3d architectures Search Results


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BioMimetic Therapeutics 3d-architectured biomedical implants
3d Architectured Biomedical Implants, supplied by BioMimetic Therapeutics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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NanoHybrids Inc 3d micro/nano-architecture of α-ni(oh)2 or ni-co ldh with co2(oh)3cl bi-phase
3d Micro/Nano Architecture Of α Ni(oh)2 Or Ni Co Ldh With Co2(oh)3cl Bi Phase, supplied by NanoHybrids Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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3d micro/nano-architecture of α-ni(oh)2 or ni-co ldh with co2(oh)3cl bi-phase - by Bioz Stars, 2026-07
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Lonza hydrophilic real architecture for 3d tissues (rafttm) absorber
Hydrophilic Real Architecture For 3d Tissues (Rafttm) Absorber, supplied by Lonza, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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hydrophilic real architecture for 3d tissues (rafttm) absorber - by Bioz Stars, 2026-07
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Impath Inc a convolutional neural network (cnn) with a 3d u-net architecture
A Convolutional Neural Network (Cnn) With A 3d U Net Architecture, supplied by Impath Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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a convolutional neural network (cnn) with a 3d u-net architecture - by Bioz Stars, 2026-07
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Jung Diagnostics GmbH 3d cnn with a u-net like encoder–decoder architecture
3d Cnn With A U Net Like Encoder–Decoder Architecture, supplied by Jung Diagnostics GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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3d cnn with a u-net like encoder–decoder architecture - by Bioz Stars, 2026-07
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IEEE Access packet processing architecture using last-level-cache slices and interleaved 3d-stacked dram
Packet Processing Architecture Using Last Level Cache Slices And Interleaved 3d Stacked Dram, supplied by IEEE Access, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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packet processing architecture using last-level-cache slices and interleaved 3d-stacked dram - by Bioz Stars, 2026-07
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BioMimetic Therapeutics 3d architecture
3d Architecture, supplied by BioMimetic Therapeutics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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3d architecture - by Bioz Stars, 2026-07
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RaySearch Laboratories 3d cnn u-net
3d Cnn U Net, supplied by RaySearch Laboratories, 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+architectures/pm39489430-153-11-6?v=RaySearch+Laboratories
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3d cnn u-net - by Bioz Stars, 2026-07
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Verlag GmbH 3d hyperbranched hollow carbon nanorod architectures
3d Hyperbranched Hollow Carbon Nanorod Architectures, supplied by Verlag GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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PenRad Technologies Inc ctcf-mediated human 3d genome architecture
Ctcf Mediated Human 3d Genome Architecture, supplied by PenRad Technologies Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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ctcf-mediated human 3d genome architecture - by Bioz Stars, 2026-07
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Verlag GmbH 3d architectures
3d Architectures, supplied by Verlag GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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3d architectures - by Bioz Stars, 2026-07
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Findeis GmbH 3d reconstructions of the skeletal and the corresponding musculoskeletal architecture of the cranio cervical system
3D architecture of <t>the</t> <t>skeletal</t> (A–D) and the corresponding musculoskeletal (A′–D′) <t>cranio‐cervical</t> system in Ichthyosaura alpestris from dorsal (A, A′), lateral (B, B′) and ventral views (C, C′). D and D′ show the hyobranchial apparatus from dorsal view after virtual removal of the skull. Abbreviations: (i) Skeletal elements: Ar, articular; At, atlas; Bb, basibranchial; Cb1, ceratobranchial 1; Chy, ceratohyal; De, dentary; Ex, exoccipital; Fr, frontal; Hb1, hypobranchial 1; Hb2, hypobranchial 2; Ir, interradial cartilage; Mx, maxillary; Na, nasal; Os, orbitospenoid; Pa, parietal; Par, parasphenoid; Pm, premaxillary; Pt, pterygoid; Q, quadrate; Ra, radial; Sg, shoulder girdle; Sq, squamosal; V2, second vertebra; Vo, vomer. (ii) Muscles: 1, adductor mandibulae internus (deep portion); 2, adductor mandibulae internus (superficial portion); 3, adductor mandibulae externus; 4, depressor mandibulae; 5, dorsalis trunci; 7, intertransversarius capitis inferior; 8, subarcualis rectus; 9, subhyoideus; 10, rectus cervicis (both superficialis and profundus); 11, geniohyoideus; 12, genioglossus; 13, basiradialis. (iii) Other structures: H, heart; L, lens; Pe, pericardium.
3d Reconstructions Of The Skeletal And The Corresponding Musculoskeletal Architecture Of The Cranio Cervical System, supplied by Findeis GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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3d reconstructions of the skeletal and the corresponding musculoskeletal architecture of the cranio cervical system - by Bioz Stars, 2026-07
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3D architecture of the skeletal (A–D) and the corresponding musculoskeletal (A′–D′) cranio‐cervical system in Ichthyosaura alpestris from dorsal (A, A′), lateral (B, B′) and ventral views (C, C′). D and D′ show the hyobranchial apparatus from dorsal view after virtual removal of the skull. Abbreviations: (i) Skeletal elements: Ar, articular; At, atlas; Bb, basibranchial; Cb1, ceratobranchial 1; Chy, ceratohyal; De, dentary; Ex, exoccipital; Fr, frontal; Hb1, hypobranchial 1; Hb2, hypobranchial 2; Ir, interradial cartilage; Mx, maxillary; Na, nasal; Os, orbitospenoid; Pa, parietal; Par, parasphenoid; Pm, premaxillary; Pt, pterygoid; Q, quadrate; Ra, radial; Sg, shoulder girdle; Sq, squamosal; V2, second vertebra; Vo, vomer. (ii) Muscles: 1, adductor mandibulae internus (deep portion); 2, adductor mandibulae internus (superficial portion); 3, adductor mandibulae externus; 4, depressor mandibulae; 5, dorsalis trunci; 7, intertransversarius capitis inferior; 8, subarcualis rectus; 9, subhyoideus; 10, rectus cervicis (both superficialis and profundus); 11, geniohyoideus; 12, genioglossus; 13, basiradialis. (iii) Other structures: H, heart; L, lens; Pe, pericardium.

Journal: Journal of Anatomy

Article Title: Musculoskeletal architecture of the prey capture apparatus in salamandrid newts with multiphasic lifestyle: does anatomy change during the seasonal habitat switches?

doi: 10.1111/joa.12445

Figure Lengend Snippet: 3D architecture of the skeletal (A–D) and the corresponding musculoskeletal (A′–D′) cranio‐cervical system in Ichthyosaura alpestris from dorsal (A, A′), lateral (B, B′) and ventral views (C, C′). D and D′ show the hyobranchial apparatus from dorsal view after virtual removal of the skull. Abbreviations: (i) Skeletal elements: Ar, articular; At, atlas; Bb, basibranchial; Cb1, ceratobranchial 1; Chy, ceratohyal; De, dentary; Ex, exoccipital; Fr, frontal; Hb1, hypobranchial 1; Hb2, hypobranchial 2; Ir, interradial cartilage; Mx, maxillary; Na, nasal; Os, orbitospenoid; Pa, parietal; Par, parasphenoid; Pm, premaxillary; Pt, pterygoid; Q, quadrate; Ra, radial; Sg, shoulder girdle; Sq, squamosal; V2, second vertebra; Vo, vomer. (ii) Muscles: 1, adductor mandibulae internus (deep portion); 2, adductor mandibulae internus (superficial portion); 3, adductor mandibulae externus; 4, depressor mandibulae; 5, dorsalis trunci; 7, intertransversarius capitis inferior; 8, subarcualis rectus; 9, subhyoideus; 10, rectus cervicis (both superficialis and profundus); 11, geniohyoideus; 12, genioglossus; 13, basiradialis. (iii) Other structures: H, heart; L, lens; Pe, pericardium.

Article Snippet: Description and terminology largely follows Drüner ( 1902 , 1904 ), Francis ( 1934 ), Özeti & Wake ( 1969 ) and Findeis & Bemis ( 1990 ). fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window Figure 1 caption a7 3D reconstructions of the skeletal (A–D) and the corresponding musculoskeletal (A′–D′) architecture of the cranio‐cervical system in Lissotriton vulgaris from dorsal (A, A′), lateral (B, B′) and ventral views (C, C′).

Techniques:

3D reconstructions of the skeletal (A–D) and the corresponding musculoskeletal (A′–D′) architecture of the cranio‐cervical system in Lissotriton vulgaris from dorsal (A, A′), lateral (B, B′) and ventral views (C, C′). D and D′ show the hyobranchial apparatus from dorsal view after virtual removal of the skull. Abbreviations: (i) Skeletal elements: Ar, articular; At, atlas; Bb, basibranchial; Cb1, ceratobranchial 1; Chy, ceratohyal; De, dentary; Ex, exoccipital; Fr, frontal; Hb1, hypobranchial 1; Hb2, hypobranchial 2; Ir, interradial cartilage; Mx, maxillary; Na, nasal; Os, orbitospenoid; Pa, parietal; Par, parasphenoid; Pm, premaxillary; Pt, pterygoid; Q, quadrate; Ra, radial; Sg, shoulder girdle; Sq, squamosal; V2, second vertebra; V3, third vertebra; Vo, vomer. (ii) Muscles: 1, adductor mandibulae internus (deep portion); 2, adductor mandibulae internus (superficial portion); 3, adductor mandibulae externus; 4, depressor mandibulae; 5, dorsalis trunci; 7, intertransversarius capitis inferior; 8, subarcualis rectus; 9, subhyoideus; 10, rectus cervicis (both superficialis and profundus); 11, geniohyoideus; 12, genioglossus; 13, basiradialis. (iii) Other structures: L, lens; Pe, pericardium. Scale bars: 5 mm. The vertical lines in A′ indicate the area of the histological cross‐sections shown in Fig. 3.

Journal: Journal of Anatomy

Article Title: Musculoskeletal architecture of the prey capture apparatus in salamandrid newts with multiphasic lifestyle: does anatomy change during the seasonal habitat switches?

doi: 10.1111/joa.12445

Figure Lengend Snippet: 3D reconstructions of the skeletal (A–D) and the corresponding musculoskeletal (A′–D′) architecture of the cranio‐cervical system in Lissotriton vulgaris from dorsal (A, A′), lateral (B, B′) and ventral views (C, C′). D and D′ show the hyobranchial apparatus from dorsal view after virtual removal of the skull. Abbreviations: (i) Skeletal elements: Ar, articular; At, atlas; Bb, basibranchial; Cb1, ceratobranchial 1; Chy, ceratohyal; De, dentary; Ex, exoccipital; Fr, frontal; Hb1, hypobranchial 1; Hb2, hypobranchial 2; Ir, interradial cartilage; Mx, maxillary; Na, nasal; Os, orbitospenoid; Pa, parietal; Par, parasphenoid; Pm, premaxillary; Pt, pterygoid; Q, quadrate; Ra, radial; Sg, shoulder girdle; Sq, squamosal; V2, second vertebra; V3, third vertebra; Vo, vomer. (ii) Muscles: 1, adductor mandibulae internus (deep portion); 2, adductor mandibulae internus (superficial portion); 3, adductor mandibulae externus; 4, depressor mandibulae; 5, dorsalis trunci; 7, intertransversarius capitis inferior; 8, subarcualis rectus; 9, subhyoideus; 10, rectus cervicis (both superficialis and profundus); 11, geniohyoideus; 12, genioglossus; 13, basiradialis. (iii) Other structures: L, lens; Pe, pericardium. Scale bars: 5 mm. The vertical lines in A′ indicate the area of the histological cross‐sections shown in Fig. 3.

Article Snippet: Description and terminology largely follows Drüner ( 1902 , 1904 ), Francis ( 1934 ), Özeti & Wake ( 1969 ) and Findeis & Bemis ( 1990 ). fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window Figure 1 caption a7 3D reconstructions of the skeletal (A–D) and the corresponding musculoskeletal (A′–D′) architecture of the cranio‐cervical system in Lissotriton vulgaris from dorsal (A, A′), lateral (B, B′) and ventral views (C, C′).

Techniques: