In vivo skin optical clearing for improving imaging and light-induced therapy: a review
暂无分享,去创建一个
Tingting Yu | Jingtan Zhu | Dong-yu Li | Qing Xia | D. Zhu
[1] Hao He,et al. An optical system for noninvasive microscopy of psoriatic mice in vivo , 2022, Journal of biophotonics.
[2] J. Tao,et al. Skin optical clearing enabled by dissolving hyaluronic acid microneedle patches. , 2022, International journal of biological macromolecules.
[3] R. Poddar,et al. Enhanced visuali of tissue microstructures using swept-source optical coherence tomography and edible oil as optical clearing agent , 2022, Optik.
[4] I. G. Meerovich,et al. MR and fluorescence imaging of gadobutrol‐induced optical clearing of red fluorescent protein signal in an in vivo cancer model , 2022, NMR in biomedicine.
[5] E. Genina,et al. In vivo skin optical clearing in humans , 2021, Handbook of Tissue Optical Clearing.
[6] N. Khlebtsov,et al. Improving SERS bioimaging of subcutaneous phantom in vivo with optical clearing , 2021, Journal of biophotonics.
[7] Tingting Yu,et al. Transmissive-detected laser speckle contrast imaging for blood flow monitoring in thick tissue: from Monte Carlo simulation to experimental demonstration , 2021, Light, science & applications.
[8] Tingting Yu,et al. Optical angiography for diabetes-induced pathological changes in microvascular structure and function: An overview , 2021, Journal of Innovative Optical Health Sciences.
[9] Hao He,et al. Real-time vascular and IgA dynamics during Henoch–Schönlein purpura by in vivo fluorescent microscopy , 2021, Biomedical Optics Express.
[10] Chao Zhang,et al. Assessment of tissue‐specific changes in structure and function induced by in vivo skin/skull optical clearing techniques , 2021, Lasers in surgery and medicine.
[11] Chao Zhang,et al. Comparison of Cortical and Cutaneous Vascular Hemodynamic Changes in Hypoxia by Using in Vivo Skull and Skin Optical Clearing Techniques , 2021, IEEE Journal of Selected Topics in Quantum Electronics.
[12] V. Tuchin,et al. Enhanced Ultraviolet Spectroscopy by Optical Clearing for Biomedical Applications , 2021, IEEE Journal of Selected Topics in Quantum Electronics.
[13] V. Tuchin,et al. Ex-vivo confocal Raman microspectroscopy of porcine skin with 633/785-NM laser excitation and optical clearing with glycerol/water/DMSO solution , 2021 .
[14] Yanbing Zhao,et al. A versatile strategy for improving phototherapeutic efficacy on deep-sited tumor by tissue optical clearing technique , 2021 .
[15] V. Tuchin,et al. Tissue Optical Clearing in the Ultraviolet for Clinical Use in Dentistry to Optimize the Treatment of Chronic Recurrent Aphthous Stomatitis , 2020 .
[16] Buhong Li,et al. Rapid skin optical clearing enhancement with salicylic acid for imaging blood vessels in vivo. , 2020, Photodiagnosis and photodynamic therapy.
[17] W. Shaowei,et al. A miniaturized fluorescence imaging device for rapid early skin cancer detection , 2020 .
[18] V. Tuchin,et al. Optimal hyperosmotic agents for tissue immersion optical clearing in terahertz biophotonics , 2020, Journal of biophotonics.
[19] I. G. Meerovich,et al. Magnetic resonance contrast agents in optical clearing: Prospects for multimodal tissue imaging , 2020, Journal of biophotonics.
[20] J. Hawk. Safe, mild ultraviolet‐B exposure: An essential human requirement for vitamin D and other vital bodily parameter adequacy: A review , 2020, Photodermatology, photoimmunology & photomedicine.
[21] V. Bagnato,et al. Dual-Agent Photodynamic Therapy with Optical Clearing Eradicates Pigmented Melanoma in Preclinical Tumor Models , 2020, Cancers.
[22] V. Tuchin,et al. Optical clearing for photoacoustic lympho- and angiography beyond conventional depth limit in vivo , 2020, Photoacoustics.
[23] Bin Chen,et al. Improving imaging depth by dynamic laser speckle imaging and topical optical clearing for in vivo blood flow monitoring , 2020, Lasers in Medical Science.
[24] Jianzhou Ye,et al. NB‐UVB irradiation attenuates inflammatory response in psoriasis , 2020, Dermatologic therapy.
[25] Valery V Tuchin,et al. Integrated effects of fractional laser microablation and sonophoresis on skin immersion optical clearing in vivo , 2020, Journal of biophotonics.
[26] Alexey N Bashkatov,et al. Rapid Ultrasound Optical Clearing of Human Light and Dark Skin , 2020, IEEE Transactions on Medical Imaging.
[27] Defu Chen,et al. Penetration-enhanced optical coherence tomography angiography with optical clearing agent for clinical evaluation of human skin. , 2020, Photodiagnosis and photodynamic therapy.
[28] 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.
[29] Luís M. Oliveira,et al. Moving tissue spectral window to the deep‐ultraviolet via optical clearing , 2019, Journal of biophotonics.
[30] L. Kemény,et al. Advances in phototherapy for psoriasis and atopic dermatitis , 2019, Expert review of clinical immunology.
[31] Tingting Yu,et al. Comparison of cerebral and cutaneous microvascular dysfunction with the development of type 1 diabetes , 2019, Theranostics.
[32] Dan Zhu,et al. Quantitative evaluation of skin disorders in type 1 diabetic mice by in vivo optical imaging. , 2019, Biomedical optics express.
[33] Bin Chen,et al. In Vivo Experimental Study on the Enhancement of Optical Clearing Effect by Laser Irradiation in Conjunction with a Chemical Penetration Enhancer , 2019, Applied Sciences.
[34] Dan Zhu,et al. Visualization of skin microvascular dysfunction of type 1 diabetic mice using in vivo skin optical clearing method , 2018, Journal of biomedical optics.
[35] Zhihong Zhang,et al. In vivo imaging the motility of monocyte/macrophage during inflammation in diabetic mice , 2018, Journal of biophotonics.
[36] Bin Chen,et al. Glucose in Conjunction with Multiple Laser Pulses on Laser Treatment of Port-wine Stain: An in vivo Study. , 2018, Lasers in medical science.
[37] V. Tuchin,et al. A comparative study of ex vivo skin optical clearing using two‐photon microscopy , 2017, Journal of biophotonics.
[38] Dan Zhu,et al. A useful way to develop effective in vivo skin optical clearing agents , 2017, Journal of biophotonics.
[39] Zhihong Zhang,et al. FSOCA‐induced switchable footpad skin optical clearing window for blood flow and cell imaging in vivo , 2017, Journal of biophotonics.
[40] Y. Mao,et al. Noninvasively Imaging Subcutaneous Tumor Xenograft by a Handheld Raman Detector, with the Assistance of an Optical Clearing Agent. , 2017, ACS applied materials & interfaces.
[41] Valery V. Tuchin,et al. Study of glycerol diffusion in skin and myocardium ex vivo under the conditions of developing alloxan-induced diabetes , 2017 .
[42] Valery V. Tuchin,et al. Collaborative effects of wavefront shaping and optical clearing agent in optical coherence tomography , 2016, Journal of biomedical optics.
[43] Ke Yang,et al. Biomedical Applications of Terahertz Spectroscopy and Imaging. , 2016, Trends in biotechnology.
[44] James McGrath,et al. Enhanced in vivo visualization of the microcirculation by topical application of fructose solution confirmed with correlation mapping optical coherence tomography , 2016, Journal of biomedical optics.
[45] Rui Shi,et al. Skin optical clearing potential of disaccharides , 2016, Journal of biomedical optics.
[46] Cristina Kurachi,et al. Optical clearing of melanoma in vivo: characterization by diffuse reflectance spectroscopy and optical coherence tomography , 2016, Journal of biomedical optics.
[47] 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.
[48] A. Chacon,et al. Lasers for nevi: a review , 2015, Lasers in Medical Science.
[49] M. Roustit,et al. Skin microvascular endothelial function as a biomarker in cardiovascular diseases? , 2015, Pharmacological reports : PR.
[50] Dan Zhu,et al. Quantitative evaluation of enhanced laser tattoo removal by skin optical clearing , 2015 .
[51] Qingming Luo,et al. Ex vivo optical measurements of glucose diffusion kinetics in native and diabetic mouse skin , 2015, Journal of biophotonics.
[52] Dan Zhu,et al. Molecular effective coverage surface area of optical clearing agents for predicting optical clearing potential , 2015, Photonics West - Biomedical Optics.
[53] Zhigang Zhan,et al. Assessment of laser-induced acceleration effects in optical clearing of in vivo human skin by optical coherence tomography , 2015 .
[54] Bernard Choi,et al. Spatial versus temporal laser speckle contrast analyses in the presence of static optical scatterers , 2014, Journal of biomedical optics.
[55] Valery V. Tuchin,et al. THz monitoring of the dehydration of biological tissues affected by hyperosmotic agents , 2014 .
[56] Guillermo Aguilar,et al. Optical clearing agent perfusion enhancement via combination of microneedle poration, heating and pneumatic pressure , 2014, Lasers in surgery and medicine.
[57] Jing Wang,et al. Sugar-Induced Skin Optical Clearing: From Molecular Dynamics Simulation to Experimental Demonstration , 2014, IEEE Journal of Selected Topics in Quantum Electronics.
[58] Jürgen Lademann,et al. In vivo enhancement of imaging depth for optical coherence tomography by eudermic agents on ridged and meshed human skin , 2014 .
[59] Mustafa Sarimollaoglu,et al. Optical clearing in photoacoustic flow cytometry. , 2013, Biomedical optics express.
[60] Qingming Luo,et al. Signal and depth enhancement for in vivo flow cytometer measurement of ear skin by optical clearing agents. , 2013, Biomedical optics express.
[61] Qingming Luo,et al. Optical clearing agents improve photoacoustic imaging in the optical diffusive regime. , 2013, Optics letters.
[62] Valery V Tuchin,et al. Optical coherence tomography monitoring of enhanced skin optical clearing in rats in vivo , 2013, Journal of biomedical optics.
[63] Kun Chen,et al. Study on reflection of human skin with liquid paraffin as the penetration enhancer by spectroscopy , 2013, Journal of biomedical optics.
[64] Joo-Hiuk Son,et al. Measurement depth enhancement in terahertz imaging of biological tissues. , 2013, Optics express.
[65] Zhuo Li,et al. Sensitive and high resolution subcutaneous fluorescence in vivo imaging using upconversion nanoparticles and microarrays. , 2013, The Analyst.
[66] Dan Zhu,et al. Ear skin optical clearing for improving blood flow imaging/Optisches Clearing der Ohrhaut zur verbesserten Bildgebung des Blutflusses , 2013 .
[67] Hao Shan,et al. Study on application of optical clearing technique in skin diseases , 2012, Journal of biomedical optics.
[68] Guillermo Aguilar,et al. An overview of clinical and experimental treatment modalities for port wine stains. , 2012, Journal of the American Academy of Dermatology.
[69] Dan Zhu,et al. Enhanced optical clearing of skin in vivo and optical coherence tomography in-depth imaging. , 2012, Journal of biomedical optics.
[70] B. Majaron,et al. Photocoagulation of dermal blood vessels with multiple laser pulses in an in vivo microvascular model , 2012, Lasers in surgery and medicine.
[71] Gino R. Schweinsberger,et al. Noninvasive laser coagulation of the human vas deferens: Optical and thermal simulations , 2011, Lasers in surgery and medicine.
[72] M. Landthaler,et al. Laser and IPL treatment of port-wine stains: therapy options, limitations, and practical aspects , 2011, Lasers in Medical Science.
[73] Christopher M. Cilip,et al. Application of an optical clearing agent during noninvasive laser coagulation of the canine vas deferens. , 2010, Journal of biomedical optics.
[74] Qingming Luo,et al. Imaging dermal blood flow through the intact rat skin with an optical clearing method. , 2010, Journal of biomedical optics.
[75] Dan Zhu,et al. In vivo skin optical clearing by glycerol solutions: mechanism , 2009, Journal of biophotonics.
[76] Valery V Tuchin,et al. Optical clearing of human skin: comparative study of permeability and dehydration of intact and photothermally perforated skin. , 2008, Journal of biomedical optics.
[77] Dan Zhu,et al. Influence of alcohols on the optical clearing effect of skin in vitro. , 2008, Journal of biomedical optics.
[78] Bernard Choi,et al. Correlation between collagen solubility and skin optical clearing using sugars , 2007, Lasers in surgery and medicine.
[79] Bernard Choi,et al. Collagen solubility correlates with skin optical clearing. , 2006, Journal of biomedical optics.
[80] A J Welch,et al. Using sandpaper for noninvasive transepidermal optical skin clearing agent delivery. , 2006, Journal of biomedical optics.
[81] Valery V. Tuchin,et al. Optical clearing of tissues and blood using the immersion method , 2005 .
[82] Sandy S Tsao,et al. Long-pulsed neodymium:yttrium-aluminum-garnet laser treatment for port-wine stains. , 2005, Journal of the American Academy of Dermatology.
[83] Bernard Choi,et al. Determination of chemical agent optical clearing potential using in vitro human skin , 2005, Lasers in surgery and medicine.
[84] Qingming Luo,et al. Skin backreflectance and microvascular system functioning at the action of osmotic agents , 2003 .
[85] A J Welch,et al. Use of osmotically active agents to alter optical properties of tissue: Effects on the detected fluorescence signal measured through skin , 2001, Lasers in surgery and medicine.
[86] A. Dunn,et al. Light scattering from cells: finite-difference time-domain simulations and goniometric measurements. , 1999, Applied optics.
[87] S. Leikin,et al. Sugars and polyols inhibit fibrillogenesis of type I collagen by disrupting hydrogen-bonded water bridges between the helices. , 1998, Biochemistry.
[88] V V Tuchin,et al. Light propagation in tissues with controlled optical properties , 1996, European Conference on Biomedical Optics.
[89] E. Selifonova,et al. Effect of e-Liquid on the Optical Properties of the Gingival Mucosa: Ex Vivo Studies , 2023, IEEE Journal of Selected Topics in Quantum Electronics.
[90] Genin V. D.,et al. Influence of immersion agents on optical parameters of bio-tissues during laser photothermal therapy of tumor: pilot study , 2022, Optics and Spectroscopy.
[91] Bin Chen,et al. Multiple laser pulses in conjunction with an optical clearing agent to improve the curative effect of cutaneous vascular lesions , 2018, Lasers in Medical Science.
[92] A. Sergeant. Skin structure and function , 2011 .
[93] G. Allen. Diabetes mellitus and the skin. , 1969, The Practitioner.