A Quote by Leroy Hood

An important finding is that by determining the genome sequences of an entire family, one can identify many DNA sequencing errors and thus greatly increase the accuracy of the data. This will ultimately help us understand the role of genetic variations in the diagnosis, treatment, and prevention of disease.
The involvement of clinicians, researchers, and, most importantly, the thousands of people who have donated DNA samples will help us to correlate genetic variation with individual variation in health and disease and help to deliver on the long-term promise of the Human Genome Project.
With DNA, you have to be able to tell which genes are turned on or off. Current DNA sequencing cannot do that. The next generation of DNA sequencing needs to be able to do this. If somebody invents this, then we can start to very precisely identify cures for diseases.
Genome-based treatment, based on wider and cheaper availability of genome data, will provide new ways to customize the therapeutic protocol and enhance our control over diseases and medical treatment.
Diseases can rarely be eliminated through early diagnosis or good treatment, but prevention can eliminate disease.
During this period, I became interested in how the new techniques of cloning and sequencing DNA could influence the study of genetics and I was an early and active proponent of the Human Genome Sequencing Project.
The ever quickening advances of science made possible by the success of the Human Genome Project will also soon let us see the essences of mental disease. Only after we understand them at the genetic level can we rationally seek out appropriate therapies for such illnesses as schizophrenia and bipolar disease.
Philips is uniquely positioned to help reshape and optimize population health management by leveraging big data and delivering care across the health continuum, from healthy living and prevention to diagnosis, minimally invasive treatment, recovery, and home care.
Sequencing DNA on the ISS will enable NASA to see what happens to genetic material in space in real time, rather than looking at a snapshot of DNA before launch and another snapshot of DNA after launch and filling in the blanks.
Health care has to be delivered as an integrated service across the entire continuum of care. This runs from healthy living and prevention to diagnosis and treatment and recovery and homecare.
With genetic engineering, we will be able to increase the complexity of our DNA, and improve the human race. But it will be a slow process, because one will have to wait about 18 years to see the effect of changes to the genetic code.
Accuracy in the genetic field will be essential. Errors in testing could be disastrous.
The day is not far off when we will be able to send a robotically controlled genome-sequencing unit in a probe to other planets to read the DNA sequence of any alien microbe life that may be there.
The question is, are there useful things that we can do with the results of a genome sequence that would bring benefit? And the answer is, today, should the majority of people go and have their genome sequenced? Probably not. But are there particular circumstances in which genome sequencing is really helpful? Yes, there are.
I am committed to helping Alzheimer's Society in any way I can. My family and I rely on the help of organisations like Alzheimer's Society to help us understand the disease and guide us in the care of my grandmother. It's been a privilege to meet so many people with dementia.
DNA sequencing opens vast ethical issues. We shall be able to know who has defective genes. What will it mean when we can be sure we're not all born equal? Worked out, the implications will scare a lot of people. Insurance companies will not want to cover those with a genetic predisposition to illness, for example. Here lurk myriad lawsuits.
Precision medicine is diving into the DNA with a knowledge that everybody's tumor has a unique genetic profile and you want to be able to identify that specific piece of DNA that has become mutated and that is driving cancer growth.
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