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Tritech Research Inc digital multi-pressure microinjector minj-d
Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure <t>Microinjector</t> system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.
Digital Multi Pressure Microinjector Minj D, supplied by Tritech Research 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/product/digital+microinjector+minj-d/pmc11661979-42-3-8?v=Tritech+Research+Inc
Average 90 stars, based on 1 article reviews
digital multi-pressure microinjector minj-d - by Bioz Stars, 2026-08
90/100 stars

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1) Product Images from "An efficient injection protocol for Drosophila larvae"

Article Title: An efficient injection protocol for Drosophila larvae

Journal: Biology Methods & Protocols

doi: 10.1093/biomethods/bpae093

Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure Microinjector system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.
Figure Legend Snippet: Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure Microinjector system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.

Techniques Used: Injection, Comparison, Microscopy



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Tritech Research Inc digital multi-pressure microinjector minj-d
Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure <t>Microinjector</t> system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.
Digital Multi Pressure Microinjector Minj D, supplied by Tritech Research 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/product/digital+microinjector+minj-d/pmc11661979-42-3-8?v=Tritech+Research+Inc
Average 90 stars, based on 1 article reviews
digital multi-pressure microinjector minj-d - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Tritech Research Inc digital microinjector minj-d
Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure <t>Microinjector</t> system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.
Digital Microinjector Minj D, supplied by Tritech Research 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/product/digital+microinjector+minj-d/pm37212672-229-69-74?v=Tritech+Research+Inc
Average 90 stars, based on 1 article reviews
digital microinjector minj-d - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Tritech Research Inc digital microinjector tm system minj-d-ce
Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure <t>Microinjector</t> system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.
Digital Microinjector Tm System Minj D Ce, supplied by Tritech Research 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/product/digital+microinjector+minj-d/pm32133301-60-26-31?v=Tritech+Research+Inc
Average 90 stars, based on 1 article reviews
digital microinjector tm system minj-d-ce - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

90
Tritech Research Inc digital microinjector system minj-d-ce
Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure <t>Microinjector</t> system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.
Digital Microinjector System Minj D Ce, supplied by Tritech Research 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/product/digital+microinjector+minj-d/pm32173297-64-34-38?v=Tritech+Research+Inc
Average 90 stars, based on 1 article reviews
digital microinjector system minj-d-ce - by Bioz Stars, 2026-08
90/100 stars
  Buy from Supplier

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Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure Microinjector system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.

Journal: Biology Methods & Protocols

Article Title: An efficient injection protocol for Drosophila larvae

doi: 10.1093/biomethods/bpae093

Figure Lengend Snippet: Larval injection setup. (A) Micropipette puller. Red box highlights the puller bars (a part of the pulley adjustment setup) and a glass microcapillary needle. The needle is secured in the V-groove of the pull bars and positioned through the heating filament ( arrow). The vertical pull produces two needles ( arrows). (B) Needle comparison. Tips of standard commercial needles (CMZ) compared to needles created using Program 1 (P.1) and Program 2 (P.2) on the micropipette puller. Table shows parameters for both programs. Scale bar: 100 µm. (C) Injection setup. Left: Digital Multi-pressure Microinjector system. Right: Three-axis coarse/fine micromanipulator attached to the microscope, both of which are mounted on top of an anti-vibration base plate.

Article Snippet: We used a Digital Multi-pressure Microinjector ( , Tritech Research, Cat. No. MINJ-D) connected to an inverted microscope.

Techniques: Injection, Comparison, Microscopy