Showing posts with label medical. Show all posts
Showing posts with label medical. Show all posts

Tuesday, December 13, 2011

Medical Device Innovation

Paul Yock, Professor of Medicine and Founding Co-Chairof Stanford's Program in Biodesign, led this interactive panel discussion on medical device innovation. Panelists included Darin Buxbaum of Hourglass Technologies, Darren Hite of Aberdare Ventures, Mohit Kaushal of the West Wireless Health Institute, and Uday Kumar of iRhythm. Related Links: Stanford GSB Program in Healthcare Innovation: www.gsb.stanford.edu Stanford Biodesign: innovation.stanford.edu Aberdare Ventures: www.aberdare.com West Wireless Health Institute: www2.westwirelesshealth.org iRhythm: www.irhythmtech.com

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Tuesday, December 6, 2011

Flexible Circuitry Growth in Medical Electronics

!9#: Flexible Circuitry Growth in Medical Electronics

The medical electronics industry is one of the fastest growing markets in the United States. As the drive to reduce space and weight while adding functionality at a reduced cost continues, flexible circuitry is fast becoming an ideal interconnection and packaging design solution for this industry.

The adoption of flexible circuitry in medical devices goes back to the early 1970's, when companies like Cardiac Pacemakers and Medtronic used flex circuitry for implantable pacemakers and implantable defibrillators. As electronics and packaging advanced, medical products have enjoyed a tremendous growth both in the US and overseas. This growth can be expected to continue as new and innovative products, with increasingly demanding electronic requirements, challenge product designers to get ten pounds into a five pound bag.

Today flexible circuits are found in a vast assortment of medical applications:

Implantable Medical Devices. These include pacemakers, defibrillators, neurological implants and cochlear implants (hearing). These devices are surgically implanted in the human body. Product requirements are extreme reliability, long lasting, light weight, and compact in size. Non implantable Medical Devices. Hearing aids, drug dispensing systems, and external defibrillators (attached to patient) are some examples of this medical application. These devices are usually worn or attached to the skin of the patient. Monitoring Devices: Devices include portable or wearable electronic devices that monitor heart rate, blood pressure, body temperature, and blood sugar rate. Also included in this category are bedside monitoring devices. Diagnostic Equipment: This category includes equipment that does ultrasound scanning, MRI's, CT scanning, X-Ray's and a variety of other types of equipment that aid in detecting and diagnosing health problems. Surgery Tools: These include electronic saws, screw drivers and cauterizing scissors for clamping and closing blood vessels while performing surgery. Single Use Devices (SUD's). Applications include ultrasonic scalpels, electrode recording catheters, biopsy instruments, electric biopsy forceps and hundreds of other applications where sterile requirements dictate one time use.

The variety of uses and applications is continually expanding with innovative new designs or redesigns of existing equipment. This makes the medical industry one of the fastest growing and existing segments for flexible circuit applications. There are a number of important reasons that flexible circuitry is ideal for the medical industry:

Reliability: As early as the 1950's, flexible circuitry was used in the military and avionics industry, with both applications requiring extraordinary reliability. The nearly 20 years of proven performance in these high demand applications provided the medical industry with confidence in flex circuitry's reliability and robustness. Flexible circuitry has inherent advantages because it eliminates connection points, thereby simplifying assembly and eliminating chances of human error or interconnect defects such as poor solder joints.

Space and weight: The demand in the medical industry to make devices smaller and lighter makes flexible circuits ideal in applications when weight and space are a premium. Flexible circuitry is thin (total circuit thickness can be Bio-compatibility: The materials used in flexible circuits have proven to be bio-compatible in a wide range of applications. While implantable devices are fully sealed to eliminate contamination, non- implantable devices are used in applications requiring contact with human skin.

Feature Density: Flexible circuits can be built with narrow lines and spaces (conductor trace and space widths less than .005" are quite common) and are constructed with multiple layers. This becomes increasingly important as designers are continuing to reduce volume while increasing functions.

Dynamic Flexing: Flexible circuitry has outstanding ability for dynamic bending or movement. This includes applications such as providing interconnection through a hinged device or maintaining connection through devices that expand, contract or telescope during use. Material construction and circuit layout are particularly important in dynamic flex applications. Consulting with a flex vendor or other industry expert is recommended when moving parts need to be connected.

Cost: Since flexible circuits reduce the number of connections required, they can simplify and reduce assembly costs and are manufactured efficiently in high volume. Eliminating connectors, soldered wires, and rigid printed circuits are possibilities that further reduce overall cost in an interconnection design.

Supply Chain: The materials used to make flex are widely available. There are several suppliers of flexible circuitry with knowledge and experience in medical applications. A review of supplier capabilities based on the requirements of an individual application is recommended.

Technical Support: There is a plethora of technical resources available for application and design support in the USA, including capable and experienced support from many flex circuit suppliers. Organizations such as IPC have helped support the cross fertilization of technology and knowledge across the country. The wide variety of applications of flex in electronics has created a wealth of experience and innovation in this industry that can be passed on to medical applications.

The demand for flexible circuitry in the medical industry will remain robust as electronic medical equipment continues as one of the hottest growth areas for the electronics industry. The aging population, longer life expectancy, demands for more affordable and less invasive health care, and the continued advancement in technology are some of the factors driving growth in this market segment. Increasing possibilities for the use of flexible circuitry in medical electronics will certainly continue as designers identify additional ways to take advantage of the opportunities offered by this 3 dimensional interconnection technology.


Flexible Circuitry Growth in Medical Electronics

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Friday, November 25, 2011

Have You Been Put In Danger By A Defective Medical Device?

!9# Have You Been Put In Danger By A Defective Medical Device?

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Each year millions of people in the United States make use of medical devices for a wide range of medical conditions. These devices can assist patients with many different things including monitoring blood glucose levels, helping with eyesight, regulating heart rhythms, and even monitoring fertility. Individuals who make use of devices such as defibrillators, and pacemakers rely on these devices to keep vital organs operating properly in order to keep them healthy and alive. If the device does not work properly, or if the device fails completely, the patient is placed in great danger.

Many medical devices have come a long way in recent years, yet a high number of them, especially implantable cardioverter defibrillators (ICD) and pacemakers, have been found to be defective and have been recalled. Because of these defects, thousands of people have been injured or killed. Two of the main manufactures of some of the most recently recalled devices are amongst the top medical device manufacturers, and include: Medtronic, Inc., and Guidant Corporation.

If you or someone you know has suffered an injury or has lost their life because of a Medtronic ICD, Medtronic pacemaker, Guidant ICD, Guidant pacemaker, or other type of medical device that has been found to be defective, you should contact a personal injury attorney to find out what legal rights you have. These attorneys specialize in the area of product liability and are quite familiar with these types of cases. He or she will fully assess your situation and determine the best course of action to help you achieve compensation for your damages.

There have been a high number of state and federal regulations and laws put into place to help protect the American consumer from products and medical devices that are faulty or defective. While these laws can be quite helpful and offer a good amount of protection, they do vary a great deal from state to state, which can impact how your case is handled. Your lawyer will establish your case on a number of different legal theories depending on the details of your claim as well as your place of residence.

One area of the law that is taken into consideration is known as strict liability. This area is also deals with product liability and covers all types of defective products. All cases that have to do with product liability center on the laws of strict liability, which simply means that the victim does not have to be able to prove that the responsible party acted in a negligent manner. When strict liability can be applied, the mere fact that the product was defective is all that is needed to find the manufacturer or distributor of the product accountable. In recent years, there have been thousands of successful cases of victims bringing companies responsible for defective medical devices to court. These cases resulted in either a settlement or other type of court ruling where monetary compensation was obtained.

Another area of the law that is taken into consideration with these types of claims is negligence. Even in cases where strict liability can be applied, there are times when negligence can also be applied. One such example of this is if the victim can prove that the manufacturer of the device committed errors that were known to be negligent and caused harm that could have been avoided.

Other theories can also be explored in some cases. For example, some people have filed lawsuits against medical device manufacturers based upon the argument that the manufacturer knowingly mislead the FDA or did not follow the instructions set forth by the FDA to properly represent the function of the device. A claim may also be filed in product liability cases that are based upon breach of warranty.

The facts and exact situation that surrounds the details of your personal case will dictate how your lawsuit for a defective medical device is handled, and exactly which laws or legal theories will be used. A personal injury attorney is the best person to determine this information as he or she has in-depth knowledge of the law and can decide the very best way to proceed. Since statutes of limitation do apply in the majority of states, it is critical that you consult with a personal injury attorney as quickly as possible if you feel as though you have been the victim of a defective medical device.

The exact type of claim that your attorney will file will depend on the particular details of your case. If you have suffered physical harm, your attorney will most likely file a claim of personal injury. If the person who has been harmed by the device has died, the surviving family members may be able to file a wrongful death claim that seeks damages for the cost of the decedent's medical expenses, death costs, as well as for loss of companionship and future income. These claims are usually combined into one single claim.

When your claim has been filed, and when it has been ruled upon, you may be entitled to receive monetary compensation for a variety of issues including: current, past, and future medical expenses, pain and suffering, the cost of rehabilitative treatments, a loss of income, a loss of a loved one, and various other damages that may be related.

Furthermore, if the jury determines that the manufacturer acted in a manner that is considered to be egregious, punitive damages may also be awarded. These damages are meant to punish the responsible party in the hope that future cases of a similar nature will not occur.

Since these cases can be quite complex in nature, and because the laws can vary a great deal from state to state, you should never try to file this type of claim on your own. Recent rulings on similar cases at the Supreme Court level may also affect the outcome of your case. The best way to proceed is to utilize the specialized services of a personal injury attorney who can manage every detail for you. You have already suffered enough; you should not gamble with your future.


Have You Been Put In Danger By A Defective Medical Device?

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Sunday, September 25, 2011

Top 5 Manufacturers of medical devices

!9# Top 5 Manufacturers of medical devices

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Health care is a massive, multibillion-dollar industry, and the development and manufacture of medical devices is one of the largest industries. Today there are hundreds of medical manufacturing companies to work every day to find better and more cost-effective health care technologies. Most major manufacturers are global companies that doctors are in different aspects of the medical sector. Here are five of the leading manufacturers of medical devices worldwidetoday.

Cardinal Health, Inc.

The Cardinal was founded in 1971 by Robert D. Walter, and actually began as a food wholesaler. Bailey pharmaceutical companies when it bought eight years later, the Cardinal began selling drugs. Today, Cardinal Health placed 18 on the Fortune 500 List, with an annual turnover of $ 97 billion, is heavily engaged in research and development of new drugs and medical equipment.

Johnson & Johnson

The famous producerPopular patch bandages, pain relievers Tylenol and Johnson baby products is also one of the world's largest producer of non-surgical medical devices. Founded in 1886, Johnson & Johnson in the Fortune 500 list for decades and has an annual turnover of more than $ 61 billion ° I have a reputation recognized and was awarded the Benjamin Franklin Award for Public Diplomacy for the funding of training programs, U.S. Department of State International.

Saint Jew MedicalInc.

With annual revenues of $ 5000000000 specializes S. Medical Jew in the development and manufacture of medical devices. It sells its products in over 100 countries and has offices around the world in 20 different places. Some of its products are artificial pacemakers, catheters, spinal cord stimulators, implantable defibrillators and heart valves. Saint Jew Medical was founded in 1976.

Boston Scientific Corporation

Founded in 1979, Boston Scientific is one of the firstMedical device manufacturer in the world, specializing in interventional medical devices. It 'the most famous product, the Taxus stent, a device used to open clogged arteries. Boston Scientific has annual sales of more than $ 7000000000 Recently acquired one of its major competitors, Guidant for about $ 27 billion °

Medtronic, Inc.

Medtronic is the world's largest developer and manufacturer of medical technology. It is a Fortune 500 company traded, bringing inAnnual turnover of more than $ 12 billion ° With headquarters in Minneapolis, Medtronic was founded in 1949 by Earl Bakken and Palmer Hermundsile who worked out of their garage, fixing and selling equipment manufactured by other companies founded. As it expands, Medtronic has begun to develop your own hardware. Today the company is known for the production of the first wearable artificial pacemakers.


Top 5 Manufacturers of medical devices

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