Pellets containing an analgesic uniformly dispersed in a lipid carrier such as cholesterol mixed with fatty acid esters, can be used to provide long term pain relief. 5 mg cholesterol-tryglyceride- buprenorphine pellets released the majority of drug in 24-48 hours after implant and provide clinically significant plasma levels of analgesia in mice for 3-9 days. Blood levels of analgesia peak at day-1 and are substantially complete by day-5 depending on the level of buprenorphine. These results demonstrate that post surgical implants provide clinically significant levels of analgesia in the 24-48 hour period following surgery and thus obviate the time consuming, expensive, and high-risk need to inject mice post surgery. The pellets are safe and easy to use. Placed in the surgical wound at the end of surgery, they provide 2-3 days of analgesia and obviate the need for subsequent handling of the animal for pain therapy. The implants have no detectable effect on mouse behavior, hematology, or liver chemistry. The unexpected release kinetics of the 5 mg pellet provides an ideal implant for post surgical analgesia. These implants solve a significant problem facing scientists who use rodents in research and abide by international of animal welfare.
US2008058689
A phototherapy bandage capable of providing radiation to a localized area of a patient for accelerating would healing and pain relief, photodynamic therapy, and for aesthetic applications. The phototherapy bandage may include a flexible light source that is continuous across the bandage for providing a selected light, such as a visible light, a near-infrared light, or other light, having substantially similar intensity across the bandage. The bandage may also be flexible and capable of being attached to a patient without interfering with the patient's daily routine. The phototherapy bandage may easily conform to the curves of a patient and may come in a variety of exterior shapes and sizes.
WO2008021404
A composition providing cobalamine, cobalamine subtype or cobalamine analog as an effective agent for topical or transdermal administration to alleviate pain associated with a generalized or focal peripheral neuropathic condition, such as carpal tunnel syndrome. Pain relief compositions for use in complementary therapy are also provided.
US2007276457
An infrared heating device and therapy for lower back pain includes a belt fastenable around a user so that the belt is overlaying at least a portion of a lumbar region of the user. An infrared emitting element is adjustably positionable between the belt and at a selected area of the user's lumbar region where a user desires pain relief therapy. A portable power supply is attachable to the belt and electrically connectable to the infrared emitting element so that the user can receive infrared therapy at specific selected areas of the lower back while moving, standing, sitting, reclining or sleeping.
US2007255187
A device for providing therapy to a user including vibration and temperature modulation. The device provides mobile temperature modulation capabilities, mobile vibration capabilities, or a combination of the two. The device provides advantages to a person or animal including the ability to utilize the device in a hands-free manner. The device may also provide, under certain circumstances, pain relief or healing therapy to a person or animal.
Types Of Chronic Pain
Pearls have been prized for their beauty and rarity for more than four thousand years. From ancient China, India, and Egypt, to Imperial Rome, to the Arab world, to Native American tribes, cultures from around the world and throughout recorded history have valued these unique, biologically based gemstones - much longer than any other gem.
The pearl is the only gemstone which is grown inside of a living organism. Pearls are formed within oysters or mollusks when a foreign substance (most often a parasite - not a grain of sand) invades the shell of the mollusk, entering the soft mantle tissue, and picking up epithelial cells. In response to the irritation, the epithelial cells form into a sac (known as a pearl sac) which secretes a crystalline substance called nacre, the same substance which makes up the interior of the oyster's shell, which builds up in layers around the irritant, forming the pearl.
There are approximately 8,000 different species of two-shelled (bi-valve) mollusks, of which only about 20 types are capable of consistently producing pearls. Natural pearls have always been extremely rare and valuable. Because the layers of nacre tend to maintain the irregular shape of the original irritant, natural pearls which are round or spherical in shape are even rarer still, and are highly prized. Most natural pearls are irregularly shaped.
In a completely natural state, only a very small percentage of oysters will ever produce a pearl at all. Of the pearls which are produced, only a handful will develop to a desirable size, shape, and color; and only a small fraction of those will be harvested by humans. It is commonly assumed that only one in ten thousand oysters will naturally produce a gem quality pearl. Obviously if we relied only on nature, ownership of pearls would still be relegated to only the wealthiest people in the world, and pearl producing oysters would be on the brink of extinction due to over-harvest. As pearls have been a prized gem by much of the world's population for thousands of years, this need has led to the development of cultured pearls.
In the late 19th and early 20th centuries, however, several Japanese researchers discovered a method of producing pearls artificially. Essentially, the technique involves inserting a foreign substance, or nucleus, into the tissue of the oyster or mollusk, then returning the creature to the sea and allowing the resulting cultured pearl to develop naturally. This practice was quite widespread harvesting Mabe pearls. Kokichi Mikimoto is credited with perfecting the technique for artificially stimulating the development of round pearls in Akoya oysters, receiving a patent for this technique in 1916. Although patented in 1916 this technique has since been improved upon and used extensively throughout the pearling world - no longer simply used to cultured Akoya pearls, but freshwater, South Sea and Tahitian pearls as well.
Mikimoto's discovery opened the door to a greatly expanded pearl industry, in which pearls could be farmed like an agricultural crop, rather than simply sought hit-and-miss. These cultured pearls could now be produced in sufficient quantities to make them available to virtually anyone.
The cultured pearl industry has now far surpassed that of the natural pearl industry. Although a market still persists for pearls gifted to us by nature, these pearls are becoming more and more difficult to find, with rare full strands being auctioned for hundreds of thousands of dollars. Today, purchasing a pearl necklace from nearly any store in the world means purchasing a strand of cultured pearls.
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