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Formlabs Inc 3d printed housing fixture
a) Cross-sectional schematic of the proof-of-concept applicator assembly, consisting of a tubular transducer applicator <t>(1.70</t> <t>MHz,</t> 4.75 mm radius × 9.5 mm height, white arrow) mounted in a brass conical reflector fixture, a fluid lens fixture filled with perfluorocarbon solution, and <t>3D</t> printed adapters for mounting and alignment. (b) The applicator, brass reflector and lens fixture subassemblies are shown. c) Acoustic characterization was performed using hydrophone scanning in a water tank, and the focal length of the lens was varied between measurements by adjusting the fluid volume in the lens fixture.
3d Printed Housing Fixture, supplied by Formlabs 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/result/3d printed housing fixture/product/Formlabs Inc
Average 90 stars, based on 1 article reviews
3d printed housing fixture - by Bioz Stars, 2026-05
90/100 stars

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1) Product Images from "Integration of deployable fluid lenses and reflectors with endoluminal therapeutic ultrasound applicators: Preliminary investigations of enhanced penetration depth and focal gain"

Article Title: Integration of deployable fluid lenses and reflectors with endoluminal therapeutic ultrasound applicators: Preliminary investigations of enhanced penetration depth and focal gain

Journal: Medical physics

doi: 10.1002/mp.12458

a) Cross-sectional schematic of the proof-of-concept applicator assembly, consisting of a tubular transducer applicator (1.70 MHz, 4.75 mm radius × 9.5 mm height, white arrow) mounted in a brass conical reflector fixture, a fluid lens fixture filled with perfluorocarbon solution, and 3D printed adapters for mounting and alignment. (b) The applicator, brass reflector and lens fixture subassemblies are shown. c) Acoustic characterization was performed using hydrophone scanning in a water tank, and the focal length of the lens was varied between measurements by adjusting the fluid volume in the lens fixture.
Figure Legend Snippet: a) Cross-sectional schematic of the proof-of-concept applicator assembly, consisting of a tubular transducer applicator (1.70 MHz, 4.75 mm radius × 9.5 mm height, white arrow) mounted in a brass conical reflector fixture, a fluid lens fixture filled with perfluorocarbon solution, and 3D printed adapters for mounting and alignment. (b) The applicator, brass reflector and lens fixture subassemblies are shown. c) Acoustic characterization was performed using hydrophone scanning in a water tank, and the focal length of the lens was varied between measurements by adjusting the fluid volume in the lens fixture.

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Formlabs Inc 3d printed housing fixture
a) Cross-sectional schematic of the proof-of-concept applicator assembly, consisting of a tubular transducer applicator <t>(1.70</t> <t>MHz,</t> 4.75 mm radius × 9.5 mm height, white arrow) mounted in a brass conical reflector fixture, a fluid lens fixture filled with perfluorocarbon solution, and <t>3D</t> printed adapters for mounting and alignment. (b) The applicator, brass reflector and lens fixture subassemblies are shown. c) Acoustic characterization was performed using hydrophone scanning in a water tank, and the focal length of the lens was varied between measurements by adjusting the fluid volume in the lens fixture.
3d Printed Housing Fixture, supplied by Formlabs 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/result/3d printed housing fixture/product/Formlabs Inc
Average 90 stars, based on 1 article reviews
3d printed housing fixture - by Bioz Stars, 2026-05
90/100 stars
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a) Cross-sectional schematic of the proof-of-concept applicator assembly, consisting of a tubular transducer applicator (1.70 MHz, 4.75 mm radius × 9.5 mm height, white arrow) mounted in a brass conical reflector fixture, a fluid lens fixture filled with perfluorocarbon solution, and 3D printed adapters for mounting and alignment. (b) The applicator, brass reflector and lens fixture subassemblies are shown. c) Acoustic characterization was performed using hydrophone scanning in a water tank, and the focal length of the lens was varied between measurements by adjusting the fluid volume in the lens fixture.

Journal: Medical physics

Article Title: Integration of deployable fluid lenses and reflectors with endoluminal therapeutic ultrasound applicators: Preliminary investigations of enhanced penetration depth and focal gain

doi: 10.1002/mp.12458

Figure Lengend Snippet: a) Cross-sectional schematic of the proof-of-concept applicator assembly, consisting of a tubular transducer applicator (1.70 MHz, 4.75 mm radius × 9.5 mm height, white arrow) mounted in a brass conical reflector fixture, a fluid lens fixture filled with perfluorocarbon solution, and 3D printed adapters for mounting and alignment. (b) The applicator, brass reflector and lens fixture subassemblies are shown. c) Acoustic characterization was performed using hydrophone scanning in a water tank, and the focal length of the lens was varied between measurements by adjusting the fluid volume in the lens fixture.

Article Snippet: The assembly, as shown in , consists of a 9.5 mm OD × 9.5 mm height 1.70 MHz tubular transducer mounted on a 3D printed housing fixture (Formlabs Inc., Somerville, MA), centered in a conical brass reflector fixture.

Techniques: