Thursday, December 23, 2010

Biomedical Equipment Technician

By John F Smith
In this modern age when population's health and life span is continuously declining, works and positions related to medical industry are thriving. People rely on doctors, nurses, therapists and medical practitioners to take care of their health that mostly, they themselves have neglected. In this scenario, an individual works silently behind the scene but his role in medical world is of great importance as well. He is the biomedical equipment technician (BMET). He is responsible in the installation, inspection, calibration, modification, testing and repair of highly technical medical equipments. Not anybody can work as biomedical equipment technician because this position requires a 2-year associate's degree in Biomedical Equipment Technology, Biomedical Electronics Technology, or Biomedical Engineering Technology or about one year in full-time military training.
As competition is getting stiffer as time goes by, a biomedical equipment technician's resume must be well written, comprehensive and detailed. One must highlight qualifications especially professional certifications such as Certified Radiology Equipment Specialists (CRES), and Certified Laboratory Equipment Specialists (CLES). Carrying the title of certified biomedical equipment technician (CBET) is not mandatory but is highly encouraged as this generates respect within the technical community. Additionally, a BMET can list all equipments that he can handle to show multi-tasking ability. He can also include character traits such detail-oriented, patience or tolerance to stress and willingness to work on irregular hours as BMET are mostly on call. He should also emphasize his good communication skills as this is important in listening to the problems of the equipment as explained by the user and is important in training people on the proper procedure in handling of equipment and correcting operator error tactfully and in a professional manner.
It would be advantageous for a BMET to enhance and update his understanding of software and electronics as many new medical devices are increasingly reliant on computers.
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Biomedical Engineering Combines Many Skills

By Sally Tolentino
Twenty years ago, any graduating college student with just about any major was able to acquire basically any job they desired, as long as they fulfilled the qualifications. Now, though, even with all the qualifications, graduating college students must enter a rigorous process of interviews and intense competition-all for the possibility of a job. These days, choosing the right major is an extremely important choice for anyone aspiring to be successful-and the perfect way to achieve success is to acquire a major in biomedical engineering.
Now, success is measured in innumerable ways. One is the financial stability that can be gained from occupations involving that major. The median annual salary for a first year biomedical engineer is roughly $48,000, which is only slightly less than that the roughly $56,000 earned by first year electrical engineers (information acquired from salary.com). However, given the heavily large amount of applicants who apply for electrical engineering (EE) majors nationwide, the competition and rivalry among EE is exceptionally higher and stronger than in biomedical engineering.
When applying for college in pursuit of an electrical engineering major, the risk of being rejected is also higher, especially since biomedical engineering is still a relatively new major, which has just recently begun to become more popular. Even if a student succeeds in being accepted into a college for EE, he will then find himself plagued with multitude of other students aspiring to achieve a degree in EE. This just continues into the job application stage, where the thousands of hardworking EE degree holding bachelors will be narrowed down until only a portion are accepted into actually high paying jobs, since the supply of EE majors is much greater than the demand. The same applies for many other popular majors. Biomedical engineering overcomes any of these challenges, ensuring the degree-receiver a well paying job.
Another measure of success is by the amount of enjoyment or excitement one receives from their job. Biomedical engineering combines the skills and techniques used in chemical, electrical, mechanical, and optical engineering. Knowledge of all these different subjects is necessary in order to be a proper biomedical engineer. For those many students who know they wish to pursue a scientific career-but are not sure which one-this is a perfect assortment of all scientific subjects into one major. A student taking this major will take a variety of classes, and not be anchored down to a specific, detailed analysis of one particular branch of science. Biomedical engineering combines all of science into career.
In a world where more and more people are applying for college, the best way to have fun and ensure a successful future is through biomedical engineering. With more people working in this field, the technological advancement in medicine will also grow, and the world will become a better place. After all, isn't that what America is all about?
Sally is a dedicated writer for StudentScholarships.org. She is an expert in Biomedical engineering Scholarships, Financial Aid, Career Advice, and most other things college related.

Autism Treatment - A Biomedical Approach

By Dr. Kurt Woeller
I'd like to discuss my feelings about biomedical interventions for Autism and talk about the reasons why I think it is important to begin a biomedical approach for your child. I lecture around the country and talk on these videos on my website about how important biomedical intervention is. But one thing to recognize is that when we look to implement a biomedical protocol whether that is through diet, supplements, etc, we are really assessing the underlying medical issues.
What that can entail is the use of diagnostic testing, urine, stool, blood, etc. in order to look for imbalances. The imbalances could be nutritional like vitamins and minerals, essential fats or amino acids. Or the imbalances could be biochemical or involve digestive problems. Kids may not be digesting their food appropriately and they may have chronic diarrhea or chronic constipation. So regardless of the diagnosis of the child, I think we can all agree that the right assessment is still needed. But often a label of Autism can exclude a child from getting the appropriate assessment for these underlying medical disorders.
First and foremost I want to know what is going on with my patient's health, as their biomedical specialist. That is the reason for the testing that we use. But that does not mean that I can say that one specific therapy will treat a certain core set of symptoms or eradicate them completely. But, when you address the underlying medical issues of a child with Autism and you look at the diagnostic results and treat accordingly, in many cases you can have an improvement in the individual's Autism and in some cases it can go away. When we use a biomedical treatment approach what we really are doing is optimizing the individual's potential.
You are evaluating the underlying medical issues and addressing them as appropriate. Whether the person has a diagnosis of Autism or not should not matter in the diagnosis and treatment of these specific underlying health issues. The Autism diagnosis should not impede the use of diagnostic testing to ensure that your child is as healthy as they can be. It does require a unique and specialized physician's approach to implement some of this testing and the therapies that we use. But when you take a step back, you realize that what we are doing is to optimize the potential of the individual. And some of the ways we do that are through nutrition, supplementation and diagnostic testing.
Autism really is treatable! Biomedical Autism treatments and therapies have resulted in many, many children improving, or even even losing their autism-spectrum disorder diagnosis. For lots more free biomedical autism intervention information and videos from Dr. Woeller, go to http://www.AutismRecoveryTreatment.com.
Dr. Kurt Woeller is an biomedical autism Intervention specialist, with a private practice in Southern California for over 10 years. He has helped children recover from autism, ADD, ADHD, and other disorders, and has the information you need to help your child. Download his free ebook at http://www.AutismActionPlan.org.

Finding the Right Biomedical Equipment

By Dominic Ivankovich
Medical equipment is designed to help and assist in the diagnosis, treatment, and monitoring of various medical conditions. During production, this equipment goes through stringent safety tests to ensure optimal, safe performance. Biomedical equipment is often referred to as diagnostic equipment because it helps in determining underlying medical conditions. X-rays are one of the most common examples of biomedical equipment. With the improvement in technology over the past decades, medical equipment too has seen phenomenal growth. The motto of modern biomedical engineering is "Better health care through technology," and this is clearly defined through the advanced equipment available. These machines, too, are constantly monitored to ensure a smooth functioning.
Radiation protection is the science of protecting people from the harmful effects of radiation. Radiation is present everywhere, not just in medical facilities like hospitals. Equipment for radiation detection is important for hospitals, fire departments, HAZMAT teams, nuclear power and testing facilities, and x-ray departments. Radiation detectors allow us to monitor the amount of radiation present in an area and control it within safety limits. An excess of exposure to radiation is known to cause cancers, genetic ailments, and tumors. That is why radiation detectors have come to play such a key role in facilities where radiation is present.
The quality of the equipment, too, is extremely important. With biomedical equipment, a faulty device can be risky for a human life. When choosing equipment, it is important to choose wisely and to go with a trusted brand name which provides a benchmark in terms of quality control. Good biomedical equipment will go through a series of tests to make sure it is working safely for the patient's health. Safety must be a higher priority than other factors like cost.
Radiation is present everywhere. Minor traces of radiation are even present in our homes because of devices like microwaves and television. Exposure to minor radiation has become virtually impossible to avoid. In excess, however, radiation can cause extreme damage not just to one person, but also to future generations. That's why radiation detectors are vital for places where people are at risk for exposure to radiation. Hospitals are one example of a place where employees and patients are at a risk of exposure. Therefore, radiation detection equipment is necessary to monitor radiation level. It is wise to choose equipment from a trusted source that will provide well-tested and safe equipment.
Fluke Biomedical is the premiere, global provider of test and measurement equipment and services to the healthcare industry. We serve biomedical engineers, quality-assurance technicians, medical physicists, oncologists and radiation-safety professionals. Fluke Biomedical offers a complete line of simulators such as patient simulators and blood pressure simulator and safety products and solutions that allow these professionals the versatility they need to get the job done.

Are Biomedical Therapies Safe For Children?

By Dr. Kurt Woeller
Are biomedical therapies for children with an autism spectrum disorder safe? Is there any risk to doing therapies such as diet (gluten and casein-free), supplements (multivitamin/minerals, calcium and magnesium, fish oil, etc.) or even Methyl-B12 therapy?
Implementing biomedical autism interventions such as the gluten and casein-free diet or nutritional supplements can be an effective process for many children with an autism spectrum disorder. The question is are they safe, or are there any inherent dangers with biomedical therapy?
The simplest statement to give is, "diet and supplement support is safe and effective." Like anything in medicine there is no guarantee of absolute safety or side effect-free therapy. Each child is different in their genetic and biochemical make-up and their reaction to therapy will vary. For example, when incorporating a new supplement such as Methyl-B12 (which helps many kids with language, social, attention and focusing issues) hyperactivity can be stimulated for some in the beginning. This reaction is not life-threatening or toxic, but some kids can respond this way - usually it is short-lived.
The same can be seen with dietary changes such as gluten and casein removal. Some children have such strong chemical reactions to these food items that when they are removed from their diet significant aberrant behavior can occur such as irritability, aggression and/or restlessness, sleeping problems, etc. Again, these behaviors usually subside on in a few days. These are not life-threatening or toxic reactions, but do indicate that gluten and casein are causing some abnormal chemical alterations - which they are known to do. On the flip side, many times positive gains are also seen such as improved eye contact, language skill, cognitive awareness, and others when these therapies are implemented.
Contrast this with common drug therapy such as Risperdal. Risperdal is a drug often prescribed for autism to help with aggressive behavior. It can be helpful in some, but the side effect profile is lengthy and in some can cause permanent neurological damage.
In my experience, biomedical intervention through the use of diet and nutritional support has never created toxic reactions or side effects that are seen with many pharmaceutical drugs. In fact, in many cases biomedical treatment has lessened the need for drug therapy all together in many children.
Don't let ANYONE tell you there is nothing you can do to help your child. Autism really is treatable! Start your child down the road to recovery from autism. Biomedical Autism treatments and therapies have resulted in many, many children improving - even losing their autism-spectrum disorder diagnosis. For more information and a free ebook on biomedical autism treatment go to http://www.AutismActionPlan.org.
Dr. Kurt Woeller is an autism biomedical specialist, with a private practice in Southern California for over 10 years. He has helped children recover from autism, ADD, ADHD, and other disorders, and has the information you need to help your child. Get his ebook, "7 Facts You Need To Know About Autism (But Probably Weren't Told)." You can download it right now for free at http://www.AutismActionPlan.org.

Autism Treatment Using Biomedical Therapies

By Dr. Kurt Woeller
Previously in other videos I have talked about therapies that are considered traditional treatments for Autism spectrum disorders like medications such as Risperdal and therapies like speech therapy, occupational therapy and behavioral therapy. Now I would like to cover something called biomedical therapies. Biomedical therapies are therapies that are utilized medically but are not what we would consider a recognized therapy in traditional medical communities. However, that does not reduce their effectiveness since these therapies can be very effective. They may not be well known or recognized throughout the medical world but biomedical therapies really break down into multiple categories.
The first category we will cover is supplements. We have seen that using various supplements like multi-vitamins, multi-minerals, B-12, folic acid, etc. can be helpful for some individuals. In fact, B-6 which is a specific vitamin, can be very helpful for quite a few individuals on the Autism spectrum because it has a bolstering effect on brain chemistry that can aid in eye contact, focusing, attention and even in some cases, behavioral problems.
There are also therapies out there that address the digestive problems that many children with Autism have. We know there is a link between digestive toxicity and brain function. So when we look at yeast and bacterial issues in the digestive tract and we use things like probiotics or prescriptions like Nystatin, Diflucan or even sometimes antibiotics to treat these issues, we see children improve cognitively.
We can also intervene biomedically through the use of dietary therapy. Once of the most common dietary therapy is the gluten and casein free diet. Gluten and casein can produce a chemical effect on the brain. We have seen issues with this in regards to individuals with depression, schizophrenia and bi-polar disorder. And for people on the Autism spectrum we also see that these specific food proteins have a negative impact on brain chemistry and cause problems in attention, eye contact, socialization, language and behavior.
So although biomedical therapies tend to fall outside of the norm from the perspective of the traditional medical community, they can be incredibly powerful and useful. Biomedical therapies are medical interventions through the use of supplements, dietary therapies, digestive interventions, etc. They can help support traditional therapies like ABA, OT and speech therapy and in many cases can be even more powerful than those other interventions. So it is very important to remain open minded about other possibilities and to continue to learn and search out new ways to support individuals with Autism. There are so many treatment avenues and I have just touched on a few of them in this video.
Don't let ANYONE tell you there is nothing you can do to help your child. Autism really is treatable! Start your child down the road to recovery from autism. Biomedical Autism treatments and therapies have resulted in many, many children improving, or even even losing their autism-spectrum disorder diagnosis. For lots more free biomedical autism intervention information and videos from Dr. Woeller go to http://www.AutismRecoveryTreatment.com. Dr. Kurt Woeller is an biomedical autism Intervention specialist, with a private practice in Southern California for over 10 years. He has helped children recover from autism, ADD, ADHD, and other disorders, and has the information you need to help your child. Get the information you need at his free blog above, interact with him directly at his membership website at http://www.AutismActionPlan.org.

Biomedical Engineering Training Studies

By Renata McGee
The use of medical tools and aides to treat patients is possible by integrating medicine and biology to create workable technologies. Biomedical engineering is a field that is highly specialized and students can enter an education through numerous colleges and universities. There are a number of things to learn prior to enrollment in an online biomedical engineering school.
1. Studies encompass all the areas that are needed to create usable technologies for the health care field. These can include inflatable casts, ear thermometers, surgical staples, and magnetic resonance imaging machines. Students dive into a curriculum that covers biology in regards to medical engineering. Biomechanics, biomaterials, biomedical systems, linear differential equations, biofluids, and nanotechnologies are some courses that make up the overall career study. Education concentrates on how to combine science and technology to create needed biological processes to deliver improved health care. Over 100 colleges and universities offer degree programs allowing students to utilize their strengths. Specialties can include medical imaging, rehabilitation engineering, biomaterial engineering, and biomechanics engineering.
2. Introductory courses like biomedical engineering, research, and nanotechnology are typically taken in the first two years of a degree program. An introduction to biomedical engineering course teaches students the history and social relevancy of modern bioengineering areas. Study covers industry areas like action potential, signal process, genetic engineering, and bioimaging. A research course goes into how to collect and analyze biophysical measurements. Colleges teach students the process, which includes measuring, testing, and linear regression. Collecting data using different equipment like A/D boards is also touched on. The use of emerging nanoscale materials is taught in a nanotechnology course. The study on this newer form of technology is centered on applications that include electrical, biomedical, and mechanical engineering.
3. In the third and fourth years of a traditional program studies focus more on advanced subjects and concentration courses are taken. Biomechanics engineering, genetic engineering, tissue engineering, and drug delivery engineering are a few courses included in the second portion of a typical degree program. A biomechanics course focuses on the mechanics that apply to living organisms. The behaviors of organisms are studied to understand how biological processes restrain them. A genetic engineering course teaches students to understand how molecular bioengineering works and how it is used inside the industry. All areas of genetics are taught, which includes DNA breakdown, cell information, and recombinant technology in regards to DNA. Students look at all the societal issues and ethics related to genetic engineering to establish considerations for regulation. A drug delivery course focuses on the engineering of designing systems that administer drugs to patients. Biocompatibility and the formulation of controlled release devices are focused on. These courses make up key areas of studies that students follow up with advanced training and understanding.
Students can enter training at all levels allowing them to enter the field with ease. Earning a bachelor's degree is the industry standard to enter a career as a biomedical engineer. Completing an accredited degree program at the graduate level prepares students for specialties, research, and technology innovation careers. Full accreditation is provided by agencies like the Accreditation Board for Engineering and Technology (http://www.abet.org/) to programs that offer quality educational training. Begin working through a degree program to become a part of the fast growing and technology driven industry of biomedical engineering.
DISCLAIMER: Above is a GENERIC OUTLINE and may or may not depict precise methods, courses and/or focuses related to ANY ONE specific school(s) that may or may not be advertised at PETAP.org.
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Renata McGee is a staff writer for PETAP.org. Locate Biomedical Engineering Schools and Colleges as well as Online Biomedical Engineering Schools at PETAP.org, your Partners in Education and Tuition Assistance Programs.