 In 1901, Augusta was taken to an insane asylum in Frankfurt, Germany, by her husband. She was described as a delusional, forgetful, disoriented woman who could no longer carry out her home-making duties. She was seen by a Dr. Alzheimer and was to become the case that made his a household name. On autopsy, he described the plaques and tangles in her brain that would go on to characterize the disease, but lost in the excitement of discovering a new entity, a clue may have been overlooked. He described arteriosclerotic changes hardening of the arteries within her brain. We typically think of atherosclerosis in the heart, but atherosclerosis involves virtually the entire human organism, our entire vascular tree, and one of the most prominent examples of the systemic nature is the link between coronary artery disease, the degenerative brain disease, and dementia. Back in the 70s, the concept of cardiogenic dementia was proposed. Dementia generated from the cardiovascular system, since the aging brain is highly sensitive to lack of oxygen, since heart problems are so common it was easy to imagine that's how dementia could result. And now we have a substantial body of evidence that strongly associates atherosclerotic vascular disease with the number one cause of dementia, Alzheimer's disease. Autopsy studies, for example, have shown that individuals with Alzheimer's disease have significantly more atherosclerotic narrowing of the arteries within their brain. This is what our cerebral arteries should look like, open, clean, allowing blood to flow. This is what atherosclerosis in our brain arteries looks like. Clogged with fat and cholesterol, closing off the arteries, restricting blood flow to our brain. What kind of brain arteries do you want in your head? Normal resting cerebral blood flow. The amount of blood flow circulating within our brain is about a quarter of a minute, but we lose about a half percent a year. So by age 65, we may be down 15, 20 percent, but this doesn't necessarily affect brain function, as we have a built-in buffer. However, this age-related decline in cerebral blood flow can become critical to brain cell survival and an additional burden further lowers that flow. This reduction of blood flow can starve the brain of oxygen, cause some little mini-strokes, brain atrophy, shrinkage, the cumulative effects of which appear to play a pivotal role in accelerating and augmenting the development and evolution of Alzheimer's disease. If you look at the amount of atherosclerosis in the arteries that specifically supply blood to critical memory and learning centers of the brain, this is the amount of severe atherosclerosis in healthy, non-demented controls, compared to those with Alzheimer's disease. In light of such findings, some have even suggested the disease be reclassified as a vascular disorder. This is good news, though, because atherosclerosis is potentially reversible. These findings were confirmed in two larger studies, over 1,000 autopsies each, which found the same thing. Atherosclerosis in the brain is significantly more frequent and severe in those with Alzheimer's disease. This suggests that strategies proven to delay the progression of artery disease, like plant-based diets, may be useful in preventing or treating Alzheimer's disease. Of course, autopsies studies are a little late for that, so to assess the impact of intracranial arterial narrowing on the progression from mild cognitive impairment to Alzheimer's disease, researchers followed 400 folks with cognitive impairment for four years, using CT and geography special CAT scans to evaluate the amount of brain artery blockage. The cognition of those with the least atherosclerosis in their heads remained pretty stable over the years, but those with more cholesterol buildup got worse and those with the most blockage rapidly declined. The same with the ability to carry out activities of daily living. And it doubled the progression to full-blown Alzheimer's disease. An inefficient blood supply to the brain has very grave consequences on brain function. But does treatment of vascular risk factors like high blood pressure and high cholesterol actually make a difference? We didn't know until now. 300 patients with Alzheimer's and those with all their vascular risk factors treated showed significantly less decline, less kind of slowed progression of their disease than those who went untreated. It is said that the goal of medicine is to provide patients with hope. I mean, there is no hope with understanding. Well, for the first time in the history of this disorder, we have the chance to provide Alzheimer's patients with hope.