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Home Microdialysis Probes IV Vascular Microdialysis Probes


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IV Vascular Microdialysis Probes
No study of pharmacokinetics, drug delivery, metabolism, or toxicity is complete without a determination of the drug concentration in blood. Blood sampling in small animals is necessarily limited by the volume of blood available. Sampling intervals of several hours are required to allow the subject to replenish fluids. Sampling frequency is therefore a primary advantage of vascular microdialysis. Since no blood or fluid is removed, the subject remains hydrated and the collected samples are more representative of a normal state.
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Item# Description In Stock Lead Time U.S. List Price Quantity
726929 Vascular Microdialysis Probe IV-5 with Needle and Introducer, 5 mm Dialysis Membrane, pkg. of 3 -- 10 days View Pricing
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726930 Vascular Microdialysis Probe IV-10 with Needle and Introducer, 10 mm Dialysis Membrane, pkg. of 3 -- 10 days View Pricing
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No study of pharmacokinetics, drug delivery, metabolism, or toxicity is complete without a determination of the drug concentration in blood. Blood sampling in small animals is necessarily limited by the volume of blood available. Sampling intervals of several hours are required to allow the subject to replenish fluids. Sampling frequency is therefore a primary advantage of vascular microdialysis. Since no blood or fluid is removed, the subject remains hydrated and the collected samples are more representative of a normal state.
IV Vascular Microdialysis Probes were designed for implantation into the rat jugular vein. They are also suitable for other soft tissues. Each probe includes a syringe needle and temporary cannula (split introducer) which aid placement. The thin-walled, plastic introducer slides over the syringe needle, which is then used to pierce the vein. The needle is removed and replaced with an IV Probe. A flexible wire mesh on the probe is sutured to the pectoral muscle. The cannula is then pulled out of the vein, leaving the probe behind. Inlet and outlet lines to the probe are housed within a single piece of flexible tubing, which is externalized by use of a surgical introducer needle.
The flexible probe, web, and connecting tube improve the comfort of a freely moving animal. The small OD of the probe is less likely to occlude the blood vessel.


Specifications Back to Top

Specifications726929726930
828282
LLL
Membrane Length Metric5 mm10 mm
MicrodialysisMicrodialysisMicrodialysis
ModelIV-5IV-10

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Journal Articles Back to Top

Displaying 1 to 10 of 16 results for IV Vascular Microdialysis Probes   Page 1  2 

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100% Login to view HS01 Opioids and Coronary Vascular Tone.pdf
[138 KB]
Force Transducer influence of opioids on the vascular tone of isolated porcine coronary artery segments
76% Login to view VT32 Digital Optical Imaging to Track Vascular Gene Expression.pdf
[1,004 KB]
Digital Optical Imaging to Track Vascular Gene Expression
58% Login to view OT13 csf.pdf
[115 KB]
Dialysis Probes use in Release of Hypocretin (Orexin) during Waking and Sleep States
56% Login to view VT32 mri vent.pdf
[1.1 MB]
Digital Optical Imaging to Track Vascular Gene Expression
53% Login to view PP85.pdf
[722 KB]
Portosystemic shunting and persistent fetal vascular structures in aryl hydrocarbon receptor-deficient mice
53% Login to view HS01 force transducer.pdf
[134 KB]
Force Transducer influence of opioids on the vascular tone of isolated porcine coronary artery segments
28% Login to view OT14PA 1.PDF
[210 KB]
Changes in Monoamine Release in the Ventral Horn and Hypoglossal Nucleus Linked to Pontine Inhibition of Muscle Tone
25% Login to view HB03 Leukotriene B4 Promotes Reactive Oxidant Generation and Leukocyte Adherence During Acute Hypoxia.pdf
[198 KB]
Homeothermic Blanket Leukotrience B4 promotes reactive oxidant generation and leukocyte adherence during acute hypoxia
25% Login to view HB09 Two-Photon Imaging of Capillary Blood Flow in Olfactory Bulb Glomeruli.pdf
[989 KB]
Two-photon imaging of capillary blood flow in olfactory bulb golmeruli
25% Login to view HB08 VEGF Antogonism Reduces Edema Formation and Tissue Damage After Ischemia-Reperfusion Injury in the Mouse Brain.pdf
[272 KB]
VEGF antagonism reduces edema formation and tissue damage after ischemia/reperfusion injury in the mouse brain
   

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