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                                                              當(dāng)前位置 > 首頁 > 行業(yè)資訊 > 講座 > 網(wǎng)絡(luò)研討會-離體微血管CT:微血管成像技術(shù)進(jìn)展

                                                              網(wǎng)絡(luò)研討會-離體微血管CT:微血管成像技術(shù)進(jìn)展

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                                                              網(wǎng)絡(luò)研討會邀請函
                                                               
                                                              離體微血管CT:微血管成像技術(shù)進(jìn)展
                                                               
                                                              尊敬的用戶:
                                                               
                                                              盡管顯微CT以接近顯微鏡的分辨率提供體積數(shù)據(jù),但該技術(shù)固有的X射線衰減意味著血管不能與周圍的軟組織區(qū)分。
                                                               
                                                              在本次網(wǎng)絡(luò)研討會中,Ruslan Hlushchuk博士(伯爾尼大學(xué)解剖學(xué)研究所)和Kjell Laperre博士(布魯克生物先期臨床成像部)將推出一種名為μAngiofil的新型CT造影劑,以克服這一挑戰(zhàn)。
                                                               
                                                              對于離體血管造影,它提供微血管成像到毛細(xì)血管水平,無需事先組織浸漬或骨切除/去鈣化。其他優(yōu)點包括該樣品可用于后續(xù)相關(guān)形態(tài)學(xué),定量分析無需大量后處理即可執(zhí)行。
                                                               
                                                              本次網(wǎng)絡(luò)研討會涵蓋的要點包括:
                                                              • 灌注程序/實驗方案
                                                              • 微血管的無損成像,可至毛細(xì)血管,以及骨組織和/或金屬植入物同時成像
                                                              • 相關(guān)形態(tài)研究的可能性(由 μAngiofil 的自發(fā)熒光輔助實現(xiàn))
                                                              • 定量分析示例
                                                              • 布魯克的 BioSpin 的Skyscan 1272 microCT設(shè)備
                                                               
                                                              如果在線會議不在您的工作時間內(nèi),錄制的版本將在現(xiàn)場會議后不久發(fā)送給所有注冊人,千萬不要錯過!
                                                               
                                                              Webinar Invitation
                                                               
                                                              Ex Vivo MicroangioCT:Advances in Microvascular Imaging
                                                               
                                                              Dear ,
                                                               
                                                              Although microCT provides volumetric data at a near-microscopic resolution, the technique’s inherent X-ray attenuation means the vasculature cannot be discriminated from surrounding soft tissues.
                                                               
                                                              In this webinar, Dr. Ruslan Hlushchuk (Universität Bern Institute of Anatomy) and Dr. Kjell Laperre (Bruker Biospin’s Pre-Clinical Imaging Division) will introduce a new radiopaque contrast agent called μAngiofil that overcomes this challenge.
                                                               
                                                              For ex vivo angiography, it provides microvascular imaging down to the fine-capillary level, without requiring prior tissue maceration or bone removal/decalcification. Other advantages include that the sample can be used for subsequent correlative morphology and quantitative analysis can be performed without requiring extensive post-processing.
                                                               
                                                              Key points covered at this webinar will be:
                                                              • The perfusion procedure/protocol.
                                                              • The non-destructive imaging of microvasculature down to the finest capillaries, as well as in the presence of bone tissue and/or metal implants.
                                                              • The potential for correlative morphology (facilitated by the autofluorescence of the μAngiofil).
                                                              • Examples of quantitative analysis.
                                                              • Bruker’s BioSpin’s Skyscan 1272
                                                              • The recorded version will be sent to all registrants shortly after the live sessions. Don’t miss it!
                                                               
                                                              Kind regards
                                                              Your Webinar team
                                                               
                                                              When and Where
                                                              March 5th - 5pm CET / 11am EST
                                                               
                                                              Dr. Ruslan Hlushchuk
                                                              Lecturer and Group Leader at the Department of Topographic and Clinical Anatomy at the Universität Bern, Institute of Anatomy
                                                               
                                                              Dr. Kjell Laperre
                                                              Micro-CT Market Product & Applications Manager in the Bruker Biospin Pre-Clinical Imaging Division
                                                               
                                                               
                                                              相關(guān)公司:布魯克(北京)科技有限公司
                                                              聯(lián)系電話:010 58333000
                                                              E-mail:[email protected]


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