Biomedical Engineering Reference
In-Depth Information
resolved, the potential for clinical translation of these agents with PAT is very high.
These promising clinical applications of PAT include imaging primary tumor
margins, early diagnosis, or staging metastasis.
references
[1] Marchese-ragona SP, Haydon Pg. near-field scanning optical microscopy and near-
field confocal optical spectroscopy: emerging techniques in biology. Ann n Y Acad Sci
1997; 820 :196-206; discussion 197-206.
[2] Patel dV, Mcghee Cn. In vivo confocal microscopy of human corneal nerves in health,
in ocular and systemic disease, and following corneal surgery: a review. Br J ophthalmol
2009; 93 :853-860.
[3] reynaud K, nogueira d, Cortvrindt r, Kurzawa r, Smitz J. Confocal microscopy: prin-
ciples and applications to the field of reproductive biology. Folia Histochem Cytobiol
2001; 39 :75-85.
[4] rollan A, Ward T, McHale AP. real time confocal laser scanning microscopy: potential
applications in space medicine and cell biology. Acta Astronaut 1998; 42 :37-50.
[5] Stelzer EH, Wacker I, de Mey Jr. Confocal fluorescence microscopy in modern cell
biology. Semin Cell Biol 1991; 2 :145-152.
[6] Farkas Er, Smith rL, Baumgart T, Webb WW. Probing chain-order in model membranes
via fluorescence polarization using two-photon microscopy. Biophys J 2007:420a.
[7] guild JB, Xu C, Webb WW. Pulse dispersion by high numerical aperture objectives
for nonlinear microscopy using two-photon fluorescence excitation. Biophys J 1996; 70 :
Wp284.
[8] Huang SH, Heikal AA, Webb WW. Two-photon fluorescence spectroscopy and micros-
copy of nAd(P)H and flavoprotein. Biophys J 2002; 82 :2811-2825.
[9] Williams rM, Webb WW. Plasma membrane heterogeneities during cytokinesis of
rBL-2H3 cells characterized using two photon excited fluorescence microscopy. Biophys
J 1996; 70 :Tu419.
[10] Huang d, Swanson EA, Lin CP, Schuman JS, Stinson Wg, Chang W, Hee Mr, Flotte T,
gregory K, Puliafito CA, et al . optical coherence tomography. Science 1991; 254 :
1178-1181.
[11] Tearney gJ, Brezinski ME, Bouma BE, Boppart SA, Pitris C, Southern JF, Fujimoto Jg.
In vivo endoscopic optical biopsy with optical coherence tomography. Science 1997; 276 :
2037-2039.
[12] Boppart SA. Advances in contrast enhancement for optical coherence tomography. Conf
Proc IEEE Eng Med Biol Soc 2006; 1 :121-124.
[13] Jeon M, Kim J, Jung U, Lee C, Jung W, Boppart SA. Full-range k-domain linearization
in spectral-domain optical coherence tomography. Appl opt 2011; 50 :1158-1163.
[14] Jung W, Boppart SA. optical coherence tomography for rapid tissue screening and
directed histological sectioning. Anal Cell Pathol (Amst) 2012; 35 :129-143.
[15] Jung W, Kim J, Jeon M, Chaney EJ, Stewart Cn, Boppart SA. Handheld optical
coherence tomography scanner for primary care diagnostics. IEEE Trans Biomed Eng
2011; 58 :741-744.
Search WWH ::




Custom Search