Mesothelioma Information

June 29, 2006

MESOTHELIOMA Lawyers/Attorney

Filed under: lawyers/Attorney

Victims of asbestos injuries are entitled to compensation from the manufacturers of asbestos. The amount of compensation varies in each individual case, but it is often a significant amount of money-as much as six or seven figures. This compensation is not a windfall. If you are suffering from an asbestos disease, you are most likely doing so through no fault of your own. Asbestos companies covered up the fact that asbestos is hazardous, and made billions of dollars peddling deadly products. You, the unsuspecting user, are now paying the ultimate price.

Anyone who was injured as a result of their exposure to asbestos has a potential legal claim against the manufacturers of asbestos products. This can be significant for several reasons. The medical costs associated with treating a disease such as Mesothelioma can be staggering. Moreover, legal compensation is a means by which many victims of Mesothelioma provide enough money to support a spouse or loved one, or to leave behind a legacy (for example, to help put their grandchildren through college).

Symptoms

Filed under: Symptoms

In its early stages, mesothelioma does not have many symptoms.  When symptoms do develop, they are often caused by the cancer growing and pressing on a nerve or other body organ.

The symptoms of the 2 main types  of mesothelioma are different.

The symptoms of pleural mesothelioma  are

  • Pain in the lower back or the side of the chest 
  • A persistent cough 
  • Shortness of breath 
  • A hoarse or husky voice 
  • Losing more than 10% of your weight when not dieting 
  • Sweating and fevers 
  • Difficulty swallowing
The symptoms of peritoneal mesothelioma are

  • Pain in the abdomen (tummy) 
  • Swelling in the abdomen 
  • Feeling or being sick 
  • Poor appetite 
  • Losing more than 10% of your weight when not dieting 
  • Diarrhoea or constipation
These symptoms are all more likely to be caused by some other illness, rather than by mesothelioma.  But if you have these symptoms, see your doctor.  This is particularly important if you have been exposed to asbestos in the past.

Asbestos

Filed under: Asbestos

Asbestos (a misapplication of Latin: asbestos "quicklime" from Greek ἄσβεστος: a-, "not"; sbestos, "extinguishable") describes any of a group of fibrous metamorphic minerals of the hydrous magnesium silicate variety. The name is derived for its historical use in lamp wicks; the resistance of asbestos to fire has long been exploited for a variety of purposes. Asbestos was used in fabrics such as Egyptian burial cloths and Charlemagne’s tablecloth which according to legend, he threw in a fire to clean. Asbestos occurs naturally in many forms (see below); it is mined from metamorphic rocks.

When asbestos is used for its resistance to fire or heat, the fibers are often mixed with cement or woven into fabric or mats. Asbestos is used in brake shoes and gaskets for its heat resistance, and in the past was used on electric oven and hotplate wiring for its electrical insulation at elevated temperature, and in buildings for its flame-retardant and insulating properties, tensile strength, flexibility, and resistance to chemicals. The inhalation of some kinds of asbestos fibers, however, causes various serious illnesses, including cancer. Thus, most uses of asbestos are banned in many countries. Fiberglass or Synthetic Mineral Fibre has been found to be a suitable substitute for thermal insulation, and woven ceramic fiber performs as well as or better than asbestos as an insulator of high-temperature electrical conductors.

Most respirable asbestos fibers are invisible to the unaided human eye because their size is about 3.0-20.0 µm in length and can be as thin as 0.01 µm. Human hair ranges in size from 17 to 181 µm.[1] Fibers ultimately form because when these minerals originally cooled and crystallized, they formed by the polymeric molecules lining up parallel with each other and forming oriented crystal lattices. These crystals thus have three cleavage planes, just as other minerals and gemstones have. But in their case, there are two cleavage planes that are much weaker than the third direction. Thus, when sufficient force is applied, they tend to break along their weakest directions, resulting in a linear fragmentation pattern and hence a fibrous form. This fracture process can keep occurring over and over until they have been broken down to their smallest unit dimensions. For this reason, one larger asbestos fiber can ultimately become the source of hundreds of much thinner and smaller fibers in a normal environment over the course of time.

As they get smaller and lighter, they become more mobile and more easily entrained (wafted) into the air, where human respiratory exposures typically result. The released fibers being heavier than air will eventually settle in quiescent conditions only to be resuspended over and over again by any kind of activity or air currents over a period of time. This cyclic re-entrainment has consequences. Consistent with the tenets of the Second Law of Thermodynamics, the smallest sizes of easily mobile asbestos fibers move away from their initial source location in an ever-broadening manner. They disperse both by simple spontaneous airborne diffusion and through mass transport of the fibers. This latter is an energy-driven process that can occur through directed air currents or by "pickup and release" along a pathway of directed movement by persons, mechanical equipment or vehicles.

For these reasons, asbestos is not an even source of contamination and thus does not tend to remain localized at its initial release point but will eventually spread throughout all available accessible areas of buildings, even into areas that don’t have their own asbestos-containing products. Eventually asbestos from virtually all products that were manufactured from this mineral will invade each and every space within an affected building. This is because during the lifecycle of each asbestos product, microscopic fibers and larger particles or pieces of these products are typically produced during their residency. The lifecycle of an asbestos containing product begins from the initial delivery of the product to the building, followed by its installation, normal usage forces, age-related deterioration, physical or chemical damage that often occurs, to finally its removal either for replacement or demolition. Any small impact or damage to a typical asbestos containing product can easily release billions to trillions of fibers of asbestos into the immediate environment which then add to the pool of similar fibers and particles from other asbestos containing products within that building.

Friability of an asbestos containing product means that it is so soft and weak in structure that it can be broken with simple finger crushing pressure. Friable materials are of the most initial concern due to their ease of damage. But non-friable asbestos containing materials are not necessarily safe. The forces or conditions of usage that come into intimate contact with most non-friable asbestos containing materials are substantially higher than finger pressure. Because of this, non-friable asbestos products can and do release substantial quantities of free asbestos fibers into their environments as well. During normal usage, initially non-friable products slowly change into a quasi-friable condition. Asphalt asbestos floor tiles are typically worn down through a sanding action of the normal floor grit under foot traffic on such floor coverings. Asbestos shingles, siding and roofing materials are eroded through drying, weathering, embrittlement, acid rain leaching and other deteriorative changes to their binder matrix resulting in release of asbestos fibers ("chalk dust") when simple contact is made with their surface or when the wind blows across them. Most government regulations treat such products with much less care than they do when addressing more friable products.

Confusingly, the Modern Greek word άσβεστος means quicklime.

Treatments

Filed under: Treatment

Although science is not certain as to the exact mechanism which causes mesothelioma, it is thought that the asbestos fibers puncture the parenchyma, become lodged in the pleura, and by process of irritation create the change in the cells which causes the mesothelioma.

The chance of recovery for a person with mesothelioma depends on several factors, including:

Size of the cancer
Location of the cancer
Spread of the cancer throughout the body
Response to treatment
Appearance of the cells under a microscope
Age of the patient

Malignant mesothelioma is the most serious of all asbestos-related diseases. Virtually all cases of malignant mesothelioma are attributable to asbestos exposure.

If you have mesothelioma or you know someone who has been diagnosed with mesothelioma, remember that time matters. The sooner you consult your doctor and get professional care the better your chances will be of dealing with this dangerous asbestos cancer. There are three traditional methods of fighting cancerous mesothelioma:

Surgery

Chemotherapy drugs

Radiation therapy.

Please contact your doctor

June 28, 2006

Welcome, BE INFORMED of MeSoThElIoMa..!!!

Filed under: Cancer

About MeSoThElIoMa, Now what is it??

Mesothelioma is a form of cancer, almost always caused by previous exposure to asbestos. In this disease, malignant (cancerous) cells develop in the mesothelium, a protective lining that covers most of the body’s internal organs. Its most common site is the pleura (outer lining of the lungs and chest cavity), but it may also occur in the peritoneum (the lining of the abdominal cavity) or the pericardium (a sac that surrounds the heart).

Most people who develop mesothelioma have worked on jobs where they inhaled asbestos particles, or have been exposed to asbestos dust and fibre in other ways, such as by washing the clothes of a family member who worked with asbestos, or by home renovation using asbestos cement products.






















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