রবিবার, ২৫ সেপ্টেম্বর, ২০১১

Sustainability@UIC: Job: Communications Officer for MIT

Graduating soon or know anyone looking for a great job? Check out this opportunity:

Company: Massachusetts Institute of Technology
Position: Communications Officer in the Center for Global Chance Science department (Full Time)
Location: Cambridge, MA
Description and Duties:

  • to facilitate external communications and manage the dissemination of public information
  • function as a writer/editor, webmaster, and public information officer promoting the program's research and newsworthy activities; manage and extend communications efforts in support of the program's mission
  • develop and implement plans, anticipate issues, and with input from program directors devise solutions
  • work with researchers to translate complex ideas and technical findings and prepare highlights for public release; produce quarterly newsletters for sponsor liaisons in industry, government, and foundations
  • maintain multimedia products and shared communication resources
  • coordinate program participation in educational outreach
Requirements:
  • bachelor's degree in environmental science, economics, engineering, public policy, or related field
  • evidence of an ability to communicate complex concepts
  • excellent writing and interpersonal skills
  • proficiency with modern publishing and web-based communication tools
  • the capacity to work both independently and collaboratively with a diverse interdisciplinary group
  • Science journalism experience or a multidisciplinary background preferred; An understanding of economic/policy analysis and climate science is highly desirable.?
The Fine print:
  • Initial appointment is for one year with possibility of extension depending on performance. Evaluations will begin immediately with anticipated start date of October 1, 2011.
  • Req number:?mit-00008060?


Source: http://blog.sustainability.uic.edu/2011/09/job-communications-officer-for-mit.html

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শনিবার, ২৪ সেপ্টেম্বর, ২০১১

BIO101 - From Genes To Species: A Primer on Evolution

This post was originally written in 2006 and re-posted a few times, including in 2010.

As you may know, I have been teaching BIO101 (and also the BIO102 Lab) to non-traditional students in an adult education program for about twelve years now. Every now and then I muse about it publicly on the blog (see this, this, this, this, this, this and this for a few short posts about various aspects of it ? from the use of videos, to the use of a classroom blog, to the importance of Open Access so students can read primary literature). The quality of students in this program has steadily risen over the years, but I am still highly constrained with time: I have eight 4-hour meetings with the students over eight weeks. In this period I have to teach them all of biology they need for their non-science majors, plus leave enough time for each student to give a presentation (on the science of their favourite plant and animal) and for two exams. Thus I have to strip the lectures to the bare bones, and hope that those bare bones are what non-science majors really need to know: concepts rather than factoids, relationship with the rest of their lives rather than relationship with the other sciences. Thus I follow my lectures with videos and classroom discussions, and their homework consists of finding cool biology videos or articles and posting the links on the classroom blog for all to see. A couple of times I used malaria as a thread that connected all the topics ? from cell biology to ecology to physiology to evolution. I think that worked well but it is hard to do. They also write a final paper on some aspect of physiology.

Another new development is that the administration has realized that most of the faculty have been with the school for many years. We are experienced, and apparently we know what we are doing. Thus they recently gave us much more freedom to design our own syllabus instead of following a pre-defined one, as long as the ultimate goals of the class remain the same. I am not exactly sure when am I teaching the BIO101 lectures again (late Fall, Spring?) but I want to start rethinking my class early. I am also worried that, since I am not actively doing research in the lab and thus not following the literature as closely, that some of the things I teach are now out-dated. Not that anyone can possibly keep up with all the advances in all the areas of Biology which is so huge, but at least big updates that affect teaching of introductory courses are stuff I need to know.

I need to catch up and upgrade my lecture notes. And what better way than crowdsource! So, over the new few weeks, I will re-post my old lecture notes (note that they are just intros ? discussions and videos etc. follow them in the classroom) and will ask you to fact-check me. If I got something wrong or something is out of date, let me know (but don?t push just your own preferred hypothesis if a question is not yet settled ? give me the entire controversy explanation instead). If something is glaringly missing, let me know. If something can be said in a nicer language ? edit my sentences. If you are aware of cool images, articles, blog-posts, videos, podcasts, visualizations, animations, games, etc. that can be used to explain these basic concepts, let me know. And at the end, once we do this with all the lectures, let?s discuss the overall syllabus ? is there a better way to organize all this material for such a fast-paced class.

Today, we introduce the concept of evolution, mainly via natural selection (sexual selection will come later in the course, and neutral selection etc. are too much for this level). Note that I tend to do a lot of drawing on the whiteboard in this lecture, which is not seen in these notes.

???????????????????-

Evolution

Imagine a small meadow. And imagine in that meadow ten insects. Also imagine that the ten insects are quite large and that the meadow has only so much flowers, food and space to sustain these ten individuals and not any more. Also imagine that the genomes of those ten insects are identical, except for one individual: that one has a mutation in one gene (due to an error in DNA replication, or due to crossing-over during meiosis, or due to chemicals in the environment, or due to getting hit by rays coming from outside Earth, etc). That mutation, during development, led to the induction of the production of more mitochondria in each muscle cell.

Normally, that mutation is not obvious ? the insect flutters from flower to flower just like anyone else. However, if the situation arises, the mutant individual is just a tiny little bit faster because the additional mitochondria in muscles allow it to switch from aerobic to anaerobic sources of energy later than in other individuals. Thus, the ?normal? individuals can fly one yard in one second, while the mutant can fly one yard plus one inch in one second.

Now imagine that, over some time period, a bird comes by the meadow four times. Each time, the bird chases the insects and catches the one that is the closest to her. Which individual is, statistically speaking, least likely to get caught and eaten? The mutant, as the little extra speed may give it just enough edge in comparison to other individuals. This comparative ?extra edge? is called increased fitness.

After four insects have been eaten, six remain ? three males and three females. They pair up, mate, lay eggs and die. Each pair lays, let?s say eight eggs, which all hatch, proceed normally through the larval development and become adults. This makes a total of 24 insects in a meadow that can support only ten individuals. At the same time, the bird has laid eggs, the eggs hatched and the hatchlings sometimes come to the meadow to hunt.

Let?s look at the genetics of this population for a moment. Two pairs of ?normal? insects produced a total of 16 offspring, all of them ?normal?. The offspring of one ?normal? and one ?mutant? each got one of the chromosomes from the mother, the other one from the father. All of them will have the mutation on one, and not on the other chromosome. Let?s say that having a mutation on only one chromosome adds a half-inch to the yard-per-second flaying speed. The full mutant is homozygous for this mutation. The half mutant is heterozygous for this mutation. The heterozygous individuals are still relatively more fit than the ?normals?. As the hatchling birds hunt down the insects and cut down the population to ten individuals, the half-mutants are more likely to be present in the remaining population than the non-mutants.

Let?s call the ?normal? variant of the gene A and the ?mutant? variant of the same gene a. A and a are alleles of the same gene.

In the next generation, some normals will breed with normals, producing normal offspring. Some half-mutants will mate with normals and produce a mix of normals and half-mutants. Some half-mutants will mate with some half-mutants and the resulting eight offspring will consist of 2 normals (AA), two mutants (aa), and four semi-mutants (Aa).

As the a allele confers relative fitness to its carriers, this allele will spread through the population over several generations and either completely eliminate allele A, or attain some stable balanced ratio in the population.

When one compares the genetic composition of this population over generations, one notices that it changes over time, from preponderance of A in the first generation, through a series of intermediate stages, to the preponderance of a in the last generation.

The change of genetic composition of a population over multiple generations is called evolution.

That sentence is the most commonly used definition of evolution. The process that favored one allele over the other, resulting in evolution of flight speed in these insects, is called natural selection. The environment ? the carrying capacity of the meadow plus the bird predators ? was the selecting agent. The process that turns a genetic change (mutation) into a trait that can affect fitness of the whole organism is development. Thus, one can also define evolution as ?change of development by ecology?.

For evolution to proceed, the trait must vary in a population, one of the variants has to confer greater fitness than the other variants, there has to be a limit on the fecundity (how many offspring can survive in each generation) leading to differential rate of reproduction, and the trait has to be heritable, i.e., the offspring have to be more like parents in respect to that trait than like other individuals in the population. The inheritance is usually, though not always, conferred by the genome (the DNA sequence).

The example we used is quite unrealistic. Populations are much more likely to number in thousands or millions than just ten individuals. Thus, instead of a few generations, it may take thousands or millions of generations for a new allele to sweep through the population. In annually breeding organisms, this means thousands to millions of years. In slow-breeding animals, like elephants, it will take even longer. In fast reproducers, like bacteria, this may only take several months or years, as in evolution of antibiotic resistance in bacteria or evolution of pesticide resistance in agricultural pests.

Another way that the example was unrealistic was the assumption that all the individuals were genetically identical to each other except for that one mutation in that one gene. In reality, there will be variation (two or more alleles) in every gene, and new mutations show up all the time. Some mutations decrease fitness, some are neutral and some increase fitness. Some alleles affect fitness depending on which other alleles of other genes are present in the same individuals, or depending on the environment it finds itself in at a particular time, as in the ?norm of reaction? phenomenon (see previous lecture). Due to this, some combinations of alleles may tend to move from one generation to the next together.

Finally, in many organisms, genes can be transmitted horizontally ? not from parent to offspring but directly from one individual to another. This most often happens in bacteria, where individual bacteria may exchange bits and pieces of their DNA. Likewise, viruses are carriers of DNA sequences from one organism to another as well. Some of the sequences in our genome are of bacterial origin, transmitted some time in the past by viruses, and now fully integrated into our genome and even assuming an indispensable function. For instance, HERV genes are originally viral genes that are now parts of our genome and are necessary for the development of the placenta.

Thus, in the real world, the situation is more complicated than in our example. Still, the proportions of various alleles of many genes are constantly changing in populations over generations ? evolution occurs all the time.

Let?s now assume that our insects live in a much larger area and that there are millions of them. The frequencies of various alleles fluctuate all the time, and there is quite a lot of genetic variation contained in the population. Natural selection may work on preserving the average phenotype as its fitness is high and outliers at each end have lower fitness. This is called stabilizing selection.

As the climate slowly changes, or other aspects of the environment change, the relative frequencies of alleles of various genes will track those changes. New conditions may, for instance select for larger body size. The largest individuals tend to leave most offspring, while the smallest individuals, on average, put the least of their genes into the next generation. The selection for large body size is an example of directed selection.

In some cases, selection may favor the extremes, but not the middle. Fast fliers may be selected for because they can escape the birds. The slowest fliers may be selected because they mostly walk or crawl and are thus not easily spotted by birds. They are also fit, but via a different strategy. The medium-speed fliers are selected against. This is an example of disruptive selection, forming two different morphs of the same species.

If those two morphs tend to, on average, be more likely to find each other and mate with each other within a morph than between two morphs, this may lead to splitting the species into two species ? this is called sympatric speciation. As the gene flow between the two groups declines, more and more mutations/alleles will be found only in one morph and not the other. Those genes will also be under the influence of selection, and the selecting environment is different between crawlers and fliers. Soon enough, the individuals belonging to the two groups will not even recognize each other as belonging to the same species. Even if they recognize each other, they may not like each other (?mate-choice?) enough to mate. Even if they mate, their eggs may not be fertile. Even if their eggs are fertile, the resulting offspring may not be fertile (hybrids, like mules for instance). If, for whatever reason, two related populations do not, will not or cannot interbreed, they have became separate species ? speciation occurred.

Imagine now that a small cohort of about ten individuals got blown away by wind from the mainland to a nearby island. The mainland population is huge. The island population is tiny. The ability of any mutation or any allele to spread fast through the population is much greater in a small group. The selective pressures are also different.

It may be better for the island insects to be small and for the mainland insects to be large, perhaps due to the types of flowers or kinds of predators that are present. The mainland insects may be selected for high flying speed because of bird predation. The island insects may not have any bird predators, but, those individuals who are the best fliers are most likely to be swept off the island by wind and drown in the ocean, never placing their genes into the next generation. Thus, they are selected not to fly, even to lose their wings.

If, after a number of generations, those two populations again get into contact ? e.g., a land bridge gradually arises, or another cohort of mainland insects floats on a log onto the island, the two populations will not recognize each other as the same species (or not like each other enough to mate, or not having fertile eggs or offspring). Thus, they have also become reproductively isolated, thus, by definition, they have become two separate species. Speciation occurred. This type of speciation, where a geographic barrier separates two parts of a population preventing gene flow between them is called allopatric speciation, and is much better documented and much less controversial than sympatric speciation.

Billions of such speciation events, meaning branching of species into two or more species, resulted in the evolution of all species of organisms on Earth from a single common ancestor (a very primitive bacterium) over a period of more than 3.5 billion years.

Watch animation:

Evolution

Further readings:

Understanding Evolution
What is Evolution?
Introduction to Evolutionary Biology
Evolution FAQs
Index to Creationist Claims
Talk Design Articles
Talk Reason
Transitions

Previously in this series:

Biology and the Scientific Method
BIO101 ? Cell Structure
BIO101 ? Protein Synthesis: Transcription and Translation
BIO101: Cell-Cell Interactions
BIO101 ? From One Cell To Two: Cell Division and DNA Replication
BIO101 ? From Two Cells To Many: Cell Differentiation and Embryonic Development
BIO101 ? From Genes To Traits: How Genotype Affects Phenotype

Source: http://rss.sciam.com/click.phdo?i=9398992b734f690f9a8140194f4b21bd

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Tips For Getting Fit For Summer - Speech Thearpy Jobs

Getting fit for summer is a goal you can achieve by taking several approaches and often it?s just a case of making a few positive changes regarding the level of physical activity you do and the foods that you regularly consume. These two elements need to be properly balanced if you want to have the body you really want.

You can make things happen a lot faster if you do not continue with counterproductive habits such as feasting on junk food and drinking alcohol. These are both bad f your health and significant barriers to health so think abut saying goodbye to them

Your second step should be on setting targets that you intend to reach. What are your main aims and do they include significant weight loss or changing the shape of your body. Whatever they may be it helps for you to have a clear definable goal in place so that you can work toward it.

Once you have these in place think about having an eating plan which has little in the way of saturated fats and has no processed sugars in it. Making this choice means you can have a leaner physique and you don?t have to totally stave yourself for this to be achieved as long as you eat he right foods and exercise regularly.

You can get your natural sugars from eating fruit. Minerals and vitamins can be derived from the consumption of healthy vegetables which improve the skins appearance and also help your body deal with toxins more effectively. Have vegetables with foods such as turkey or chicken which are lean and tasty foodstuffs packed with protein and can be used in a range of tasty meals.

Take care with servings of carbohydrates. People have a tendency to serve these in large quantities but if you are not doing strenuous exercise these will be stored by the body as fat and will make you put on weight. They should be served in moderate portions and it is best to avoid white bread and rice and have whole grain alternatives instead.

With regards to toning and any further weight loss exercise is the key to success in both of these areas. To achieve results fast it is a good idea to get a personal trainer. If this is too expensive make sure you stay focused and stick to a fitness plan which involves stretching, cardiovascular work and muscle toning exercises.

Check out our website for tips on how to get fit for summer and details about the benefits of having a Gold Coast personal training, now. You can also find information about the best Gold Coast personal trainers, today.

Source: http://www.jobs-in-speech-therapy.com/fitness/tips-for-getting-fit-for-summer/

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Dumb Friends League animal shelter look for foster care homes ...

Denver, Colo. (Sept. 21, 2011) Pets are seeking temporary homes at the Dumb Friends League right now. To help these pets in need, the League will host an open house to recruit more foster-care volunteers.

Open House Sunday September 25, 2011 12-3 at the Denver Shelter on S. Quebec Street.

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Parker Days Dog a rescue from DDFL.org

?The goal of our Homes with Hearts foster care program is to nurture or rehabilitate as many pets as possible so they can be adopted by loving families,? said Theresa Geary, vice president of operations. ?We?re always in need of foster volunteers, as we see thousands of cats, dogs, and other small pets enter our shelters each year.?

Those attending the open house will have the opportunity to speak with foster-care volunteers and staff members, tour the shelter and meet some of the pets in need of foster homes. They also will learn about the benefits of fostering.

Foster volunteers provide temporary care for animals in their home?whether it is for a few weeks or months?until they are ready for adoption or space is available at one of the two shelters. The League established the foster care program 24 years ago. Last year alone, more than 350 volunteers provided foster care for a total of 2,841 needy pets.

?Foster volunteers play such an important role at the Dumb Friends League,? said Geary. ?They open up their homes and their hearts?whether it?s for two weeks or two months?and help give these pets second chances at finding happiness.?

Volunteer foster parents are provided with all of the needed supplies, including food, bedding, toys, cat litter and veterinary care if needed. The League also works with each volunteer?s schedule and needs.

Pets needing foster care include kittens and puppies that are too young for adoption, as well as mother cats and dogs nursing their litters, those recovering from an illness or injury and those that would benefit from extra socialization. The Dumb Friends League also utilizes foster parents to help provide needed space at the shelters for incoming animals.

Interested foster-care volunteers do not need to RSVP for the open house scheduled for Sept. 25, which will take place in Lulu?s classroom at the League?s Quebec Street shelter.

For more information on the Dumb Friends League and how you can become a volunteer foster parent, visit ddfl.org or call (303)751-5772, Ext. 7228.

?

Tags: cats, denver co, denver dumb friends league, dogs, foster care

Source: http://www.ourdccolorado.com/dumb-friends-league-animal-shelter-look-for-foster-care-homes/

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শুক্রবার, ২৩ সেপ্টেম্বর, ২০১১

AP IMPACT: Hospital drug shortages deadly, costly (AP)

TRENTON, N.J. ? A drug for dangerously high blood pressure, normally priced at $25.90 per dose, offered to hospitals for $1,200. Fifteen deaths in 15 months blamed on shortages of life-saving medications.

A growing crisis in the availability of drugs for chemotherapy, infections and other serious ailments is endangering patients and forcing hospitals to buy from secondary suppliers at huge markups because they can't get the medications any other way.

An Associated Press review of industry reports and interviews with nearly two dozen experts found the shortages ? mainly of injected generic drugs that ordinarily are cheap ? have delayed surgeries and cancer treatments, left patients in unnecessary pain and caused hospitals to give less effective treatments. That's resulted in complications and longer hospital stays.

Just over half of the 549 U.S. hospitals responding to a survey this summer by the Institute for Safe Medication Practices, a patient safety group, said they had purchased one or more prescription drugs from so-called "gray market vendors" ? companies other than their normal wholesalers.

Most also said they've had to do so more often of late, and 7 percent reported side effects or other problems with those drugs.

Hospital pharmacists "are really looking at this as a crisis. They are scrambling to find drugs," said Joseph Hill of the American Society of Health-System Pharmacists.

At a hearing Friday before the health subcommittee of the House Energy and Commerce Committee, hospital officials and other experts testified that the worsening shortages are preventing them from giving many patients the best care and are driving up costs.

"Considering the nation's budget crisis and our skyrocketing health care bill, these markups are nothing more than profiteering at the expense of patients and providers who are struggling to afford vital medicines," said Mike Alkire, chief operating officer of Premier Healthcare Alliance, a group that helps U.S. hospitals and other health providers improve their patient care and finances.

The shortages could cost hospitals at least $415 million a year, he said, citing data from health care providers across the nation. So far, hospitals have been absorbing the extra costs, but they'll soon have to start passing them on to insurers and patients, according to the American Hospital Association.

The scarcity of mainstay cancer drugs is not only hurting patients but is halting or disrupting clinical studies of potential new treatments, said Dr. Robert S. DiPaola, director of the Cancer Institute of New Jersey.

"The drug shortages of today can have a ripple effect on the availability of new drugs and treatment combinations tomorrow," he told the committee.

On Monday, the Food and Drug Administration is holding a meeting with medical and consumer groups, researchers and industry representatives to discuss the shortages and strategies to fight them.

The FDA says the primary cause of the shortages is production shutdowns because of manufacturing problems, such as contamination and metal particles that get into medicine.

Other reasons include theft of prescription drugs from warehouses or during shipment, as well as the "gray market" vendors who buy scarce drugs from small regional wholesalers, pharmacies or other sources and then sell them to hospitals at many times the normal price. These sellers may not be licensed, authorized distributors.

In addition, many companies have stopped making generic injected drugs because the profit margins are slim. Producing them is far more expensive than stamping out pills, and it takes about three weeks to produce a batch. Making things worse, companies don't have to notify customers or the FDA that they've stopped making a medicine. That means neither FDA nor competitors can fill the gap in time.

Only a half-dozen companies make the vast majority of injected generics. Even if other companies wanted to begin making a drug in short supply, they're discouraged by the lengthy, expensive process of setting up new manufacturing lines and getting FDA approval.

Hospitals that buy scarce medicines from the "gray market" are taking a gamble.

The drugs may be stolen and hospitals can't always tell whether a medicine was properly refrigerated ? as required for many injectable drugs ? or whether it's past the expiration date, said Michael R. Cohen, a pharmacist and president of the institute. The active ingredient might have degraded and the drug might not work well or could even harm the patient, he said.

Cohen attributes at least 15 recent deaths to drug shortages, either because the right drug wasn't available or because of dosing errors or other problems in administering or preparing alternative medications. But many deaths and injuries go unreported, he said.

In the worst known case, Alabama's public health department this spring reported nine deaths and 10 patients harmed due to bacterial contamination of a hand-mixed batch of liquid nutrition given via feeding tubes because the sterile pre-mixed liquid wasn't available.

So far this year, 210 drugs have been added to the list of those in short supply, one less than the total for all of last year, according to the University of Utah Drug Information Service, which tracks the shortages. That's triple the roughly 70 a year from 2003 to 2006, when shortages began to climb steadily.

"The shortages aren't resolving. They're piling up on top of existing ones," said Erin Fox, a pharmacist who manages the service. She said at least 55 drugs from shortages before this year are still unavailable or scarce.

The average price markup on drugs sold by secondary distributors was 650 percent, according to an Aug. 16 report by the Premier Healthcare Alliance. The figure is based on an analysis of 636 unsolicited sales offers that were faxed and emailed to hospitals from secondary distributors in April and May.

Virtually every offer was for at least double the normal price, the survey found. The drugs with the highest markups were for critically ill patients needing anesthesia or other medicines for surgery or for emergency care, cancer, infectious diseases and pain management.

In an extreme case, one vendor was offering a generic beta blocker for dangerously high blood pressure, normally priced at $25.90 per dose, for $1,200.

The FDA says it must uphold quality standards but also works hard to prevent shortages.

"When FDA detects a contaminant, whether it be shards of glass or metal particles or an infectious agent, we have to take action to protect the public," said Dr. Peter Lurie, a senior adviser in the FDA commissioner's office.

When such problems force a company to shut down production, the FDA urges other manufacturers to boost their output and expedites any approvals needed, said Valerie Jensen, associate director of the agency's drug shortage program. When raw materials used to make drugs are in short supply, the FDA tries to find new sources.

The agency averted 38 shortages last year, Jensen added. Another 99 have been prevented so far this year, Howard K. Koh, assistant secretary for health in the Department of Health and Human Services, told the committee.

Legislation pending in the House and Senate would increase penalties for drug thefts from warehouses and tractor-trailers. Another proposal, which has bipartisan support, would require drug manufacturers anticipating a shortage to immediately notify the FDA.

The pitches hospitals get from secondary distributors generally say they have small batches of specific drugs that are hard or impossible to find. "Are you enjoying this crazy `roller coaster ride' of pharmaceutical shortages? ... I utilize over 60 vendors to locate and procure needed pharmaceuticals to assist when you have shortage needs," one reads.

Several distributors who sent hospitals solicitations for scarce drugs didn't return calls from the AP. One representative said he wasn't authorized to discuss the issue.

Another company, Novis Pharmaceuticals, defended the higher prices, saying secondary distributors have to charge far more because they don't get the big rebates manufacturers give primary distributors. They also have high costs to locate and transport batches of scarce drugs, although the company, which mainly distributes blood plasma, would not disclose its profit margin.

It's illegal for companies to collude to create a medicine shortage and raise prices, and there's no evidence of that. There's no federal law against price-gouging on prescription drugs, according to the FDA, but it does urge pharmacists to report cases to its Office of Criminal Investigation. An agency spokeswoman said she could not discuss whether any cases are being investigated.

The top three wholesalers say they try to alleviate problems by working with drug manufacturers, updating hospitals on shortages and rationing scarce supplies by giving their regular hospital customers a portion of their normal order. McKesson Corp. and Cardinal Health Inc. say they halt sales to any smaller distributors found to be diverting drugs or otherwise breaking rules. AmerisourceBergen Corp. does background checks on customers.

The hospital association and other groups urge hospitals not to buy from unaccredited vendors, to insist on documentation of the drug's source if they must, and to report price gouging to state authorities. But only three states ? Kentucky, Maine and Texas ? have price-gouging laws that specifically cover medicines.

"Something has to be done here," said pharmacist Michael O'Neal, head of drug procurement for Vanderbilt University Medical Center in Nashville, which has had to purchase medicines from secondary suppliers about 70 times over the past two years.

"This is unethical," he said. "We're talking about people's lives."

___

Summary of state price-gouging laws: http://www.ncsl.org/default.aspx?tabid14434

Institute for Safe Medication Practices consumer site: http://www.consumermedsafety.org/

Source: http://us.rd.yahoo.com/dailynews/rss/health/*http%3A//news.yahoo.com/s/ap/20110923/ap_on_he_me/us_hospitals_drug_shortages

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Acne Treatment: Choices For An Answer For Young Girls ...

There are many choices for acne treatment. If you?re like most, you have got tried many and have not found the right resolution to your needs. This is common for people simply because they have no idea what they need to be doing. Will the over-the-counter merchandise work in your acne? Will it?s essential to have a laser remedy as a way to make it finally go away? The issue with pimples therapy is that what works for one individual won?t work for somebody else.

What Do I Do?

The very first thing that anybody that has acne needs to do is to have a great face cleansing regimen. Pimples skin care is vital to getting rid of the zits within the first place. For this, you have to a great quality facial cleanser at the very least. Think about the place acne comes from and you?ll perceive this idea. Acne is caused by micro organism that get into the warm, wet pores in your face. They multiply there and the physique reacts. The precise acne is an infection on the skin. So, proper zits skin care can assist just by removing the bacteria from your face.

But, that is prone to not be enough. Often, you will want to use an pimples treatment or an acne treatment. These may be bought over-the-counter to be used. The actual fact is that one thing that works for you might or might not work for somebody else. The zits therapy could be hit and miss then. Another choice that you?ve got that has shown nice progress is that of utilizing natural zits treatments. These too may be discovered all through the web.

Zits skincare is essential to your health. What is the greatest acne treatment? That will rely in your particular want and your body?s chemistry. You will find that there are zits drugs that do work they usually work very well. Handle pimples now may also help you to keep away from needing zits scar removing later.

In case you desire additional information with reference to how to get rid of a pimple fast, visit Fret Juytersenn?s web site immediately.

Tags: acne treatment

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Source: http://duodemain.com/acne-treatment-choices-for-an-answer-for-young-girls.html

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