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Duane syndrome
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Duane Syndrome is an inherited unusual type of strabismus (squint) most often described by the incapability of the eye(s) to move inwards, outwards individually or together. This was first reported via ophthalmologists Jakob Stilling in 1887 and also Siegmund Türk in 1896. The syndrome was named after Alexander Duane, who explained the disorder more specifically in 1905. The syndrome is described as a miswiring of the eye muscles, causing eye muscles to tighten when they don’t need to and other eye muscles not to tighten when they need to. Very often patients get the syndrome by the age of 10 and it is more common in females (60% of the cases) than males (40% of the cases). Although the eye is usually the abnormality associated with Duane Syndrome, there are other bodily functions that can be affected. Duane syndrome cannot be cured, because the cranial nerve is missing and it cannot be replaced. The gene known as “SALL4” has been associated as a cause of this condition. Advantages of genetic testing may be helpful in determining whether or not you have a disease or are proba...
1. James suffers from a condition called Duchenne muscular dystrophy. Explain the full meaning of this name.
Duchenne Muscular Dystrophy, also known as DMD, is the most common form of muscular dystrophy. Muscular dystrophy is a condition that is inherited, and it is when muscles slowly become more and more weak and wasted. Duchenne muscular dystrophy is a form of muscular dystrophy that is very rapid and is most commonly found in boys. In muscle, there is a protein named dystrophin. Dystrophin is encoded by the DMD gene. When boys have Duchenne muscular dystrophy, they do not produce enough dystrophin in their muscles. This causes weakness in their muscles. Parents can tell if their child has duchenne muscular dystrophy by looking for various symptoms.
The disease Angelman Syndrome, named after the physician Harry Angelman, was first diagnosed in 1965. It is now known that the disease results from the loss of function of UBE3A, a gene. One is normally inherited from each parent. The copy inherited from the mother is active in certain areas of the brain. If this copy of the gene UBE3A is lost due to chromosomal change or gene mutation, the lost gene will not have active copies in parts of the brain. A majority (70%) of Angelman syndrome cases happen when a segment of the maternal chromosome 15 is lost or destroyed. A minority of the disease is caused by a mutation or loss of function of the mother’s copy of the UBE3A gene. The majority of cases result from uniparental disomy, which is when the son or daughter inherits two copies of chromosome 15 from his or her father. Translocation, or chromosomal rearrangement, can also cause the disease. Most cases of this disease are not inherited, instead are a result of deletion in the maternal chromosome 15. Across 1. 2 copies of chromosome 15 are inherited from the father Down 1 Person who first diagnosed this disease 2 Disease the magazine is about 3 A gene 4 a minority of this disease is caused by this 5 Chromosomal rearrangement DISEASE BACKGROUND PAGE 1
Emery-Dreifuss muscular dystrophy is a rare form of muscular dystrophy characterized by early onset contractures of the elbows, achilles tendons and post-cervical muscles with progressive muscle wasting and weakness It is also associated with heart complications like cardiomyopathy and arrhythmia which in both cases can lead to death. Cardiomyopathy is a heart disease which affects the muscles of the heart. In cardiomyopathy is muscles get rigid, enlarged or thick. They also sometimes changed by scar tissues. On the other hand arrhythmia is a disorder with the rhythm or rate of heartbeat. The heart can beat fast, which is called tachycardia or it could be beating too slow, which is called bradycardia. Emery-Dreifuss muscular dystrophy is characterized by early onset of contractures and humeroperoneal distribution. Humeroperoneal refers to effects on the humerus and fibula. The genes known to be responsible for EDMD encode proteins associated with the nuclear envelope: the emerin and the lamins A and C.
The purpose of my research paper was to find out information about a tissue disorder. The tissue disorder that I chose was Marfan Syndrome.
2. "Rett syndrome." Holly A. Ishmael, MS, CGC. The Gale Encyclopedia of Genetic Disorders. Ed. Laurie Fundukian. 3rd ed. Detroit: Gale, 2010. 2 vols.
By using identified gene mutations that are known to cause diseases, asymptomatic individuals are able to discover if they are at risk for specific genetic conditions; this is known as genetic testing. Unfortunately, genetic testing can vary in its predictive ability. For example, Huntington disease, Duchenne Muscular Dystrophy, Fragile X syndrome and multiple endocrine neoplasia type 2 are conditions that can be determined by genetic testing (Samen, 1996). In contrast, for multifaceted diseases like Alzheimer’s, breast and ovarian cancer and colorectal cancer, predisposition can be determined with genetic testing. However, an absolute diagnosis of those diseases cannot be made (Heshka et al., 2008).
In 1965, Dr. Harry Angelman, an English physician, first described three children with characteristics now known as the Angelman syndrome. Angelman syndrome is a neuro-genetic disorder that is usually diagnosed at a very young age, and it happens within 1 in every 15,000 births. Angelman syndrome have symptoms that can be easily mistaken with cerebral palsy or autism. Symptoms of the disorder include developmental delay, lack of speech, seizures, walking and balance disorders, sleep disturbances, hyperactivity, and frequent laughter or smiling. If a baby or child is diagnosed with Angelman syndrome they will require life-long care due to the fact that there is no cure. Due to having similarities with autism and cerebral palsy, Angelman syndrome is often misdiagnosed. Misdiagnoses are a prevalent problem today which can also lead to late diagnoses as well. When this happens, the lost time may cause inflicted individuals to lose opportunities for early intervention programs, life-altering treatments, resources, and customized personal support.
It is estimated that 1 out of every 5,600-7,700 boys ages 5-24 have Duchene or Becker muscular dystrophy. (“Data & Statistics,” 2012 April 6) Muscular dystrophy is a group of genetic diseases defined by muscle fibers that are unusually susceptible to damage. There are several different types of muscular dystrophy some of which shorten the affected person’s lifespan. (“Muscular dystrophy: Types and Causes of each form,” n.d.) There is a long history of the disorder but until recently there wasn’t much knowledge of the cause. (“Muscular Dystrophy: Hope through Research,” 16 April 2014) Symptoms are obvious and can be seen as soon as a child starts walking. (“Muscular Dystrophy,” 2012 January 19) Although muscular dystrophy mostly affects boys, girls can get it too. (“Muscular Dystrophy,” 2012 January 19) There is no cure for muscular dystrophy but there are several types of therapy and most types of muscular dystrophy are still fatal. (“Muscular Dystrophy: Hope through Research,” 16 April 2014)
Due to the human genome project and other genetic research, tests for mutation which cause diseases have been developed. The list of these illnesses include several types of cancer. Doctors have estimated that as many as 3,000 diseases are due to mutations in the genome. These diseases include several types of colon cancer in which three different genetic tests have been already developed. Debates have arisen on whether these tests should be used regularly or not. Questions including the patients= rights of privacy and the possibility of loss of health or life insurance have been argued over in both the media and political arena.
When it comes to genetic diseases and conditions, testing can be very helpful and serve a good purpose. People with diseases that are inheritable to their children are encouraged to be tested. For example, in the article about Jewish testing, it says
First, let's consider the situations in which genetic testing would be beneficial to patients. Genetic testing for diseases that are preventable or treatable could allow individuals to alter their lifestyles so as to treat the disease or reduce their risk of developing the disease. For instance, the E2 version of the APOE gene, which is found on chromosome 19, has been linked to heart disease (Ridley, 1999). Individuals who have two copies of the E2 gene are particularly sensitive to high-fat and high-cholesterol diets. Therefore, a genetic test to determine whether a person has the high-risk version of the APOE gene could inform a person of future health risks, thereby allowing the person to change his diet to help prev...
The desire to have a "normal" child is held by every parent and only now are we beginning to have the ability to select for that child. In preparation to receiving genetic testing, the parents are required to meet with a genetic counselor. A detailed description of the testing methods are reviewed with the couple as well as the risks which are involved with each. Upon an understanding of the procedures, the counselor discusses the many possible outcomes which could be the result of the diagnosis. Finally, before any tests are performed, anxieties from either of the parents are addressed as well as the psychological well-being of the parents.
The "Genetic Screening" Genetic Screening. NDSU,. Web. The Web. The Web.
Coughlin, S. S. (2002). Future challenges for research on diagnostic tests: genetic tests and disease prevention. Journal of Epidemiology & Community Health, 56(5), 335-336. doi:10.1136/jech.56.5.335