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Simpleware Ltd meshing software simpleware scanip
Visualization <t>of</t> <t>Simpleware</t> <t>ScanIP</t> meshing. A PFIB-characterized microstructure is shown (a) before and (b) after the meshing algorithm (rendered in 2D slice view). The surfaces are well preserved after the meshing. Color indicates phase contrast. The gray phase is pores, the blue phase is lanthanum strontium manganite (LSM), the green phase is yttria-stabilized zirconia (YSZ), the orange phase is the TPBs (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.).
Meshing Software Simpleware 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/meshing+software+scanip/synopsys+simpleware/pmc07078369-124-7-9
Average 90 stars, based on 1 article reviews
meshing software simpleware scanip - by Bioz Stars, 2026-09
90/100 stars

Images

1) Product Images from "High performance modeling of heterogeneous SOFC electrode microstructures using the MOOSE framework: ERMINE (Electrochemical Reactions in MIcrostructural NEtworks)"

Article Title: High performance modeling of heterogeneous SOFC electrode microstructures using the MOOSE framework: ERMINE (Electrochemical Reactions in MIcrostructural NEtworks)

Journal: MethodsX

doi: 10.1016/j.mex.2020.100822

Visualization of Simpleware ScanIP meshing. A PFIB-characterized microstructure is shown (a) before and (b) after the meshing algorithm (rendered in 2D slice view). The surfaces are well preserved after the meshing. Color indicates phase contrast. The gray phase is pores, the blue phase is lanthanum strontium manganite (LSM), the green phase is yttria-stabilized zirconia (YSZ), the orange phase is the TPBs (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.).
Figure Legend Snippet: Visualization of Simpleware ScanIP meshing. A PFIB-characterized microstructure is shown (a) before and (b) after the meshing algorithm (rendered in 2D slice view). The surfaces are well preserved after the meshing. Color indicates phase contrast. The gray phase is pores, the blue phase is lanthanum strontium manganite (LSM), the green phase is yttria-stabilized zirconia (YSZ), the orange phase is the TPBs (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.).

Techniques Used:

Related Articles

Software:

Article Title: Bridging Field and Laboratory Permeabilities of Pervious Pavement Mixtures Using XRCT-Based Numerical Modeling
Article Snippet: Drainage capacity of pervious pavement mixtures is commonly measured using a falling head permeameter at hydraulic heads much higher than expected in the field.. Recent advancements in computational fluid dynamics (CFD)– and X-ray computed tomography (XRCT)–based modeling eliminates the laboratory challenges of maintaining lower hydraulic heads.. However, improper characterization in digital image processing (DIP) and finite-volume simulations resulted in significant errors in permeability measurements and fluid flow behavior.

Article Title: Artificial intelligence and hemodynamic studies in optical coherence tomography angiography for diabetic retinopathy evaluation: A review.
Article Snippet: Diabetic retinopathy (DR) is a rapidly emerging retinal abnormality worldwide, which can cause significant vision loss by disrupting the vascular structure in the retina.. Recently, optical coherence tomography angiography (OCTA) has emerged as an effective imaging tool for diagnosing and monitoring DR. OCTA produces high-quality 3-dimensional images and provides deeper visualization of retinal vessel capillaries and plexuses.. The clinical relevance of OCTA in detecting, classifying, and planning therapeutic procedures for DR patients has been highlighted in various studies.

Article Title: The feasibility of a novel 3D-Printed patient specific cutting guide for extended trochanteric osteotomies
Article Snippet: CT scans were obtained using LightSpeed VCT GE Medical Systems Computed Tomography Scanner with a slice thickness of 0.625 mm and kVp of 80 and 140 for the sawbones and cadaveric femurs respectively. .. Using Synopysis Simpleware ScanIP (Version T-2022.03-SP2, 2022, Mountain View, CA, USA) image processing software to segment CT scans, 3D models of the femur were generated. ..

Article Title: Fabricating Patient-Specific 3D Printed Drill Guides to Treat Femoral Head Avascular Necrosis
Article Snippet: A foam cortical shell femur (Model SKU 1103, Sawbones, Vashon, WA, USA) was scanned using a LightSpeed VCT GE Medical Systems CT Scanner with a slice thickness of 0.625 mm and 80 kVp. .. The CT scan was segmented using Synopsys Simpleware ScanIP ® software (Version 2022, Sunnyvale, CA, USA), creating a 3D femur model. To represent the necrotic lesion, a virtual lesion was positioned in the head of the 3D femur model, which was based on previously described lesions in the literature., , ..

Computed Tomography:

Article Title: Bridging Field and Laboratory Permeabilities of Pervious Pavement Mixtures Using XRCT-Based Numerical Modeling
Article Snippet: Drainage capacity of pervious pavement mixtures is commonly measured using a falling head permeameter at hydraulic heads much higher than expected in the field.. Recent advancements in computational fluid dynamics (CFD)– and X-ray computed tomography (XRCT)–based modeling eliminates the laboratory challenges of maintaining lower hydraulic heads.. However, improper characterization in digital image processing (DIP) and finite-volume simulations resulted in significant errors in permeability measurements and fluid flow behavior.

Article Title: Fabricating Patient-Specific 3D Printed Drill Guides to Treat Femoral Head Avascular Necrosis
Article Snippet: A foam cortical shell femur (Model SKU 1103, Sawbones, Vashon, WA, USA) was scanned using a LightSpeed VCT GE Medical Systems CT Scanner with a slice thickness of 0.625 mm and 80 kVp. .. The CT scan was segmented using Synopsys Simpleware ScanIP ® software (Version 2022, Sunnyvale, CA, USA), creating a 3D femur model. To represent the necrotic lesion, a virtual lesion was positioned in the head of the 3D femur model, which was based on previously described lesions in the literature., , ..

other:

Article Title: 3D printing for virtual surgical planning of nasoseptal flap skull-base reconstruction: A proof-of-concept study.
Article Snippet: 1Department of Surgery, Division of Otolaryngology, Yale School of Medicine, New Haven, Connecticut, USA 2Department of Orthopedics, Yale School of Medicine, New Haven, Connecticut, USA 3Yale School of Engineering and Applied Science, Yale University, New Haven, Connecticut, USA 4Department of Neurological Surgery, Yale School of Medicine, New Haven, Connecticut, USA 5Mid-Atlantic Permanente Medical Group, McLean, Virginia, USA

Article Title: Patellar tilt calculation utilizing artificial intelligence on CT knee imaging.
Article Snippet: Article history: Received 13 May 2024 Revised 11 February 2025 Accepted 15 February 2025

Generated:

Article Title: Biomechanical assessment of zygomatic implants in clinical rehabilitation scenarios: A finite element and fatigue analysis.
Article Snippet: Objectives: This study utilizes contemporary placement approaches and implant design to investigate zygomatic implants’ biomechanical behavior and fatigue lifetime in clinical contexts.. Methods: A commercially available zygomatic implant assembly and an ex vivo skull were subjected to computed tomography.. Three-dimensional models representing intra-sinus, extra-sinus, and extramaxillary configurations were constructed.

Article Title: The feasibility of a novel 3D-Printed patient specific cutting guide for extended trochanteric osteotomies
Article Snippet: CT scans were obtained using LightSpeed VCT GE Medical Systems Computed Tomography Scanner with a slice thickness of 0.625 mm and kVp of 80 and 140 for the sawbones and cadaveric femurs respectively. .. Using Synopysis Simpleware ScanIP (Version T-2022.03-SP2, 2022, Mountain View, CA, USA) image processing software to segment CT scans, 3D models of the femur were generated. ..



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Visualization <t>of</t> <t>Simpleware</t> <t>ScanIP</t> meshing. A PFIB-characterized microstructure is shown (a) before and (b) after the meshing algorithm (rendered in 2D slice view). The surfaces are well preserved after the meshing. Color indicates phase contrast. The gray phase is pores, the blue phase is lanthanum strontium manganite (LSM), the green phase is yttria-stabilized zirconia (YSZ), the orange phase is the TPBs (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.).
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Image Search Results


Visualization of Simpleware ScanIP meshing. A PFIB-characterized microstructure is shown (a) before and (b) after the meshing algorithm (rendered in 2D slice view). The surfaces are well preserved after the meshing. Color indicates phase contrast. The gray phase is pores, the blue phase is lanthanum strontium manganite (LSM), the green phase is yttria-stabilized zirconia (YSZ), the orange phase is the TPBs (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.).

Journal: MethodsX

Article Title: High performance modeling of heterogeneous SOFC electrode microstructures using the MOOSE framework: ERMINE (Electrochemical Reactions in MIcrostructural NEtworks)

doi: 10.1016/j.mex.2020.100822

Figure Lengend Snippet: Visualization of Simpleware ScanIP meshing. A PFIB-characterized microstructure is shown (a) before and (b) after the meshing algorithm (rendered in 2D slice view). The surfaces are well preserved after the meshing. Color indicates phase contrast. The gray phase is pores, the blue phase is lanthanum strontium manganite (LSM), the green phase is yttria-stabilized zirconia (YSZ), the orange phase is the TPBs (For interpretation of the references to color in this figure legend, the reader is referred to the web version of this article.).

Article Snippet: In our workflow, we used the commercial meshing software Simpleware ScanIP with the FE module (Synopsis, Mountain View, CA).

Techniques: