蜜臀av性久久久久|国产免费久久精品99|国产99久久久久久免费|成人精品一区二区三区在线|日韩精品一区二区av在线|国产亚洲欧美在线观看四区|色噜噜综合亚洲av中文无码|99久久久国产精品免费播放器

<cite id="ygcks"><center id="ygcks"></center></cite>
  • 
    
  • <rt id="ygcks"></rt>
    <cite id="ygcks"></cite>
  • <li id="ygcks"><source id="ygcks"></source></li> <button id="ygcks"></button>
  • <button id="ygcks"></button>
    <button id="ygcks"><input id="ygcks"></input></button>
    
    
    <abbr id="ygcks"><source id="ygcks"></source></abbr>
    
    
    
     
    
    

    U.S. scientists invent new device to treat Parkinson's disease

    Source: Xinhua| 2019-01-02 17:02:04|Editor: xuxin
    Video PlayerClose

    SAN FRANCISCO, Jan 1 (Xinhua) -- Scientists from University of California, Berkeley (UC Berkeley) on the western U.S. coast have invented a wireless controlled neurostimulator that could provide fine-tuned treatments to patients with diseases like epilepsy and Parkinson's.

    UC Berkeley researchers worked out a wireless artifact-free neuromodulation device (WAND) that is able to listen and stimulate with an electric current in the brain at the same time, said a study that was published in Nature Biomedical Engineering on Monday.

    The closed-loop device works like a "pacemaker for the brain" by automatically monitoring the brain's electrical activity and delivering electrical stimulation if it detects something gone awry.

    With the ability to stimulate and record simultaneously, WAND can prevent the unwanted movements of brain current by adjusting in real time the stimulation parameters on its own if it detects signs of a tremor or a seizure.

    WAND outperforms previous similar devices that are effective in preventing debilitating tremors or seizures in patients with various neurological conditions, as it can take several years for doctors to constantly adjust for optimal electrical stimulation to stop extremely subtle electrical signatures preceding a seizure or a tremor.

    "The process of finding the right therapy for a patient is extremely costly and can take years," said Rikky Muller, assistant professor of electrical engineering and computer sciences at UC Berkeley.

    WAND beats other closed-loop systems in that it is capable of recording electrical activity over 128 channels, or from 128 points in the brain.

    Muller said he and his team want to incorporate learning into their closed-loop platform to build intelligent devices in the future, with the aim to determine the most optimal treatment for patients of neurological disorders.

    TOP STORIES
    EDITOR’S CHOICE
    MOST VIEWED
    EXPLORE XINHUANET
    010020070750000000000000011100001377148811
    井研县| 濮阳市| 巴东县| 洪洞县| 石泉县| 滁州市| 郓城县| 海宁市| 大英县| 新绛县| 连城县| 沁水县| 宣化县| 吴堡县| 卓资县| 司法| 黑河市| 甘谷县| 东海县| 木里| 西林县| 博罗县| 盈江县| 岳普湖县| 仪陇县| 五家渠市| 龙泉市| 岢岚县| 迁西县| 峡江县| 四会市| 高台县| 广河县| 荥阳市| 长宁县| 咸丰县| 大新县| 潢川县| 小金县| 渭源县| 霍州市|