An inverted nipple occasionally in vaginated nipple is a condition where the nipple, instead of pointing outward, is retracted into the breast. In some cases, the nipple will be temporarily protruded if stimulated, but in others, the inversion remains regardless of stimulus. Women and men can have inverted nipples.
Individuals with inverted nipples may find that their nipples protract come out temporarily or permanently during pregnancy, or as a result of breastfeeding. Most women with inverted nipples who give birth are able to breastfeed without complication, but inexperienced mothers may experience higher than average pain and soreness when initially attempting to nurse. When a mother uses proper breastfeeding technique, the infant latches onto the areola, not the nipple, so women with inverted nipples are actually able to breastfeed without issue. An infant that latches on well may be able to slush out an inverted nipple. The use of a breast pump or other suction device immediately before a feeding may help to draw out inverted nipples. A hospital grade electric pump may be used for this purpose. Some women also find that using a nipple shield can help facilitate breastfeeding. Frequent stimulation such as sexual intercourse and foreplay such as nipple sucking also helps the nipple protract.
Plastic surgery is one method of protracting inverted nipples. If a woman elects to have this surgery performed on her inverted nipples, it can permanently destroy her capacity to breastfeed. Another method of protracting inverted nipples is to have the nipple pierced. This method will only be effective if the nipple can be temporarily protracted. If pierced when protracted, the jewelry may prevent the nipple from returning to its inverted state. The success of both of these methods, from a cosmetic standpoint, is mixed.
Other strategies for protracting inverted nipples include regularly stimulating the nipples to a protruding state, in an attempt to gradually loosen the nipple tissue. Some sex toys designed for nipple stimulation, such as suction cups or clamps may also cause inverted nipples to protract or stay protracted longer. There are special devices specifically designed to draw out inverted nipples or a homemade nipple protractor can be constructed out of a 10 cc disposable syringe. These methods are often used in preparation for breast-feeding, which can sometimes cause inverted nipples to become protracted permanently.
Two methods which are now discouraged are breast shells and the Hoffman technique. Breast shells may be used to apply gentle constant pressure to the areola in order to try and break any adhesions under the skin that are preventing the nipple from being drawn out. The shells are worn inside the bra. The Hoffman technique is a nipple stretching exercise that may help loosen the adhesions at the base of the nipple when performed several times a day. Although both techniques are heavily promoted, a 1992 study found that not only do shells and the Hoffman technique not promote more successful breastfeeding, they may actually disrupt it.
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Personalized Medicine
Personalized medicine is a medical model emphasizing the systematic use of information about an individual patient to select or optimize that patient's preventative and therapeutic care. Personalized medicine is the products and services that leverage the science of genomics and proteomics and capitalize on the trends toward wellness and consumerism to enable tailored approaches to prevention and care. Over the past century, medical care has centered on standards of care based on epidemiological studies of large cohorts. Personalized medicine seeks to provide an objective basis for consideration of such individual differences. Traditionally, personalized medicine has been limited to the consideration of a patient's family history, social circumstances, environment, and behaviors in tailoring individual care. Personalized medicine uses new methods of molecular analysis to manage a patient’s disease or predisposition toward a disease. It aims to achieve optimal medical outcomes by helping physicians and patients choose the disease management approaches likely to work best in the context of a patient’s genetic and environmental profile. Such approaches may include genetic screening programs that more precisely diagnose diseases and their sub-types, or help physicians select the type and dose of medication best suited to a certain group of patients. Personalized medicine is an extension of traditional approaches to understanding and treating illness. Since the beginning of the study of medicine, physicians have employed evidence found through observation to make a diagnosis or to prescribe treatment. In the modern concept of personalized medicine, the tools provided to the physician are more precise, probing not just the obvious, such as a tumor on a mammogram or cells under a microscope, but the very molecular makeup of each patient. Looking at the patient on this level helps the physician get a profile of the patient’s genetic distinction, or mapping. By investigating this genetic mapping, medical professionals are then able to profile patients, and use the found information to plan a course of treatment that is much more in step with the way their body works. Genomic medicine and personalized medicine use genetic information to prevent or treat disease in adults or their children. Having a genetic map or a profile of a patient’s genetic variation can then guide the selection of drugs or treatment processes. This can minimize side effects or to create a strategy for a more successful outcome from the medical treatment. Helping the physician cover all the bases is imperative. Genetic mapping can also indicate the propensity to contract certain diseases before the patient actually shows recognizable symptoms, allowing the physician and patient to put together a plan for observation and prevention. Personalized medicine, when coupled with personal pharmacogenetics, is a unique approach that may be well suited for the health challenges we face in the new millennium. Although the medical and scientific communities, through research and discovery, got the upper hand over many of the diseases we have encountered since the advent of advanced medicine, many diseases that are more complicated. Diseases like diabetes, heart disease, cancer, and Alzheimer’s are caused by a combination of genetic and other factors. Coupled with the fact that they tend to be chronic, they place a significant burden on not only the patient, but on the healthcare system as a whole. Personalized medicine aims to provide the tools and knowledge to fight chronic diseases and treat them more effectively than ever before. Genetic profiles can help physicians to better discern subgroups of patients with various forms of cancer, in addition to other complex diseases, helping to guide doctors with accurate forms of predictive medicine and preventative medicine. With personalized medicine, the physician is intending to select the best treatment protocol or even, in many cases, avoid passing the expense and risks of unnecessary medical treatments on to the patient altogether. In addition, personalized medicine, when used correctly, aims to guide tests that detect variation in the way individual patients metabolize various pharmaceuticals. Personalized medicine is working to help determine the right dose for a patient, helping to avoid hazards based on familial history, environmental influences, and genetic variation.

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