Tag Archives: eat healthy

Healthy Fat Loss

It is possible to achieve healthy fat loss if you follow your fat loss regime thoroughly taking all precautions. The main things that go wrong in a fat loss workout are that people sometimes stop taking enough food or even sometimes completely stop eating. But this doesn’t help; rather it damages your body.

The biggest misconception about healthy weight loss needs to be clear. It never means limiting food intake. If you do that then your body starts feeding on stored fat from muscle of your body which degrades health. Beside fat food and drink offers many important vitamins and nutrients which are necessary to run our body.

To achieve healthy fat loss you should find out a healthy weight loss regime giving primary importance to exercise and diet plan.

Exercise

Planning an exercise is one of the most important steps involved in achieving healthy fat loss. Thighs, buttocks are some of the key areas you need to focus on. Following a proper exercise and regularity in the exercise are the key to healthy weight loss. Cardiology activity is a great way to burn body fat. It also keeps your heart healthy. Overall mind-body exercises are always good to follow.

Diet Plan

Exercise alone can’t give you your desire body; you also need a good diet plan to achieve healthy weight loss. Fresh fruits and vegetables are most important than any other food for a person under fat lose regime. It is even better if you can keep on eating fruits in the morning to work off the sugar of your body throughout the day.

Many people don’t drink enough water. Drinking water is another important aspect of healthy weight loss regime. It is recommended to have six to eight glass of water per day. Leafy vegetables are a source of water. In case you don’t stick to the recommended water intake, leafy vegetables can provide you water.

2010 Healthy Food Trends and Products!

2010 Healthy Food Trends and Products!

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“Chakra Foods for Optimum Health is a “roll up your sleeve” self help book. Describing in detail, techniques that Dr.

Minich has used successfully to assist her patients in rebalancing their chakra centers, overcome obstacles to health, regain energy, creativity, and find new meaning in their lives. Her Chakra questionnaire is a tremendous asset assisting you in pinpointing areas of dysfunction and imbalance.

She expertly takes you through each of the seven chakra centers discussing in detail food and eating healing plans, simple affirmations that make a big difference, imaginative activities you can easily do to help rebalance your chakras, and a specific eating plan to support energy flow through each chakra.

At the end of the book are countless tastyrecipes to help you enjoy healthy variations of familiar foods and explore new flavors and sensations.”

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Living robots powered by muscle

The robot is a dramatic example of the marriage of biotechnology with nanotechnology

Tiny robots powered by living muscle have been created by scientists at the University of California, Los Angeles.

The devices were formed by “growing” rat cells on microscopic silicon chips, the researchers report in the journal Nature Materials.

Less than a millimetre long, the miniscule robots can move themselves without any external source of power.

The work is a dramatic example of the marriage of biotechnology with the tiny world of nanotechnology.

In nanotechnology, researchers often turn to the natural world for inspiration.

But Professor Carlo Montemagno, of the University of California, Los Angeles, turns to nature not for ideas, but for actual starting materials.

In the past he has made rotary nano-motors out of genetically engineered proteins. Now he has grown muscle tissue onto tiny robotic skeletons.

Living device

Montemano’s team used rat heart cells to create a tiny device that moves on its own when the cells contract. A second device looks like a minute pair of frog legs.

“The bones that we’re using are either a plastic or they’re silicon based,” he said. “So we make these really fine structures that mechanically have hinges that allow them to move and bend.

“And then by nano-scale manipulation of the surface chemistry, the muscle cells get the cues to say, ‘Oh! I want to attach at this point and not to attach at another point’. And so the cells assemble, then they undergo a change, so that they actually form a muscle.

“Now you have a device that has a skeleton and muscles on it to allow it to move.”

Under a microscope, you can see the tiny, two-footed “bio-bots” crawl around.

Professor Montemagno says muscles like these could be used in a host of microscopic devices – even to drive miniature electrical generators to power computer chips.

But when biological cells become attached to silicon – are they alive?

“They’re absolutely alive,” Professor Montemagno told BBC News. “I mean the cells actually grow, multiply and assemble – they form the structure themselves. So the device is alive.”

The notion is likely to disturb many who already have concerns about nanotechnology.

But for Carlo Montemagno, a professor of engineering, it makes sense to match the solutions that nature has already found through billions of years of evolution to the newest challenges in technology.