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2015 | OriginalPaper | Buchkapitel

Photon Counting in Diffuse Optical Imaging

verfasst von : Dirk Grosenick

Erschienen in: Advanced Photon Counting

Verlag: Springer International Publishing

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Abstract

The high sensitivity and the picosecond time resolution of time-correlated single photon counting have led to the application of this technique for diffuse optical imaging of biological tissue in vivo in the near-infrared spectral range. In this chapter the fundamentals of photon propagation in biological tissue and the concept of the distribution of times of flight of scattered photons are briefly discussed. Then the main features of time-resolved, frequency-domain, and continuous-wave techniques are compared. An overview is given on the application of time-correlated single photon counting for investigations on human breast tissue, on the brain, and on muscle tissue. In the second part, experimental approaches and clinical studies on the detection and characterization of breast tumors based on oxy- and deoxyhemoglobin concentrations are considered in more detail. The application of time-resolved measurements to monitor breast tumor degeneration by neoadjuvant chemotherapy is discussed. Finally, fluorescence mammography with the contrast agent indocyanine green is considered as a tool to improve differentiation between malignant and benign breast lesions.

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Literatur
1.
Zurück zum Zitat Jöbsis F (1977) Noninvasive, infrared monitoring of cerebral and myocardial oxygen sufficiency and circulatory parameters. Science 198:1264–1267CrossRef Jöbsis F (1977) Noninvasive, infrared monitoring of cerebral and myocardial oxygen sufficiency and circulatory parameters. Science 198:1264–1267CrossRef
3.
Zurück zum Zitat Leff DR, Warren OJ, Enfield LC, Gibson AP, Athanasiou T, Patten DK, Hebden JC, Yang GZ, Darzi A (2008) Diffuse optical imaging of the healthy and diseased breast: a systematic review. Breast Cancer Res Treat 108:9–22. doi:10.1007/s10549-007-9582-z CrossRef Leff DR, Warren OJ, Enfield LC, Gibson AP, Athanasiou T, Patten DK, Hebden JC, Yang GZ, Darzi A (2008) Diffuse optical imaging of the healthy and diseased breast: a systematic review. Breast Cancer Res Treat 108:9–22. doi:10.​1007/​s10549-007-9582-z CrossRef
6.
Zurück zum Zitat Contini D, Zucchelli L, Spinelli L, Caffini M, Re R, Pifferi A, Cubeddu R, Torricelli A (2012) Review: brain and muscle near infrared spectroscopy/imaging techniques. J Near Infrared Spectrosc 20:15. doi:10.1255/jnirs.977 CrossRef Contini D, Zucchelli L, Spinelli L, Caffini M, Re R, Pifferi A, Cubeddu R, Torricelli A (2012) Review: brain and muscle near infrared spectroscopy/imaging techniques. J Near Infrared Spectrosc 20:15. doi:10.​1255/​jnirs.​977 CrossRef
8.
Zurück zum Zitat Grosenick D, Wabnitz H, Ebert B (2012) Review: recent advances in contrast-enhanced near infrared diffuse optical imaging of diseases using indocyanine green. J Near Infrared Spectrosc 20:203. doi:10.1255/jnirs.964 CrossRef Grosenick D, Wabnitz H, Ebert B (2012) Review: recent advances in contrast-enhanced near infrared diffuse optical imaging of diseases using indocyanine green. J Near Infrared Spectrosc 20:203. doi:10.​1255/​jnirs.​964 CrossRef
12.
Zurück zum Zitat Alerstam E, Svensson T, Andersson-Engels S (2008) Parallel computing with graphics processing units for high-speed Monte Carlo simulation of photon migration. J Biomed Opt 13:060504. doi:10.1117/1.3041496 CrossRef Alerstam E, Svensson T, Andersson-Engels S (2008) Parallel computing with graphics processing units for high-speed Monte Carlo simulation of photon migration. J Biomed Opt 13:060504. doi:10.​1117/​1.​3041496 CrossRef
13.
Zurück zum Zitat Lauritsen K, Riecke S, Bülter A, Schönau T (2014) Modern pulsed diode laser sources for time-correlated photon counting. Springer Ser Fluoresc. doi:10.1007/4243_2014_76 Lauritsen K, Riecke S, Bülter A, Schönau T (2014) Modern pulsed diode laser sources for time-correlated photon counting. Springer Ser Fluoresc. doi:10.​1007/​4243_​2014_​76
15.
Zurück zum Zitat Kou L, Labrie D, Chylek P (1993) Refractive indices of water and ice in the 0.65- to 2.5 μm spectral range. Appl Optics 32:3531–3540CrossRef Kou L, Labrie D, Chylek P (1993) Refractive indices of water and ice in the 0.65- to 2.5 μm spectral range. Appl Optics 32:3531–3540CrossRef
16.
Zurück zum Zitat Van Veen RLP, Sterenborg HJCM, Pifferi A, Torricelli A, Chikoidze E, Cubeddu R (2005) Determination of visible near-IR absorption coefficients of mammalian fat using time- and spatially resolved diffuse reflectance and transmission spectroscopy. J Biomed Opt 10:054004. doi:10.1117/1.2085149 CrossRef Van Veen RLP, Sterenborg HJCM, Pifferi A, Torricelli A, Chikoidze E, Cubeddu R (2005) Determination of visible near-IR absorption coefficients of mammalian fat using time- and spatially resolved diffuse reflectance and transmission spectroscopy. J Biomed Opt 10:054004. doi:10.​1117/​1.​2085149 CrossRef
17.
Zurück zum Zitat Grosenick D, Moesta KT, Möller M, Mucke J, Wabnitz H, Gebauer B, Stroszczynski C, Wassermann B, Schlag PM, Rinneberg H (2005) Time-domain scanning optical mammography: I. Recording and assessment of mammograms of 154 patients. Phys Med Biol 50:2429–2449. doi:10.1088/0031-9155/50/11/001 CrossRef Grosenick D, Moesta KT, Möller M, Mucke J, Wabnitz H, Gebauer B, Stroszczynski C, Wassermann B, Schlag PM, Rinneberg H (2005) Time-domain scanning optical mammography: I. Recording and assessment of mammograms of 154 patients. Phys Med Biol 50:2429–2449. doi:10.​1088/​0031-9155/​50/​11/​001 CrossRef
18.
Zurück zum Zitat Taroni P, Torricelli A, Spinelli L, Pifferi A, Arpaia F, Danesini G, Cubeddu R (2005) Time-resolved optical mammography between 637 and 985 nm: clinical study on the detection and identification of breast lesions. Phys Med Biol 50:2469–2488. doi:10.1088/0031-9155/50/11/003 CrossRef Taroni P, Torricelli A, Spinelli L, Pifferi A, Arpaia F, Danesini G, Cubeddu R (2005) Time-resolved optical mammography between 637 and 985 nm: clinical study on the detection and identification of breast lesions. Phys Med Biol 50:2469–2488. doi:10.​1088/​0031-9155/​50/​11/​003 CrossRef
20.
Zurück zum Zitat Grosenick D, Moesta KT, Wabnitz H, Mucke J, Stroszczynski C, Macdonald R, Schlag PM, Rinneberg H (2003) Time-domain optical mammography: initial clinical results on detection and characterization of breast tumors. Appl Optics 42:3170–3186CrossRef Grosenick D, Moesta KT, Wabnitz H, Mucke J, Stroszczynski C, Macdonald R, Schlag PM, Rinneberg H (2003) Time-domain optical mammography: initial clinical results on detection and characterization of breast tumors. Appl Optics 42:3170–3186CrossRef
21.
Zurück zum Zitat Taroni P, Danesini G, Torricelli A, Pifferi A, Spinelli L, Cubeddu R (2004) Clinical trial of time-resolved scanning optical mammography at 4 wavelengths between 683 and 975 nm. J Biomed Opt 9:464–473. doi:10.1117/1.1695561 CrossRef Taroni P, Danesini G, Torricelli A, Pifferi A, Spinelli L, Cubeddu R (2004) Clinical trial of time-resolved scanning optical mammography at 4 wavelengths between 683 and 975 nm. J Biomed Opt 9:464–473. doi:10.​1117/​1.​1695561 CrossRef
22.
Zurück zum Zitat Enfield LC, Gibson AP, Everdell NL, Delpy DT, Schweiger M, Arridge SR, Richardson C, Keshtgar M, Douek M, Hebden JC (2007) Three-dimensional time-resolved optical mammography of the uncompressed breast. Appl Optics 46:3628–3638CrossRef Enfield LC, Gibson AP, Everdell NL, Delpy DT, Schweiger M, Arridge SR, Richardson C, Keshtgar M, Douek M, Hebden JC (2007) Three-dimensional time-resolved optical mammography of the uncompressed breast. Appl Optics 46:3628–3638CrossRef
23.
Zurück zum Zitat Liebert A, Wabnitz H, Steinbrink J, Obrig H, Möller M, Macdonald R, Villringer A, Rinneberg H (2004) Time-resolved multidistance near-infrared spectroscopy of the adult head: intracerebral and extracerebral absorption changes from moments of distribution of times of flight of photons. Appl Optics 43:3037–3047CrossRef Liebert A, Wabnitz H, Steinbrink J, Obrig H, Möller M, Macdonald R, Villringer A, Rinneberg H (2004) Time-resolved multidistance near-infrared spectroscopy of the adult head: intracerebral and extracerebral absorption changes from moments of distribution of times of flight of photons. Appl Optics 43:3037–3047CrossRef
24.
Zurück zum Zitat Zucchelli L, Contini D, Re R, Torricelli A, Spinelli L (2013) Method for the discrimination of superficial and deep absorption variations by time domain fNIRS. Biomed Opt Express 4:2893–2910. doi:10.1364/BOE.4.002893 CrossRef Zucchelli L, Contini D, Re R, Torricelli A, Spinelli L (2013) Method for the discrimination of superficial and deep absorption variations by time domain fNIRS. Biomed Opt Express 4:2893–2910. doi:10.​1364/​BOE.​4.​002893 CrossRef
25.
Zurück zum Zitat Mazurenka M, Di Sieno L, Boso G, Contini D, Pifferi A, Mora AD, Tosi A, Wabnitz H, Macdonald R (2013) Non-contact in vivo diffuse optical imaging using a time-gated scanning system. Biomed Opt Express 4:2257–2268. doi:10.1364/BOE.4.002257 CrossRef Mazurenka M, Di Sieno L, Boso G, Contini D, Pifferi A, Mora AD, Tosi A, Wabnitz H, Macdonald R (2013) Non-contact in vivo diffuse optical imaging using a time-gated scanning system. Biomed Opt Express 4:2257–2268. doi:10.​1364/​BOE.​4.​002257 CrossRef
27.
Zurück zum Zitat Torricelli A, Quaresima V, Pifferi A, Biscotti G, Spinelli L, Taroni P, Ferrari M, Cubeddu R (2004) Mapping of calf muscle oxygenation and haemoglobin content during dynamic plantar flexion exercise by multi-channel time-resolved near-infrared spectroscopy. Phys Med Biol 49:685–699. doi:10.1088/0031-9155/49/5/003 CrossRef Torricelli A, Quaresima V, Pifferi A, Biscotti G, Spinelli L, Taroni P, Ferrari M, Cubeddu R (2004) Mapping of calf muscle oxygenation and haemoglobin content during dynamic plantar flexion exercise by multi-channel time-resolved near-infrared spectroscopy. Phys Med Biol 49:685–699. doi:10.​1088/​0031-9155/​49/​5/​003 CrossRef
29.
Zurück zum Zitat Ferrante S, Contini D, Spinelli L, Pedrocchi A, Torricelli A, Molteni F, Ferrigno G, Cubeddu R (2009) Monitoring muscle metabolic indexes by time-domain near-infrared spectroscopy during knee flex-extension induced by functional electrical stimulation. J Biomed Opt 14:044011. doi:10.1117/1.3183802 CrossRef Ferrante S, Contini D, Spinelli L, Pedrocchi A, Torricelli A, Molteni F, Ferrigno G, Cubeddu R (2009) Monitoring muscle metabolic indexes by time-domain near-infrared spectroscopy during knee flex-extension induced by functional electrical stimulation. J Biomed Opt 14:044011. doi:10.​1117/​1.​3183802 CrossRef
30.
Zurück zum Zitat Grosenick D, Wabnitz H, Rinneberg H, Moesta KT, Schlag PM (1999) Development of a time-domain optical mammograph and first in vivo applications. Appl Optics 38:2927–2943CrossRef Grosenick D, Wabnitz H, Rinneberg H, Moesta KT, Schlag PM (1999) Development of a time-domain optical mammograph and first in vivo applications. Appl Optics 38:2927–2943CrossRef
31.
Zurück zum Zitat Rinneberg H, Grosenick D, Moesta KT, Wabnitz H, Mucke J, Wübbeler G, Macdonald R, Schlag PM (2008) Detection and characterization of breast tumours by time-domain scanning optical mammography. Opto Electron Rev 16:147–162. doi:10.2478/s11772-008-0004-5 CrossRef Rinneberg H, Grosenick D, Moesta KT, Wabnitz H, Mucke J, Wübbeler G, Macdonald R, Schlag PM (2008) Detection and characterization of breast tumours by time-domain scanning optical mammography. Opto Electron Rev 16:147–162. doi:10.​2478/​s11772-008-0004-5 CrossRef
32.
Zurück zum Zitat Taroni P, Pifferi A, Salvagnini E, Spinelli L, Torricelli A, Cubeddu R (2009) Seven-wavelength time-resolved optical mammography extending beyond 1000 nm for breast collagen quantification. Opt Express 17:15932–15946CrossRef Taroni P, Pifferi A, Salvagnini E, Spinelli L, Torricelli A, Cubeddu R (2009) Seven-wavelength time-resolved optical mammography extending beyond 1000 nm for breast collagen quantification. Opt Express 17:15932–15946CrossRef
33.
Zurück zum Zitat Arridge SR (1995) Photon-measurement density functions. Part I: Analytical forms. Appl Optics 34:7395–7409CrossRef Arridge SR (1995) Photon-measurement density functions. Part I: Analytical forms. Appl Optics 34:7395–7409CrossRef
34.
Zurück zum Zitat Feng SC, Zeng F-A, Chance B (1995) Photon migration in the presence of a single defect: a perturbation analysis. Appl Optics 34:3826–3837CrossRef Feng SC, Zeng F-A, Chance B (1995) Photon migration in the presence of a single defect: a perturbation analysis. Appl Optics 34:3826–3837CrossRef
35.
Zurück zum Zitat Grosenick D, Wabnitz H, Moesta KT, Mucke J, Schlag PM, Rinneberg H (2005) Time-domain scanning optical mammography: II. Optical properties and tissue parameters of 87 carcinomas. Phys Med Biol 50:2451–2468. doi:10.1088/0031-9155/50/11/002 CrossRef Grosenick D, Wabnitz H, Moesta KT, Mucke J, Schlag PM, Rinneberg H (2005) Time-domain scanning optical mammography: II. Optical properties and tissue parameters of 87 carcinomas. Phys Med Biol 50:2451–2468. doi:10.​1088/​0031-9155/​50/​11/​002 CrossRef
36.
Zurück zum Zitat Grosenick D, Kummrow A, Macdonald R, Schlag PM, Rinneberg H (2007) Evaluation of higher-order time-domain perturbation theory of photon diffusion on breast-equivalent phantoms and optical mammograms. Phys Rev E 76:061908. doi:10.1103/PhysRevE.76.061908 CrossRef Grosenick D, Kummrow A, Macdonald R, Schlag PM, Rinneberg H (2007) Evaluation of higher-order time-domain perturbation theory of photon diffusion on breast-equivalent phantoms and optical mammograms. Phys Rev E 76:061908. doi:10.​1103/​PhysRevE.​76.​061908 CrossRef
37.
Zurück zum Zitat Grosenick D, Wabnitz H, Moesta KT, Mucke J, Möller M, Stroszczynski C, Stößel J, Wassermann B, Schlag PM, Rinneberg H (2004) Concentration and oxygen saturation of haemoglobin of 50 breast tumours determined by time-domain optical mammography. Phys Med Biol 49:1165–1181. doi:10.1088/0031-9155/49/7/006 CrossRef Grosenick D, Wabnitz H, Moesta KT, Mucke J, Möller M, Stroszczynski C, Stößel J, Wassermann B, Schlag PM, Rinneberg H (2004) Concentration and oxygen saturation of haemoglobin of 50 breast tumours determined by time-domain optical mammography. Phys Med Biol 49:1165–1181. doi:10.​1088/​0031-9155/​49/​7/​006 CrossRef
38.
Zurück zum Zitat Schmidt F, Fry M, Hillman EMC (2000) A 32-channel time-resolved instrument for medical optical tomography. Rev Sci Instrum 71:256–265CrossRef Schmidt F, Fry M, Hillman EMC (2000) A 32-channel time-resolved instrument for medical optical tomography. Rev Sci Instrum 71:256–265CrossRef
39.
Zurück zum Zitat Cerussi AE, Hsiang D, Shah N, Mehta R, Durkin A, Butler JA, Tromberg BJ (2007) Predicting response to breast cancer neoadjuvant chemotherapy using diffuse optical spectroscopy. Proc Natl Acad Sci U S A 104:4014–4019. doi:10.1073/pnas.0611058104 CrossRef Cerussi AE, Hsiang D, Shah N, Mehta R, Durkin A, Butler JA, Tromberg BJ (2007) Predicting response to breast cancer neoadjuvant chemotherapy using diffuse optical spectroscopy. Proc Natl Acad Sci U S A 104:4014–4019. doi:10.​1073/​pnas.​0611058104 CrossRef
40.
Zurück zum Zitat Jakubowski DB, Cerussi AE, Bevilacqua F, Shah N, Hsiang D, Butler JA, Tromberg BJ (2004) Monitoring neoadjuvant chemotherapy in breast cancer using quantitative diffuse optical spectroscopy: a case study. J Biomed Opt 9:230–238. doi:10.1117/1.1629681 CrossRef Jakubowski DB, Cerussi AE, Bevilacqua F, Shah N, Hsiang D, Butler JA, Tromberg BJ (2004) Monitoring neoadjuvant chemotherapy in breast cancer using quantitative diffuse optical spectroscopy: a case study. J Biomed Opt 9:230–238. doi:10.​1117/​1.​1629681 CrossRef
41.
Zurück zum Zitat Choe R, Corlu A, Lee K, Durduran T, Konecky SD, Grosicka-Koptyra M, Arridge SR, Czerniecki BJ, Fraker DL, DeMichele A, Chance B, Rosen MA, Yodh AG (2005) Diffuse optical tomography of breast cancer during neoadjuvant chemotherapy: a case study with comparison to MRI. Med Phys 32:1128–1139CrossRef Choe R, Corlu A, Lee K, Durduran T, Konecky SD, Grosicka-Koptyra M, Arridge SR, Czerniecki BJ, Fraker DL, DeMichele A, Chance B, Rosen MA, Yodh AG (2005) Diffuse optical tomography of breast cancer during neoadjuvant chemotherapy: a case study with comparison to MRI. Med Phys 32:1128–1139CrossRef
42.
Zurück zum Zitat Jiang S, Pogue BW, Carpenter CM, Poplack SP, Wells WA, Kogel CA, Forero JA, Muffly LS, Schwartz GN, Paulsen KD, Kaufman PA (2009) Evaluation of breast tumor response to neoadjuvant chemotherapy with tomographic diffuse optical spectroscopy: case studies of tumor region-of-interest changes. Radiology 252:551–560CrossRef Jiang S, Pogue BW, Carpenter CM, Poplack SP, Wells WA, Kogel CA, Forero JA, Muffly LS, Schwartz GN, Paulsen KD, Kaufman PA (2009) Evaluation of breast tumor response to neoadjuvant chemotherapy with tomographic diffuse optical spectroscopy: case studies of tumor region-of-interest changes. Radiology 252:551–560CrossRef
43.
Zurück zum Zitat Enfield LC, Cantanhede G, Westbroek D, Douek M, Purushotham AD, Hebden JC, Gibson AP (2011) Monitoring the response to primary medical therapy for breast cancer using three- dimensional time-resolved optical mammography. Technol Cancer Res Treat 10:533–547CrossRef Enfield LC, Cantanhede G, Westbroek D, Douek M, Purushotham AD, Hebden JC, Gibson AP (2011) Monitoring the response to primary medical therapy for breast cancer using three- dimensional time-resolved optical mammography. Technol Cancer Res Treat 10:533–547CrossRef
44.
Zurück zum Zitat Corlu A, Choe R, Durduran T, Rosen MA, Schweiger M, Arridge SR, Schnall MD, Yodh AG (2007) Three-dimensional in vivo fluorescence diffuse optical tomography of breast cancer in humans. Opt Express 15:6696–6716CrossRef Corlu A, Choe R, Durduran T, Rosen MA, Schweiger M, Arridge SR, Schnall MD, Yodh AG (2007) Three-dimensional in vivo fluorescence diffuse optical tomography of breast cancer in humans. Opt Express 15:6696–6716CrossRef
45.
Zurück zum Zitat Hagen A, Grosenick D, Macdonald R, Rinneberg H, Burock S, Warnick P, Poellinger A, Schlag PM (2009) Late-fluorescence mammography assesses tumor capillary permeability and differentiates malignant from benign lesions. Opt Express 17:17016–17033CrossRef Hagen A, Grosenick D, Macdonald R, Rinneberg H, Burock S, Warnick P, Poellinger A, Schlag PM (2009) Late-fluorescence mammography assesses tumor capillary permeability and differentiates malignant from benign lesions. Opt Express 17:17016–17033CrossRef
46.
Zurück zum Zitat Van de Ven S, Wiethoff A, Nielsen T, Brendel B, van der Voort M, Nachabe R, Van der Mark M, Van Beek M, Bakker L, Fels L, Elias S, Luijten P, Mali W (2010) A novel fluorescent imaging agent for diffuse optical tomography of the breast: first clinical experience in patients. Mol Imaging Biol 12:343–348. doi:10.1007/s11307-009-0269-1 CrossRef Van de Ven S, Wiethoff A, Nielsen T, Brendel B, van der Voort M, Nachabe R, Van der Mark M, Van Beek M, Bakker L, Fels L, Elias S, Luijten P, Mali W (2010) A novel fluorescent imaging agent for diffuse optical tomography of the breast: first clinical experience in patients. Mol Imaging Biol 12:343–348. doi:10.​1007/​s11307-009-0269-1 CrossRef
47.
Zurück zum Zitat Poellinger A, Persigehl T, Mahler M, Bahner M, Ponder SL, Diekmann F, Bremer C, Moesta KT, Dye F (2011) Near-infrared imaging of the breast using omocianine as a fluorescent dye: results of a placebo-controlled, clinical, multicenter trial. Invest Radiol 46:697–704. doi:10.1097/RLI.0b013e318229ff25 Poellinger A, Persigehl T, Mahler M, Bahner M, Ponder SL, Diekmann F, Bremer C, Moesta KT, Dye F (2011) Near-infrared imaging of the breast using omocianine as a fluorescent dye: results of a placebo-controlled, clinical, multicenter trial. Invest Radiol 46:697–704. doi:10.​1097/​RLI.​0b013e318229ff25​
48.
Zurück zum Zitat Poellinger A, Burock S, Grosenick D, Hagen A, Lüdemann L, Diekmann F, Engelken F, Macdonald R, Rinneberg H, Schlag PM (2011) Breast cancer: early-and late-fluorescence near-infrared imaging with indocyanine green—a preliminary study. Radiology 258:409–416CrossRef Poellinger A, Burock S, Grosenick D, Hagen A, Lüdemann L, Diekmann F, Engelken F, Macdonald R, Rinneberg H, Schlag PM (2011) Breast cancer: early-and late-fluorescence near-infrared imaging with indocyanine green—a preliminary study. Radiology 258:409–416CrossRef
49.
Zurück zum Zitat Grosenick D, Hagen A, Steinkellner O, Poellinger A, Burock S, Schlag PM, Rinneberg H, Macdonald R (2011) A multichannel time-domain scanning fluorescence mammograph: performance assessment and first in vivo results. Rev Sci Instrum 82:024302. doi:10.1063/1.3543820 CrossRef Grosenick D, Hagen A, Steinkellner O, Poellinger A, Burock S, Schlag PM, Rinneberg H, Macdonald R (2011) A multichannel time-domain scanning fluorescence mammograph: performance assessment and first in vivo results. Rev Sci Instrum 82:024302. doi:10.​1063/​1.​3543820 CrossRef
50.
Zurück zum Zitat Yoneya S, Saito T, Komatsu Y, Koyama I, Takahashi K, Duvoll-Young J (1998) Binding properties of indocyanine green in human blood. Invest Ophthalmol Vis Sci 39:1286–1290 Yoneya S, Saito T, Komatsu Y, Koyama I, Takahashi K, Duvoll-Young J (1998) Binding properties of indocyanine green in human blood. Invest Ophthalmol Vis Sci 39:1286–1290
51.
Zurück zum Zitat Ntziachristos V, Yodh AG, Schnall M, Chance B (2000) Concurrent MRI and diffuse optical tomography of breast after indocyanine green enhancement. Proc Natl Acad Sci U S A 97:2767–2772. doi:10.1073/pnas.040570597 CrossRef Ntziachristos V, Yodh AG, Schnall M, Chance B (2000) Concurrent MRI and diffuse optical tomography of breast after indocyanine green enhancement. Proc Natl Acad Sci U S A 97:2767–2772. doi:10.​1073/​pnas.​040570597 CrossRef
52.
53.
Zurück zum Zitat Maeda H, Wu J, Sawa T, Matsumura Y, Hori K (2000) Tumor vascular permeability and the EPR effect in macromolecular therapeutics: a review. J Control Release 65:271–284CrossRef Maeda H, Wu J, Sawa T, Matsumura Y, Hori K (2000) Tumor vascular permeability and the EPR effect in macromolecular therapeutics: a review. J Control Release 65:271–284CrossRef
Metadaten
Titel
Photon Counting in Diffuse Optical Imaging
verfasst von
Dirk Grosenick
Copyright-Jahr
2015
DOI
https://doi.org/10.1007/4243_2014_74

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