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PMOD Technologies pmod computer software
Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
Pmod Computer Software, supplied by PMOD Technologies, 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/pmod computer software/product/PMOD Technologies
Average 90 stars, based on 1 article reviews
pmod computer software - by Bioz Stars, 2026-04
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1) Product Images from "Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique"

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

Journal: Journal of Imaging

doi: 10.3390/jimaging10070170

Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of the PET scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
Figure Legend Snippet: Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of the PET scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.

Techniques Used: Software

Analytic reconstructions using FBP and SRT. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.
Figure Legend Snippet: Analytic reconstructions using FBP and SRT. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.

Techniques Used: Software

Iterative reconstructions using the two variants of the Tera-Tomo 3D algorithm, namely, Tera-Tomo 4-5 and Tera-Tomo 4-13. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.
Figure Legend Snippet: Iterative reconstructions using the two variants of the Tera-Tomo 3D algorithm, namely, Tera-Tomo 4-5 and Tera-Tomo 4-13. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.

Techniques Used: Software

Measured metabolic value slope K i (mL/ccm/min) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via  PMOD software  [ <xref ref-type= 35 ]." title="... 3D algorithm. The VOI analysis was conducted via PMOD software [ 35 ..." property="contentUrl" width="100%" height="100%"/>
Figure Legend Snippet: Measured metabolic value slope K i (mL/ccm/min) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via PMOD software [ 35 ].

Techniques Used: Mouse Assay, Software

Measured metabolic value M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via  PMOD software  [ <xref ref-type= 35 ]." title="... 3D algorithm. The VOI analysis was conducted via PMOD software [ 35 ..." property="contentUrl" width="100%" height="100%"/>
Figure Legend Snippet: Measured metabolic value M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via PMOD software [ 35 ].

Techniques Used: Mouse Assay, Software

The averaged slope K i (mL/ccm/min) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged slope K i was calculated via PMOD software . The results are illustrated as mean ± SD.
Figure Legend Snippet: The averaged slope K i (mL/ccm/min) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged slope K i was calculated via PMOD software . The results are illustrated as mean ± SD.

Techniques Used: Software

The averaged M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged M R G l u was calculated via PMOD software . The results are illustrated as mean ± SD.
Figure Legend Snippet: The averaged M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged M R G l u was calculated via PMOD software . The results are illustrated as mean ± SD.

Techniques Used: Software



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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of <t>the</t> <t>PET</t> scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via <t>PMOD</t> software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.
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Image Search Results


Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of the PET scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.

Journal: Journal of Imaging

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

doi: 10.3390/jimaging10070170

Figure Lengend Snippet: Illustration of the ROIs and VOI defined for the hot region of the myocardium ( a ) and the hot value voxels of the IVC ( b ) in a representative male C57BL/6 mouse. The myocardium ROIs were selected using late frames (frames 27–32) of the PET scan, while the IVC VOI was selected using short-duration (2 s) early frames (frames 1–3) of the PET scan. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (white) of the reconstruction algorithm Tera-Tomo 4–13. A = anterior, F = feet, H = head, L = left, P = posterior, and R = right.

Article Snippet: The Patlak graphical kinetic analysis of the PET reconstructed images (a total of 202,048 images) was performed via PMOD computer software (version 3.506, PMOD Technologies LLC, Fällanden, Switzerland) [ ], which is known as the reference tool for PET kinetic modeling.

Techniques: Software

Analytic reconstructions using FBP and SRT. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.

Journal: Journal of Imaging

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

doi: 10.3390/jimaging10070170

Figure Lengend Snippet: Analytic reconstructions using FBP and SRT. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.

Article Snippet: The Patlak graphical kinetic analysis of the PET reconstructed images (a total of 202,048 images) was performed via PMOD computer software (version 3.506, PMOD Technologies LLC, Fällanden, Switzerland) [ ], which is known as the reference tool for PET kinetic modeling.

Techniques: Software

Iterative reconstructions using the two variants of the Tera-Tomo 3D algorithm, namely, Tera-Tomo 4-5 and Tera-Tomo 4-13. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.

Journal: Journal of Imaging

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

doi: 10.3390/jimaging10070170

Figure Lengend Snippet: Iterative reconstructions using the two variants of the Tera-Tomo 3D algorithm, namely, Tera-Tomo 4-5 and Tera-Tomo 4-13. Coronal view of the myocardium ( a ) and the IVC ( b ) in a representative male C57BL/6 mouse. The figure was created via PMOD software . The scalar values in the color bar range from zero (black) to the maximum (red) of each reconstruction algorithm.

Article Snippet: The Patlak graphical kinetic analysis of the PET reconstructed images (a total of 202,048 images) was performed via PMOD computer software (version 3.506, PMOD Technologies LLC, Fällanden, Switzerland) [ ], which is known as the reference tool for PET kinetic modeling.

Techniques: Software

Measured metabolic value slope K i (mL/ccm/min) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via  PMOD software  [ <xref ref-type= 35 ]." width="100%" height="100%">

Journal: Journal of Imaging

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

doi: 10.3390/jimaging10070170

Figure Lengend Snippet: Measured metabolic value slope K i (mL/ccm/min) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via PMOD software [ 35 ].

Article Snippet: The Patlak graphical kinetic analysis of the PET reconstructed images (a total of 202,048 images) was performed via PMOD computer software (version 3.506, PMOD Technologies LLC, Fällanden, Switzerland) [ ], which is known as the reference tool for PET kinetic modeling.

Techniques: Mouse Assay, Software

Measured metabolic value M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via  PMOD software  [ <xref ref-type= 35 ]." width="100%" height="100%">

Journal: Journal of Imaging

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

doi: 10.3390/jimaging10070170

Figure Lengend Snippet: Measured metabolic value M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model in the myocardium of seven male C57BL/6 mice ( n = 7 ) using FBP, SRT, and the variants of Tera-Tomo 3D algorithm. The VOI analysis was conducted via PMOD software [ 35 ].

Article Snippet: The Patlak graphical kinetic analysis of the PET reconstructed images (a total of 202,048 images) was performed via PMOD computer software (version 3.506, PMOD Technologies LLC, Fällanden, Switzerland) [ ], which is known as the reference tool for PET kinetic modeling.

Techniques: Mouse Assay, Software

The averaged slope K i (mL/ccm/min) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged slope K i was calculated via PMOD software . The results are illustrated as mean ± SD.

Journal: Journal of Imaging

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

doi: 10.3390/jimaging10070170

Figure Lengend Snippet: The averaged slope K i (mL/ccm/min) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged slope K i was calculated via PMOD software . The results are illustrated as mean ± SD.

Article Snippet: The Patlak graphical kinetic analysis of the PET reconstructed images (a total of 202,048 images) was performed via PMOD computer software (version 3.506, PMOD Technologies LLC, Fällanden, Switzerland) [ ], which is known as the reference tool for PET kinetic modeling.

Techniques: Software

The averaged M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged M R G l u was calculated via PMOD software . The results are illustrated as mean ± SD.

Journal: Journal of Imaging

Article Title: Noninvasive Quantification of Glucose Metabolism in Mice Myocardium Using the Spline Reconstruction Technique

doi: 10.3390/jimaging10070170

Figure Lengend Snippet: The averaged M R G l u ( μ mol/min/100 g) of the applied Patlak kinetic model for all four reconstruction algorithms employed, namely, FBP, SRT, Tera-Tomo 4-5, and Tera-Tomo 4-13. The averaged M R G l u was calculated via PMOD software . The results are illustrated as mean ± SD.

Article Snippet: The Patlak graphical kinetic analysis of the PET reconstructed images (a total of 202,048 images) was performed via PMOD computer software (version 3.506, PMOD Technologies LLC, Fällanden, Switzerland) [ ], which is known as the reference tool for PET kinetic modeling.

Techniques: Software