Showing posts with label Oxygen. Show all posts
Showing posts with label Oxygen. Show all posts

Benefits of Hyperbaric Oxygen Chamber Therapy

Hyperbaric medicine, also known as hyperbaric oxygen therapy is the medical use of oxygen at a higher than atmospheric pressure. Hyper means increased and baric relates to pressure. Hyperbaric oxygen therapy (HBOT) refers to intermittent treatment of the entire body with 100-percent oxygen at greater than normal atmospheric pressure. The earth's atmosphere normally exerts about 15 pounds per square inch of pressure at sea level. That pressure is defined as one atmosphere absolute (1 ATA). In the ambient atmosphere we normally breathe approximately 20 percent oxygen and 80 percent nitrogen. While undergoing HBOT, pressure is increased up to two times (2 ATA) in 100% oxygen.

This increased pressure, combined with an increase in oxygen to 100 percent, dissolves oxygen in the blood plasma and in all body cells, tissues and fluids at up to 10 times normal concentration-high enough to sustain life with no blood at all (from 20% to 100% oxygen is an increase of 5 times, from 1 ATA to 2 ATA can double this to a 10-fold increase). 

Some of the many amazing benefits of Hyperbaric Oxygen Chamber Therapy are that it : 

* greatly increases oxygen concentration in all body tissues, even with reduced or blocked blood flow;

* stimulates the growth of new blood vessels to locations with reduced circulation, improving blood flow to areas with arterial blockage;

* causes a rebound arterial dilation, resulting in an increased blood vessel diameter greater than when therapy began, improving blood flow to compromised organs;

* stimulates an adaptive increase in superoxide dismutase (SOD), one of the body's principal, internally produced antioxidants and free radical scavengers; and,

* aids the treatment of infection by enhancing white blood cell action.

The use of increased atmospheric pressure for medical therapy has intrigued many physicians and scientists for hundreds of years. Though not new, HBOT has recently gained importance for treatment of chronic degenerative health problems related to atherosclerosis, stroke, peripheral vascular disease, diabetic ulcers, wound healing, cerebral palsy, brain injury, multiple sclerosis, macular degeneration, and many other disorders. Wherever blood flow and oxygen delivery to vital organs is reduced, function and healing can be aided with HBOT. When the brain is injured by stroke, CP, or trauma, HBOT may activate stunned parts of the brain to restore function. 

Results can be dramatic. Patients with cerebral vascular disease commonly recover from complications of stroke more readily after HBOT. This is also true for potentially gangrenous legs and feet caused by blocked circulation, and for slow-healing diabetic ulcers. HBOT relieves pain, helps fight infection, and keeps threatened tissues alive.

One of the world's most experienced authorities on hyperbaric medicine Dr. Edgar End, clinical professor of environmental medicine at the Medical College of Wisconsin had this to say : "I've seen partially paralyzed people half carried into the HBOT chamber, and they walk out after the first treatment. If we got to these people quickly, we could prevent a great deal of damage."




Hyperbaric Oxygen Chambers. Hyperbaric Oxygen Therapy helps Autism, Cerebral Palsy, MS, Parkinsons, Athletic Performing, healing of wounds, used as immune defense and much more. Visit our site at http://www.BalancedHealthToday.com - Hyperbaric Oxygen Chamber Articles to learn more about our lowest market priced single and double chambers.

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Dissolved Oxygen Meter Uses and Functions

A dissolved oxygen meter is an absolutely essential tool. Any industry that takes an active interest in the quality of its surrounding water will use one of these tools on a regular basis. Oxygen is an essential component to all living things, and a lack of oxygen within a water source could mean certain death to various animals and important bacteria. With the use of this device, anyone can take the necessary steps to ensure that their waterways maintain a healthy balance for animal life.

This type of instrument comes in various guises, but they all serve the same purpose. A dissolved oxygen meter measures the amount of dissolved oxygen that is present within a water source. Polarographic sensors emit a certain voltage that can gather data regarding oxygen levels. Galvanic meters are considered to be more accurate, and do not use any electrical current. An optical florescence sensor is considered ideal for any measurements that last a long time. This type of instrument does not use up any of the oxygen when taking readings, nor is it effected by any outside substances. Therefore, it can be used for long periods of time without worry of any aging.

A dissolved oxygen meter can be used by anybody who is concerned with the health of their local water source, but this tool is commonly utilized by certain industries. Fish farmers tend to make good use of this tool as a way to ensure the health of the fish. Adequate oxygen levels will provide enough for the fish to breathe. Water treatment plants use a dissolved oxygen meter to make sure their treatment process is safe and effective. Any company that disposes waste into a water source is normally required by law to limit the amount they dump. This means it would be to their benefit to use a dissolved oxygen meter to make sure the water isn't over polluted.

These instruments can range from $200 to around $1,400. Hanna is a brand that makes a wide range of meters. Among them is the Hi 93732N model. For roughly $250, this model can measure an oxygen range from 0 to 10mg/L. This is a typical polarographic sensor, and comes with a 9 volt battery.

Oakton also produces different models. Their DO 110 model can store up to 100 pieces of data in either Fahrenheit or Celsius. This is a galvanicmeter, and includes a probe for measurement. The display can read in mg/L, ppm, or % saturation range, and can also provide the water temperature range. It retails for about $600, and can be found at most major industrial supply website.

Water treatment, pollution control, fish farming, or any water based career will need to utilize the special functions of a dissolved oxygen meter to make sure their operations remain healthy for all involved.




This Dissolved Oxygen Meter site was developed to provide comprehensive, accurate and up to date information for individuals looking to get clued up about what a Dissolved Oxygen Meter is and how best to put one to use.

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Best MPG - How Oxygen Sensors Work to Save Gas

Did you know that a modern car is more sophisticated than a Formula 1 racer? Regulations within F1 had made sure that its drivers are the centerpiece of the race and not the technology. On the other hand, for everyday car consumers, the technology plays a large part in the buying decision of a car consumer.

Because of this, it is inevitable that a modern street car would be a computer on wheels. All that power in the car is controlled by the computer or Engine Control Unit (ECU). For this purpose, a number of sensors have been built into the vehicle system to act as the eyes and ears of the ECU. One of these is the oxygen sensor.

An oxygen sensor (O2 sensor) is a electronic sensor that detects the amount of oxygen present in the exhaust system and compares the result against ambient outside conditions. O2 sensors makes it possible to provide real-time information to the ECU when the car's internal combustion engine has the correct air-fuel ratio or "stochiometric".

What is the O2 sensor composed of?

Real time information to the ECU means better and more efficient fuel consumption to the user. The O2 sensor is capable of detecting a rich or lean air-fuel mix through its sensor probe and comparing the results with its sensor body, which takes measure of the ambient temperature outside the exhaust system..

How do O2 sensors save gas?

The sensor probe is the part of the O2 sensor that is inserted into the exhaust pipe to detect oxygen in emissions. The probe is a thimble-like probe composed of a "ceramic cylinder plated inside and out with porous platinum electrodes."

The probe detects oxygen through an electrochemical process in a Nernst cell. It usually has two zirconia dioxide electrodes at the tip, which interacts with exhaust gases to generate different voltages which is processed by the ECU to indicate lean or rich mixtures and adjust accordingly.

Symptoms of a bad or blocked O2 sensor

-Soot buildup on the ceramic tip, slowing response time -Silicone buildup due to fuel additives -Oil coating due to oil leaks -Improper handling of the O2 sensors during diagnostics testing -Wear and tear. O2 sensors are rated to last 30,000 to 50,000 miles for unheated sensors. There is another version that encases a heating element to bring the sensor up to operational temperature in less time and this can last up to 100,000 miles.

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