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Showing posts with label aquatic life. Show all posts
Showing posts with label aquatic life. Show all posts

Wednesday, June 20, 2012

Sea Urchins- Some Sea Urchins Have Venomous Spines

Thanks Natalie for this story

Sea Urchins- Some Sea Urchins Have Venomous Spines:


Don’t worry, a rabid sea urchin is not going to leap off the reef and fling spines at you. Sea urchins are non-aggressive and relatively slow-moving. Still, sea urchin injuries are not unusual. Divers can easily become distracted and brush against one of these delicate creatures.

Sea Urchins Are Everywhere:


Sea urchin injuries are common because sea urchins are common. Divers encounter sea urchins in almost every body of salt water, including all of the world’s oceans. Rocky shores and shallow, sandy areas are some of the sea urchin’s favorite habitats. Shore divers need to take care to avoid steeping on urchins when wading shallow water.



Sea urchins are also found on coral reefs. Urchins hide in the reef’s crevices during the daytime. At night, they wander out to feed on floating food particles and algae. While divers can occasionally find sea urchins during the day, night divers in particular should be careful not to accidentally touch urchins which are more exposed in the nighttime.

Sea Urchins Have Two Defense Mechanisms:


Like most aquatic life injuries, sea urchin injuries are caused by the animal trying to defend itself. A sea urchin’s spines are its first line of defense. The length and sharpness of an urchin’s spines vary from species to species. Some species have stubby, blunt spines, while other species have long, sharp, venom-filled spines. Razor sharp spines can easily pierce even a thick wetsuit and lodge deep in a diver’s skin.


Many urchin species, such as the purple sea urchin, have an additional defense mechanism called the pedicellarines. The pedicellarines are tiny, jaw-like structures that can clasp onto a diver’s skin and inject a painful poison. The pedicellarines are nestled down between the urchin’s spines, and are difficult for a diver to contact unless he has already impaled himself on the urchin’s spines.

In extreme cases, such as numerous puncture wounds, the relatively small amount of venom from spines and pedicellarines can accumulate to cause severe muscle spasms, faintness, difficulty breathing, and death.

Sea Urchin Stings Are Avoidable

The best way for divers to avoid touching sea urchins is to maintain good awareness of their surroundings. Divers should control their buoyancy to stay at least a few feet from coral, which may conceal urchins in its crevices. Divers should also watch out for protruding spines in the sand, as many sea urchins bury themselves. Sea urchin stings frequently happen when a diver becomes distracted (e.g. chases a turtle for a photo) and inadvertently touches an urchin.

Sometimes, conditions make it hard to see urchins to avoid touching them. One example would be a rough shore entry though waves. Thick-soles diving booties, gloves, and thick wetsuits may provide some level of protection. However, long and sharp spines may still be able to pierce thick neoprene. If a shore entry has many urchins, pick a different dive site.

First Aid for Sea Urchin Stings

Urinating on a sea urchin sting will not help, so save yourself the embarrassment. As there are two sources of injury from sea urchins, the spines and the poisonous pedicellarines, both need to be dealt with.

Spines: A sea urchin’s spines can inject painful venom. Soaking the area in hot water (110-130˚F) for up to an hour and a half can break down the venom and help to alleviate the pain. Spines need to be removed carefully with tweezers. Fragile spines may be crushed or broken while under the skin. If a spine can not be easily removed, is near a joint, or is close to delicate nerves and blood vessels in the hands or feet, it is best to have it surgically removed by a doctor. Dark colored spines dye the skin so that it appears that a spine remains. This coloration should disappear within 2 days, if not, see a doctor to remove the spine.

Pedicellarines: Urchin's pedicellarines (the poisonous clasping mechanisms hidden between some urchin’s spines) can be removed by shaving the area with shaving cream and a razor.

After the removal of spines and pedicellarines, the injured area should be washed with soap and rinsed with fresh water. Topical antibiotic creams may be applied, and analgesics can be taken for the pain.

As with any aquatic life injury, patients should be monitored for signs of infections or allergies, such as chest pain or difficulty breathing. A doctor should be contacted immediately if either is observed.

Kathy Dowsett

www.kirkscubagear.com

Wednesday, March 2, 2011

A gallon of garbage found in the belly of a dead whale

Plastic food bags and pouches.Image via Wikipedia

A youthful Gray Whale was found recently washed up on a shore in West Seattle. The 37-foot mammal had some unusual contents found in its stomach; more than 20 plastic bags, a pair of sweat pants, hand towels, surgical gloves, pieces of plastic, duct tape, and a golf ball.

This is not the first time human-produced debris has been found in the belly of a whale. Although, according to the Cascadia Research Collective (CRC), “this appeared to be a larger quantity than had ever been found previously.”

50 gallons of mostly undigested content was found in the stomach of the whale. The majority of this was algae, but between 1-2% of the stomach content was garbage. Examination of the whale concluded that its death was most likely not caused by the garbage. Regardless, CRC points out, “It did clearly indicate that the whale had been attempting to feed in industrial waters and therefore exposed to debris and contaminants present on the bottom in these areas.”

Dozens of whales turn up dead on the beaches of the Puget Sound every year. This number is haunting because many of these whales are dying from starvation. The lack of food may be the reason why this particular whale decided to feed in industrial waters around the Seattle area.

Gray whales are filter feeders; which means they suck in sediment in shallow waters and filter the contents to strain out the small organisms that live there. This process used to leave Gray Whales with a few rocks and some sediment left over in their stomach. However now these whales are now trying to filter plastics, rubber, and whatever else is making up the garbage in our oceans.

Industrial waters are not the only human-caused problem aquatic wildlife have to deal with. Mass amounts of trash in our oceans have led to things like the great Pacific Ocean garbage patch. Here, strong ocean currents have collected a large congregation of trash and created, what some would consider to be, a “trash island”. Descriptions of this collection of garbage range from a couple hundred miles across to the size of France.

Ocean pollution leads to a crippling cycle amongst the food chain. When the prey of larger marine species consumes the trash, so do their predators. This non-nutritional snack also kills off large portions of the food source; leading to starvation throughout the ecosystem.

Plastics are potentially the biggest concern when considering the threat of garbage on aquatic life. This is because plastics will never biodegrade. They simply break up into smaller pieces and get filtered through the ecosystem. Sea turtles have been known to mistake plastic bags for their main source of food; jellyfish.

While plastic bags pose a major problem, it’s the plastic resin pellets that seem to be causing the most disruption. These industrial-use granules are typically shipped half-way around the world before they can be melted in commercial-grade plastic. Considering their size, many get discarded along the way and end up washing to the sea with other plastics. Sea birds and fish alike mistake them for food and eat them, sometimes feeding them to their offspring and unintentionally killing them. They will eventually photo degrade, but as they do they leach toxic chemicals like bis phenol A into the water.

What can we do as consumers to help stop the spread of garbage pollution? The first thing we should focus on is recycling our plastics and investing more of our money into biodegradable materials.

According to Holly Bamford, director of NOAA's Marine Debris Program, "We need to turn off the taps at the source. We need to educate people on the proper disposal of things that do not break up, like plastics," she says. "Opportunities for recycling have to increase, but, you know, some people buy three bottles of water a day. As a society, we have to get better at reusing what we buy."

Thanks to Green Answers

Kathy Dowsett


www.kirkscubagear.com




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