What is chickenpox? What causes chickenpox?
Chickenpox is a common childhood skin disease caused by a virus. The virus is called the varicella-zoster virus.
Most people contract chickenpox by age 15, the majority between ages 5 and 9, but all ages can contract it. Chickenpox is usually more severe in adults and very young infants than children. Winter and spring are the most common times of the year for chickenpox to occur.
How does chickenpox spread?
Chickenpox is very highly contagious. It is easily passed between members of families and school classmates through airborne particles, droplets in exhaled air and fluid from the blisters or sores. It also can be transmitted indirectly by contact with articles of clothing and other items exposed to fresh drainage from open sores. Patients are contagious up to five days (more commonly, one to two days) before and five days after the date that their rash appears. When the sores have crusted over, the person is usually no longer contagious.
What are the signs and symptoms of chickenpox?
Symptoms tend to appear 14 to 16 days after the initial exposure but can occur any time from 10 days up to 21 days after contact with the virus. Chickenpox is characterized by one to two days of mild fever up to 102 degrees F, general weakness, and a rash, often the first sign of the disease. Rarely, a person may have the disease without the rash. The rash of chickenpox develops in crops with raised red spots arriving first, progressing to blisters that burst, creating open sores, before crusting over. This process usually starts on the scalp, then the trunk (its area of greatest concentration), and finally the arms and legs. Any area of skin that is irritated (by diaper rash, poison ivy, eczema, sunburn, etc.) is likely to be hard hit by the rash. The rash is typically very itchy (pruritic).
What are the treatments for chickenpox?
Most of the treatments for chickenpox are aimed at decreasing the symptoms, such as severe itching. Acetaminophen (Tylenol) can be used to decrease the fevers and aches often associated with the initial presentation of the viral infection. Children should never be given aspirin or aspirin-containing cold medications because of the risks for developing Reye's syndrome (a severe acquired metabolic disease associated with liver and brain dysfunction and death).

Frequent oatmeal baths (Aveeno, etc.) can decrease the itching associated with chickenpox. In addition, soothing lotions and moisturizers such as calamine lotion or any other similar over-the-counter preparation can be applied to the rash.
Benadryl or other antihistamines can be helpful in controlling the itching. Though Benadryl is available over the counter, other antihistamines can also be used. Always discuss these treatment options with your health-care practitioner.
In addition to medications, there are also preventive measures that are needed. For young children, it is important to keep nails trimmed in order to minimize injury due to scratching and to control the risks for secondary bacterial infections.
Lastly, in some cases of chickenpox, acyclovir can be prescribed. Acyclovir is an antiviral medication which has been used to shorten the duration of the infection. This medication has only been shown to be affective if started within one to two days of onset of the rash associated with chickenpox. Most commonly, this treatment is reserved for patients with other diagnoses which put them at risk for severe disease (severe skin diseases, immunodeficiency).
What are the possible complications of chickenpox?
Complications can and do occur from chickenpox. Infection of the open pox sore by bacteria can injure the skin, sometimes causing scarring, especially if the patient scratches the inflamed area. Bacterial skin infection is, in fact, the most common complication of chickenpox in children. The next most common complications in children affect the central nervous system and include a disorder of the cerebellar portion of the brain (cerebellar ataxia with wobbliness, dizziness, tremor, and altered speech), encephalitis (inflammation of the brain with headaches, seizures, and decreased consciousness), damaged nerves (nerve palsies) and Reye's syndrome, a potentially fatal combination of liver and brain disease that can be associated with aspirin. (Children with fever should not take aspirin.) Especially serious
complications can occur in patients with AIDS, lupus, leukemia, and cancer. Complications also occur in people taking immune-suppressing drugs, such as cortisone-related medications. Newborn infants whose mothers have chickenpox in the last trimester of pregnancy are at increased risk from the disease. If the mother develops the disease from five days before to two days after delivery, the fatality rate for the baby is up to 30%.
Can chickenpox be prevented with a vaccine?
Most people develop lifetime immunity to chickenpox after the first occurrence and never experience it again. But the virus can sometimes resurface later in life as shingles (zoster). The current aim in the U.S. and many other countries is to achieve universal (or nearly universal) immunization of children with the chickenpox vaccine. The vaccination requires only two shots. The first vaccination is given at about 1 year of age, and the second (booster) is given at 4 years of age. If an older person has not had chickenpox, the shot may be given at any time. There have been few significant adverse reactions to the chickenpox vaccine. All children, except those with a compromised immune system, should have the vaccination.

What is osteoporosis?
Osteoporosis is a condition characterized by the loss of the normal density of bone, resulting in fragile bone. Osteoporosis leads to literally abnormally porous bone that is more compressible like a sponge, than dense like a brick. This disorder of the skeleton weakens the bone causing an increase in the risk for breaking bones (bone fracture).
Normal bone is composed of protein, collagen, and calcium all of which give bone its strength. Bones that are affected by osteoporosis can break (fracture) with relatively minor injury that normally would not cause a bone fracture. The fracture can be either in the form of cracking (as in a hip fracture), or collapsing (as in a compression fracture of the vertebrae of the spine). The spine, hips, and wrists are common areas of bone fractures from osteoporosis, although osteoporosis-related fractures can also occur in almost any skeletal bone.
What are the symptoms of osteoporosis?
The osteoporosis condition can be present without any symptoms for decades, because osteoporosis doesn't cause symptoms unless bone fractures. Some osteoporosis fractures may escape detection until years later. Therefore, patients may not be aware of their osteoporosis until they suffer a painful fracture. Then the symptoms are related to the location of the fractures.
Fractures of the spine (vertebra) can cause severe "band-like" pain that radiates around from the back to the side of the body. Over the years, repeated spine fractures can cause chronic lower back pain as well as loss of height or curving of the spine, which gives the individual a hunched-back appearance of the upper back, often called a "dowager hump."
A fracture that occurs during the course of normal activity is called a minimal trauma fracture or stress fracture. For example, some patients with osteoporosis develop stress fractures of the feet while walking or stepping off a curb.
Hip fractures typically occur as a result of a fall. With osteoporosis, hip fractures can occur as a result of trivial accidents. Hip fractures may also be difficult to heal after surgical repair because of poor bone quality.
Why is osteoporosis an important public health issue?
* In the United States, 44 million people have low bone density (either osteoporosis or osteopenia, see below). This amounts to 55% of the U.S. population 50 years-old and over.
* In the U.S., more than 10 million people have osteoporosis and almost 34 million more have low bone density.
* One in two white women will experience a bone fracture due to osteoporosis in her lifetime.
* In the United States, direct health care costs from osteoporosis fractures amount to billion dollars, without even taking into account the indirect costs, such as lost work productivity.
* Twenty percent of those who experience a hip fracture will die in the year following the fracture.
* One-third of hip fracture patients are discharged to a nursing home within the year after fracture.
* Only one-third of hip fracture patients regain their pre-fracture level of function.
With the aging of America, the number of people with osteoporosis related fractures will increase exponentially. The pain, suffering, and economic costs will be enormous.
How is osteoporosis diagnosed?
A routine x-ray can reveal osteoporosis of the bone, which appears much thinner and lighter than normal bones. Unfortunately, by the time x-rays can detect osteoporosis, at least 30% of the bone has already been lost. In addition, x-rays are not accurate indicators of bone density. The appearance of the bone on x-ray is often affected by variations in the degree of exposure of the x-ray film.
The National Osteoporosis Foundation, the American Medical Association, and other major medical organizations are recommending a dual energy x-ray absorptiometry scan (DXA, formerly known as DEXA) for diagnosing osteoporosis. DXA measures bone density in the hip and the spine. The test takes only 5 to 15 minutes to perform, uses very little radiation (less than one tenth to one hundredth the amount used on a standard chest x-ray), and is quite precise.
The bone density of the patient is then compared to the average peak bone density of young adults of same sex and race. This score is called the "T score," and it expresses the bone density in terms of the number of standard deviations (SD) below peak young adult bone mass.
* Osteoporosis is defined as bone density T score of -2.5 SD or below.
* Osteopenia (between normal and osteoporosis) is defined as bone density T score between -1 and -2.5 SD.
How is osteoporosis treated and prevented?
The goal of osteoporosis treatment is the prevention of bone fractures by stopping bone loss and by increasing bone density and strength. Although early detection and timely treatment of osteoporosis can substantially decrease the risk of future fracture, none of the available treatments for osteoporosis are complete cures. In other words, it is difficult to completely rebuild bone that has been weakened by osteoporosis. Therefore, prevention of osteoporosis is as important as treatment. Osteoporosis treatment and prevention measures are:
1. Life style changes including quitting cigarette smoking, curtailing alcohol intake, exercising regularly, and consuming a balanced diet with adequate calcium and vitamin D;
2. Medications that stop bone loss and increase bone strength, such as alendronate (Fosamax), risedronate (Actonel), raloxifene (Evista), ibandronate (Boniva), calcitonin (Calcimar), and zoledronate (Reclast);
3. Medications that increase bone formation such as teriparatide (Forteo).
Lifestyle changes
Exercise, quitting cigarettes, and curtailing alcohol
Exercise has a wide variety of beneficial health effects. However, exercise does not bring about substantial increases in bone density. The benefit of exercise for osteoporosis has mostly to do with decreasing the risk of falls, probably because balance is improved and/or muscle strength is increased. Research has not yet determined what type of exercise is best for osteoporosis or for how long. Until research has answered these questions, most doctors recommend weight-bearing exercise, such as walking, preferably daily.
A word of caution about exercise: it is important to avoid exercises that can injure already weakened bones. In patients over 40 and those with heart disease, obesity, diabetes mellitus, and high blood pressure, exercise should be prescribed and monitored by their doctors. Finally, extreme levels of exercise (such as marathon running) may not be healthy for the bones. Marathon running in young women that leads to weight loss and loss of menstrual periods can actually cause osteoporosis.
Smoking one pack of cigarettes per day throughout adult life can itself lead to loss of 5% to 10% of bone mass. Smoking cigarettes decreases estrogen levels and can lead to bone loss in women before menopause. Smoking cigarettes can also lead to earlier menopause. In postmenopausal women, smoking is linked with increased risk of osteoporosis. Data on the effect of regular consumption of alcohol and caffeine on osteoporosis is not as clear as with exercise and cigarettes. In fact, research regarding alcohol and caffeine as risk factors for osteoporosis shows widely varying results, and is controversial. Certainly, these effects are not as powerful as other factors. Nevertheless, moderation of both alcohol and caffeine is prudent.
Calcium Supplements
Building strong and healthy bones requires an adequate dietary intake of calcium and exercise beginning in childhood and adolescence for both sexes. Most importantly, however, a high dietary calcium intake or taking calcium supplements alone is not sufficient in treating osteoporosis, and should not be viewed as an alternative to or substituted for more potent prescription osteoporosis medications. In the first several years after menopause, rapid bone loss can occur even if calcium supplements are taken.
The following calcium intake has been recommended by The National Institutes of Health Consensus Conference on Osteoporosis for all people, with or without osteoporosis:
* 800 mg/day for children ages 1 to 10
* 1000 mg/day for men, premenopausal women, and postmenopausal women also taking estrogen
* 1200 mg/day for teenagers and young adults ages 11 to 24
* 1500 mg/day for post menopausal women not taking estrogen
* 1200mg to 1500 mg/day for pregnant and nursing mothers
* The total daily intake of calcium should not exceed 2000 mg
Daily calcium intake can be calculated by the following method:
1. Excluding dairy products, the average American diet contains approximately 250 mg of calcium;
2. There is approximately 300 mg of calcium in an 8-ounce glass of milk;
3. There is approximately 450 mg of calcium in 8 ounces of plain yogurt;
4. There is approximately 1300 mg of calcium in 1 cup of cottage cheese;
5. There is approximately 200 mg of calcium in 1 ounce of cheddar cheese;
6. There is approximately 90 mg of calcium in ½ cup of vanilla ice cream;
7. There is approximately 300 mg of calcium in 8 ounces of calcium-fortified orange juice.
Unfortunately, surveys have shown that average women in the United States are consuming less than 500 milligrams of calcium per day in their diet, less than the recommended amounts. Additional calcium can be obtained by drinking more milk and eating more yogurt or cottage cheese, or by taking calcium supplement tablets as well from calcium-fortified foods, such as orange juice.
The various calcium supplements contain different amounts of elemental calcium (the actual amount of calcium in the supplement). For example, Caltrate, Os-Cal and Tums are calcium carbonate salts. Each 1250 mg of calcium carbonate salt tablet (such as Caltrate 600 mg, Os-Cal 500 mg, or Tums 500 mg extra strength) contains 500 mg of elemental calcium. A person who needs 1000 mg/day of calcium supplement can take one tablet of Tums 500 mg extra strength (containing 500 mg of elemental calcium) twice daily with meals.
The calcium carbonate supplements are best taken in small divided doses with meals. The intestines may not be able to reliably absorb more than 500 mg of calcium all at once. Therefore, the best way to take 1000 mg of a calcium supplement is to divide it in two doses. Likewise, a dosage of 1500 mg should be divided into three doses.
Calcium supplements are safe and generally well tolerated. Side effects are indigestion and constipation. If constipation and indigestion occur with calcium carbonate supplements, calcium citrate (Citracal) can be used. Some patients have difficulty swallowing calcium tablets. In this situation, chewable candy-like calcium in the form of Viactiv brand is available. Certain medications can interfere with the absorption of calcium carbonate. Examples of such medications include proton-pump inhibitors [omeprazole (Prilosec), lansoprazole (Prevacid), lansoprazole (Protonix), and rabeprazole (Aciphex)], which are used in treating GERD (acid reflux) or peptic ulcers. In these cases, calcium
citrate is preferred.
Vitamin D
An adequate calcium intake and adequate body stores of vitamin D are important foundations for maintaining bone density and strength. However, vitamin D and calcium alone are not sufficient treatment for osteoporosis. They are given in conjunction with other treatments. Vitamin D is important in several respects:
* Vitamin D helps the absorption of calcium from the intestines.
* A lack of vitamin D causes calcium-depleted bone (osteomalacia), which further weakens the bones and increases the risk of fractures.
* Vitamin D, along with adequate calcium (1200 mg of elemental calcium), has been shown in some studies to increase bone density and decrease fractures in older postmenopausal, but not in premenopausal or perimenopausal women.
Vitamin D comes from the diet and the skin. Vitamin D production by the skin is dependent on exposure to sunlight. Active people living in sunny regions (Southern California, Hawaii, countries around the equator, etc.) can produce most of the vitamin D they need from their skin. Conversely, lack of exposure to sunlight, due to residence in northern latitudes or physical incapacitation, causes vitamin D deficiency. In less temperate regions such as Minnesota, Michigan, and New York, skin production of vitamin D is markedly diminished in the winter months, especially among the elderly. In that population, dietary vitamin D becomes important.
Unfortunately, vitamin D deficiency is quite common in the United States. In a study of hospitalized patients in a general medical ward, vitamin D deficiency was detected in 57% of the patients. An estimated 50% of elderly women consume far less vitamin D in their diet than is recommended.
The Food and Nutrition Board of the Institute of Medicine has recommended the following as an as adequate vitamin intake:
* 200 IU daily for men and women 19 to 50 years old,
* 400 IU daily for men and women 51 to 70 years old, and
* 600 IU daily for men and women 71 years and older.
But if a person already has osteoporosis, it is advisable to ensure 400 IU twice per day as usual daily intake, most commonly as a supplement alongside prescription osteoporosis medication.
An average multivitamin tablet contains 400 IU of vitamin D. Therefore, one to two multivitamins a day should provide the recommended amount of vitamin D. Alternatively, vitamin D can be obtained in combination with calcium in tablet forms, such as Caltrate 600 + D (600 mg of calcium and 200 IU of vitamin D) and others. Adequate calcium and vitamin D are critical for bone health.
Adequate levels of calcium and vitamin D are essential for optimal bone health, especially in addition to any prescription osteoporosis medication. Chronic excessive use of vitamin D, especially above 2000 units/day, can lead to toxic levels of vitamin D, elevated calcium levels in blood and urine, and may also cause kidney stones. Since various dietary supplements may also contain vitamin D, it is important to review vitamin D content in dietary supplements before taking additional vitamin D.