way stopcock Search Results


90
World Precision Instruments luer
Assembling and working with the PARS chamber. (a) A completed PARS chamber used for whole-body tissue clearing. (b) Individual parts to build a PARS chamber: (1) three 1/8 × 1/8-inch barbed connectors, (2) two 3/32-inch barbed male Luers with locking nut, (3) a 1,000 μl pipette tip box, (4) a 1-gallon Ziploc freezer bag, (5) a <t>three-way</t> <t>stopcock</t> with <t>Luer</t> lock, (6) a 3/32-inch barbed female Luer with full tread, (7) a roll of lab tape, (8) a 22-G × 1-inch gavage needle, (9) a 1/8-inch barbed male slip Luer, (10) a female Luer tee with locks, (11) clay and (12) Tygon E-lab tubing. Ruler shown is 5 cm in length. (c) Three 1/8-inch holes are drilled into the pipette tip box: two into the box front and one into its side, all ~2 cm below the top rim of the box. The three 1/8 × 1/8-inch barbed connectors are placed into the drilled holes. To connect the outflow line (blue tape bands on outflow line tubing), a piece of Tygon tubing is connected from the bottom inside of the pipette box to the single 1/8-inch barbed connector that was inserted through the box side. (d) To continue the outflow line, a second, longer piece of blue-taped tubing is attached to the outer fitting of this same barbed connector (on the outside of the pipette tip box side), and then the other end of this tubing is threaded through the peristaltic pump, pulled back over toward the pipette box and finally connected to a three-way stopcock with a 3/32-inch barbed male Luer with locking nut (rightmost blue-banded tubing in d). To form the inflow line, a short length of tubing (green tape band) is used to connect the three-way stopcock to the front right 1/8-inch barbed connector of the pipette box. The solute flushing line and nitrogen bubbling line, which are subserved by the same tubing (white tape band), are formed by another short length of tubing that joins the third port of the stopcock to the front left 1/8-inch barbed connector. (e) The inflow line is continued inside the pipette box, with the tubing coiled several times around the base of the box so that the solute will be reheated before it passes through the feeding gavage into the subject. The solute flushing line and nitrogen bubbling line is continued inside the pipette tip box and taped to the bottom of the chamber (not shown). (f) The tip of the coiled inflow line tubing is threaded up through the tip wafer (see bird's-eye view of threaded wafer in a) and connected to a 22-G ×1-inch gavage needle with a 1/8-inch barbed male slip Luer. The gavage needle is secured with a short loop of Tygon tubing (~90 mm) threaded through two holes of the wafer. (g) During the polymerization step, the chamber is placed into a 37 °C water bath and sealed in a Ziploc bag. The tubing is attached to the chamber with three 1/8 × 1/8-inch barbed connectors punctured through the Ziploc bag. The Tygon tubing is reconnected from the outside of the bag and surrounded with clay to make an airtight seal. (h) The animal is placed onto the pipette tip box, and the 22-G × 1-inch gavage needle is used to catheterize the heart. (i) The chamber is placed into a 37 °C water bath. A female Luer tee, which is taped onto the lid of the pipette tip box, is punctured through the Ziploc bag, and this joint is sealed with clay to ensure an airtight seal. Finally, to accelerate polymerization, a vacuum line is connected to the female Luer tee to remove oxygen (orange arrow), and a nitrogen gas line (white arrow) is connected to the 1/8-inch barbed connector to deliver a steady flow of nitrogen into the bagged system. The solute is continually circulated through the animal from the outflow line (blue arrow, which also indicates the direction of flow through blue-taped tubing) and inflow line (green arrow, which also indicates the direction of flow through green-taped tubing).
Luer, supplied by World Precision Instruments, 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/way+stopcock/pmc04917295-1154-13-16?v=World+Precision+Instruments
Average 90 stars, based on 1 article reviews
luer - by Bioz Stars, 2026-08
90/100 stars
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90
Bio-Rad nylon 3 way stopcocks
Assembling and working with the PARS chamber. (a) A completed PARS chamber used for whole-body tissue clearing. (b) Individual parts to build a PARS chamber: (1) three 1/8 × 1/8-inch barbed connectors, (2) two 3/32-inch barbed male Luers with locking nut, (3) a 1,000 μl pipette tip box, (4) a 1-gallon Ziploc freezer bag, (5) a <t>three-way</t> <t>stopcock</t> with <t>Luer</t> lock, (6) a 3/32-inch barbed female Luer with full tread, (7) a roll of lab tape, (8) a 22-G × 1-inch gavage needle, (9) a 1/8-inch barbed male slip Luer, (10) a female Luer tee with locks, (11) clay and (12) Tygon E-lab tubing. Ruler shown is 5 cm in length. (c) Three 1/8-inch holes are drilled into the pipette tip box: two into the box front and one into its side, all ~2 cm below the top rim of the box. The three 1/8 × 1/8-inch barbed connectors are placed into the drilled holes. To connect the outflow line (blue tape bands on outflow line tubing), a piece of Tygon tubing is connected from the bottom inside of the pipette box to the single 1/8-inch barbed connector that was inserted through the box side. (d) To continue the outflow line, a second, longer piece of blue-taped tubing is attached to the outer fitting of this same barbed connector (on the outside of the pipette tip box side), and then the other end of this tubing is threaded through the peristaltic pump, pulled back over toward the pipette box and finally connected to a three-way stopcock with a 3/32-inch barbed male Luer with locking nut (rightmost blue-banded tubing in d). To form the inflow line, a short length of tubing (green tape band) is used to connect the three-way stopcock to the front right 1/8-inch barbed connector of the pipette box. The solute flushing line and nitrogen bubbling line, which are subserved by the same tubing (white tape band), are formed by another short length of tubing that joins the third port of the stopcock to the front left 1/8-inch barbed connector. (e) The inflow line is continued inside the pipette box, with the tubing coiled several times around the base of the box so that the solute will be reheated before it passes through the feeding gavage into the subject. The solute flushing line and nitrogen bubbling line is continued inside the pipette tip box and taped to the bottom of the chamber (not shown). (f) The tip of the coiled inflow line tubing is threaded up through the tip wafer (see bird's-eye view of threaded wafer in a) and connected to a 22-G ×1-inch gavage needle with a 1/8-inch barbed male slip Luer. The gavage needle is secured with a short loop of Tygon tubing (~90 mm) threaded through two holes of the wafer. (g) During the polymerization step, the chamber is placed into a 37 °C water bath and sealed in a Ziploc bag. The tubing is attached to the chamber with three 1/8 × 1/8-inch barbed connectors punctured through the Ziploc bag. The Tygon tubing is reconnected from the outside of the bag and surrounded with clay to make an airtight seal. (h) The animal is placed onto the pipette tip box, and the 22-G × 1-inch gavage needle is used to catheterize the heart. (i) The chamber is placed into a 37 °C water bath. A female Luer tee, which is taped onto the lid of the pipette tip box, is punctured through the Ziploc bag, and this joint is sealed with clay to ensure an airtight seal. Finally, to accelerate polymerization, a vacuum line is connected to the female Luer tee to remove oxygen (orange arrow), and a nitrogen gas line (white arrow) is connected to the 1/8-inch barbed connector to deliver a steady flow of nitrogen into the bagged system. The solute is continually circulated through the animal from the outflow line (blue arrow, which also indicates the direction of flow through blue-taped tubing) and inflow line (green arrow, which also indicates the direction of flow through green-taped tubing).
Nylon 3 Way Stopcocks, supplied by Bio-Rad, 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/way+stopcock/us07109377-401-17-20?v=Bio-Rad
Average 90 stars, based on 1 article reviews
nylon 3 way stopcocks - by Bioz Stars, 2026-08
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93
ADInstruments way directional manual stopcocks
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
Way Directional Manual Stopcocks, supplied by ADInstruments, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/way+stopcock/pm39943895-82-34-45?v=ADInstruments
Average 93 stars, based on 1 article reviews
way directional manual stopcocks - by Bioz Stars, 2026-08
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90
Bio-Rad two way stopcock
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
Two Way Stopcock, supplied by Bio-Rad, 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/way+stopcock/pm35316580-43-155-157?v=Bio-Rad
Average 90 stars, based on 1 article reviews
two way stopcock - by Bioz Stars, 2026-08
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92
Bio-Rad empty polypropylene column
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
Empty Polypropylene Column, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/way+stopcock/bio_rxiv__2021__09__10__455288-215-29-32?v=Bio-Rad
Average 92 stars, based on 1 article reviews
empty polypropylene column - by Bioz Stars, 2026-08
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93
World Precision Instruments 4 way stopcock luer
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
4 Way Stopcock Luer, supplied by World Precision Instruments, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/way+stopcock/pm40878128-118-8-12?v=World+Precision+Instruments
Average 93 stars, based on 1 article reviews
4 way stopcock luer - by Bioz Stars, 2026-08
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93
World Precision Instruments 4 way luer stopcock
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
4 Way Luer Stopcock, supplied by World Precision Instruments, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/way+stopcock/pmc12702330-26-0-4?v=World+Precision+Instruments
Average 93 stars, based on 1 article reviews
4 way luer stopcock - by Bioz Stars, 2026-08
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90
Connecta Ltd 3-way stopcock valve luer-lok adapter
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
3 Way Stopcock Valve Luer Lok Adapter, supplied by Connecta Ltd, 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/way+stopcock/us10918592-255-28-62?v=Connecta+Ltd
Average 90 stars, based on 1 article reviews
3-way stopcock valve luer-lok adapter - by Bioz Stars, 2026-08
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90
TRACOE medical GmbH three-way stopcock
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
Three Way Stopcock, supplied by TRACOE medical GmbH, 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/way+stopcock/pm32376293-182-6-22?v=TRACOE+medical+GmbH
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Connecta Ltd four-way stopcock multiflo 3
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
Four Way Stopcock Multiflo 3, supplied by Connecta Ltd, 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/way+stopcock/pmc07249468-75-6-11?v=Connecta+Ltd
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four-way stopcock multiflo 3 - by Bioz Stars, 2026-08
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90
Popper and Sons three-way luer lock stainless steel stopcock popper and sons
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
Three Way Luer Lock Stainless Steel Stopcock Popper And Sons, supplied by Popper and Sons, 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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three-way luer lock stainless steel stopcock popper and sons - by Bioz Stars, 2026-08
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Nipro Diagnostics Inc 3-way stopcock
FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way <t>directional</t> manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).
3 Way Stopcock, supplied by Nipro Diagnostics 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/way+stopcock/pm26429230-68-9-11?v=Nipro+Diagnostics+Inc
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3-way stopcock - by Bioz Stars, 2026-08
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Image Search Results


Assembling and working with the PARS chamber. (a) A completed PARS chamber used for whole-body tissue clearing. (b) Individual parts to build a PARS chamber: (1) three 1/8 × 1/8-inch barbed connectors, (2) two 3/32-inch barbed male Luers with locking nut, (3) a 1,000 μl pipette tip box, (4) a 1-gallon Ziploc freezer bag, (5) a three-way stopcock with Luer lock, (6) a 3/32-inch barbed female Luer with full tread, (7) a roll of lab tape, (8) a 22-G × 1-inch gavage needle, (9) a 1/8-inch barbed male slip Luer, (10) a female Luer tee with locks, (11) clay and (12) Tygon E-lab tubing. Ruler shown is 5 cm in length. (c) Three 1/8-inch holes are drilled into the pipette tip box: two into the box front and one into its side, all ~2 cm below the top rim of the box. The three 1/8 × 1/8-inch barbed connectors are placed into the drilled holes. To connect the outflow line (blue tape bands on outflow line tubing), a piece of Tygon tubing is connected from the bottom inside of the pipette box to the single 1/8-inch barbed connector that was inserted through the box side. (d) To continue the outflow line, a second, longer piece of blue-taped tubing is attached to the outer fitting of this same barbed connector (on the outside of the pipette tip box side), and then the other end of this tubing is threaded through the peristaltic pump, pulled back over toward the pipette box and finally connected to a three-way stopcock with a 3/32-inch barbed male Luer with locking nut (rightmost blue-banded tubing in d). To form the inflow line, a short length of tubing (green tape band) is used to connect the three-way stopcock to the front right 1/8-inch barbed connector of the pipette box. The solute flushing line and nitrogen bubbling line, which are subserved by the same tubing (white tape band), are formed by another short length of tubing that joins the third port of the stopcock to the front left 1/8-inch barbed connector. (e) The inflow line is continued inside the pipette box, with the tubing coiled several times around the base of the box so that the solute will be reheated before it passes through the feeding gavage into the subject. The solute flushing line and nitrogen bubbling line is continued inside the pipette tip box and taped to the bottom of the chamber (not shown). (f) The tip of the coiled inflow line tubing is threaded up through the tip wafer (see bird's-eye view of threaded wafer in a) and connected to a 22-G ×1-inch gavage needle with a 1/8-inch barbed male slip Luer. The gavage needle is secured with a short loop of Tygon tubing (~90 mm) threaded through two holes of the wafer. (g) During the polymerization step, the chamber is placed into a 37 °C water bath and sealed in a Ziploc bag. The tubing is attached to the chamber with three 1/8 × 1/8-inch barbed connectors punctured through the Ziploc bag. The Tygon tubing is reconnected from the outside of the bag and surrounded with clay to make an airtight seal. (h) The animal is placed onto the pipette tip box, and the 22-G × 1-inch gavage needle is used to catheterize the heart. (i) The chamber is placed into a 37 °C water bath. A female Luer tee, which is taped onto the lid of the pipette tip box, is punctured through the Ziploc bag, and this joint is sealed with clay to ensure an airtight seal. Finally, to accelerate polymerization, a vacuum line is connected to the female Luer tee to remove oxygen (orange arrow), and a nitrogen gas line (white arrow) is connected to the 1/8-inch barbed connector to deliver a steady flow of nitrogen into the bagged system. The solute is continually circulated through the animal from the outflow line (blue arrow, which also indicates the direction of flow through blue-taped tubing) and inflow line (green arrow, which also indicates the direction of flow through green-taped tubing).

Journal: Nature protocols

Article Title: Whole-body tissue stabilization and selective extractions via tissue-hydrogel hybrids for high-resolution intact circuit mapping and phenotyping

doi: 10.1038/nprot.2015.122

Figure Lengend Snippet: Assembling and working with the PARS chamber. (a) A completed PARS chamber used for whole-body tissue clearing. (b) Individual parts to build a PARS chamber: (1) three 1/8 × 1/8-inch barbed connectors, (2) two 3/32-inch barbed male Luers with locking nut, (3) a 1,000 μl pipette tip box, (4) a 1-gallon Ziploc freezer bag, (5) a three-way stopcock with Luer lock, (6) a 3/32-inch barbed female Luer with full tread, (7) a roll of lab tape, (8) a 22-G × 1-inch gavage needle, (9) a 1/8-inch barbed male slip Luer, (10) a female Luer tee with locks, (11) clay and (12) Tygon E-lab tubing. Ruler shown is 5 cm in length. (c) Three 1/8-inch holes are drilled into the pipette tip box: two into the box front and one into its side, all ~2 cm below the top rim of the box. The three 1/8 × 1/8-inch barbed connectors are placed into the drilled holes. To connect the outflow line (blue tape bands on outflow line tubing), a piece of Tygon tubing is connected from the bottom inside of the pipette box to the single 1/8-inch barbed connector that was inserted through the box side. (d) To continue the outflow line, a second, longer piece of blue-taped tubing is attached to the outer fitting of this same barbed connector (on the outside of the pipette tip box side), and then the other end of this tubing is threaded through the peristaltic pump, pulled back over toward the pipette box and finally connected to a three-way stopcock with a 3/32-inch barbed male Luer with locking nut (rightmost blue-banded tubing in d). To form the inflow line, a short length of tubing (green tape band) is used to connect the three-way stopcock to the front right 1/8-inch barbed connector of the pipette box. The solute flushing line and nitrogen bubbling line, which are subserved by the same tubing (white tape band), are formed by another short length of tubing that joins the third port of the stopcock to the front left 1/8-inch barbed connector. (e) The inflow line is continued inside the pipette box, with the tubing coiled several times around the base of the box so that the solute will be reheated before it passes through the feeding gavage into the subject. The solute flushing line and nitrogen bubbling line is continued inside the pipette tip box and taped to the bottom of the chamber (not shown). (f) The tip of the coiled inflow line tubing is threaded up through the tip wafer (see bird's-eye view of threaded wafer in a) and connected to a 22-G ×1-inch gavage needle with a 1/8-inch barbed male slip Luer. The gavage needle is secured with a short loop of Tygon tubing (~90 mm) threaded through two holes of the wafer. (g) During the polymerization step, the chamber is placed into a 37 °C water bath and sealed in a Ziploc bag. The tubing is attached to the chamber with three 1/8 × 1/8-inch barbed connectors punctured through the Ziploc bag. The Tygon tubing is reconnected from the outside of the bag and surrounded with clay to make an airtight seal. (h) The animal is placed onto the pipette tip box, and the 22-G × 1-inch gavage needle is used to catheterize the heart. (i) The chamber is placed into a 37 °C water bath. A female Luer tee, which is taped onto the lid of the pipette tip box, is punctured through the Ziploc bag, and this joint is sealed with clay to ensure an airtight seal. Finally, to accelerate polymerization, a vacuum line is connected to the female Luer tee to remove oxygen (orange arrow), and a nitrogen gas line (white arrow) is connected to the 1/8-inch barbed connector to deliver a steady flow of nitrogen into the bagged system. The solute is continually circulated through the animal from the outflow line (blue arrow, which also indicates the direction of flow through blue-taped tubing) and inflow line (green arrow, which also indicates the direction of flow through green-taped tubing).

Article Snippet: : 89404-000) Three-way stopcock with Luer lock (World Precision Instruments, cat. no. 14035-10) Luer-to-tubing coupler kit (World Precision Instruments, cat. no. 500895) Barbed fitting assortment kit (World Precision Instruments, cat. no. 500890) 22-G × 1-inch gavage needle (e.g., 22-G, 1.25-mm-tip-diameter straight feeding needle; Fine Science Tools, cat. no 18061-22; Braintree Scientific, cat. no. N-PK 002) Pipette tip boxes; we use empty 1,000-μl racked filter tip boxes (USA Scientific) Optional: 20-G blunt needle (BD Biosciences, cat. no. 305183) and tubing (PlasticsOne) for PARS-CSF 18 C & B Metabond (Parkell, cat. no. S380) Tape (any) Modeling clay (e.g., Sargent Art, cat. no. 22-4400) Peristaltic pump or circulator (e.g., Cole Palmer Masterflex L/S, cat. no. 77800-60; or Cole-Palmer Masterflex L/S Easy Load II head and pump drive, cat. nos.

Techniques: Transferring

FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way directional manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).

Journal: European journal of pain (London, England)

Article Title: Hypercapnia Reduces Perceived Heat Pain in Healthy Subjects.

doi: 10.1002/ejp.70001

Figure Lengend Snippet: FIGURE 1 | Schematic of the participant setup. Left side: In-house-built wooden frame (hypercapnibar) with four Douglas bags, two for each mix- ture (normocapnic and hypercapnic) indicated by different colours (dark green and light brown). Bags of the same mixture are connected through three-way directional manual stopcocks, which are themselves connected by tubes to a central stopcock, from which another tube delivers the mix- ture to the oronasal face mask of the participant. Right side: Participant representation with three measuring sites of autonomic recordings. Oronasal face mask with sampling tube to monitor oxygen (O2) and carbondioxide (CO2), three electrodes on the torso (distally below left and below right clavicule and distally above right hip) for electrocardiography (ECG), one pair of electrodes at the left foot (attached to the big and middle toes) for recording galvanic skin response (GSR).

Article Snippet: The four bags were mounted onto a customised, in- house- built wooden frame, the so- called hypercapnibar (height 125 cm, width 152 cm, depth 11.5 cm, plank thickness 3 cm), which had three 3- way directional manual stopcocks with a 2.86 cm inner port diameter (ADInstruments, Dunedin, NZ) screwed onto the top plank, one in the centre and one at each end.

Techniques: Sampling