Biomedical Applications of Tissue Clearing and Three-Dimensional Imaging in Health and Disease
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Jorge Ripoll | Manuel Desco | Maria Victoria Gómez-Gaviro | Daniel Sanderson | J. Ripoll | M. Desco | Daniel Sanderson | M. Gómez-Gaviro
[1] Cheuk Y. Tang,et al. Mapping of Brain Activity by Automated Volume Analysis of Immediate Early Genes , 2016, Cell.
[2] Y. Matsumoto,et al. Cellular cartography of the organ of Corti based on optical tissue clearing and machine learning , 2019, eLife.
[3] Ralph Weissleder,et al. Heterogeneity of macrophage infiltration and therapeutic response in lung carcinoma revealed by 3D organ imaging , 2017, Nature Communications.
[4] Muhammad Imran Afzal,et al. Light sheet microscopy for histopathology applications , 2019, Biomedical Engineering Letters.
[5] Elly M. Tanaka,et al. Broad applicability of a streamlined ethyl cinnamate-based clearing procedure , 2018, Development.
[6] Wutian Wu,et al. Author Correction: Next generation histology methods for three-dimensional imaging of fresh and archival human brain tissues , 2018, Nature Communications.
[7] Ludovico Silvestri,et al. In-vivo and ex-vivo optical clearing methods for biological tissues: review. , 2019, Biomedical optics express.
[8] Atsushi Miyawaki,et al. Scale: a chemical approach for fluorescence imaging and reconstruction of transparent mouse brain , 2011, Nature Neuroscience.
[9] L. Decroix,et al. Tissue clearing for confocal imaging of native and bio-artificial skeletal muscle , 2015, Biotechnic & histochemistry : official publication of the Biological Stain Commission.
[10] Seok Hyun Yun,et al. Brillouin microscopy: assessing ocular tissue biomechanics , 2018, Current opinion in ophthalmology.
[11] A. Houtsmuller,et al. Three‐dimensional microscopic analysis of clinical prostate specimens , 2016, Histopathology.
[12] F. Del Bene,et al. Optical Sectioning Deep Inside Live Embryos by Selective Plane Illumination Microscopy , 2004, Science.
[13] Shigeru Kawakami,et al. Three-Dimensional Imaging of the Intracellular Fate of Plasmid DNA and Transgene Expression: ZsGreen1 and Tissue Clearing Method CUBIC Are an Optimal Combination for Multicolor Deep Imaging in Murine Tissues , 2016, PloS one.
[14] Qingming Luo,et al. Influence of glycerol with different concentrations on skin optical clearing and morphological changes in vivo , 2008, Photonics and Optoelectronics Meetings.
[15] Leszek Kaczmarek,et al. Advances in Ex Situ Tissue Optical Clearing , 2019, Laser & Photonics Reviews.
[16] Bernard Choi,et al. Optical Histology: A Method to Visualize Microvasculature in Thick Tissue Sections of Mouse Brain , 2013, PloS one.
[17] Pablo Ariel,et al. A beginner's guide to tissue clearing. , 2017, The international journal of biochemistry & cell biology.
[18] Fritjof Helmchen,et al. iDISCO+ for the Study of Neuroimmune Architecture of the Rat Auditory Brainstem , 2019, Front. Neuroanat..
[19] Pieter Wesseling,et al. Optical clearing and fluorescence deep-tissue imaging for 3D quantitative analysis of the brain tumor microenvironment , 2017, Angiogenesis.
[20] Haruo Kasai,et al. Chemical Landscape for Tissue Clearing Based on Hydrophilic Reagents. , 2018, Cell reports.
[21] Hiroshi Kawasaki,et al. Three-dimensional evaluation of murine ovarian follicles using a modified CUBIC tissue clearing method , 2018, Reproductive Biology and Endocrinology.
[22] Elina A. Genina,et al. In vivo investigation of the immersion-liquid-induced human skin clearing dynamics , 2001 .
[23] Bernard Choi,et al. Optical clearing of in vivo human skin: Implications for light‐based diagnostic imaging and therapeutics , 2004, Lasers in surgery and medicine.
[24] Kareem Elsayad,et al. Mapping the subcellular mechanical properties of live cells in tissues with fluorescence emission–Brillouin imaging , 2016, Science Signaling.
[25] Li Tang,et al. UbasM: An effective balanced optical clearing method for intact biomedical imaging , 2017, Scientific Reports.
[26] Jungyoon Choi,et al. Optimizing tissue-clearing conditions based on analysis of the critical factors affecting tissue-clearing procedures , 2018, Scientific Reports.
[27] Tonny Lagerweij,et al. Three-dimensional histochemistry and imaging of human gingiva , 2018, Scientific Reports.
[28] N. Plesnila,et al. Shrinkage-mediated imaging of entire organs and organisms using uDISCO , 2016, Nature Methods.
[29] Milan Sonka,et al. 3D Slicer as an image computing platform for the Quantitative Imaging Network. , 2012, Magnetic resonance imaging.
[30] Carolina L Haass-Koffler,et al. An analytical tool that quantifies cellular morphology changes from three-dimensional fluorescence images. , 2012, Journal of visualized experiments : JoVE.
[31] A. Schierloh,et al. Ultramicroscopy: three-dimensional visualization of neuronal networks in the whole mouse brain , 2007, Nature Methods.
[32] Jiří Janáček,et al. Comparison of different tissue clearing methods and 3D imaging techniques for visualization of GFP-expressing mouse embryos and embryonic hearts , 2016, Histochemistry and Cell Biology.
[33] Anna Letizia Allegra Mascaro,et al. A versatile clearing agent for multi-modal brain imaging , 2015, Scientific Reports.
[34] Stefan Wilhelm,et al. Exploring Passive Clearing for 3D Optical Imaging of Nanoparticles in Intact Tissues. , 2017, Bioconjugate chemistry.
[35] Wei Min,et al. Volumetric chemical imaging by clearing-enhanced stimulated Raman scattering microscopy , 2019, Proceedings of the National Academy of Sciences.
[36] Dan Zhu,et al. A simple optical clearing method for tissue block , 2015, 2015 Opto-Electronics and Communications Conference (OECC).
[37] Tonny Lagerweij,et al. A survey of clearing techniques for 3D imaging of tissues with special reference to connective tissue. , 2016, Progress in histochemistry and cytochemistry.
[38] C. Terracciano,et al. Free-of-Acrylamide SDS-based Tissue Clearing (FASTClear) for three dimensional visualization of myocardial tissue , 2017, Scientific Reports.
[39] Hans-Ulrich Dodt,et al. Whole-Brain Profiling of Cells and Circuits in Mammals by Tissue Clearing and Light-Sheet Microscopy , 2020, Neuron.
[40] Hiroki R Ueda,et al. Whole-body and Whole-Organ Clearing and Imaging Techniques with Single-Cell Resolution: Toward Organism-Level Systems Biology in Mammals. , 2016, Cell chemical biology.
[41] Dan Zhu,et al. Skull optical clearing window for in vivo imaging of the mouse cortex at synaptic resolution , 2017, Light: Science & Applications.
[42] Yu Jin Jang,et al. ACT-PRESTO: Rapid and consistent tissue clearing and labeling method for 3-dimensional (3D) imaging , 2016, Scientific Reports.
[43] J. Donaldson,et al. Immunofluorescence Staining , 1998, Current protocols in cell biology.
[44] Paweł Matryba,et al. Whole-body clearing, staining and screening of calcium deposits in the mdx mouse model of Duchenne muscular dystrophy , 2018, Skeletal Muscle.
[45] J. Hecksher-Sørensen,et al. Optical Projection Tomography as a Tool for 3D Microscopy and Gene Expression Studies , 2002, Science.
[46] Valery V Tuchin,et al. Optimized skin optical clearing for optical coherence tomography monitoring of encapsulated drug delivery through the hair follicles , 2020, Journal of biophotonics.
[47] Andreas Beilhack,et al. Mapping immune processes in intact tissues at cellular resolution. , 2012, The Journal of clinical investigation.
[48] Seung-Mo Hong,et al. A "Clearer" View of Pancreatic Pathology: A Review of Tissue Clearing and Advanced Microscopy Techniques. , 2019, Advances in anatomic pathology.
[49] Meng-Tsen Ke,et al. Super-Resolution Mapping of Neuronal Circuitry With an Index-Optimized Clearing Agent. , 2016, Cell reports.
[50] Joshua T. Vogelstein,et al. An optimized protocol for iDISCO+ rat brain clearing, imaging, and analysis , 2019, bioRxiv.
[51] Qingming Luo,et al. FDISCO: Advanced solvent-based clearing method for imaging whole organs , 2019, Science Advances.
[52] Markus Rempfler,et al. Panoptic imaging of transparent mice reveals whole-body neuronal projections and skull-meninges connections , 2018, Nature Neuroscience.
[53] Kwanghun Chung,et al. Whole-Brain Analysis of Cells and Circuits by Tissue Clearing and Light-Sheet Microscopy , 2018, The Journal of Neuroscience.
[54] Markus Reischl,et al. A Novel Optical Tissue Clearing Protocol for Mouse Skeletal Muscle to Visualize Endplates in Their Tissue Context , 2019, Front. Cell. Neurosci..
[55] Jorge Ripoll,et al. Optimized CUBIC protocol for three-dimensional imaging of chicken embryos at single-cell resolution , 2017, Development.
[56] Vladimir P Zharov,et al. Photoacoustic flow cytometry. , 2012, Methods.
[57] Jeff W. Lichtman,et al. Clarifying Tissue Clearing , 2015, Cell.
[58] Dan Zhu,et al. Evaluation of seven optical clearing methods in mouse brain , 2018, Neurophotonics.
[59] Valery V. Tuchin,et al. Optical clearing of biological tissues: prospects of application in medical diagnostics and phototherapy , 2015 .
[60] Susumu Mori,et al. The role of myelination in measures of white matter integrity: Combination of diffusion tensor imaging and two-photon microscopy of CLARITY intact brains , 2017, NeuroImage.
[61] Jan Huisken,et al. Selective plane illumination microscopy techniques in developmental biology , 2009, Development.
[62] Yoshimi Anzai,et al. Enhancing Value of MRI: A Call for Action , 2018, Journal of magnetic resonance imaging : JMRI.
[63] Rajan P Kulkarni,et al. Single-Cell Phenotyping within Transparent Intact Tissue through Whole-Body Clearing , 2014, Cell.
[64] Martin K. Schwarz,et al. Fluorescent-Protein Stabilization and High-Resolution Imaging of Cleared, Intact Mouse Brains , 2015, PloS one.
[65] Ronald N. Germain,et al. Multiplex, quantitative cellular analysis in large tissue volumes with clearing-enhanced 3D microscopy (Ce3D) , 2017, Proceedings of the National Academy of Sciences.
[66] Alard Roebroeck,et al. Scalable cytoarchitectonic characterization of large intact human neocortex samples , 2018, bioRxiv.
[67] R. Weiler,et al. Chemical Clearing and Dehydration of GFP Expressing Mouse Brains , 2012, PloS one.
[68] Quan Yuan,et al. Tissue clearing of both hard and soft tissue organs with the PEGASOS method , 2018, Cell Research.
[69] Yoshiyuki Henning,et al. EyeCi: Optical clearing and imaging of immunolabeled mouse eyes using light‐sheet fluorescence microscopy , 2019, Experimental eye research.
[70] Michael Dobosz,et al. Deep tissue imaging: a review from a preclinical cancer research perspective , 2016, Histochemistry and Cell Biology.
[71] D. Leroith,et al. Skeletal muscle. , 2005, Advances in experimental medicine and biology.
[72] Adam Boretsky,et al. Dermal scatter reduction in human skin: A method using controlled application of glycerol , 2009, Lasers in surgery and medicine.
[73] Giuseppe Antonacci,et al. Biomechanics of subcellular structures by non-invasive Brillouin microscopy , 2016, Scientific Reports.
[74] Qingming Luo,et al. MACS: Rapid Aqueous Clearing System for 3D Mapping of Intact Organs , 2020, Advanced science.
[75] Jie Tian,et al. Helical optical projection tomography. , 2013, Optics express.
[76] Andrey A. Bednov,et al. Optical tissue clearing in combination with perfusion and immunofluorescence for placental vascular imaging , 2018, Medicine.
[77] Shuangchen Ruan,et al. UbasM: a simple, rapid, efficient balanced optical clearing method for brain imaging , 2018, BiOS.
[78] Aaron S. Andalman,et al. Structural and molecular interrogation of intact biological systems , 2013, Nature.
[79] Kwanghun Chung,et al. Simultaneous protection of tissue physicochemical properties using polyfunctional crosslinkers , 2018, Nature Biotechnology.
[80] Johannes E. Schindelin,et al. Fiji: an open-source platform for biological-image analysis , 2012, Nature Methods.
[81] Jorge Ripoll,et al. Looking inside the heart: a see-through view of the vascular tree. , 2017, Biomedical optics express.
[82] James Sharpe,et al. pMHC affinity controls duration of CD8+ T cell–DC interactions and imprints timing of effector differentiation versus expansion , 2016, The Journal of experimental medicine.
[83] Jeff W. Lichtman,et al. SnapShot: Tissue Clearing , 2017, Cell.
[84] Atsushi Miyawaki,et al. ScaleS: an optical clearing palette for biological imaging , 2015, Nature Neuroscience.
[85] Pankaj J. Pasricha,et al. PanIN-associated pericyte, glial, and islet remodeling in mice revealed by 3D pancreatic duct lesion histology. , 2016, American journal of physiology. Gastrointestinal and liver physiology.
[86] Valery V Tuchin,et al. Tissue optical immersion clearing , 2010, Expert review of medical devices.
[87] Ali Ertürk,et al. Imaging Cleared Intact Biological Systems at a Cellular Level by 3DISCO , 2014, Journal of visualized experiments : JoVE.
[88] Viviana Gradinaru,et al. Bone CLARITY: Clearing, imaging, and computational analysis of osteoprogenitors within intact bone marrow , 2017, Science Translational Medicine.
[89] Dustin G. Roberts,et al. Optical Clearing of the Mouse Central Nervous System Using Passive CLARITY. , 2016, Journal of visualized experiments : JoVE.
[90] Meng-Tsen Ke,et al. Optical Clearing of Fixed Brain Samples Using SeeDB , 2014, Current protocols in neuroscience.
[91] Gerhard Sommer,et al. Microstructure and mechanics of healthy and aneurysmatic abdominal aortas: experimental analysis and modelling , 2016, Journal of The Royal Society Interface.
[92] Cristina Kurachi,et al. Optical clearing of melanoma in vivo: characterization by diffuse reflectance spectroscopy and optical coherence tomography , 2016, Journal of biomedical optics.
[93] Marc Spehr,et al. Novel 3D analysis using optical tissue clearing documents the evolution of murine rapidly progressive glomerulonephritis. , 2019, Kidney international.
[94] Hiroshi Onodera,et al. Transparency‐enhancing technology allows three‐dimensional assessment of gastrointestinal mucosa: A porcine model , 2018, Pathology international.
[95] Georgios C. Antonopoulos,et al. A combined method for correlative 3D imaging of biological samples from macro to nano scale , 2016, Scientific Reports.
[96] Stefan H. Oehlers,et al. CLARITY and PACT-based imaging of adult zebrafish and mouse for whole-animal analysis of infections , 2015, Disease Models & Mechanisms.
[97] Qingming Luo,et al. Spatial Distribution of Motor Endplates and its Adaptive Change in Skeletal Muscle , 2019, Theranostics.
[98] Valery V. Tuchin,et al. Kinetics of Rat Skin Optical Clearing at Topical Application of 40%Glucose: Ex Vivo and In Vivo Studies , 2019, IEEE Journal of Selected Topics in Quantum Electronics.
[99] Dan Zhu,et al. Optical coherence tomography angiography offers comprehensive evaluation of skin optical clearing in vivo by quantifying optical properties and blood flow imaging simultaneously , 2016, Journal of biomedical optics.
[100] Eunjoo Song,et al. Optical clearing based cellular-level 3D visualization of intact lymph node cortex. , 2015, Biomedical optics express.
[101] Dan Zhu,et al. RTF: a rapid and versatile tissue optical clearing method , 2018, Scientific Reports.
[102] Manuel Desco,et al. Impact of optical tissue clearing on the Brillouin signal from biological tissue samples. , 2019, Biomedical optics express.
[103] Hans-Ulrich Dodt,et al. Formalin-Induced Fluorescence Reveals Cell Shape and Morphology in Biological Tissue Samples , 2010, PloS one.
[104] Dan Zhu,et al. A useful way to develop effective in vivo skin optical clearing agents , 2017, Journal of biophotonics.
[105] Tingting Yu,et al. Optimization of GFP Fluorescence Preservation by a Modified uDISCO Clearing Protocol , 2018, Front. Neuroanat..
[106] Natesh Parashurama,et al. Engineering molecular imaging strategies for regenerative medicine , 2018, Bioengineering & translational medicine.
[107] Yi Feng,et al. Fast free-of-acrylamide clearing tissue (FACT)—an optimized new protocol for rapid, high-resolution imaging of three-dimensional brain tissue , 2017, Scientific Reports.
[108] Richard Torres,et al. Multiphoton microscopy with clearing for three dimensional histology of kidney biopsies. , 2016, Biomedical optics express.
[109] Gang Chen,et al. Role of Autophagy in Early Brain Injury after Experimental Subarachnoid Hemorrhage , 2011, Journal of Molecular Neuroscience.
[110] Kohei Miyazono,et al. Whole-Body Profiling of Cancer Metastasis with Single-Cell Resolution. , 2017, Cell reports.
[111] Kevin J. Otto,et al. High Resolution 3D Imaging of the Human Pancreas Neuro-insular Network , 2018, Journal of visualized experiments : JoVE.
[112] Hans-Ulrich Dodt,et al. A versatile depigmentation, clearing, and labeling method for exploring nervous system diversity , 2020, Science Advances.
[113] E. Susaki,et al. Whole-Brain Imaging with Single-Cell Resolution Using Chemical Cocktails and Computational Analysis , 2014, Cell.
[114] Karel Fliegel,et al. SIMToolbox: a MATLAB toolbox for structured illumination fluorescence microscopy , 2015, Bioinform..
[115] W. Guido,et al. ClearT: a detergent- and solvent-free clearing method for neuronal and non-neuronal tissue , 2013, Development.
[116] Mortazavi,et al. Supporting Online Material Materials and Methods Figs. S1 to S13 Tables S1 to S3 References Label-free Biomedical Imaging with High Sensitivity by Stimulated Raman Scattering Microscopy , 2022 .
[117] Massoud Motamedi,et al. Imaging of Murine Whole Lung Fibrosis by Large Scale 3D Microscopy aided by Tissue Optical Clearing , 2018, Scientific Reports.
[118] Valery V Tuchin,et al. Measurement of tissue optical properties in the context of tissue optical clearing , 2018, Journal of biomedical optics.
[119] Valery V Tuchin,et al. Integrated effects of fractional laser microablation and sonophoresis on skin immersion optical clearing in vivo , 2020, Journal of biophotonics.
[120] Jing Zhang,et al. Imaging transparent intact cardiac tissue with single-cell resolution. , 2018, Biomedical optics express.
[121] Jie Tian,et al. Vertically scanned laser sheet microscopy , 2014, Journal of biomedical optics.
[122] Chihiro Yokoyama,et al. Versatile whole-organ/body staining and imaging based on electrolyte-gel properties of biological tissues , 2020, Nature Communications.
[123] Jens V. Stein,et al. Light sheet fluorescence microscopy for in situ cell interaction analysis in mouse lymph nodes. , 2016, Journal of immunological methods.
[124] Anna Medyukhina,et al. Fully Automated Evaluation of Total Glomerular Number and Capillary Tuft Size in Nephritic Kidneys Using Lightsheet Microscopy. , 2017, Journal of the American Society of Nephrology : JASN.
[125] Pieter Cornillie,et al. The fate of the vitelline and umbilical veins during the development of the human liver , 2017, Journal of anatomy.
[126] Charless C. Fowlkes,et al. Whole-body tissue stabilization and selective extractions via tissue-hydrogel hybrids for high-resolution intact circuit mapping and phenotyping , 2015, Nature Protocols.
[127] J. Huisken,et al. A guide to light-sheet fluorescence microscopy for multiscale imaging , 2017, Nature Methods.
[128] Jorge Ripoll,et al. 3D imaging in CUBIC-cleared mouse heart tissue: going deeper. , 2016, Biomedical optics express.
[129] Marc Tessier-Lavigne,et al. Three-Dimensional Adipose Tissue Imaging Reveals Regional Variation in Beige Fat Biogenesis and PRDM16-Dependent Sympathetic Neurite Density. , 2018, Cell metabolism.
[130] Huajiang Wei,et al. In vitro study of ultrasound and different-concentration glycerol-induced changes in human skin optical attenuation assessed with optical coherence tomography. , 2010, Journal of biomedical optics.
[131] Jongbum Seo,et al. A physical method to enhance transdermal delivery of a tissue optical clearing agent: Combination of microneedling and sonophoresis , 2010, Lasers in surgery and medicine.
[132] A. Fryer,et al. Tissue optical clearing, three-dimensional imaging, and computer morphometry in whole mouse lungs and human airways. , 2014, American journal of respiratory cell and molecular biology.
[133] Takeshi Imai,et al. SeeDB: a simple and morphology-preserving optical clearing agent for neuronal circuit reconstruction , 2013, Nature Neuroscience.
[134] N. Renier,et al. iDISCO: A Simple, Rapid Method to Immunolabel Large Tissue Samples for Volume Imaging , 2014, Cell.
[135] A. I.,et al. Neural Field Continuum Limits and the Structure–Function Partitioning of Cognitive–Emotional Brain Networks , 2023, Biology.
[136] Hiroshi Sekiya,et al. A three-dimensional single-cell-resolution whole-brain atlas using CUBIC-X expansion microscopy and tissue clearing , 2018, Nature Neuroscience.
[137] Turgay Saritas,et al. Optical Clearing in the Kidney Reveals Potassium-Mediated Tubule Remodeling , 2018, Cell reports.
[138] Yuji Ikegaya,et al. Quick visualization of neurons in brain tissues using an optical clearing technique , 2019, Anatomical Science International.
[139] Yichen Ding,et al. Simplified three-dimensional tissue clearing and incorporation of colorimetric phenotyping , 2016, Scientific Reports.
[140] Hans-Ulrich Dodt,et al. High-resolution ultramicroscopy of the developing and adult nervous system in optically cleared Drosophila melanogaster , 2018, Nature Communications.
[141] Taiji Adachi,et al. Procedures for the Quantification of Whole-Tissue Immunofluorescence Images Obtained at Single-Cell Resolution during Murine Tubular Organ Development , 2015, PloS one.
[142] Nico Scherf,et al. Developing 3D microscopy with CLARITY on human brain tissue: Towards a tool for informing and validating MRI-based histology , 2017, NeuroImage.
[143] Mathias Pasche,et al. Imaging the mammary gland and mammary tumours in 3D: optical tissue clearing and immunofluorescence methods , 2016, Breast Cancer Research.
[144] Ye Chen-Izu,et al. Cellular cartography. , 2010, Biophysical journal.
[145] R. Ewing,et al. The Fate of , 2007 .
[146] Mario Sznaier,et al. A computer vision approach to rare cell in vivo fluorescence flow cytometry , 2013, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[147] Elisabete C Costa,et al. Optical clearing methods: An overview of the techniques used for the imaging of 3D spheroids , 2019, Biotechnology and bioengineering.
[148] Dan Zhu,et al. In vivo skin optical clearing by glycerol solutions: mechanism , 2009, Journal of biophotonics.
[149] Guillermo Aguilar,et al. Optical clearing agent perfusion enhancement via combination of microneedle poration, heating and pneumatic pressure , 2014, Lasers in surgery and medicine.
[150] Kwanghun Chung,et al. Simple, Scalable Proteomic Imaging for High-Dimensional Profiling of Intact Systems , 2015, Cell.
[151] A. Bergua,et al. Optical clearing of the eye using the See Deep Brain technique , 2017, Eye.
[152] Sean J. Miller,et al. Astroglia in Thick Tissue with Super Resolution and Cellular Reconstruction , 2016, PloS one.
[153] Shanhui Fan,et al. Synergistic efficacy of salicylic acid with a penetration enhancer on human skin monitored by OCT and diffuse reflectance spectroscopy , 2016, Scientific reports.
[154] Atsushi Asakura,et al. Skeletal Muscle Tissue Clearing for LacZ and Fluorescent Reporters, and Immunofluorescence Staining. , 2016, Methods in molecular biology.
[155] Warren R. Zipfel,et al. Comparison of objective lenses for multiphoton microscopy in turbid samples. , 2015, Biomedical optics express.
[156] Mustafa Sarimollaoglu,et al. Optical clearing in photoacoustic flow cytometry. , 2013, Biomedical optics express.
[157] Lidia Zueva,et al. Tissue Transparency In Vivo , 2019, Molecules.
[158] Weizhe Li,et al. High-dimensional cell-level analysis of tissues with Ce3D multiplex volume imaging , 2019, Nature Protocols.
[159] Tianzi Jiang,et al. Scalable and DiI-compatible optical clearance of the mammalian brain , 2015, Front. Neuroanat..
[160] Hans-Ulrich Dodt,et al. High‐resolution imaging of fluorescent whole mouse brains using stabilised organic media (sDISCO) , 2019, Journal of biophotonics.
[161] Alexey N Bashkatov,et al. Rapid Ultrasound Optical Clearing of Human Light and Dark Skin , 2020, IEEE Transactions on Medical Imaging.