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Simpleware Ltd image processing software program scanip
Image Processing Software Program Scanip, supplied by Simpleware Ltd, 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/image+processing+software+program+scanip/scanip+software/pm39909738-51-14-19
Average 90 stars, based on 1 article reviews
image processing software program scanip - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

Software:

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue
Article Snippet: .. The CT image data was processed using Simpleware ScanIP software to create detailed anatomical models, emphasizing the blood collection site at the caudal gluteal region and optimized for 3D printing. ..

Article Title: Multicale Study of the Fatigue Life of AlSi10Mg Material Produced by Laser Powder Bed Fusion (LPBF) Method: Experimental and Computational
Article Snippet: .. The Simpleware ScanIP software is used to create a 3D shell membrane mesh of the microstructural image presented in Figure 15 (up- right). ..

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue.
Article Snippet: .. Using the described workflow, DICOM-standard medical images were converted into 3D models through Simpleware ScanIP software, enabling the fabrication of an anatomically accurate engineered model with material properties that closely resemble their biological counterparts. ..

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue
Article Snippet: .. Using the described workflow, DICOM-standard medical images were converted into 3D models through Simpleware ScanIP software, enabling the fabrication of an anatomically accurate engineered model with material properties that closely resemble their biological counterparts. ..

Article Title: Early degenerative changes are different between partial and complete anterior cruciate ligament injury and associate with joint instability in a skeletally immature porcine model
Article Snippet: T1ρ and T2* relaxation maps were created by fitting monoexponential decay function on a voxel-by-voxel basis to the 5 spin-lock times and 6 echo times, respectively, using a custom MATLAB script. .. Articular cartilage from the medial and lateral condyles of the femur and tibia were manually segmented by a single user from T1ρ images with 0ms spin-lock time using commercial software (Simpleware ScanIP). ..

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue.
Article Snippet: .. The CT image data was processed using Simpleware ScanIP software to create detailed anatomical models, emphasizing the blood collection site at the caudal gluteal region and optimized for 3D printing. ..

Article Title: Three-dimensional in vivo and finite element analyses of peri-implant bone remodeling after superstructure placement.
Article Snippet: Three-dimensional in vivo and finite element analyses of periimplant bone remodeling after superstructure placement Itt Assoratgoon, DDS, Boyang Wan, BE, ME, PhD, Taichi Tenkumo, DDS, PhD, Tomoya Sato, DDS, PhD, Tetsuo Kawata, DDS, PhD, Ramadhan Hardani Putra, DDS, MDSc, PhD, Chi Wu, BE, ME, PhD, Hiroshi Egusa, DDS, PhD, Qing Li , BE, ME, PhD, Keiichi Sasaki, DDS, PhD, and Yoda Nobuhiro, DDS, PhD

Article Title: Data beats dogma-Valgus knees are not associated with a hypoplastic lateral femoral condyle: A CT-based analysis from a high-volume institution.
Article Snippet: Fabio Mancino, Sydney Orthopaedic Research Institute (SORI), Landmark Orthopaedics, Level 2/500 Pacific Hwy, St. Leonards, NSW, Australia.. Email: Fabio_mancino@yahoo.com Abstract Purpose: Observations following the mechanical alignment principle have led to the concept that the lateral femoral condyle (LFC) is hypoplastic in valgus knee.. This study aimed to investigate if this assumption is correct— the hypothesis was that there is no relationship between the radius of curvature of the LFC and coronal alignment.

Membrane:

Article Title: Multicale Study of the Fatigue Life of AlSi10Mg Material Produced by Laser Powder Bed Fusion (LPBF) Method: Experimental and Computational
Article Snippet: .. The Simpleware ScanIP software is used to create a 3D shell membrane mesh of the microstructural image presented in Figure 15 (up- right). ..

Imaging:

Article Title: Data beats dogma-Valgus knees are not associated with a hypoplastic lateral femoral condyle: A CT-based analysis from a high-volume institution.
Article Snippet: Fabio Mancino, Sydney Orthopaedic Research Institute (SORI), Landmark Orthopaedics, Level 2/500 Pacific Hwy, St. Leonards, NSW, Australia.. Email: Fabio_mancino@yahoo.com Abstract Purpose: Observations following the mechanical alignment principle have led to the concept that the lateral femoral condyle (LFC) is hypoplastic in valgus knee.. This study aimed to investigate if this assumption is correct— the hypothesis was that there is no relationship between the radius of curvature of the LFC and coronal alignment.



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90
Simpleware Ltd image processing software program scanip
Image Processing Software Program Scanip, supplied by Simpleware Ltd, 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/image+processing+software+program+scanip/scanip+software/pm39909738-51-14-19
Average 90 stars, based on 1 article reviews
image processing software program scanip - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

90
Simpleware Ltd 3d image processing and model generation software program scanip
3d Image Processing And Model Generation Software Program Scanip, supplied by Simpleware Ltd, 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/image+processing+software+program+scanip/3d+modelling+image+processing+software+suite+scanip/pm32562880-42-3-12
Average 90 stars, based on 1 article reviews
3d image processing and model generation software program scanip - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

90
Synopsys Inc 3d image processing and model generation software program scanip
The process for generation of a <t>3D</t> model. A: Computed tomographic images of the nasal passages were acquired in <t>a</t> <t>transverse</t> image plane using multi-detector computed tomography. A representative image of the caudal nasal passage at the level of the choanae is shown. B: Threshold segmentation in the ScanIP program isolated the airways (blue) using a threshold of −1024 to −450 Hounsfield units (HU). C: A fill threshold algorithm in ScanIP was used to generate a solid model of the nasal passages which was then sub-divided into 6-sided tetrahedral elements and exported to the COMOSL Multiphysics software package. D: 3D model of the nasal passages within the COMSOL Multiphysics package with E: Zoomed in image of the 3D model and tetrahedral mesh elements used in the computational fluid dynamic analysis. Note that each tetrahedral element has 6 sides or edges and the minimum edge length controls the mesh density where a smaller minimum edge length leads to a more dense mesh and more elements.
3d Image Processing And Model Generation Software Program Scanip, supplied by Synopsys 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/image+processing+software+program+scanip/3d+image+processing+and+model+generation+software+program+scanip/pmc05597484-111-13-22
Average 90 stars, based on 1 article reviews
3d image processing and model generation software program scanip - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

Image Search Results


The process for generation of a 3D model. A: Computed tomographic images of the nasal passages were acquired in a transverse image plane using multi-detector computed tomography. A representative image of the caudal nasal passage at the level of the choanae is shown. B: Threshold segmentation in the ScanIP program isolated the airways (blue) using a threshold of −1024 to −450 Hounsfield units (HU). C: A fill threshold algorithm in ScanIP was used to generate a solid model of the nasal passages which was then sub-divided into 6-sided tetrahedral elements and exported to the COMOSL Multiphysics software package. D: 3D model of the nasal passages within the COMSOL Multiphysics package with E: Zoomed in image of the 3D model and tetrahedral mesh elements used in the computational fluid dynamic analysis. Note that each tetrahedral element has 6 sides or edges and the minimum edge length controls the mesh density where a smaller minimum edge length leads to a more dense mesh and more elements.

Journal: Veterinary radiology & ultrasound : the official journal of the American College of Veterinary Radiology and the International Veterinary Radiology Association

Article Title: Quantification of Nasal Airflow Resistance In English Bulldogs Using Computed Tomography and Computational Fluid Dynamics

doi: 10.1111/vru.12531

Figure Lengend Snippet: The process for generation of a 3D model. A: Computed tomographic images of the nasal passages were acquired in a transverse image plane using multi-detector computed tomography. A representative image of the caudal nasal passage at the level of the choanae is shown. B: Threshold segmentation in the ScanIP program isolated the airways (blue) using a threshold of −1024 to −450 Hounsfield units (HU). C: A fill threshold algorithm in ScanIP was used to generate a solid model of the nasal passages which was then sub-divided into 6-sided tetrahedral elements and exported to the COMOSL Multiphysics software package. D: 3D model of the nasal passages within the COMSOL Multiphysics package with E: Zoomed in image of the 3D model and tetrahedral mesh elements used in the computational fluid dynamic analysis. Note that each tetrahedral element has 6 sides or edges and the minimum edge length controls the mesh density where a smaller minimum edge length leads to a more dense mesh and more elements.

Article Snippet: First, the raw MDCT bone algorithm transverse dataset was imported into a three-dimensional (3D) image processing and model generation software program (ScanIP, Synopsys, Inc. Simpleware, Version 7.0, Chantilly, VA).

Techniques: Computed Tomography, Isolation, Software

Asymmetry of pressure between the right and left nasal passages was identified in two dogs. A: Rostrocaudal orientation; smoothed 3D model of the airway showing the right nasal cavity having a higher pressure compared to the left nasal passage. The yellow color depicts a higher pressure relative to the blue color-coded left nasal cavity. B: Ventrodorsal orientation; smoothed 3D model airway shows the differing pressures within the rostral nasal passages. The rostral nares are at the top of the image. C: Transverse CT image of a nasal cavity with asymmetry between the nasal cavities. Dog is in ventral (V) recumbency, the right side (R) of the dog is to the left of the image. Bone algorithm. Window width: 2500 Window level: 250.

Journal: Veterinary radiology & ultrasound : the official journal of the American College of Veterinary Radiology and the International Veterinary Radiology Association

Article Title: Quantification of Nasal Airflow Resistance In English Bulldogs Using Computed Tomography and Computational Fluid Dynamics

doi: 10.1111/vru.12531

Figure Lengend Snippet: Asymmetry of pressure between the right and left nasal passages was identified in two dogs. A: Rostrocaudal orientation; smoothed 3D model of the airway showing the right nasal cavity having a higher pressure compared to the left nasal passage. The yellow color depicts a higher pressure relative to the blue color-coded left nasal cavity. B: Ventrodorsal orientation; smoothed 3D model airway shows the differing pressures within the rostral nasal passages. The rostral nares are at the top of the image. C: Transverse CT image of a nasal cavity with asymmetry between the nasal cavities. Dog is in ventral (V) recumbency, the right side (R) of the dog is to the left of the image. Bone algorithm. Window width: 2500 Window level: 250.

Article Snippet: First, the raw MDCT bone algorithm transverse dataset was imported into a three-dimensional (3D) image processing and model generation software program (ScanIP, Synopsys, Inc. Simpleware, Version 7.0, Chantilly, VA).

Techniques: