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Thorlabs nir laser irradiation
Nir Laser Irradiation, supplied by Thorlabs, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/nir laser irradiation/product/Thorlabs
Average 90 stars, based on 1 article reviews
nir laser irradiation - by Bioz Stars, 2026-04
90/100 stars

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a Photograph showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (arrow) during <t>NIR</t> laser <t>irradiation.</t> b Photothermal image showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (cursor) during NIR laser irradiation. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent
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a Photograph showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (arrow) during <t>NIR</t> laser <t>irradiation.</t> b Photothermal image showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (cursor) during NIR laser irradiation. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent
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a Photograph showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (arrow) during <t>NIR</t> laser <t>irradiation.</t> b Photothermal image showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (cursor) during NIR laser irradiation. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent
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a Photograph showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (arrow) during <t>NIR</t> laser <t>irradiation.</t> b Photothermal image showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (cursor) during NIR laser irradiation. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent
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Photothermal performance of nanocomposites. ( A ) Temperature curve and ( B ) IR thermal images of MS-rGO-FA and ICG@MS-rGO-FA (0.5 mg/mL) nanocomposites exposed to an 808 nm <t>NIR</t> laser (1.0 W/cm 2 ). ( C ) Photostability of ICG@MS-rGO-FA nanocomposites after three ON/OFF cycles of an 808 nm NIR laser <t>irradiation</t> (1.0 W/cm 2 , 10 min).
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Photothermal performance of nanocomposites. ( A ) Temperature curve and ( B ) IR thermal images of MS-rGO-FA and ICG@MS-rGO-FA (0.5 mg/mL) nanocomposites exposed to an 808 nm <t>NIR</t> laser (1.0 W/cm 2 ). ( C ) Photostability of ICG@MS-rGO-FA nanocomposites after three ON/OFF cycles of an 808 nm NIR laser <t>irradiation</t> (1.0 W/cm 2 , 10 min).
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Image Search Results


a Photograph showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (arrow) during NIR laser irradiation. b Photothermal image showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (cursor) during NIR laser irradiation. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent

Journal: European Radiology Experimental

Article Title: Local hyperthermia mediated by gold nanoparticle-integrated silicone-covered stent: feasibility and tissue response in a rat esophageal model

doi: 10.1186/s41747-024-00438-0

Figure Lengend Snippet: a Photograph showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (arrow) during NIR laser irradiation. b Photothermal image showing the stented (AuNP-integrated silicone-covered SEMS) esophagus (cursor) during NIR laser irradiation. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent

Article Snippet: The sheath was then withdrawn from the stented esophagus, leaving the optic fiber in place, and 808 nm NIR laser irradiation (Lumen Photonics, Beijing, China) was performed at a power output of 1.6 W for 2 min (Fig. b,c).

Techniques: Irradiation

Line diagram showing the mean in vivo steady-state surface temperatures of the stented (AuNP-integrated silicone-covered SEMS) esophagus with NIR laser irradiation. Error bars are standard deviations. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent

Journal: European Radiology Experimental

Article Title: Local hyperthermia mediated by gold nanoparticle-integrated silicone-covered stent: feasibility and tissue response in a rat esophageal model

doi: 10.1186/s41747-024-00438-0

Figure Lengend Snippet: Line diagram showing the mean in vivo steady-state surface temperatures of the stented (AuNP-integrated silicone-covered SEMS) esophagus with NIR laser irradiation. Error bars are standard deviations. AuNP , Gold nanoparticle; NIR , Near-infrared; SEMS , Self-expandable metal stent

Article Snippet: The sheath was then withdrawn from the stented esophagus, leaving the optic fiber in place, and 808 nm NIR laser irradiation (Lumen Photonics, Beijing, China) was performed at a power output of 1.6 W for 2 min (Fig. b,c).

Techniques: In Vivo, Irradiation

Photothermal performance of nanocomposites. ( A ) Temperature curve and ( B ) IR thermal images of MS-rGO-FA and ICG@MS-rGO-FA (0.5 mg/mL) nanocomposites exposed to an 808 nm NIR laser (1.0 W/cm 2 ). ( C ) Photostability of ICG@MS-rGO-FA nanocomposites after three ON/OFF cycles of an 808 nm NIR laser irradiation (1.0 W/cm 2 , 10 min).

Journal: Antioxidants

Article Title: Near-Infrared Light-Triggered Generation of Reactive Oxygen Species and Induction of Local Hyperthermia from Indocyanine Green Encapsulated Mesoporous Silica-Coated Graphene Oxide for Colorectal Cancer Therapy

doi: 10.3390/antiox11010174

Figure Lengend Snippet: Photothermal performance of nanocomposites. ( A ) Temperature curve and ( B ) IR thermal images of MS-rGO-FA and ICG@MS-rGO-FA (0.5 mg/mL) nanocomposites exposed to an 808 nm NIR laser (1.0 W/cm 2 ). ( C ) Photostability of ICG@MS-rGO-FA nanocomposites after three ON/OFF cycles of an 808 nm NIR laser irradiation (1.0 W/cm 2 , 10 min).

Article Snippet: The photothermal properties of ICG@MS-rGO-FA nanocomposites were investigated by an 808 nm NIR laser irradiation (MDL-N-808, CNI Optoelectronics Tech.

Techniques: Irradiation

( A ) Detection of intracellular ROS in CT-26 cancer cells treated with MS-rGO-FA and ICG@MS-rGO-FA nanocomposites, with or without NIR laser irradiation. Scale bars are 50 μm. ( B ) Mean fluorescence intensity of generated ROS in CT-26 cells with ICG@MS-rGO-FA nanocomposites, with or without NIR laser irradiation. ( C ) Quantitative analysis of the viability of CT-26 cells treated with MS-rGO-FA and ICG@MS-rGO-FA nanocomposites, with 808 nm NIR laser irradiation. ( D ) Fluorescence images of live/dead assay in CT-26 cells after treatment of MS-rGO-FA and ICG@MS-rGO-FA nanocomposites (100 μg/mL), with or without NIR laser irradiation. The live and dead cells were stained with calcein AM (green) and ethidium homodimer-1 (red). Scale bars are 50 μm.

Journal: Antioxidants

Article Title: Near-Infrared Light-Triggered Generation of Reactive Oxygen Species and Induction of Local Hyperthermia from Indocyanine Green Encapsulated Mesoporous Silica-Coated Graphene Oxide for Colorectal Cancer Therapy

doi: 10.3390/antiox11010174

Figure Lengend Snippet: ( A ) Detection of intracellular ROS in CT-26 cancer cells treated with MS-rGO-FA and ICG@MS-rGO-FA nanocomposites, with or without NIR laser irradiation. Scale bars are 50 μm. ( B ) Mean fluorescence intensity of generated ROS in CT-26 cells with ICG@MS-rGO-FA nanocomposites, with or without NIR laser irradiation. ( C ) Quantitative analysis of the viability of CT-26 cells treated with MS-rGO-FA and ICG@MS-rGO-FA nanocomposites, with 808 nm NIR laser irradiation. ( D ) Fluorescence images of live/dead assay in CT-26 cells after treatment of MS-rGO-FA and ICG@MS-rGO-FA nanocomposites (100 μg/mL), with or without NIR laser irradiation. The live and dead cells were stained with calcein AM (green) and ethidium homodimer-1 (red). Scale bars are 50 μm.

Article Snippet: The photothermal properties of ICG@MS-rGO-FA nanocomposites were investigated by an 808 nm NIR laser irradiation (MDL-N-808, CNI Optoelectronics Tech.

Techniques: Irradiation, Fluorescence, Generated, Live Dead Assay, Staining