz left her natal area at Cape Cod on the 8th of October.
As many juvenile ospreys do, she headed directly south, over the
ocean and down the eastern seaboard of the USA. With the wind in her
favour, the little bird made excellent progress – no doubt thinking
that this whole migration deal was a piece of cake and that far too
much was being made of it. Rather than turn west to make a landfall
in the Carolinas, Liz continued on her southward track, at which
point things started to go wrong...
The winds that had been
helping her died down to almost flat calm for three days – an
unusual bit of weather for that area at that time of year. Suddenly,
Liz found that maintaining speed was much harder work than it had
been. More wing-flapping was needed and she was using up her “fuel”
reserves at an alarming rate. By the evening of the 10th,
with no change in the conditions, Liz would have been almost
exhausted. She even tried to retrace her course, turning back north,
but by that time it was far, far too late.
Thirty nautical
miles away, the oceanographic vessel Atlantic Explorer was
steering ENE towards her home port in Bermuda. Some days earlier, an
osprey had landed on the ship and had kept company with her for a
while. Rob Bierregarrd's team thought that this bird MUST be Cap'n
Liz.
It wasn't. My analysis of the ship's daily positions
shows that Liz never came to Atlantic Explorer, although at one point
they were only twenty miles apart. Flying northwards in the
darkness, Liz would not have seen the ship and their courses diverged
rapidly. What happened next is a matter of some speculation: at
13:00 hrs on the 11th, Liz came down to sea level and her
speed dropped almost to zero. She could not fly any further.
It
seems certain that Liz had landed on some kind of floating item,
although of course we don't know what this was. To the science team
back in New Hampshire, the GPS track looked like the course of some
powered vessel but it wasn't. I was able to demonstrate that ocean
currents and tides would produce the same pattern effect, all on
their own.
The PTT tracker continued to transmit but, stranded
alone on her raft – whatever it was – exposed to a blazing sun
and with no source of fresh water, Liz would not have survived for
very long. Dehydration is lethal to birds, almost every time.
Liz
was unlucky. Many other juvenile birds – not just ospreys – take
this trans-ocean route to the Carribbean and Central America and the
vast majority of them survive the attempt. Taking this path saves
both time and energy, provided that the wind and weather do not turn
against them. To us, this seems like gratuitous risk-taking but
that's what birds do.
There is an intriguing postscript to this story which came to my notice after the above article had been finished. Of course we don't know what it was that the osprey was cast away on during her final days, but there are more things floating about in the the empty corners of the ocean than coconuts...
Wolfhound adrift in April 2012. (Charles Page)
In February 2013, the Irish-registered 48ft sailing sloop Wolfhound was abandoned by her crew to the west of Bermuda after she got into difficulties during an offshore race. All personnel were rescued, but Wolfhound continued to drift around the area. She was seen in April by a passing vessel and found again in July by Matt Rutherford and Nikki Trenholm on their schooner Ault. Rutherford attempted to take Wolfhound in tow but, after an almost-unbelieveable series of misadventures that are detailed HERE, was forced to give up and cast her adrift again.
As far as anyone knows, the yacht Wolfhound is still adrift somewhere in the same area that "Cap'n Liz" was lost. Could it be...? We may never know.
I'm only human. I can easily become enamoured of
pretty things, new things, unexpected or wonderful things - Ospreys
and eagles and all the endless variety of birds. But first love
endures, and these are mine...
The brent geese of Strangford Lough are back.
This morning I was up and out at stupid o'clock,
driving the 20-odd miles to an isolated parking spot near the market
town of Comber. It was still almost dark, and autumnly cold. A
chill east wind whipped in off the slate-grey water, bating the full
tide. Not a bird to be seen, on it or by it - they have more sense.
But this is Northern Ireland – if you don't like the weather, wait
fifteen minutes.
In fact it took twenty for the daily miracle to
happen: the sun rose over Greyabbey – well named the place, so it
is – and with that a flurry of charcoal wings, low and fast out of
the indistinct horizon, and that unforgettable sound...
Of all geese, the brents have the sweetest voices.
The new arrivals call to those already paddling in from their
hidden roosts back in the saltmarsh. Together they merge into rafts
of birds, stem-to-stern and head-to-wind. Last week there were a few
hundreds. Today there are thousands.
I've already got my camera coupled to a Televue
Ranger 90mm astro refractor. I hate using it for this – focusing is
a nightmare, there's no depth of field worth talking about, and the
whole set-up is optically snail-like at f8 on a good day – but
nothing else in my kit will reach out the 500m to where the geese are
starting to feed.
The species is Branta bernicla “hrota” - the
pale-bellied race that breeds in the high Canadian Arctic, further
north than any other of its kind. They have migrated almost 3000
miles by way of Greenland and then Iceland to spend the winter here
in Ulster. It's estimated that 95% of the entire population returns
to Strangford and Lough Foyle – a conservation challenge of epic
proportions, for the dwarf eel-grass zostera noltii that they prefer
grows almost nowhere else in any quantity, except - happy coincidence - the estuary of Afon Dyfi in Wales.
The tide is racing out now, exposing more than 40
hectares of mud flats.The geese follow it and so must I, round the
shoreline to Castle Espie WWT where there are higher viewing points –
and also hot coffee to be had. The mug goes down well and there's a
chance to chat with the staff.
What's the overall count on the
Lough?
22,700 brent geese as of Friday – a good total with the
peak month of October not yet reached. It looks like the birds have
had a productive breeding season, unlike last year when numbers were
down on average.
A few more shots from the shore hide. Curlew
are in massed ranks at the edge of the saltmarsh, waiting for their
particular cafeteria to open. A leavening of shelduck and wigeon
have joined the geese, taking advantage of their vigilance. The sun
is almost overhead now and it could even be called warm (with a
little imagination).
Sunday afternoon visitors are pouring into the
WWT centre, whooping and hollering, and I take the long route round
the south perimeter of the reserve to avoid them, pausing only to
wince at the recently-completed “Limekiln Observatory”: a
well-intentioned but horribly misguided design that merges with the
shoreline landscape like a fart in a diving suit.
But not even duff architecture can spoil this day:
the geese are back and that's all that matters.
Giovanni Vitali was a brilliant
scientist but his timing was terrible. In 1911, he had announced the
discovery of a new sensory structure in birds – one that he named
the “organ of flight”, although we now call it the Paratympanic
Organ, or PTO for short. The original theory was that this PTO was
involved with directional control and balance – but why birds would
need a second balance sensor when they already had a perfectly good
one (in the inner ear) remained a puzzle. Nonetheless, Vitali's findings caused a sensation
at the time, with many follow-up papers and nominations for the Nobel
prize flying around even faster than the birds he was studying. But
even then, things were changing... in a few short years, war would
stalk across the face of Europe and the mainly Italian and German
science journals in which Vitali's work was published fell silent,
some of them never to reappear.
During the middle part of the 20th century, the strange story of the
“organ of flight” passed quietly into the annals of Science and
was almost forgotten. Almost - but not quite...
Satellite tracking of bird migration has answered
many questions – but it has also raised new and unexpected ones.
The latest generation of tracking equipment gives very good
positional accuracy and can return data at hourly intervals. This
high-resolution data has shown that birds – even young raptors on
their first-ever migration – appear able to make choices about
their routes to take advantage of tailwinds and other favourable
weather conditions. More remarkably, they seem to be assessing the
conditions several hundreds of kilometres down-range from a given
position. But how is this possible?
This chart shows the migration of osprey Blue YZ –
a first-time migrant out of Loch of the Lowes in Scotland, being tracked by
Scottish Wildlife Trust. On 6-09-13, YZ left the Isle of Man and flew
south over the Welsh coast before veering south-west, and out to sea.
To all outward appearances, young YZ had made a terrible error of
navigation and was now in danger of becoming lost. But a study of
the prevailing weather conditions at that time paints a completely
different picture...
The plot (red line) shows YZ's course overlaid on a chart of
wind speeds and direction. If the young bird had followed a “normal”
course – east and south to the the mainland coast – it would have
encountered adverse headwinds in the English channel and almost
certainly would have had to pause its journey at that point. But the
course actually selected took YZ along the edge of an incoming
weather front, with strong tailwinds at an altitude of around 300m
which eventually brought it safely back over land in northern France.
By doing this, the bird saved at least one whole day's flying time –
and a heap of energy into the bargain. With the weather still in its
favour, YZ continued on over the Bay of Biscay, repeating the same
trick again during the following afternoon.
This is NOT an isolated example: every season, we
see young migrants doing this kind of thing and there can no longer
be much doubt that it is an innate “programmed” behaviour for
them.
But how can a young and inexperienced creature
obtain and correctly interpret something as notoriously complicated
as European autumn weather patterns? One possible way is by looking
at high-level cloud formations.
Alto-cumulus clouds ahead of an incoming warm front. (NOAA image library)
These patterns in the sky often presage the
arrival of weather systems from the Atlantic Ocean. They form at a
height of between 5000 and 9000 metres – which means that they are
visible from considerable distances. A bird flying at (say) 300m ASL
can command a view of the sky for two hundred kilometres in any
direction. What does that mean? On the next chart, I have plotted
circles of 200 km radius and centred them on some typical migration
“hot spots”.
In each case, you can see that the “dangerous”
sea crossings are in fact well covered by this range: a bird on the
Solway Firth can get a view of weather systems well down in the Irish
Sea; a bird at Portland Bill in Dorset commands weather info right
over to the far side of the English Channel.
That explains some of the weather-awareness that birds seem to posses,
(given thirty-odd million years of evolution, of course) but on its
own it is not enough. To do everything they seem able to achieve,
something else is needed. Remember Prof. Vitali's “paratympanic
organ”? Let's take a closer look at it...
On microscopic examination, the cells comprising
the PTO look oddly familiar to today's anatomists. In fact, they
resemble the sensory cells found in the lateral lines of some fish
species. If that is so, and if the PTO isn't an organ of balance,
then it might be something that senses pressure.
Barometric air pressure.
And – although conclusive proof still waits on
some ongoing research – many scientists are becoming convinced that
THIS is the missing piece of the puzzle.[2] Satellite tracking has
shown that long-distance migrants can maintain a constant altitude,
even when flying over sea AND in total darkness. They are able to do
this within a few tens of metres – at least as accurate as the
instruments set up to measure this performance. Without visual cues,
the only way this could be possible is if birds have a built-in
“altimeter” - and the PTO as air pressure sensor fits the bill
perfectly.
And if THAT is true, then we can also credit birds
with a real method for doing something that we humans have believed
them capable of for thousands of years – sensing the weather in
advance.
It doesn't have to be very sophisticated: here in
western Europe, the general principle is that LOW or falling
atmospheric pressure means changeable weather, with stronger
south-west winds. HIGH or rising pressure generally means stable
conditions, more northerly and lighter winds.
And for a young bird on its first epic journey
south – that may be all it needs to know.
-Wlw
[1] Image 1 - Background: sunset over the Sine Saloum Delta. Photo: John Wright, used by permission.
[2] The Paratympanic Organ: A Barometer and Altimeter in the Middle Ear of Birds? C.S. von Bartheld & F. Gianessi, Exp Zool B Mol Dev Evol. 2011 September 15; 316(6): 402–408.
[4] Vitali is not to be confused with the notorious Mafia don Giovanni "Big John" Vitale, boss of the Detroit crime syndicate in the 1920's - who was never at any time nominated for the Nobel Prize.
Both osprey youngsters are almost fully grown and
taking a keen interest in the various things to be seen around their
nest. This is not idle curiosity – in a few days (weather
permitting) they will be obliged to avoid some of these structures
while in flight, and perhaps land and perch on others.
They
need to get a good appreciation of the size and position of all such
things, and how to apply Dougal's Rule to them (“These are small,
but the ones out there are far away”), otherwise known as
perspective.
You will often see ospreys moving their heads
from side to side when they are studying an object at medium range.
They do this in order to get a better estimate of distance and size.
Like almost all birds of prey, ospreys have binocular vision (two
eyes working in unison for forward vision) but the difference in
perceived position of objects (parallax) is not very great – the
effective range for parallax alone is only about two metres, whereas
we can use the same method out to almost three metres because our
eyes are further apart.
Something else is needed.
Doing
the head-wiggle gives additional scope to this method of judging
distance, known technically as “qualitative stereopsis.” It
includes the picking up of many different visual cues, including
shadows and colour-based edge detection.
To land on a perch,
or to avoid objects at speed, birds need to integrate all this visual
information very rapidly. It has recently been discovered that
structures in the optic nerves of birds contribute to this “image
processing”, without all the work having to be done in the visual
centres of their brains.
The complexities of resource exploitation in a littoral ecosystem
Estuary of Afon Dyfi looking south-west.
(Picture E. Evans, used by permission)
It's
not the Amazon rainforest, despite all the rain. It's certainly not
the high Serengeti under Ol Doinyo Lengai. And yet these estuaries
around the British coast are some of the most biologically productive
ecosystems anywhere on the planet. Each cubic metre of glorious
glutinous silt down there contains over 25000 kJ of calorific energy
– about the same as a dozen (large) bars of chocolate. Fish base
their entire life cycles around these places. Wading birds flock to
them in winter because there's no food resource that compares.
The
Dyfi estuary supports not just one food chain but hundreds. At the
bottom of each are microscopic organisms living in the mud and, near
the top, one osprey nest. It seems like a perfect location for
ospreys to live and breed, so why only one nest so far? That's an
interesting question – but first, a shaggy dog story...
This is Polky, a good-natured little pooch who lives with one of my
neighbours across the road. Polky and his almost-identical brother
Cobblers (don't ask) go for walkies twice a day, and their favourite
game is catching a thrown tennis ball on the grassy area between our
respective apartments. To be honest, this is the only time I can
tell the two dogs apart because Cobblers is brilliant at catch ball.
He makes it look easy and he never misses. Polky, on the other hand,
cannot catch ball for toffee. His eyesight is fine, his technique is sound and
his timing appears to be good. He really tries but he just sucks at it. If the ball
hits him on the nose and rolls away, that's a good effort by Polky's
standards. Both dogs have been playing this game since they were
pups. It's a game of skill and co-ordination; one that involves
instinctive AND acquired abilities.
Some animals are better at
learning how to do stuff than others.
In Britain, many osprey nests are close to reservoirs or
freshwater lakes. Catching fish in such places is by no means easy,
but at least the birds know where the fish are. Given the innate
hunting skills they were born with, any reasonably competent male
osprey ought to be able to produce fish for his nest. However, rivers and
their estuaries are different. The overall food resource there is
greater and more varied, but accessing it can be much more
complicated. In a tidal estuary and river, the behaviour and
distribution of fish changes on an hour-by-hour basis, AND varies
over seasonal time scales as well. Weather patterns far upstream can
change the salinity of the seawater offshore, or affect its
temperature and transparency. At any given spot, there may be dozens
of sizeable fish present on one day, and not a single one at the same
time on the next.
In
such a complex environment, instinctive hunting skills are not enough
– not by a long chalk. There is no inherited information that
says..
“Flounders
can be caught along the sandy areas south of the estuary, for an hour
either side of low tide.”
“Hunting migratory sea bass in mid-May is a waste of time because there aren't any.”
“If
visibility is poor today, there's a well-stocked trout lake about 12
kilometers north-east from here."
“If
it's been sunny for three days, shoaling mullet will be taking
plankton near the surface in the mornings.”
All
this, and much else, has to be learned. The reason that Monty - and
his neighbour at the Glaslyn nest to the north - are so successful is
that they have achieved a complete mastery of all these factors. They know and understand the dynamics of foraging on the Dyfi, or
Tremadog Bay, and it has taken them years to amass all the detailed
information needed to do this.
Other
male ospreys may not be so proficient, because it's one thing to
catch sufficient food to feed yourself – quite another to collect
enough for a female and a brood of ravenous youngsters as well.
The
nest-provisioning stats collected in Wales illustrate this problem. A
solo osprey only needs about 400g of fish per day to maintain
condition. That's two small trout or one very moderate mullet. This
graph shows the weekly take required when three chicks are being
supported. And it's not just about quantity: if conditions are
unfavourable, the solo osprey might go hungry for a couple of days
until fishing becomes easier. This state of affairs won't do when
there are young to be fed – the incumbent male has to be able to
produce something
every day, and only a bird that knows his home range like the back of
his own talon can do this.
Perhaps
this is the real
reason that “Dai Dot” and other satellite males have not
attracted roving females and set up nests of their own in west Wales.
They can live along the estuaries in the summer quite comfortably,
but they have never acquired the EXTRA skills and knowledge to be
successful providers for a family.
Like Polky, they just
don't have what it takes to catch the ball.
This year there's been
a lot of interest in the various sounds and calls (“vocalizations”)
that ospreys make, and in particular their responses to intruders.
Take a look at this video with the sound turned well up...
… it's from a camera
at an osprey nest in Latvia. The audio quality isn't great but we
can forgive that. (The ESTLAT Conservancy do a tremendous job with
their monitoring, considering that the nests are among forests in the
middle of nowhere.) Listening carefully, we can hear that there are
two markedly different calls being given by the adult. Monty and
Glesni use these same sounds and it might be interesting to figure
out what they are “saying”...
The first type of call
is a short, melodious chirp on a rising tone. This seems to be a
territorial call and it appears to be specific to ospreys, directed
at the incoming intruder as a kind of identifier. Although ospreys
don't defend a feeding territory as such, many other bird species do,
and they sing to define the range of the territory. A bird's
territorial song – which we merely listen to and enjoy – is a
very serious matter for it and its neighbours. Millions of years ago
some ancient common ancestor of Monty and Glesni might have had
similar behaviour, and it could well be that this little chirp is all
that evolution has left to us of the osprey's song. It says: “I
can see you. We are here, and this nest is occupied.”
The second call is very
different: it is the true “alarm call”: a strident challenge and
a warning. It says: “Go away! You are too close to my nest and
we will chase you if you approach!”
Unlike
the “song”, this call is not specific to other ospreys,
but is employed generally. The alarm call does something else,
too... Watch the behaviour of the nearest chick as the adult's
“chirp” song changes to alarm-calling. The chick immediately
lies down in the nest and keeps very still. This is an instinctive
response to the alarm, technically known as “thanatosis” or
playing dead. The young will remain in this posture until the
alarm-calling stops – although it can be seen that they are not
very good at pretending to be dead, as they keep raising their heads
to see what is going on! Osprey chicks tend to do this, even though
it rather spoils the effect...
Chick "doing a Ceulan" and looking around during the alarm call phase. (Click for larger) Image: ESTLAT Conservancy
Nest intrusions are a
part of life for paired ospreys during the breeding season – and
few things are more often misinterpreted by casual observers. On
blogs and social networking pages, we regularly see words like
“attack” and “fighting off” being used, the users of them
assuming that the intrusions are always being perpetrated with
hostile intent.
It's much more
complicated than that...
“A good place for
ospreys is one that already has some ospreys in it.”
With the small (but
gradually rising) population density here in the British Isles, it's
natural to view the osprey as a solitary nester. But in other parts
of the world, nest sites can be separated by only a few hundred of
metres, with as many of them occupied as are available and/or can be
supported by the local food supply. In this context it would not be
wholly wrong to describe ospreys as being communal (or at least,
semi-communal) nesters. And in birds, communal living inevitably
means the evolution of a social hierarchy and the behaviours to
moderate it.
There is plenty of
evidence that this is happening among European ospreys, too. Young
unpaired birds, both male and female, are fascinated by occupied
nests of their own species. They feel compelled to investigate them
and it's not just a matter of prospecting for sites: the very
presence of a successful nest gives information about the
availability of fish, construction material, local prevailing weather
and much else besides.
Visiting other nests
also enables a roving individual to gauge its own social status as it
gets older and more experienced. (You know you're at the bottom of
the heap when the local dominant breeding pair can't even be bothered
to chase you away!) Although it's true that some “homeless”
bonded pairs might attempt to oust an incumbent male from a nest he
has just finished building, this doesn't often happen unless the
overall pressure for nest sites is very great.
Blue 24(10) inspecting the nest at Cors Dyfi 26/6/13 Click for larger (c) DOP 2013
None of the foregoing
means that intruders are WELCOME at an active nest – no matter how
peacably-intentioned the visitor might be. The dramatic response of
the incumbents demonstrates that - especially if they have eggs or
chicks in the nest.
Increasing intruders
Recently, Dyfi Osprey
Project revealed that they have seen more than 30 different
individuals interacting at the Cors Dyfi nest site (to 2/6/13),
compared with 25 by the same period in 2012. Does this mean that the
UK population of ospreys has suddenly increased by 17%? Perhaps
not...
A significant observation is how few of these visiting
birds were ringed. Given the overall UK ringing rate, we might
reasonably expect that 30-40% of them would have visible rings but in
fact it was only a handful. It's possible that the appearance of
these “extra” ospreys is a consequence of the unusual migration
weather and the late spring, and that a proportion of them were in
transit to other countries – most likely, Scandinavia and the
Baltic.