Bilaney Consultants, basé en Allemagne et au Royaume-Uni, fournit des équipements et des logiciels de recherche de qualité aux chercheurs en sciences de la vie et aux chercheurs biomédicaux en Europe depuis 1966. N'hésitez pas à nous contacter si vous avez des questions sur le produit ou si vous avez besoin d'assistance.

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Remote Infuse/Withdraw PHD 22/2000 Syringe Pumps

SKU 00061
0,00€
In stock
1
Product Details

The Harvard PHD 22/2000 Remote Infuse/Withdraw remote syringe pump allows the pumping mechanism to be operated remotely by a tethered controller. The control box and pumping mechanism are separated by a 9.1 meter (30 foot) cable. This pump is available in infuse/withdraw and programmable models.

All pumps have RS-232 communications capabilities, but there are also PHD 22/2000 pumps that are programmable directly from the keypad.

In addition, a multitude of syringe racks are available to hold 2, 4 or up to 10 syringes. A microliter syringe rack is also available for microliter applications.

The PHD 22/2000 syringe pump series gives you the lowest flow rates ever, the highest accuracy, the smoothest flow, advanced programmability from the keypad and yet, is very easy to use.

  • High accuracy and precision
  • Low flow rate
  • Ultimate flexibility and versatility
  • 2-year warranty

Highest Accuracy and Precision
A welded steel chassis, machined Delrin™ components, upgraded guide rods, and advanced electronics give accuracy within 0.35% and reproducibility within 0.05%.

Lowest Flow Rates
A new micro stepping motor and control software give the lowest flow rates ever, down to 0.0001 µl/hour. It is also incredibly quiet so it won’t disturb your experimental subjects

Versatility
There is a PHD 22/2000 syringe pump to meet every need, whether it be simple infusion, infusion and withdrawal, or programming capabilities.
1. Infuse Only:
This pump is suitable for applications that require high accuracy and low rates but, do not need to withdraw fluid and do not need programmability. Should you need withdrawal or program capabilities later on, the infusion only pump can be upgraded

2. Infuse/Withdraw:
The Harvard PHD 22/2000 infuse/withdraw has identical performance to the infusion only model (above) but can also withdraw (refill).

3. Programmable:
The Harvard PHD 22/2000 Programmable pump has the most advanced programming functions and yet is very easy to use. The pump can store up to four programs of 10 sequences each. Programs are stored in non-volatile memory. No other pump can give you this level of control and flexibility. The programmable pumps may also be programmed using Symphony, Harvard’s Windows™ pump manager software.

Easy to Use
A bright, easy to read, two-line fluorescent display can be easily read from across the lab. A target volume key makes it easy to dispense a set volume. An ergonomic ‘Autolock’ release mechanism is easy for even small hands to operate and can never be left unlocked. The numerical keys utilize the familiar ‘telephone’ layout.

Upgrade
We offer pumps that can be upgraded. If you buy an infuse/withdraw pump and later decide you want programmability you can upgrade it. You pay a lot less than buying a whole new pump.

Program Description
The programming functions of this pump provide powerful capabilities for advanced experiments. While in program mode this pump can perform the following tasks at a predetermined time or when prompted by a signal from an external device:

  • Start or stop pumping
  • Change pumping direction (infuse-withdraw)
  • Change flow rates
  • Pump a precise volume and stop
  • Pause operation
  • Ramp up or down flow rates

In program mode the above tasks can be linked together into powerful programs to simplify your automation projects. Introducing the three newest members to join the PHD 22/2000 family:

High Pressure Syringe Pumps
Every version of the PHD 22/2000 Pump is now available with a stronger motor that can provide more force. These pumps are ideal when working with viscous fluid or when driving multiple syringes. The standard force PHD 22/2000 series syringe pump delivers an average nominal force of 50 lbs. while the high power version delivers 66 lbs. If you require even greater force see the PHD 22/2000 HPSI or the Pump 4400 HPSI. Visit our website.

Push/Pull Syringe Pump

The Push/Pull PHD 22/2000 can simultaneously infuse and withdraw the exact amount. Use this when you do not want the volume infused to alter pressure. With the addition of a 61-0270 Tubing Segment or a valve box, it can also provide continuous infusion. It is available in both infuse/withdraw and programmable models. The right side syringe holder is the standard 2-syringe rack found on all PHD 22/2000 syringe pumps. This standard holder will accept all the PHD 22/2000 multi-syringe racks (right side only).

Specifications70-210171-210170-210271-210270-210671-210670-210771-210770-210871-210870-210971-210970-211071-211070-211171-211170-211971-211970-212071-2120
# of Syringes22226/106/1044446/106/1044444444
Accuracy±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%±0.35%
Average Linear Force50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)50 lbs (23 kg)66 lbs (30 kg)
Cable Length English30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft30 ft
Cable Length Metric9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m9.1 m
CommunicationsRS-232, TTLRS-232, TTLRS-232, TTL, programmableRS-232, TTL, programmableRS-232, TTLRS-232, TTLRS-232, TTLRS-232, TTLRS-232, TTLRS-232, TTLRS-232, TTL programmableRS-232, TTL programmableRS-232, TTL, programmableRS-232, TTL, programmableRS-232, TTL, programmableRS-232, TTL, programmableRS-232, TTL, programmableRS-232, TTL, programmableRS-232, TTLRS-232, TTL
Communications Level22222222222222222222
Depth English11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in11 in
Depth Metric27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm27.9 cm
DisplayFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 characterFluorescent, 2-line, 40 character
Flow Rate Maximum220.82 ml/min220.82 ml/min220.82 ml/min220.82 ml/min106.76 ml/min106.76 ml/min220.82 ml/min220.82 ml/min31.48 ml/min31.48 ml/min106.76 ml/min106.76 ml/min220.82 ml/min220.82 ml/min31.48 ml/min31.48 ml/min220.82 ml/min220.82 ml/min220.82 ml/min220.82 ml/min
Flow Rate Minimum0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr0.0001 ul/hr
Height English6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in6.3 in
Height Metric15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm15.9 cm
Input Power0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W0.5 A, 65 W
Motor1/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.81/2 to 1/32 microstepping, microprocessor controlled, 1.8
Motor Stepper 1 Revolution of Lead Screw800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping800 at 1/2 stepping to 12,800 at 1/32 stepping
Net Weight English10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs10 lbs
Net Weight Metric4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg4.5 kg
Non Volatile MemoryStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settingsStorage of all settings
PressureStandardMediumStandardMediumStandardMediumStandardMediumStandardMediumStandardMediumStandardMediumStandardMediumStandardMediumStandardMedium
Pump ConfigurationRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemoteRemote
Pump FunctionInfuse/WithdrawInfuse/WithdrawInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/WithdrawInfuse/WithdrawInfuse/WithdrawInfuse/WithdrawInfuse/WithdrawInfuse/WithdrawInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/Withdraw, programmableInfuse/WithdrawInfuse/Withdraw
Pusher Travel Rate Maximum190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min190.676 mm/min
Pusher Travel Rate Minimum0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min0.18 um/min
RS-232RJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 ConnectorRJ11-4 Connector
Step Rate Maximum416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step416.7 usec/step
Step Rate Minimum27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step27.3 sec/step
Step Resolution0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step0.082 um/step
Syringe Rack TypeStandard RackStandard RackStandard RackStandard Rack6/10 Multi-Syringe Rack6/10 Multi-Syringe Rack4 x 140 ml Syringe Rack4 x 140 ml Syringe RackMicroliter Syringe RackMicroliter Syringe Rack6/10 Multi-Syringe Rack6/10 Multi-Syringe Rack4 x 140 ml Syringe Rack4 x 140 ml Syringe RackMicroliter Syringe RackMicroliter Syringe RackPush/Pull Syringe RackPush/Pull Syringe RackPush/Pull Syringe RackPush/Pull Syringe Rack
Syringe Size Maximum140 ml140 ml140 ml140 ml60 ml60 ml140 ml140 ml10 ml10 ml60 ml60 ml140 ml140 ml10 ml10 ml140 ml140 ml140 ml140 ml
Syringe Size Minimum0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul0.5 ul
TTL9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.9-pin connector D-sub.
TypeMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypadMicroprocessor multiple syringe, infusion only or infuse/withdraw, some models programmable from keypad
Voltage RangeSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 HzSelectable, 95 to 130 VAC, 60 Hz or 220 to 260 VAC, 50 Hz
Width English9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in9 in
Width Metric22.8 cm22.8 cm22.8 cm22.8 cm22.8 cm
Journal Articles

Maaya Ikeda, Michelle A. Rensel, Barney A. Schlinger & Luke Remage-Healey (2014 ) In Vivo Detection of Fluctuating Brain Steroid Levels in Zebra Finches Cold Spring Harbor Protocols

Andreas Frutiger, Joseph T. Muth, Daniel M. Vogt, Yiǧit Mengüç, Alexandre Campo, Alexander D. Valentine, Conor J. Walsh & Jennifer A. Lewis (2015 ) Capacitive Soft Strain Sensors via Multicore–Shell Fiber Printing Advanced Materials

Jinhong Guo, Chang Ming Li & Yuejun Kang (2014 ) PDMS-film coated on PCB for AC impedance sensing of biological cells Biomedical Microdevices

Thibault Donnet, Catherine Ravanat, Anita Eckly, Eric Maurer, Ghina Alame, Catherine Ziessel, Pierre H. Mangin, Monique Freund, Jean-Pierre Cazenave, Christian Gachet & Francine Rendu (2015 ) Dehydration of blood platelets by zeodration: in vitro characterization and hemostatic properties in vivo Transfusion

Donghua Liao, Anne Lund Krarup, Flemming Holbæk Lundager, Asbjørn Mohr Drewes & Hans Gregersen (2014 ) Quantitative Differences Between Primary and Secondary Peristaltic Contractions of the Esophagus Digestive Diseases and Sciences

Keunhwan Park, Wonjung Kimb & Ho-Young Kim (2014 ) Optimal lamellar arrangement in fish gills PNAS (Proceedings of the National Academy of Sciences)

Wu Liu , Niejun Wang , Xuexia Lin , Yuan Ma & Jin-Ming Lin (2014 ) Interfacing Microsampling Droplets and Mass Spectrometry by Paper Spray Ionization for Online Chemical Monitoring of Cell Culture Analytical Chemistry

Shi-hui Chenm Li-zhen Zheng, Xin-hui Xie, Xin-luan Wanga, Yu-xiao Lai, Shu-kui Chen, Ming Zhang, Yi-xiang Wang, James F. Griffith & Ling Qin (2014 ) Comparative study of poly (lactic-co-glycolic acid)/tricalcium phosphate scaffolds incorporated or coated with osteogenic growth factors for enhancement of bone regeneration Journal of Orthopaedic Translation

Elisabeth Ehler & Suwan N. Jayasinghe (2014 ) Cell electrospinning cardiac patches for tissue engineering the heart Analyst

Mateusz Schabikowski, Justyna Tomaszewska, Dariusz Kata, Thomas Graule1 (2014 ) Rotary jet-spinning of hematite fibers Textile Research Journal

Davor Valinger, Ana Vrsalović Presečki, Želimir Kurtanjek, Martina Pohl, Zvjezdana Findrik Blažević & Đurđa Vasić-Račkib (2014 ) Continuous enzymatic carboligation of benzaldehyde and acetaldehyde in an enzyme ultrafiltration membrane reactor and laminar flow microreactors Journal of Molecular Catalysis B: Enzymatic

Nan Li, Miguel F. Diaz & Pamela L. Wenzel Ph.D. (2014 ) Application of Fluid Mechanical Force to Embryonic Sources of Hemogenic Endothelium and Hematopoietic Stem Cells Stem Cell Renewal and Cell-Cell Communication

Israfil Kucuk & Mohan Edirisinghe (2014 ) Microfluidic preparation of polymer nanospheres Journal of Nanoparticle Research

Michael E. Lacey , Z. Jessica Tan , Andrew G. Webb , Jonathan V. Sweedler (2001 ) Union of capillary high-performance liquid chromatography and microcoil nuclear magnetic resonance spectroscopy applied to the separation and identification of terpenoids Journal of Chromatography

Noah E. Robinson and Arthur B. Robinson (2000 ) Molecular Clocks PNAS (Proceedings of the National Academy of Sciences)

Rebecca J. Whelan, Thorsten Wohland, Lars Neumann, Bo Huang, Brian K. Kobilka and Richard N. Zare (2002 ) "Analysis of Biomolecular Interactions Using a Miniaturized Surface Plasmon Resonance Sensor" Analytical Chemistry

Hideyuki Ando, Yuki Nishio, Katsuki Ito, Akimasa Nakao, Li Wang, Ying Lan Zhao, Kiyoyuki Kitaichi, Kenzo Takagi and Takaaki Hasegawa (2001 ) Effect of Endotoxin on P-Glycoprotein-Mediated Biliary and Renal Excretion of Rhodamine-123 in Rats Antimicrobal Agents and Chemotherapy

Liu, R.H.; Stremler, M.A.; Sharp, K.V.; Olsen, Michael G. (2000 ) Passive mixing in a three-dimensional serpentine microchannel Journal of Micromechanical Systems

Diekamp, B.; Kalt, T.; Ruhm, A.; Koch, M.; Güntürkün, O. (2000) Impairment in a discrimination reversal task after D1 receptor blockade in the pigeon "prefrontal cortex". American Psychological Association

Hanbin Mao, Tinglu Yang, and Paul S. Cremer (2001 ) A Microfluidic Device with a Linear Temperature Gradient for Parallel and Combinatorial Measurements Journal of the American Chemical Society

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Vous passez un temps précieux à construire vos propres pièces pour la recherche préclinique ? Tu sais que tu n'as pas à le faire ? Des canules de perfusion et des systèmes électrophysiologiques aux composants optogénétiques en passant par les besoins de la recherche invivo, PlasticsOne connaît bien l'importance de la recherche préclinique en neurosciences de première ligne pratiquée par les scientifiques du monde entier. Après tout, nous sommes en partenariat avec plusieurs d'entre vous depuis plus de 30 ans !

iWorx

iWorx offre une famille complète de kits d'enseignement TA (Teaching Assistant) faciles à utiliser pour la physiologie humaine, animale, de l'exercice et psychologique ainsi que la neurobiologie. Les kits fournissent tous les instruments, logiciels et didacticiels développés par des professionnels pour effectuer des centaines d'expériences et d'exercices en laboratoire de niveau collégial.

Innovassynth

Innovassynth Technologies (India) Limited a conclu des partenariats très fructueux avec plusieurs sociétés mondiales prestigieuses à travers le monde depuis sa création. Nos clients mondiaux bénéficient d'un avantage concurrentiel énorme grâce à la réduction du délai nécessaire pour franchir les étapes du développement progressif et, enfin, pour lancer le produit sur le marché. La société a identifié NUCLEOSIDES comme un créneau de niche et s'est forgé une réputation de fournisseur de divers nucléosides protégés et de partenaire pour la recherche sur les procédés.