3d face app Search Results


90
Bellus Health 3d face app
Infants face were scanned with <t>an</t> <t>infrared</t> structured light camera (Bellus <t>3D™)</t> which projected 50,000 infrared dots onto the face area. Using proprietary (Bellus 3D™) landmark recognition software surface images are created with close range scanning at up tp 0.4 mm resolution
3d Face App, supplied by Bellus Health, 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/3d+face+app/pmc09341126-63-17-16?v=Bellus+Health
Average 90 stars, based on 1 article reviews
3d face app - by Bioz Stars, 2026-08
90/100 stars
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Infants face were scanned with an infrared structured light camera (Bellus 3D™) which projected 50,000 infrared dots onto the face area. Using proprietary (Bellus 3D™) landmark recognition software surface images are created with close range scanning at up tp 0.4 mm resolution

Journal: 3D Printing in Medicine

Article Title: Workflow to develop 3D designed personalized neonatal CPAP masks using iPhone structured light facial scanning

doi: 10.1186/s41205-022-00155-7

Figure Lengend Snippet: Infants face were scanned with an infrared structured light camera (Bellus 3D™) which projected 50,000 infrared dots onto the face area. Using proprietary (Bellus 3D™) landmark recognition software surface images are created with close range scanning at up tp 0.4 mm resolution

Article Snippet: Later, we use either the iPhone X (Apple, Cupertino, CA) using built-in TrueDepth™ infrared camera and Bellus 3D Face App, or Heges 3D Scanner (Marek Šimoník, Opava, Czech Republic), an iPhone application.

Techniques: Software

a ) A point cloud created as 500,000 3D surface points recognized by structured infrared light scanning software. b ) High density surface face model created with 250,00 high-definition triangles. c ) Texture map applied to the surface of high-definition triangles ( b ) which can be used for direct 3D printing

Journal: 3D Printing in Medicine

Article Title: Workflow to develop 3D designed personalized neonatal CPAP masks using iPhone structured light facial scanning

doi: 10.1186/s41205-022-00155-7

Figure Lengend Snippet: a ) A point cloud created as 500,000 3D surface points recognized by structured infrared light scanning software. b ) High density surface face model created with 250,00 high-definition triangles. c ) Texture map applied to the surface of high-definition triangles ( b ) which can be used for direct 3D printing

Article Snippet: Later, we use either the iPhone X (Apple, Cupertino, CA) using built-in TrueDepth™ infrared camera and Bellus 3D Face App, or Heges 3D Scanner (Marek Šimoník, Opava, Czech Republic), an iPhone application.

Techniques: Software

Anthropometric landmarks used on camera generated 3D face model to assess accuracy of dimensions determined by scanning

Journal: 3D Printing in Medicine

Article Title: Workflow to develop 3D designed personalized neonatal CPAP masks using iPhone structured light facial scanning

doi: 10.1186/s41205-022-00155-7

Figure Lengend Snippet: Anthropometric landmarks used on camera generated 3D face model to assess accuracy of dimensions determined by scanning

Article Snippet: Later, we use either the iPhone X (Apple, Cupertino, CA) using built-in TrueDepth™ infrared camera and Bellus 3D Face App, or Heges 3D Scanner (Marek Šimoník, Opava, Czech Republic), an iPhone application.

Techniques: Generated

Part comparison analysis of measurements determined by structed light scanning camera (Bellus) compared to CT scanned surface map. a ) The structured light scanning 3D data was superimposed onto the CT scanned image surface and the comparison to the 3D model was assessed by color mapping. b ) Color scale representing the difference in mm between each point of the 3D surface with the corresponding CT surface data. Green = 0.0 mm difference. Red = 2.0 mm difference. c ) A histogram depicting the number of points that correspond to each color

Journal: 3D Printing in Medicine

Article Title: Workflow to develop 3D designed personalized neonatal CPAP masks using iPhone structured light facial scanning

doi: 10.1186/s41205-022-00155-7

Figure Lengend Snippet: Part comparison analysis of measurements determined by structed light scanning camera (Bellus) compared to CT scanned surface map. a ) The structured light scanning 3D data was superimposed onto the CT scanned image surface and the comparison to the 3D model was assessed by color mapping. b ) Color scale representing the difference in mm between each point of the 3D surface with the corresponding CT surface data. Green = 0.0 mm difference. Red = 2.0 mm difference. c ) A histogram depicting the number of points that correspond to each color

Article Snippet: Later, we use either the iPhone X (Apple, Cupertino, CA) using built-in TrueDepth™ infrared camera and Bellus 3D Face App, or Heges 3D Scanner (Marek Šimoník, Opava, Czech Republic), an iPhone application.

Techniques:

9 representative structured facial scan of neonates using Bellus 3D camera and Bellus 3D scanning software

Journal: 3D Printing in Medicine

Article Title: Workflow to develop 3D designed personalized neonatal CPAP masks using iPhone structured light facial scanning

doi: 10.1186/s41205-022-00155-7

Figure Lengend Snippet: 9 representative structured facial scan of neonates using Bellus 3D camera and Bellus 3D scanning software

Article Snippet: Later, we use either the iPhone X (Apple, Cupertino, CA) using built-in TrueDepth™ infrared camera and Bellus 3D Face App, or Heges 3D Scanner (Marek Šimoník, Opava, Czech Republic), an iPhone application.

Techniques: Software