A Quote by Suzanne Somers

Exercise tells your cells that you are alive. All bodies need oxygenation. — © Suzanne Somers
Exercise tells your cells that you are alive. All bodies need oxygenation.
I felt him there with me. The real David. My David. David, you are still here. Alive. Alive in me.Alive in the galaxy.Alive in the stars.Alive in the sky.Alive in the sea.Alive in the palm trees.Alive in feathers.Alive in birds.Alive in the mountains.Alive in the coyotes.Alive in books.Alive in sound.Alive in mom.Alive in dad.Alive in Bobby.Alive in me.Alive in soil.Alive in branches.Alive in fossils.Alive in tongues.Alive in eyes.Alive in cries.Alive in bodies.Alive in past, present and future. Alive forever.
Your beliefs and thoughts are wired into your biology. They become your cells, tissues, and organs. There’s no supplement, no diet, no medicine, and no exercise regimen that can compare with the power of your thoughts and beliefs. That’s the very first place you need to look when anything goes wrong with your body.
It's interesting: I think, genetically, there are people who need different things, like exercise. I need the exercise, others not so much, and I think more and more, we'll start to understand why people's bodies function in certain ways.
You need to eat normally and healthfully, and you need to exercise. I'm so passionate about this because I think people spend their lives not happy in their bodies.
If you look at your companies, and half of your staff are not female, and a decent percentage of them are not people of color, then you are part of the problem because you need people working for you and you need people in positions of leadership who can exercise their bias and who can exercise their perspective.
Probably all of us have random rogue cancer cells floating around in our bodies but by and large, in the majority of cases, our immune system circulates and acts as a surveillance mechanism and kills off those few tumor cells.
Nitric oxide production by immune cells is one of the key mechanisms that our bodies use to destroy diseased cells. Enhancement of these types of immune responses is seen consistently with many medicinal mushrooms that have been tested by cancer researchers.
Except for certain moments - when cells are dividing, for instance - chromosomes don't form compact, countable bodies inside cells. Instead, they unravel and flop about, which makes counting chromosomes a bit like counting strands of ramen in a bowl.
Never, ever exercise in front of a TV or while reading. You lose 50 percent of the benefit of the exercise by not hearing and feeling your heart rate, your sweat and the pain levels that need to be encountered in fitness training.
My mind becomes tired, and perhaps some of yours do. If so, go and exercise your bodies.
The medical literature tells us that the most effective ways to reduce the risk of heart disease, cancer, stroke, diabetes, Alzheimer's, and many more problems are through healthy diet and exercise. Our bodies have evolved to move, yet we now use the energy in oil instead of muscles to do our work.
Conversational intelligence is hard-wired into every single human-being's cells. It's the way the cells engage with each other. Believe it or not, cells talk to each other. The immune system talks to the cells.
Like Honeycrisp, SweeTango has much larger cells than other apples, and when you bite into it, the cells shatter rather than cleaving along the cell walls, as is the case with most popular apples. The bursting of the cells fills your mouth with juice. Chunks of SweeTango snap off in your mouth with a loud cracking sound.
Odd to think that the piece of you I know best is already dead. The cells on the surface of your skin are thin and flat without the blood vessels or nerve endings. Dead cells, thickest on the palms of your hands and the soles of your feet.
Most of our brain cells are glial cells, once thought to be mere support cells, but now understood as having a critical role in brain function. Glial cells in the human brain are markedly different from glial cells in other brains, suggesting that they may be important in the evolution of brain function.
One of the first papers I wrote at the University of Wisconsin, in 1977, was on stem cells. I realized that if I changed the environment that these cells were in, I could turn the cells into bone, and if I changed the environment a bit more, they would form fat cells.
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