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奥林巴斯研究级倒置显微镜ix53

奥林巴斯研究级倒置显微镜ix53

型号:ix53

品牌:奥林巴斯

产地:进口日本

单位:

注册证号:ix53

咨询热线:13361285885

所属店铺: 奥林巴斯OLYMPUS

适用科室: 手术室外科

<p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">奥林巴斯研究级倒置显微镜ix53作为适用于日常倒置显微分析的良好显微镜,集优秀的光学性能和机械性能于一身,该显微镜系统具有极高的性价比和极佳的日常使用舒适感。系统配备有如预先对中相衬、相衬和灵活UIS2 微分干涉光学组件等特性,实现了在所有倍率条件下对薄标本和厚标本的轻松可视化操作。与具有不同工作距离的聚光镜和长工作距离物镜配套使用时甚至可以对复杂的标本执行观察和文件记载等工作。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><p style="margin: 8px auto; line-height: 21px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; border: none;"><span style="text-indent: 2em;">具备满足可延伸性研究需求的扩展空间</span></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">奥林巴斯倒置显微镜IX53系统是用于常规分析的理想平台。通过记录整个视野下的细胞动态过程,可以提高用户的研究效率。并且通过准确的位置和光的重复性,可以提高显微成像的可靠性。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><strong>奥林巴斯倒置显微镜IX53:</strong><strong>单层光路系统</strong></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">优秀的高性价比明场和荧光应用型显微镜</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/6581846.jpg" title="IX53单层光路系统" width="500" height="314" border="0" hspace="0" vspace="0" alt="IX53单层光路系统" style="border-width: 0px; border-style: initial; max-width: 725px; width: 500px; height: 314px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><h3 style="font-size: 12px; line-height: 21px; font-weight: normal; font-family: &quot;Microsoft YaHei&quot;; border: none;"><br></h3><h3 style="font-size: 12px; line-height: 21px; font-weight: normal; font-family: &quot;Microsoft YaHei&quot;; border: none;">可信赖的、清晰明亮的、高分辨率的图像</h3><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">Olympus UIS2无限远校正光学系统配备有多种物镜,保证了高光学透过率。UIS2光学系统具备宽光谱范围的色差校正能力,不管在何种观察条件下,均可采集具有高信噪比、高分辨率图像。此外,宽视场和复眼透镜系统更确保了采集的荧光图像照明均匀,而且能够使用搭载有大型传感器的SCMOS相机。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/8408049.jpg" title="可信赖的、清晰明亮的、高分辨率的图像" width="500" height="314" border="0" hspace="0" vspace="0" alt="可信赖的、清晰明亮的、高分辨率的图像" style="border-width: 0px; border-style: initial; max-width: 725px; width: 500px; height: 314px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><h4 style="margin-top: 5px; font-size: 12px; line-height: 22px; font-weight: normal; font-family: &quot;Microsoft YaHei&quot;; background: white;">图像质量</h4><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;"><strong>复消色差物镜可进行高分辨率的相衬和荧光观察。</strong></p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;">奥林巴斯研究级倒置显微镜IX53即使是在同时进行相衬观察和荧光观察的情况下,复消色差相衬物镜 (UPLSAPO100XOPH、PLAPON60XOPH) 也可实现不受图像漂移影响的高精度成像。这一特性使得切换观察方法时,无需更换物镜。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/1303739.jpg" title="卓越的图像质量" width="500" height="314" border="0" hspace="0" vspace="0" alt="卓越的图像质量" style="border-width: 0px; border-style: initial; max-width: 725px; width: 500px; height: 314px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">图像数据来源: Tomonobu Watanabe, Ph.D. Laboratory forComprehensive Bioimaging, RIKEN Quantitative Biology Center</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><br></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/6196775.jpg" title="UPLSAPO100×OPH, PLAPON60×OPH" width="500" height="314" border="0" hspace="0" vspace="0" alt="UPLSAPO100×OPH, PLAPON60×OPH" style="border-width: 0px; border-style: initial; max-width: 725px; font-family: 宋体; width: 500px; height: 314px;"><br></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">UPLSAPO100×OPH,PLAPON60×OPH</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;"><strong style="text-indent: 2em;">针对活细胞高分辨率观察的硅油油浸物镜*</strong></p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;">Olympus提供了三种高数值孔径硅油油浸物镜:&nbsp;<br><a href="http://www.tengrant.com/content/?679.html" target="_blank" style="margin-right: auto; margin-left: auto; color: rgb(0, 112, 192); border-bottom: 1px dashed rgb(0, 78, 162);">UPLSAPO30XS</a>、<a href="http://www.tengrant.com/content/?683.html" target="_blank" style="margin-right: auto; margin-left: auto; color: rgb(0, 112, 192); border-bottom: 1px dashed rgb(0, 78, 162);">UPLSAPO40XS</a>和<a href="http://www.tengrant.com/content/?685.html" target="_blank" style="margin-right: auto; margin-left: auto; color: rgb(0, 112, 192); border-bottom: 1px dashed rgb(0, 78, 162);">UPLSAPO60XS</a>。硅油的折射率 (折射率ne≈1.40) 接近生物组织的折射率 (ne≈1.38) ,可以对生物组织内部进行深度的高分辨率观察,并大程度地降低了由折射率不匹配所导致的球面象差问题。&nbsp;<br>此外,硅油不会变干或变硬,因此不需要重新滴加硅油,从而使得硅油非常适用于进行长时程的观察。</p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;">*请使用专用硅油。</p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;"><span style="text-indent: 2em;">NMuMG / Fucci2细胞三维重建图像</span></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/4426603.jpg" title="NMuMG / Fucci2细胞三维重建图像" width="500" height="314" border="0" hspace="0" vspace="0" alt="NMuMG / Fucci2细胞三维重建图像" style="border-width: 0px; border-style: initial; max-width: 725px; width: 500px; height: 314px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">Olympus FV1000采集的共聚焦图像。 (红色:细胞周期G1期,绿色:细胞周期的S / G2 / M期) 图像数据来源: Asako Sakaue-Sawano, Ph.D. Atsushi Miyawaki, M.D., Ph.D. Laboratoryfor Cell Function Dynamics, Advanced Technology Development Core, RIKEN BrainScience Institute</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><span style="text-indent: 2em;">UPLSAPO30XS,UPLSAPO40XS和 UPLSAPO60XS</span></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/5213773.jpg" title="UPLSAPO30XS, UPLSAPO40XS和 UPLSAPO60XS" width="500" height="314" border="0" hspace="0" vspace="0" alt="UPLSAPO30XS, UPLSAPO40XS和 UPLSAPO60XS" style="border-width: 0px; border-style: initial; max-width: 725px; width: 500px; height: 314px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;"><strong>适用于IPS / ES和悬浮细胞观察的特殊物镜</strong></p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;">该款高数值孔径的相衬物镜 (<a href="http://www.tengrant.com/content/?405.html" target="_blank" style="margin-right: auto; margin-left: auto; color: rgb(0, 112, 192); border-bottom: 1px dashed rgb(0, 78, 162);">UCPLFLN20XPH</a>) 特别适合进行使用塑料器皿的观察。它可以对细胞增殖过程进行高分辨率观察,并提高整个视场内的反差。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">适用于IPS / ES和悬浮细胞观察的特殊物镜</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/5611479.jpg" title="诱导多能干细胞的Nanog基因表达(绿色荧光蛋白)" width="200" height="126" border="0" hspace="0" vspace="0" alt="诱导多能干细胞的Nanog基因表达(绿色荧光蛋白)" style="border-width: 0px; border-style: initial; max-width: 725px; width: 200px; height: 126px;">&nbsp;<img src="https://www.tengrant.com/upLoad/image/20190331/4843259.jpg" title="诱导多能干细胞的Nanog基因表达(绿色荧光蛋白)" width="200" height="126" border="0" hspace="0" vspace="0" alt="诱导多能干细胞的Nanog基因表达(绿色荧光蛋白)" style="border-width: 0px; border-style: initial; max-width: 725px; width: 200px; height: 126px;">&nbsp;<img src="https://www.tengrant.com/upLoad/image/20190331/4096464.jpg" title="适用于IPS / ES和悬浮细胞观察的特殊物镜" width="200" height="126" border="0" hspace="0" vspace="0" alt="适用于IPS / ES和悬浮细胞观察的特殊物镜" style="border-width: 0px; border-style: initial; max-width: 725px; width: 200px; height: 126px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">诱导多能干细胞的Nanog基因表达(绿色荧光蛋白) 图像数据来源: Tomonobu Watanabe, Ph.D. Laboratory for Comprehensive Bioimaging,RIKEN Quantitative Biology Center</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;"><strong style="text-indent: 2em;">高信噪比的荧光激发镜组可以有效检测信号</strong></p><p style="margin-top: 8px; margin-right: auto; margin-left: auto; line-height: 19px; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px; background: white;">所有荧光激发镜组都配备有经过专门开发的涂层处理滤色片,该滤色片可以吸收99%以上的杂散光,大程度地降低了噪声。荧光激发镜组的优异性能和高透光率保证了对荧光信号的高效检测。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/9576719.jpg" title="传统荧光激发镜组采集的图像" width="200" height="127" border="0" hspace="0" vspace="0" alt="传统荧光激发镜组采集的图像" style="border-width: 0px; border-style: initial; max-width: 725px; width: 200px; height: 127px;">&nbsp;<img src="https://www.tengrant.com/upLoad/image/20190331/3282651.jpg" title="新型荧光激发镜组采集的图像" width="200" height="127" border="0" hspace="0" vspace="0" alt="新型荧光激发镜组采集的图像" style="border-width: 0px; border-style: initial; max-width: 725px; width: 200px; height: 127px;">&nbsp;<img src="https://www.tengrant.com/upLoad/image/20190331/4404768.jpg" title="Images Captured with New FL Mirror Units" width="200" height="126" border="0" hspace="0" vspace="0" alt="Images Captured with New FL Mirror Units" style="border-width: 0px; border-style: initial; max-width: 725px; width: 200px; height: 126px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">传统荧光激发镜组采集的图像 &nbsp; &nbsp; &nbsp;新型荧光激发镜组采集的图像&nbsp;Images Captured with New FL Mirror Units</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><span style="text-indent: 2em;">直观的人体工程学显微镜控制</span></p><h3 style="font-size: 12px; line-height: 21px; font-weight: normal; font-family: &quot;Microsoft YaHei&quot;; border: none;">易操作设计</h3><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><strong>在高倍率条件下实现可靠的显微追踪</strong></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">该IX3 -SVR手动载物台的特色是配备有顺畅的定位系统,使得即使在高倍率条件下,也可以轻松地追踪细胞。用户可以手动设定移动限位固定载物台,以免进行重要试验时无意地改变载物台。此外,也可以从载物台上卸下35毫米培养皿,将它们放置在培养箱中,然后把它们准确地放回先前已确定的位置。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/9162397.jpg" title="IX53易操作设计" width="500" height="314" border="0" hspace="0" vspace="0" alt="IX53易操作设计" style="border-width: 0px; border-style: initial; max-width: 725px; width: 500px; height: 314px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">这一特色是根据RIKEN BSI-Olympus 合作中心的技术发展成果制作而成。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><strong style="text-indent: 2em;">轻易实现柯勒照明</strong></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;">使用前置聚光镜限位锁和控制旋钮可以改变聚光镜位置,并轻松地重置柯勒照明。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190331/4542371.jpg" title="轻易实现柯勒照明" width="500" height="314" border="0" hspace="0" vspace="0" alt="轻易实现柯勒照明" style="border-width: 0px; border-style: initial; max-width: 725px; width: 500px; height: 314px;"></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"></p><h3 style="font-size: 12px; line-height: 21px; font-weight: normal; font-family: &quot;Microsoft YaHei&quot;; border: none;"><br></h3><h3 style="font-size: 12px; line-height: 21px; font-weight: normal; font-family: &quot;Microsoft YaHei&quot;; border: none;">可选配的荧光照明装置</h3><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><strong>长寿命130W汞灯 (U-HGLGPS)</strong></p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><a href="http://www.tengrant.com/content/?359.html" target="_blank" style="margin-right: auto; margin-left: auto; color: rgb(128, 130, 133); border-bottom: 1px dashed rgb(0, 78, 162);"><strong>U-HGLGPS</strong></a><strong></strong>荧光光源可以提供明亮均匀的照明,并且汞灯灯泡的使用寿命长,平均寿命达2000小时。此部件免维护而且不需要进行对中调节。液体光导可以防止热量传输标本上,使用户可以放心地进行长时间的观察。</p><p style="margin: 8px auto; line-height: 1.8em; text-indent: 2em; font-family: &quot;Microsoft YaHei&quot;; font-size: 12px;"><img src="https://www.tengrant.com/upLoad/image/20190328/8748762.jpg" alt="130W光纤传导汞灯 (U-HGLGPS)" width="538" height="538" border="0" vspace="0" title="130W光纤传导汞灯 (U-HGLGPS)" style="border-width: 0px; border-style: initial; max-width: 725px; width: 538px; height: 538px;"></p>