Review




Structured Review

Simpleware Ltd scale fabricated phantom model
<t>Phantom</t> <t>model</t> components; ( a ) Full size skeletal model 3D render; ( b ) Corresponding 3D-printed bone model at 20% <t>scale;</t> ( c ) Dip-coating of bone in Humimic Gel 0 to simulate tendon and muscle attachment; ( d ) Full size 3D render of the compliant skin shell; ( e ) Final shell printed in Flexible 80A resin at 20% scale; ( f ) Superior view of staged phantom showing printed skeleton positioned within the compliant skin shell prior to gel cast.
Scale Fabricated Phantom Model, supplied by Simpleware Ltd, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/scale fabricated phantom model/product/Simpleware Ltd
Average 86 stars, based on 1 article reviews
scale fabricated phantom model - by Bioz Stars, 2026-06
86/100 stars

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1) Product Images from "Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue"

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue

Journal: Scientific Reports

doi: 10.1038/s41598-026-36154-5

Phantom model components; ( a ) Full size skeletal model 3D render; ( b ) Corresponding 3D-printed bone model at 20% scale; ( c ) Dip-coating of bone in Humimic Gel 0 to simulate tendon and muscle attachment; ( d ) Full size 3D render of the compliant skin shell; ( e ) Final shell printed in Flexible 80A resin at 20% scale; ( f ) Superior view of staged phantom showing printed skeleton positioned within the compliant skin shell prior to gel cast.
Figure Legend Snippet: Phantom model components; ( a ) Full size skeletal model 3D render; ( b ) Corresponding 3D-printed bone model at 20% scale; ( c ) Dip-coating of bone in Humimic Gel 0 to simulate tendon and muscle attachment; ( d ) Full size 3D render of the compliant skin shell; ( e ) Final shell printed in Flexible 80A resin at 20% scale; ( f ) Superior view of staged phantom showing printed skeleton positioned within the compliant skin shell prior to gel cast.

Techniques Used:

( a ) Casting the final soft tissue layer (20% scale model) using Humimic Gel 5, poured to fill the remaining mold volume; ( b ) Heat polishing the exposed top layer to smooth surface imperfections without damaging the skin shell; ( c ) Superior view of phantom model after heat polish; ( d ) Color overlay of the distinct phantom components. The Gel 0-dip-coated skeletal structure (magenta) is embedded within the Humimic Gel 5 soft-tissue layer (yellow) and enclosed by the compliant outer shell (blue).
Figure Legend Snippet: ( a ) Casting the final soft tissue layer (20% scale model) using Humimic Gel 5, poured to fill the remaining mold volume; ( b ) Heat polishing the exposed top layer to smooth surface imperfections without damaging the skin shell; ( c ) Superior view of phantom model after heat polish; ( d ) Color overlay of the distinct phantom components. The Gel 0-dip-coated skeletal structure (magenta) is embedded within the Humimic Gel 5 soft-tissue layer (yellow) and enclosed by the compliant outer shell (blue).

Techniques Used:

Comparison of (left) original 3D render from Simpleware and (right) the final 20% scale fabricated phantom model. The printed model closely replicates internal skeletal features and anatomical contours with clear visual fidelity.
Figure Legend Snippet: Comparison of (left) original 3D render from Simpleware and (right) the final 20% scale fabricated phantom model. The printed model closely replicates internal skeletal features and anatomical contours with clear visual fidelity.

Techniques Used: Comparison



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Simpleware Ltd scale fabricated phantom model
<t>Phantom</t> <t>model</t> components; ( a ) Full size skeletal model 3D render; ( b ) Corresponding 3D-printed bone model at 20% <t>scale;</t> ( c ) Dip-coating of bone in Humimic Gel 0 to simulate tendon and muscle attachment; ( d ) Full size 3D render of the compliant skin shell; ( e ) Final shell printed in Flexible 80A resin at 20% scale; ( f ) Superior view of staged phantom showing printed skeleton positioned within the compliant skin shell prior to gel cast.
Scale Fabricated Phantom Model, supplied by Simpleware Ltd, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/scale fabricated phantom model/product/Simpleware Ltd
Average 86 stars, based on 1 article reviews
scale fabricated phantom model - by Bioz Stars, 2026-06
86/100 stars
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Phantom model components; ( a ) Full size skeletal model 3D render; ( b ) Corresponding 3D-printed bone model at 20% scale; ( c ) Dip-coating of bone in Humimic Gel 0 to simulate tendon and muscle attachment; ( d ) Full size 3D render of the compliant skin shell; ( e ) Final shell printed in Flexible 80A resin at 20% scale; ( f ) Superior view of staged phantom showing printed skeleton positioned within the compliant skin shell prior to gel cast.

Journal: Scientific Reports

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue

doi: 10.1038/s41598-026-36154-5

Figure Lengend Snippet: Phantom model components; ( a ) Full size skeletal model 3D render; ( b ) Corresponding 3D-printed bone model at 20% scale; ( c ) Dip-coating of bone in Humimic Gel 0 to simulate tendon and muscle attachment; ( d ) Full size 3D render of the compliant skin shell; ( e ) Final shell printed in Flexible 80A resin at 20% scale; ( f ) Superior view of staged phantom showing printed skeleton positioned within the compliant skin shell prior to gel cast.

Article Snippet: Fig. 9 Comparison of (left) original 3D render from Simpleware and (right) the final 20% scale fabricated phantom model.

Techniques:

( a ) Casting the final soft tissue layer (20% scale model) using Humimic Gel 5, poured to fill the remaining mold volume; ( b ) Heat polishing the exposed top layer to smooth surface imperfections without damaging the skin shell; ( c ) Superior view of phantom model after heat polish; ( d ) Color overlay of the distinct phantom components. The Gel 0-dip-coated skeletal structure (magenta) is embedded within the Humimic Gel 5 soft-tissue layer (yellow) and enclosed by the compliant outer shell (blue).

Journal: Scientific Reports

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue

doi: 10.1038/s41598-026-36154-5

Figure Lengend Snippet: ( a ) Casting the final soft tissue layer (20% scale model) using Humimic Gel 5, poured to fill the remaining mold volume; ( b ) Heat polishing the exposed top layer to smooth surface imperfections without damaging the skin shell; ( c ) Superior view of phantom model after heat polish; ( d ) Color overlay of the distinct phantom components. The Gel 0-dip-coated skeletal structure (magenta) is embedded within the Humimic Gel 5 soft-tissue layer (yellow) and enclosed by the compliant outer shell (blue).

Article Snippet: Fig. 9 Comparison of (left) original 3D render from Simpleware and (right) the final 20% scale fabricated phantom model.

Techniques:

Comparison of (left) original 3D render from Simpleware and (right) the final 20% scale fabricated phantom model. The printed model closely replicates internal skeletal features and anatomical contours with clear visual fidelity.

Journal: Scientific Reports

Article Title: Scalable DICOM 3D-printed phantoms mimicking marine mammal bone and soft tissue

doi: 10.1038/s41598-026-36154-5

Figure Lengend Snippet: Comparison of (left) original 3D render from Simpleware and (right) the final 20% scale fabricated phantom model. The printed model closely replicates internal skeletal features and anatomical contours with clear visual fidelity.

Article Snippet: Fig. 9 Comparison of (left) original 3D render from Simpleware and (right) the final 20% scale fabricated phantom model.

Techniques: Comparison