topography images Search Results


90
Celgard LLC topography images of the celgard sample
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Topography Images Of The Celgard Sample, supplied by Celgard LLC, 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/product/topography+images/topography+images+of+the+celgard+sample/pmc05550795-33-5-9
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90
Alicona Imaging GmbH mex surface topography analysis
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Mex Surface Topography Analysis, supplied by Alicona Imaging GmbH, 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/product/topography+images/mex+surface+topography+analysis/pmc09306732-199-17-18
Average 90 stars, based on 1 article reviews
mex surface topography analysis - by Bioz Stars, 2026-10
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90
MetaMorph Inc surface topography image analysis software
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Surface Topography Image Analysis Software, supplied by MetaMorph Inc, 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/product/topography+images/surface+topography+image+analysis+software/us07882963-427-11-10
Average 90 stars, based on 1 article reviews
surface topography image analysis software - by Bioz Stars, 2026-10
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90
alcon inc corneal topography images
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Corneal Topography Images, supplied by alcon inc, 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/product/topography+images/corneal+topography+images/pmc07755332-36-8-22
Average 90 stars, based on 1 article reviews
corneal topography images - by Bioz Stars, 2026-10
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90
MikroMasch Inc afm topography images
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Afm Topography Images, supplied by MikroMasch Inc, 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/product/topography+images/afm+topography+images/pmc03715244-60-0-17
Average 90 stars, based on 1 article reviews
afm topography images - by Bioz Stars, 2026-10
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90
OCULUS Surgical topography images
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Topography Images, supplied by OCULUS Surgical, 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/product/topography+images/topography+images/pmc04386169-60-0-5
Average 90 stars, based on 1 article reviews
topography images - by Bioz Stars, 2026-10
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90
Alicona Imaging GmbH three-dimensional surface topography measuring instrument infinite focus sl
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Three Dimensional Surface Topography Measuring Instrument Infinite Focus Sl, supplied by Alicona Imaging GmbH, 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/product/topography+images/three+dimensional+surface+topography+measuring+instrument+infinite+focus+sl/pmc09076462-63-9-13
Average 90 stars, based on 1 article reviews
three-dimensional surface topography measuring instrument infinite focus sl - by Bioz Stars, 2026-10
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90
alcon inc verion corneal topography system
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Verion Corneal Topography System, supplied by alcon inc, 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/product/topography+images/corneal+topography+system+verion+++image+guide+system/pmc09755282-78-24-28
Average 90 stars, based on 1 article reviews
verion corneal topography system - by Bioz Stars, 2026-10
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90
Alicona Imaging GmbH threedimensional surface topography measuring instrument infinite focus sl
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Threedimensional Surface Topography Measuring Instrument Infinite Focus Sl, supplied by Alicona Imaging GmbH, 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/product/topography+images/threedimensional+surface+topography+measuring+instrument+infinite+focus+sl/10__1039_slash_c9ra08312j-60-9-13
Average 90 stars, based on 1 article reviews
threedimensional surface topography measuring instrument infinite focus sl - by Bioz Stars, 2026-10
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90
Celgard LLC topography images
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Topography Images, supplied by Celgard LLC, 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/product/topography+images/topography+images/pmc05550795-53-7-23
Average 90 stars, based on 1 article reviews
topography images - by Bioz Stars, 2026-10
90/100 stars
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90
DaVinci Biosciences flyby near-ir emissivity and sub-cloud near-ir imaging and high-resolution local topography
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Flyby Near Ir Emissivity And Sub Cloud Near Ir Imaging And High Resolution Local Topography, supplied by DaVinci Biosciences, 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/product/topography+images/flyby+near+ir+emissivity+and+sub+cloud+near+ir+imaging+and+high+resolution+local+topography/10__1007_slash_s11214___023___00992___w-752-4-20
Average 90 stars, based on 1 article reviews
flyby near-ir emissivity and sub-cloud near-ir imaging and high-resolution local topography - by Bioz Stars, 2026-10
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90
Technomed GmbH topography images
Images of the PS–LDPE sample <t>topography</t> (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.
Topography Images, supplied by Technomed GmbH, 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/product/topography+images/topography+images/pmc01772353-165-21-21
Average 90 stars, based on 1 article reviews
topography images - by Bioz Stars, 2026-10
90/100 stars
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Image Search Results


Images of the PS–LDPE sample topography (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Images of the PS–LDPE sample topography (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Article Snippet: Moreover, zoomed-in views of the topography images of the Celgard sample are compared in , and the cross-section comparison of the sample topography and the mean tip–sample interaction force are compared for the PS–LDPE and the celgard samples in and , respectively.

Techniques: Imaging

Images of the SBS sample topography (scan area: 5 μm × 2.5 μm, scan direction: 5 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Images of the SBS sample topography (scan area: 5 μm × 2.5 μm, scan direction: 5 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Article Snippet: Moreover, zoomed-in views of the topography images of the Celgard sample are compared in , and the cross-section comparison of the sample topography and the mean tip–sample interaction force are compared for the PS–LDPE and the celgard samples in and , respectively.

Techniques: Imaging

Images of the Celgard sample topography (scan area: 4 μm × 2 μm, scan direction: 4 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1 b4) 2 Hz, and AMLM imaging at (c1–c4) 20 Hz, respectively.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Images of the Celgard sample topography (scan area: 4 μm × 2 μm, scan direction: 4 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1 b4) 2 Hz, and AMLM imaging at (c1–c4) 20 Hz, respectively.

Article Snippet: Moreover, zoomed-in views of the topography images of the Celgard sample are compared in , and the cross-section comparison of the sample topography and the mean tip–sample interaction force are compared for the PS–LDPE and the celgard samples in and , respectively.

Techniques: Imaging

Zoomed-in view of the Celgard sample topography as marked out in obtained using TM imaging at (a) 1 Hz and (b) 2 Hz, and AMLM imaging at (c) 20 Hz.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Zoomed-in view of the Celgard sample topography as marked out in obtained using TM imaging at (a) 1 Hz and (b) 2 Hz, and AMLM imaging at (c) 20 Hz.

Article Snippet: Moreover, zoomed-in views of the topography images of the Celgard sample are compared in , and the cross-section comparison of the sample topography and the mean tip–sample interaction force are compared for the PS–LDPE and the celgard samples in and , respectively.

Techniques: Imaging

Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Article Snippet: Moreover, zoomed-in views of the topography images of the Celgard sample are compared in , and the cross-section comparison of the sample topography and the mean tip–sample interaction force are compared for the PS–LDPE and the celgard samples in and , respectively.

Techniques: Comparison

Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Article Snippet: Moreover, zoomed-in views of the topography images of the Celgard sample are compared in , and the cross-section comparison of the sample topography and the mean tip–sample interaction force are compared for the PS–LDPE and the celgard samples in and , respectively.

Techniques: Comparison

Topography images obtained using the TM imaging at the scan rate of 10 Hz of (a) the SBS sample and (b) the Celgard sample.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Topography images obtained using the TM imaging at the scan rate of 10 Hz of (a) the SBS sample and (b) the Celgard sample.

Article Snippet: Moreover, zoomed-in views of the topography images of the Celgard sample are compared in , and the cross-section comparison of the sample topography and the mean tip–sample interaction force are compared for the PS–LDPE and the celgard samples in and , respectively.

Techniques: Imaging

Images of the PS–LDPE sample topography (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Images of the PS–LDPE sample topography (scan area: 50 μm × 25 μm, scan direction: 50 μm). the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Article Snippet: For example, the zoomed-in view of the topography images in showed that the porous feature (at a size around 10 nm) of the Celgard sample was clearly captured in the 20 Hz AMLM image and the 1 Hz TM image, but was seriously distorted in the 2 Hz TM image.

Techniques: Imaging

Images of the SBS sample topography (scan area: 5 μm × 2.5 μm, scan direction: 5 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Images of the SBS sample topography (scan area: 5 μm × 2.5 μm, scan direction: 5 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1–b4) 2.5 Hz, and AMLM imaging at (c1–c4) 25 Hz, respectively.

Article Snippet: For example, the zoomed-in view of the topography images in showed that the porous feature (at a size around 10 nm) of the Celgard sample was clearly captured in the 20 Hz AMLM image and the 1 Hz TM image, but was seriously distorted in the 2 Hz TM image.

Techniques: Imaging

Images of the Celgard sample topography (scan area: 4 μm × 2 μm, scan direction: 4 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1 b4) 2 Hz, and AMLM imaging at (c1–c4) 20 Hz, respectively.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Images of the Celgard sample topography (scan area: 4 μm × 2 μm, scan direction: 4 μm), the corresponding tapping-amplitude-ratio error, the averaged tip–sample interaction force, and the phase contrast obtained using TM imaging at (a1–a4) 1 Hz and (b1 b4) 2 Hz, and AMLM imaging at (c1–c4) 20 Hz, respectively.

Article Snippet: For example, the zoomed-in view of the topography images in showed that the porous feature (at a size around 10 nm) of the Celgard sample was clearly captured in the 20 Hz AMLM image and the 1 Hz TM image, but was seriously distorted in the 2 Hz TM image.

Techniques: Imaging

Zoomed-in view of the Celgard sample topography as marked out in obtained using TM imaging at (a) 1 Hz and (b) 2 Hz, and AMLM imaging at (c) 20 Hz.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Zoomed-in view of the Celgard sample topography as marked out in obtained using TM imaging at (a) 1 Hz and (b) 2 Hz, and AMLM imaging at (c) 20 Hz.

Article Snippet: For example, the zoomed-in view of the topography images in showed that the porous feature (at a size around 10 nm) of the Celgard sample was clearly captured in the 20 Hz AMLM image and the 1 Hz TM image, but was seriously distorted in the 2 Hz TM image.

Techniques: Imaging

Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Article Snippet: For example, the zoomed-in view of the topography images in showed that the porous feature (at a size around 10 nm) of the Celgard sample was clearly captured in the 20 Hz AMLM image and the 1 Hz TM image, but was seriously distorted in the 2 Hz TM image.

Techniques: Comparison

Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Comparison of (a) the sample topography and (b) the averaged tip–sample interaction force at the cross-section marked out in .

Article Snippet: For example, the zoomed-in view of the topography images in showed that the porous feature (at a size around 10 nm) of the Celgard sample was clearly captured in the 20 Hz AMLM image and the 1 Hz TM image, but was seriously distorted in the 2 Hz TM image.

Techniques: Comparison

Topography images obtained using the TM imaging at the scan rate of 10 Hz of (a) the SBS sample and (b) the Celgard sample.

Journal: Beilstein Journal of Nanotechnology

Article Title: High-speed dynamic-mode atomic force microscopy imaging of polymers: an adaptive multiloop-mode approach

doi: 10.3762/bjnano.8.158

Figure Lengend Snippet: Topography images obtained using the TM imaging at the scan rate of 10 Hz of (a) the SBS sample and (b) the Celgard sample.

Article Snippet: For example, the zoomed-in view of the topography images in showed that the porous feature (at a size around 10 nm) of the Celgard sample was clearly captured in the 20 Hz AMLM image and the 1 Hz TM image, but was seriously distorted in the 2 Hz TM image.

Techniques: Imaging