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活动预告|碳中和与能源智联(CNEST)前沿讲座第1期
”行业前沿讲堂”第2期——全过程咨询新实践:建设职能杠杆体系原理深度解读
Entanglement islands and cutoff branes from path-integral optimization
【图书馆系列讲座】个人文献管理软件EndNote的功能与使用
报告题目:
Revisit Diagnosis and Treatment of Acute Stroke: Myth and Truth
 报告人:
William Yuh
Professor and Vice Chair, Department of Radiology, and the 
Ellsworth C. and Nancy D. Alvord Endowed Chair in 
Neurooncology, Fred Hutchinson Cancer Research 
Center, University of Washington, USA
报告时间:
2014-06-13 15:00
报告地点:
医学科学楼B321
主办单位:
医学院
  简介:
报告摘要
The gold standards for managing acute stroke has been verymuch the same for decades and traditionallybasedupon the ischemic duration , size of the ischemia (NIHSS or size of abnormal imaging) and risk factors (age, HTN, DM, etc.). With the introduction of t-PA, and advancement instroke imaging, and endovascular/mechanicalreperfusiondevice/technique, there are promising hopes to further improveoutcomes of acute stroke. However, controversial remains including the standard inclusion criteria intriagingacute stroke therapy. Furthermore,recent JNEM article reported that mechanical recanalization did not provide better outcome than those by IV t-PA. This talk will revisit the current stroke imaging protocolsand the decades’ old standards for the management of acute stroke patients. These includeusing DWI/PI mismatching for the assessment of ischemic Penumbra and triaging of stroke treatment based upon the fixed 3-6 hours’ therapeuticwindow. Furthermore, the current concept of “Time is Brain” and its urgency to salvage penumbra may overshadow the principle of “Do no Harm” to avoid hemorrhagic complication.
Not until we can reliablydetermine the ischemic tissue being alive (viability) or salvageable (reversibility) immediatelybefore triaging a proper therapeutic option, current approach in treatingacute stroke may not be personalized and its treatment outcome including the hemorrhagic complicationmay seem to be a statistical games. This presentation will provide an overview of the functional imaging modalities, including ultra-high field MRI (7 and 8 T), and their potential integration into therapy paradigms for the treatment ofacute ischemicstroke.
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