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Fisher Scientific filtered p1000 pipet tips
Filtered P1000 Pipet Tips, supplied by Fisher Scientific, 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/product/tip/10006m+elite+fa10001m+fisherbrand+multichannel+p1000l+pipettes+sku/pmc13188093-22-0-5
Average 86 stars, based on 1 article reviews
filtered p1000 pipet tips - by Bioz Stars, 2026-10
86/100 stars

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Article Title: Electrochemical oxidation and voltammetric determination of the fungicide metalaxyl using a boron-doped diamond electrode
Article Snippet: This study investigates for the first time the electrochemical behavior and voltammetric determination of fungicide metalaxyl using boron-doped diamond electrodes.. Cyclic voltammetry revealed an irreversible oxidation peak of metalaxyl at +1900 mV in 0.1 mol L 1 H2SO4.. The oxidation process was found to be diffusioncontrolled and independent of proton participation.

Article Title: Protocol for high-throughput processing of fecal samples for long-read metagenomic sequencing using PacBio HiFi or Oxford Nanopore Technologies
Article Snippet: Filtered P1000 wide bore pipet tips , Fisher Scientific , Cat#: 21-236-2C.

Article Title: m 6 A-SAC-seq for quantitative whole transcriptome m 6 A profiling
Article Snippet: P2L, P10L, P20L, P100L, P200L, P1000L: SKU: FA10001M-10006M) Fisherbrand Elite Multichannel Pipettes (Fisher Scientific, cat. no. 1–10 μL: FBE1200010; 30–300 μL: FBE1200030) 12 -Tube Magnetic Separation Rack (New England BioLabs, cat. no. S1509S) DiaMag 0.2ml - magnetic rack (Diagenode, cat. no. B04000001) Qubit 2.0 Fluorometer (Invitrogen, cat. no. Q33216 ) Qubit Assay Tubes (Invitrogen cat. no. Q32856 ) 2100 Bioanalyzer Instrument (Agilent, cat. no. G2939BA) NovaSeq 6000 System (Illumina) SAC-seq analysis pipeline ( https://github.com/y9c/m6A-SACseq )

Article Title: m 6 A-SAC-seq for quantitative whole transcriptome m 6 A profiling
Article Snippet: P2L, P10L, P20L, P100L, P200L, P1000L: SKU: FA10001M-10006M) Fisherbrand Elite Multichannel Pipettes (Fisher Scientific, cat. no. 1–10 μL: FBE1200010; 30–300 μL: FBE1200030) 12 -Tube Magnetic Separation Rack (New England BioLabs, cat. no. S1509S) DiaMag 0.2ml - magnetic rack (Diagenode, cat. no. B04000001) Qubit 2.0 Fluorometer (Invitrogen, cat. no. Q33216 ) Qubit Assay Tubes (Invitrogen cat. no. Q32856 ) 2100 Bioanalyzer Instrument (Agilent, cat. no. G2939BA) NovaSeq 6000 System (Illumina) SAC-seq analysis pipeline ( https://github.com/y9c/m6A-SACseq ) ▴CRITICAL Reagents flagged as RNase-free should be prepared under RNase-free conditions.

Article Title: BID-seq for transcriptome-wide quantitative sequencing of mRNA pseudouridine at base resolution
Article Snippet: P2L, P10L, P20L, P100L, P200L and P1000L: SKU: FA10001M–10006M) Fisherbrand Elite Multichannel Pipettes (Fisher Scientific, cat. no. 1–10 μL: FBE1200010; 30–300 μL: FBE1200030) 12-Tube magnetic separation rack (New England BioLabs, cat. no. S1509S) Qubit 2.0 Fluorometer (Invitrogen, cat. no. Q33216 ) Qubit assay tubes (Invitrogen cat. no. Q32856 ) 2100 Bioanalyzer Instrument (Agilent, cat. no. G2939BA) NovaSeq 6000 System (Illumina) BID-seq analysis pipeline ( https://github.com/y9c/pseudoU-BIDseq ) Reagents flagged as RNase-free should be prepared under RNase-free conditions.

Article Title: BID-seq for transcriptome-wide quantitative sequencing of mRNA pseudouridine at base resolution
Article Snippet: P2L, P10L, P20L, P100L, P200L and P1000L: SKU: FA10001M–10006M) Fisherbrand Elite Multichannel Pipettes (Fisher Scientific, cat. no. 1–10 μL: FBE1200010; 30–300 μL: FBE1200030) 12-Tube magnetic separation rack (New England BioLabs, cat. no. S1509S) Qubit 2.0 Fluorometer (Invitrogen, cat. no. Q33216 ) Qubit assay tubes (Invitrogen cat. no. Q32856 ) 2100 Bioanalyzer Instrument (Agilent, cat. no. G2939BA) NovaSeq 6000 System (Illumina) BID-seq analysis pipeline ( https://github.com/y9c/pseudoU-BIDseq )

Article Title: Protocol for high-throughput processing of fecal samples for long-read metagenomic sequencing using PacBio HiFi or Oxford Nanopore Technologies
Article Snippet: Filtered P1000 pipet tips , Fisher Scientific , Cat#: 02-707-461.

Transferring:

Article Title: Protocol for high-throughput processing of fecal samples for long-read metagenomic sequencing using PacBio HiFi or Oxford Nanopore Technologies
Article Snippet: Adjustable tip multichannel pipette (Eppendorf Research plus Move It or equivalent) P1250 , Fisher Scientific , Cat#: 05-414-061. .. Multichannel pipette P1000 , Fisher Scientific , Cat#: 05-414-270. .. Multichannel pipette P200 , Fisher Scientific , Cat#: 13-690-049.



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Preparation for para-uterine imaging (A) Preparatory Steps 1 - 3: Setup prior to the start of surgery. 1: Mouse temperature controller, with associated heating pad and temperature probe. 2: Shaver. 3: UV-protective glasses. 4: Norland 65 UV-curing glue. 5: Eye lubricant. 6: Cover glasses. 7: Plastic pipette. 8: Retractors (x4). 9: Embryo holder. 10: Headbar. 11: Fine scissors. 12: Spring scissors. <t>13:</t> <t>Blunt-tipped</t> forceps (x2). 14: Ring-tipped forceps. 15: Fine-tipped forceps (x2). 16: Binocular dissection scope. 17: HBSS. 18: Alligator clamp. 19: Underpad. More details in A. (B – L) Stepwise progression of surgery. (B) Preparatory Steps 8, 9 and Steps 1a, 1b: Placement of the dam in a supine position, followed by sterilization, removal of fur from the abdomen, and cutting through the skin. (C) Steps 1a, 1b: Cutting through the muscular fascia. (D) Step 1c, 3: Using retractors to open the abdominal cavity, exposing the uterine horns, and opening up the uterus. (E) Steps 4: Selecting an embryo and then opening up the amniotic sac to expose the embryo. Preparing an alligator clamp to stabilize the embryo holder. (F) Step 7: Placing the embryo gently in the embryo holder. (G) Step 9: Transferring the embryo holder to the alligator clamp. (H) Step 11: Adding agar to the embryo holder. (I) Step 12: Adhering the headbar to the embryo holder. (J) Step 13: Transferring the embryo holder to the external supports. (K) Steps 15, 16: Removing the skin (and bone) from the head of the embryo. Inset: Exposed embryonic brain (process detailed in ). (L) Step 19: Cover glass added to the embryo. Inset: Embryonic brain covered by cover glass, with the space filled with cortex buffer (process detailed in ).
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Preparation for para-uterine imaging (A) Preparatory Steps 1 - 3: Setup prior to the start of surgery. 1: Mouse temperature controller, with associated heating pad and temperature probe. 2: Shaver. 3: UV-protective glasses. 4: Norland 65 UV-curing glue. 5: Eye lubricant. 6: Cover glasses. 7: Plastic pipette. 8: Retractors (x4). 9: Embryo holder. 10: Headbar. 11: Fine scissors. 12: Spring scissors. <t>13:</t> <t>Blunt-tipped</t> forceps (x2). 14: Ring-tipped forceps. 15: Fine-tipped forceps (x2). 16: Binocular dissection scope. 17: HBSS. 18: Alligator clamp. 19: Underpad. More details in A. (B – L) Stepwise progression of surgery. (B) Preparatory Steps 8, 9 and Steps 1a, 1b: Placement of the dam in a supine position, followed by sterilization, removal of fur from the abdomen, and cutting through the skin. (C) Steps 1a, 1b: Cutting through the muscular fascia. (D) Step 1c, 3: Using retractors to open the abdominal cavity, exposing the uterine horns, and opening up the uterus. (E) Steps 4: Selecting an embryo and then opening up the amniotic sac to expose the embryo. Preparing an alligator clamp to stabilize the embryo holder. (F) Step 7: Placing the embryo gently in the embryo holder. (G) Step 9: Transferring the embryo holder to the alligator clamp. (H) Step 11: Adding agar to the embryo holder. (I) Step 12: Adhering the headbar to the embryo holder. (J) Step 13: Transferring the embryo holder to the external supports. (K) Steps 15, 16: Removing the skin (and bone) from the head of the embryo. Inset: Exposed embryonic brain (process detailed in ). (L) Step 19: Cover glass added to the embryo. Inset: Embryonic brain covered by cover glass, with the space filled with cortex buffer (process detailed in ).
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Image Search Results


Preparation for para-uterine imaging (A) Preparatory Steps 1 - 3: Setup prior to the start of surgery. 1: Mouse temperature controller, with associated heating pad and temperature probe. 2: Shaver. 3: UV-protective glasses. 4: Norland 65 UV-curing glue. 5: Eye lubricant. 6: Cover glasses. 7: Plastic pipette. 8: Retractors (x4). 9: Embryo holder. 10: Headbar. 11: Fine scissors. 12: Spring scissors. 13: Blunt-tipped forceps (x2). 14: Ring-tipped forceps. 15: Fine-tipped forceps (x2). 16: Binocular dissection scope. 17: HBSS. 18: Alligator clamp. 19: Underpad. More details in A. (B – L) Stepwise progression of surgery. (B) Preparatory Steps 8, 9 and Steps 1a, 1b: Placement of the dam in a supine position, followed by sterilization, removal of fur from the abdomen, and cutting through the skin. (C) Steps 1a, 1b: Cutting through the muscular fascia. (D) Step 1c, 3: Using retractors to open the abdominal cavity, exposing the uterine horns, and opening up the uterus. (E) Steps 4: Selecting an embryo and then opening up the amniotic sac to expose the embryo. Preparing an alligator clamp to stabilize the embryo holder. (F) Step 7: Placing the embryo gently in the embryo holder. (G) Step 9: Transferring the embryo holder to the alligator clamp. (H) Step 11: Adding agar to the embryo holder. (I) Step 12: Adhering the headbar to the embryo holder. (J) Step 13: Transferring the embryo holder to the external supports. (K) Steps 15, 16: Removing the skin (and bone) from the head of the embryo. Inset: Exposed embryonic brain (process detailed in ). (L) Step 19: Cover glass added to the embryo. Inset: Embryonic brain covered by cover glass, with the space filled with cortex buffer (process detailed in ).

Journal: STAR Protocols

Article Title: Para-uterine imaging protocol: Stabilizing living mouse embryos within the maternal abdomen for in vivo imaging and visually guided physiology

doi: 10.1016/j.xpro.2026.104446

Figure Lengend Snippet: Preparation for para-uterine imaging (A) Preparatory Steps 1 - 3: Setup prior to the start of surgery. 1: Mouse temperature controller, with associated heating pad and temperature probe. 2: Shaver. 3: UV-protective glasses. 4: Norland 65 UV-curing glue. 5: Eye lubricant. 6: Cover glasses. 7: Plastic pipette. 8: Retractors (x4). 9: Embryo holder. 10: Headbar. 11: Fine scissors. 12: Spring scissors. 13: Blunt-tipped forceps (x2). 14: Ring-tipped forceps. 15: Fine-tipped forceps (x2). 16: Binocular dissection scope. 17: HBSS. 18: Alligator clamp. 19: Underpad. More details in A. (B – L) Stepwise progression of surgery. (B) Preparatory Steps 8, 9 and Steps 1a, 1b: Placement of the dam in a supine position, followed by sterilization, removal of fur from the abdomen, and cutting through the skin. (C) Steps 1a, 1b: Cutting through the muscular fascia. (D) Step 1c, 3: Using retractors to open the abdominal cavity, exposing the uterine horns, and opening up the uterus. (E) Steps 4: Selecting an embryo and then opening up the amniotic sac to expose the embryo. Preparing an alligator clamp to stabilize the embryo holder. (F) Step 7: Placing the embryo gently in the embryo holder. (G) Step 9: Transferring the embryo holder to the alligator clamp. (H) Step 11: Adding agar to the embryo holder. (I) Step 12: Adhering the headbar to the embryo holder. (J) Step 13: Transferring the embryo holder to the external supports. (K) Steps 15, 16: Removing the skin (and bone) from the head of the embryo. Inset: Exposed embryonic brain (process detailed in ). (L) Step 19: Cover glass added to the embryo. Inset: Embryonic brain covered by cover glass, with the space filled with cortex buffer (process detailed in ).

Article Snippet: Blunt-tipped forceps , Fine Science Tools , 11652–10.

Techniques: Imaging, Transferring, Dissection