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Measurement of Dispersion and Separation Resolution.
We determine the separation resolution by measuring the particle
position distribution in the expanded section. The measurements
are made from an ensemble average of 100 epifluorescent images
of particle streams undergoing separation. We average the image
intensities along the x-axis to obtain the particle intensity distributions
as a function of z. An exemplary particle intensity with a
bimodal Gaussian fit is shown in Figure 3. We obtain the
dispersion widths (s1,s2) and the particle stream centers (z1,z2) from
the Gaussian fit.

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yt.yutian.(½ð±Ò+10, ·­ÒëEPI+1): 2011-05-30 15:58:59
Measurement of Dispersion and Separation Resolution.ɫɢºÍ·Ö±æÂʵIJâÁ¿
We determine the separation resolution by measuring the particle position distribution in the expanded section. ÎÒÃÇͨ¹ý²âÁ¿À©¿í²¿·ÖÁ£×Óλ×Ó·Ö²¼È·¶¨·Ö±æÂÊ¡£The measurements are made from an ensemble average of 100 epi fluorescent images of particle streams undergoing separation. ²âÁ¿Óɾ­Àú·Ö¸îµÄÁ£×ÓÁ÷µÄͳ¼Æ¾ùֵΪ100 epiµÄÓ«¹âͼÏñ×é³É¡£We average the image intensities along the x-axis to obtain the particle intensity distributions as a function of z.ÒÔÆ½¾ùͼÏñÇ¿¶ÈΪºáÖᣬµÃµ½Á£×Ó¼¯Öг̶ȷֲ¼ÎªzµÄº¯Êý¡£ An exemplary particle intensity with a bimodal Gaussian fit is shown in Figure 3. Ò»¸öµäÐ͵ķûºÏ¸ß˹·Ö²¼µÄÁ£×Ó¼¯Öг̶ÈÏÔʾÓÚͼ3.We obtain the dispersion widths (s1,s2) and the particle stream centers (z1,z2) from the Gaussian fit.ÎÒÃÇ´Ó¸ß˹·Ö²¼µÃµ½É«É¢¿í¶È£¨s1£¬s2£©ºÍÁ£×ÓÁ÷ÖÐÐÄ£¨z1£¬z2£©¡£
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