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PMC9414187_tomography-08-00174-f009_385575.jpg
What object or scene is depicted here?
Comparison between magnetic resonance cholangiopancreatography (MRCP) findings at the diagnosis (a) and at 1 month follow-up (b); focal main pancreatic duct caliber reduction at the level of the lesion with a slight dilatation above (white arrow) completely regressed at 1 month follow-up MRCP (dotted white arrow).
PMC9414205_f5_385576.jpg
What is the main focus of this visual representation?
Fluorescent dextran angiography revealed lymphatic pathways of parasite dissemination. (A–C) Ifng−/− mice were infected in both FPs with 1×106 LgyLRV1+, and lymphatic connections were mapped through stereomicroscopy, by injecting 5 μl of fluorescein isothiocyanate (FITC) labeled dextran (2,000 kDa) at defined sites at...
PMC9414205_f5_385577.jpg
Describe the main subject of this image.
Fluorescent dextran angiography revealed lymphatic pathways of parasite dissemination. (A–C) Ifng−/− mice were infected in both FPs with 1×106 LgyLRV1+, and lymphatic connections were mapped through stereomicroscopy, by injecting 5 μl of fluorescein isothiocyanate (FITC) labeled dextran (2,000 kDa) at defined sites at...
PMC9414234_viruses-14-01821-f004_385584.jpg
What is the principal component of this image?
Subcellular localization of viral proteins of PSCYV was observed with confocal microscopy. (A) Subcellular localization of PSCYV P1, P2, and RdRp in infiltrated N. benthamiana leaves (green). Red signal represents chloroplast. (B) Subcellular localization of PSCYV P3 in infiltrated N. benthamiana leaves (green). Red si...
PMC9414234_viruses-14-01821-f004_385579.jpg
What is shown in this image?
Subcellular localization of viral proteins of PSCYV was observed with confocal microscopy. (A) Subcellular localization of PSCYV P1, P2, and RdRp in infiltrated N. benthamiana leaves (green). Red signal represents chloroplast. (B) Subcellular localization of PSCYV P3 in infiltrated N. benthamiana leaves (green). Red si...
PMC9414234_viruses-14-01821-f004_385581.jpg
What is the core subject represented in this visual?
Subcellular localization of viral proteins of PSCYV was observed with confocal microscopy. (A) Subcellular localization of PSCYV P1, P2, and RdRp in infiltrated N. benthamiana leaves (green). Red signal represents chloroplast. (B) Subcellular localization of PSCYV P3 in infiltrated N. benthamiana leaves (green). Red si...
PMC9414234_viruses-14-01821-f004_385582.jpg
What can you see in this picture?
Subcellular localization of viral proteins of PSCYV was observed with confocal microscopy. (A) Subcellular localization of PSCYV P1, P2, and RdRp in infiltrated N. benthamiana leaves (green). Red signal represents chloroplast. (B) Subcellular localization of PSCYV P3 in infiltrated N. benthamiana leaves (green). Red si...
PMC9414234_viruses-14-01821-f004_385583.jpg
What is the dominant medical problem in this image?
Subcellular localization of viral proteins of PSCYV was observed with confocal microscopy. (A) Subcellular localization of PSCYV P1, P2, and RdRp in infiltrated N. benthamiana leaves (green). Red signal represents chloroplast. (B) Subcellular localization of PSCYV P3 in infiltrated N. benthamiana leaves (green). Red si...
PMC9414234_viruses-14-01821-f004_385578.jpg
What can you see in this picture?
Subcellular localization of viral proteins of PSCYV was observed with confocal microscopy. (A) Subcellular localization of PSCYV P1, P2, and RdRp in infiltrated N. benthamiana leaves (green). Red signal represents chloroplast. (B) Subcellular localization of PSCYV P3 in infiltrated N. benthamiana leaves (green). Red si...
PMC9414240_sensors-22-06219-f002_385588.jpg
What object or scene is depicted here?
Capture 0, as provided by the multispectral camera: one image for each of the blue, green, red, near-infrared and red-edge bands (left to right), where the large amount of plant cover in the ground is clearly visible.
PMC9414240_sensors-22-06219-f002_385591.jpg
What is the main focus of this visual representation?
Capture 0, as provided by the multispectral camera: one image for each of the blue, green, red, near-infrared and red-edge bands (left to right), where the large amount of plant cover in the ground is clearly visible.
PMC9414240_sensors-22-06219-f002_385590.jpg
What's the most prominent thing you notice in this picture?
Capture 0, as provided by the multispectral camera: one image for each of the blue, green, red, near-infrared and red-edge bands (left to right), where the large amount of plant cover in the ground is clearly visible.
PMC9414240_sensors-22-06219-f002_385587.jpg
What is the core subject represented in this visual?
Capture 0, as provided by the multispectral camera: one image for each of the blue, green, red, near-infrared and red-edge bands (left to right), where the large amount of plant cover in the ground is clearly visible.
PMC9414256_materials-15-05592-f001_385593.jpg
Can you identify the primary element in this image?
(a) Radiographic proximal view of Endocrown preparation without intraradicular extension. (b) Occlusal view of Endocrown preparation without intraradicular extension.
PMC9414256_materials-15-05592-f002_385594.jpg
What is the central feature of this picture?
(a) Radiographic proximal view of Endocrown preparation with 3 mm intraradicular extension. (b) Occlusal view of Endocrown preparation wit 3 mm intraradicular extension.
PMC9414256_materials-15-05592-f002_385595.jpg
What is shown in this image?
(a) Radiographic proximal view of Endocrown preparation with 3 mm intraradicular extension. (b) Occlusal view of Endocrown preparation wit 3 mm intraradicular extension.
PMC9414310_polymers-14-03233-f005_385609.jpg
What is the dominant medical problem in this image?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385612.jpg
What key item or scene is captured in this photo?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385608.jpg
What is the core subject represented in this visual?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385619.jpg
Can you identify the primary element in this image?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385616.jpg
What is being portrayed in this visual content?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385613.jpg
What can you see in this picture?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385615.jpg
What is the core subject represented in this visual?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385614.jpg
What's the most prominent thing you notice in this picture?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385611.jpg
Can you identify the primary element in this image?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385617.jpg
What is the dominant medical problem in this image?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f005_385618.jpg
What is the central feature of this picture?
Representative electromicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Identifier: arrow (spheroids).
PMC9414310_polymers-14-03233-f006_385598.jpg
What is the main focus of this visual representation?
Representative photomicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp, and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. H&E. Identifier: arrow (spheroids). Sc...
PMC9414310_polymers-14-03233-f006_385600.jpg
What does this image primarily show?
Representative photomicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp, and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. H&E. Identifier: arrow (spheroids). Sc...
PMC9414310_polymers-14-03233-f006_385596.jpg
What object or scene is depicted here?
Representative photomicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp, and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. H&E. Identifier: arrow (spheroids). Sc...
PMC9414310_polymers-14-03233-f006_385607.jpg
What is the principal component of this image?
Representative photomicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp, and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. H&E. Identifier: arrow (spheroids). Sc...
PMC9414310_polymers-14-03233-f006_385597.jpg
What is the dominant medical problem in this image?
Representative photomicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp, and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. H&E. Identifier: arrow (spheroids). Sc...
PMC9414310_polymers-14-03233-f006_385601.jpg
Describe the main subject of this image.
Representative photomicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp, and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. H&E. Identifier: arrow (spheroids). Sc...
PMC9414310_polymers-14-03233-f006_385604.jpg
What is being portrayed in this visual content?
Representative photomicrographs of cross sections of the constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp, and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. H&E. Identifier: arrow (spheroids). Sc...
PMC9414310_polymers-14-03233-f008_385627.jpg
What can you see in this picture?
Representative photomicrographs of tropomyosin expression in different constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Scale bar: 50 µm, origina...
PMC9414310_polymers-14-03233-f008_385628.jpg
What is the central feature of this picture?
Representative photomicrographs of tropomyosin expression in different constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Scale bar: 50 µm, origina...
PMC9414310_polymers-14-03233-f008_385631.jpg
What is the dominant medical problem in this image?
Representative photomicrographs of tropomyosin expression in different constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Scale bar: 50 µm, origina...
PMC9414310_polymers-14-03233-f008_385630.jpg
What is the main focus of this visual representation?
Representative photomicrographs of tropomyosin expression in different constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Scale bar: 50 µm, origina...
PMC9414310_polymers-14-03233-f008_385626.jpg
What key item or scene is captured in this photo?
Representative photomicrographs of tropomyosin expression in different constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Scale bar: 50 µm, origina...
PMC9414310_polymers-14-03233-f008_385624.jpg
What does this image primarily show?
Representative photomicrographs of tropomyosin expression in different constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Scale bar: 50 µm, origina...
PMC9414310_polymers-14-03233-f008_385629.jpg
What object or scene is depicted here?
Representative photomicrographs of tropomyosin expression in different constructs. Method 1: (A) without Np, (B) AuNp and (C) AuNp+Alg. Method 2: (D) without Np, (E) AuNp and (F) AuNp+Alg. Method 3: (G) without Np, (H) AuNp and (I) AuNp+Alg. Method 4: (J) without Np, (K) AuNp and (L) AuNp+Alg. Scale bar: 50 µm, origina...
PMC9414331_Fig1_385633.jpg
What's the most prominent thing you notice in this picture?
X-ray and CT images at the time of injury
PMC9414331_Fig11_385635.jpg
What is the core subject represented in this visual?
Pre- and postoperative X-rays of posterior spinal instrumentation and fusion (PSIF) for scoliosis
PMC9414331_Fig11_385636.jpg
What key item or scene is captured in this photo?
Pre- and postoperative X-rays of posterior spinal instrumentation and fusion (PSIF) for scoliosis
PMC9414333_molecules-27-05089-f006_385637.jpg
What is the principal component of this image?
Samples of imagery commonly used to diagnose AMD. (A,B) Early AMD infra-red/OCT with serous drusen (lipidic aggregates—see text for details); significant detachment of the pigment epithelium retrofoveolar is also observed. (C) Age-related maculopathy retinography with serous drusen. (D) Atrophic AMD monitored with infr...
PMC9414333_molecules-27-05089-f006_385638.jpg
What is the principal component of this image?
Samples of imagery commonly used to diagnose AMD. (A,B) Early AMD infra-red/OCT with serous drusen (lipidic aggregates—see text for details); significant detachment of the pigment epithelium retrofoveolar is also observed. (C) Age-related maculopathy retinography with serous drusen. (D) Atrophic AMD monitored with infr...
PMC9414334_materials-15-05707-f018_385641.jpg
What is the dominant medical problem in this image?
Reinforced concrete beam without shear reinforcement after the test (a) span: 600 mm; (b) span: 900 mm.
PMC9414334_materials-15-05707-f018_385642.jpg
What can you see in this picture?
Reinforced concrete beam without shear reinforcement after the test (a) span: 600 mm; (b) span: 900 mm.
PMC9414335_microorganisms-10-01557-f010_385647.jpg
What is the principal component of this image?
Motility analysis and flagellar observation of Salmonella focA mutants: (A) by U tube, (B) by semisolid agar plate, (C) by electron microscopy. The experiment was repeated in triplicate, and the results were consistent.
PMC9414335_microorganisms-10-01557-f010_385646.jpg
What is the core subject represented in this visual?
Motility analysis and flagellar observation of Salmonella focA mutants: (A) by U tube, (B) by semisolid agar plate, (C) by electron microscopy. The experiment was repeated in triplicate, and the results were consistent.
PMC9414335_microorganisms-10-01557-f010_385649.jpg
What is the central feature of this picture?
Motility analysis and flagellar observation of Salmonella focA mutants: (A) by U tube, (B) by semisolid agar plate, (C) by electron microscopy. The experiment was repeated in triplicate, and the results were consistent.
PMC9414335_microorganisms-10-01557-f010_385645.jpg
What key item or scene is captured in this photo?
Motility analysis and flagellar observation of Salmonella focA mutants: (A) by U tube, (B) by semisolid agar plate, (C) by electron microscopy. The experiment was repeated in triplicate, and the results were consistent.
PMC9414335_microorganisms-10-01557-f010_385643.jpg
What is the core subject represented in this visual?
Motility analysis and flagellar observation of Salmonella focA mutants: (A) by U tube, (B) by semisolid agar plate, (C) by electron microscopy. The experiment was repeated in triplicate, and the results were consistent.
PMC9414355_plants-11-02076-f003_385651.jpg
What is being portrayed in this visual content?
ZM36 has a higher leaf RWL and stomatal density than AK58. (A) RWL of AK58 and ZM36 plants. (B) Stomata density of AK58 and ZM36. Data represent means ± SE. *, t-test with p < 0.05; **, t-test with p < 0.01. (C) SEM analysis of the adaxial (ad) and abaxial (ab) epidermis of AK58 and ZM36. Triangles indicate stomata. Sc...
PMC9414355_plants-11-02076-f003_385653.jpg
What is the principal component of this image?
ZM36 has a higher leaf RWL and stomatal density than AK58. (A) RWL of AK58 and ZM36 plants. (B) Stomata density of AK58 and ZM36. Data represent means ± SE. *, t-test with p < 0.05; **, t-test with p < 0.01. (C) SEM analysis of the adaxial (ad) and abaxial (ab) epidermis of AK58 and ZM36. Triangles indicate stomata. Sc...
PMC9414355_plants-11-02076-f003_385652.jpg
What stands out most in this visual?
ZM36 has a higher leaf RWL and stomatal density than AK58. (A) RWL of AK58 and ZM36 plants. (B) Stomata density of AK58 and ZM36. Data represent means ± SE. *, t-test with p < 0.05; **, t-test with p < 0.01. (C) SEM analysis of the adaxial (ad) and abaxial (ab) epidermis of AK58 and ZM36. Triangles indicate stomata. Sc...
PMC9414355_plants-11-02076-f003_385655.jpg
What is the principal component of this image?
ZM36 has a higher leaf RWL and stomatal density than AK58. (A) RWL of AK58 and ZM36 plants. (B) Stomata density of AK58 and ZM36. Data represent means ± SE. *, t-test with p < 0.05; **, t-test with p < 0.01. (C) SEM analysis of the adaxial (ad) and abaxial (ab) epidermis of AK58 and ZM36. Triangles indicate stomata. Sc...
PMC9414377_nanomaterials-12-02837-f006_385657.jpg
What can you see in this picture?
SEM images of (a) and (b) Fe2O3/SNRGO with different magnifications; TEM images of (c) and (d) Fe2O3/SNRGO with different magnifications. Reproduced with permission [56]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f006_385659.jpg
What is the focal point of this photograph?
SEM images of (a) and (b) Fe2O3/SNRGO with different magnifications; TEM images of (c) and (d) Fe2O3/SNRGO with different magnifications. Reproduced with permission [56]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f006_385656.jpg
What is the dominant medical problem in this image?
SEM images of (a) and (b) Fe2O3/SNRGO with different magnifications; TEM images of (c) and (d) Fe2O3/SNRGO with different magnifications. Reproduced with permission [56]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f006_385658.jpg
What is the core subject represented in this visual?
SEM images of (a) and (b) Fe2O3/SNRGO with different magnifications; TEM images of (c) and (d) Fe2O3/SNRGO with different magnifications. Reproduced with permission [56]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f011_385663.jpg
What is the dominant medical problem in this image?
(a,b) Top view of n-MECN with different magnification; the SEM images of (c,d) Surface of MnCo2O4@n-MECN electrode with different magnification; (e,f) Cross-sectional images of MnCo2O4@n-MECN with different magnification. Reproduced with permission [79]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f011_385662.jpg
What is the main focus of this visual representation?
(a,b) Top view of n-MECN with different magnification; the SEM images of (c,d) Surface of MnCo2O4@n-MECN electrode with different magnification; (e,f) Cross-sectional images of MnCo2O4@n-MECN with different magnification. Reproduced with permission [79]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f011_385661.jpg
What is the main focus of this visual representation?
(a,b) Top view of n-MECN with different magnification; the SEM images of (c,d) Surface of MnCo2O4@n-MECN electrode with different magnification; (e,f) Cross-sectional images of MnCo2O4@n-MECN with different magnification. Reproduced with permission [79]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f011_385665.jpg
Describe the main subject of this image.
(a,b) Top view of n-MECN with different magnification; the SEM images of (c,d) Surface of MnCo2O4@n-MECN electrode with different magnification; (e,f) Cross-sectional images of MnCo2O4@n-MECN with different magnification. Reproduced with permission [79]. Copyright 2020, Elsevier.
PMC9414377_nanomaterials-12-02837-f014_385667.jpg
What stands out most in this visual?
The SEM and TEM morphology and XRD characterization of N-CNT/rGO/CoSe2 NF: (a,b) FE-SEM images with different magnifications, (c–e) HR-TEM images with different magnifications, (f) XRD pattern. Reproduced with permission [90]. Copyright 2019, Wiley-VCH.
PMC9414377_nanomaterials-12-02837-f014_385671.jpg
What is shown in this image?
The SEM and TEM morphology and XRD characterization of N-CNT/rGO/CoSe2 NF: (a,b) FE-SEM images with different magnifications, (c–e) HR-TEM images with different magnifications, (f) XRD pattern. Reproduced with permission [90]. Copyright 2019, Wiley-VCH.
PMC9414377_nanomaterials-12-02837-f014_385666.jpg
What is the main focus of this visual representation?
The SEM and TEM morphology and XRD characterization of N-CNT/rGO/CoSe2 NF: (a,b) FE-SEM images with different magnifications, (c–e) HR-TEM images with different magnifications, (f) XRD pattern. Reproduced with permission [90]. Copyright 2019, Wiley-VCH.
PMC9414377_nanomaterials-12-02837-f014_385670.jpg
What does this image primarily show?
The SEM and TEM morphology and XRD characterization of N-CNT/rGO/CoSe2 NF: (a,b) FE-SEM images with different magnifications, (c–e) HR-TEM images with different magnifications, (f) XRD pattern. Reproduced with permission [90]. Copyright 2019, Wiley-VCH.
PMC9414404_Fig2_385674.jpg
What stands out most in this visual?
a-c Manual segmentation of rectal cancer in diffusion kurtosis imaging
PMC9414404_Fig2_385673.jpg
What does this image primarily show?
a-c Manual segmentation of rectal cancer in diffusion kurtosis imaging
PMC9414405_Fig1_385692.jpg
What is the main focus of this visual representation?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385685.jpg
What is being portrayed in this visual content?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385686.jpg
What is the principal component of this image?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385690.jpg
What is the main focus of this visual representation?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385691.jpg
What is the focal point of this photograph?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385694.jpg
Can you identify the primary element in this image?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385693.jpg
What is the principal component of this image?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385688.jpg
What is the core subject represented in this visual?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385687.jpg
What is being portrayed in this visual content?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig1_385689.jpg
What is the core subject represented in this visual?
A 52-year-old male patient, diagnosed with AS combined with T10/11 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative full length lateral radiograph of spine showed excessive thoracic kyphosis and a T10/11 intervertebral fracture line. c, d Preoperative CT sagittal view and cross section...
PMC9414405_Fig2_385680.jpg
What does this image primarily show?
A 58-year-old male patient, diagnosed with AS combined with T11/12 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative lateral spinal radiographs showed excessive thoracic kyphosis and a T11/12 intervertebral fracture line (white arrow). c Preoperative CT sagittal view showed T11/12 inter...
PMC9414405_Fig2_385684.jpg
Describe the main subject of this image.
A 58-year-old male patient, diagnosed with AS combined with T11/12 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative lateral spinal radiographs showed excessive thoracic kyphosis and a T11/12 intervertebral fracture line (white arrow). c Preoperative CT sagittal view showed T11/12 inter...
PMC9414405_Fig2_385683.jpg
What key item or scene is captured in this photo?
A 58-year-old male patient, diagnosed with AS combined with T11/12 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative lateral spinal radiographs showed excessive thoracic kyphosis and a T11/12 intervertebral fracture line (white arrow). c Preoperative CT sagittal view showed T11/12 inter...
PMC9414405_Fig2_385677.jpg
What can you see in this picture?
A 58-year-old male patient, diagnosed with AS combined with T11/12 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative lateral spinal radiographs showed excessive thoracic kyphosis and a T11/12 intervertebral fracture line (white arrow). c Preoperative CT sagittal view showed T11/12 inter...
PMC9414405_Fig2_385676.jpg
What's the most prominent thing you notice in this picture?
A 58-year-old male patient, diagnosed with AS combined with T11/12 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative lateral spinal radiographs showed excessive thoracic kyphosis and a T11/12 intervertebral fracture line (white arrow). c Preoperative CT sagittal view showed T11/12 inter...
PMC9414405_Fig2_385681.jpg
What can you see in this picture?
A 58-year-old male patient, diagnosed with AS combined with T11/12 AL. a Preoperative full length anteroposterior radiograph of spine. b Preoperative lateral spinal radiographs showed excessive thoracic kyphosis and a T11/12 intervertebral fracture line (white arrow). c Preoperative CT sagittal view showed T11/12 inter...
PMC9414417_nanomaterials-12-02735-f007_385696.jpg
What stands out most in this visual?
SEM images of (a) h-BN, (b) BNOCal/W, (c) BNOBM, and (d) BNOHNO3 samples. Magnification: 50,000×, scale bar = 2 µm, and arrows indicate the evolution of the edges of the sheets.
PMC9414417_nanomaterials-12-02735-f007_385695.jpg
What is being portrayed in this visual content?
SEM images of (a) h-BN, (b) BNOCal/W, (c) BNOBM, and (d) BNOHNO3 samples. Magnification: 50,000×, scale bar = 2 µm, and arrows indicate the evolution of the edges of the sheets.
PMC9414417_nanomaterials-12-02735-f007_385697.jpg
Can you identify the primary element in this image?
SEM images of (a) h-BN, (b) BNOCal/W, (c) BNOBM, and (d) BNOHNO3 samples. Magnification: 50,000×, scale bar = 2 µm, and arrows indicate the evolution of the edges of the sheets.
PMC9414429_nanomaterials-12-02828-f004_385701.jpg
What is the principal component of this image?
SEM micrographs of BC ZrFe2O5 NCs (a–c) and Tartrazine dye-loaded BC-ZrFe2O5 NCs (d–f) at three different magnification levels.
PMC9414429_nanomaterials-12-02828-f004_385700.jpg
Describe the main subject of this image.
SEM micrographs of BC ZrFe2O5 NCs (a–c) and Tartrazine dye-loaded BC-ZrFe2O5 NCs (d–f) at three different magnification levels.
PMC9414429_nanomaterials-12-02828-f004_385704.jpg
What is the main focus of this visual representation?
SEM micrographs of BC ZrFe2O5 NCs (a–c) and Tartrazine dye-loaded BC-ZrFe2O5 NCs (d–f) at three different magnification levels.
PMC9414429_nanomaterials-12-02828-f004_385703.jpg
What object or scene is depicted here?
SEM micrographs of BC ZrFe2O5 NCs (a–c) and Tartrazine dye-loaded BC-ZrFe2O5 NCs (d–f) at three different magnification levels.
PMC9414429_nanomaterials-12-02828-f004_385699.jpg
Describe the main subject of this image.
SEM micrographs of BC ZrFe2O5 NCs (a–c) and Tartrazine dye-loaded BC-ZrFe2O5 NCs (d–f) at three different magnification levels.
PMC9414429_nanomaterials-12-02828-f004_385702.jpg
What does this image primarily show?
SEM micrographs of BC ZrFe2O5 NCs (a–c) and Tartrazine dye-loaded BC-ZrFe2O5 NCs (d–f) at three different magnification levels.
PMC9414452_polymers-14-03330-f006_385705.jpg
What is the dominant medical problem in this image?
Morphology analysis of elephant dung particleboard layered with Belangke bamboo using KEYENCE VHX 6000 Digital Microscope and FE-SEM at 200× magnification: (a) face; (b) core; (c) back; (d) face; (e) core; (f) back.
PMC9414452_polymers-14-03330-f006_385709.jpg
What is shown in this image?
Morphology analysis of elephant dung particleboard layered with Belangke bamboo using KEYENCE VHX 6000 Digital Microscope and FE-SEM at 200× magnification: (a) face; (b) core; (c) back; (d) face; (e) core; (f) back.
PMC9414452_polymers-14-03330-f006_385706.jpg
Can you identify the primary element in this image?
Morphology analysis of elephant dung particleboard layered with Belangke bamboo using KEYENCE VHX 6000 Digital Microscope and FE-SEM at 200× magnification: (a) face; (b) core; (c) back; (d) face; (e) core; (f) back.
PMC9414452_polymers-14-03330-f006_385710.jpg
What can you see in this picture?
Morphology analysis of elephant dung particleboard layered with Belangke bamboo using KEYENCE VHX 6000 Digital Microscope and FE-SEM at 200× magnification: (a) face; (b) core; (c) back; (d) face; (e) core; (f) back.