Researchers at The University of Alberta, Canadian Blood Services, and Queen's University are using the Linkam FDCS196 system to evaluate the quality of cryopreserved red cell concentrates (RCCs) after transient warming events (TWEs), to ascertain the impact these events have on cell quality.
Using Linkam’s Optical DSC450 System to Demonstrate the Value of Simultaneous Thermal and Optical Analysis.
Application of Cryo-FIB-SEM to Investigate Ultrastructure in Guard Cells of Higher Plants
Using Linkam's MFS to Enable Controlled Mechanical Testing During Optical Characterisation.
Using Linkam's CMS196V4 to Investigate How the Bacterial Division Protein FtsZ Organises and Behaves During Cell Division in the Filamentous Cyanobacterium Anabaena sp.
Investigating How Growth Hormone (GH) Changes the Metabolism and Mitochondrial Structure of Inflammatory Macrophages using Linkam's CMS196V4
Researchers at The Spanish National Research Council (CSIC), Madrid, Spain used Linkam’s CMS196V4 cryo-stage to investigate how growth hormone (GH) changes the metabolism and mitochondrial structure of inflammatory macrophages in their paper, ‘Growth hormone remodels the 3D-structure of the mitochondria of inflammatory macrophages and promotes metabolic reprogramming’ .
Using Linkam Stages to Identify Critical Temperatures
Telstar’s state-of-the-art lyophilization research and development laboratory is fully equipped with the most modern equipment available; including Linkam’s FDCS196 freeze-drying cryostage , Linkam’s LNP96-S liquid nitrogen cooling system and our programmable temperature controller, the T96-S to complete detailed process studies.
Investigating Fluid Inclusions to Understand Ore Forming Processes and for Sequestion of Carbon Dioxide using Linkam Stages
Investigating Boracite and Quartz: Two Minerals with Similarities using Linkam's DSC600
The Linkam DSC600 stage allows direct coupling with optical methods, whether visual or spectroscopic. Particularly promising are combinations with UV/VIS, infrared, and Raman spectroscopy, as well as several X-ray techniques. In this way, additional information can be obtained simultaneously with thermoanalytical investigations, enabling a more comprehensive understanding of the processes involved.
Investigating the Simultaneous Optical and Thermoanalytical Monitoring of the Dehydration of Copper Sulphate Pentahydrate using Linkam's DSC600
Scientists investigated the simultaneous optical and thermoanalytical monitoring of the dehydration of copper sulphate pentahydrate using Linkam's DSC600 which allows direct coupling with optical methods, whether visual or spectroscopic. Simultaneous coupling with infrared and X-ray methods provides valuable information that goes far beyond the thermoanalytical results.
Characterising the mechanical properties of synthetic spider silk using the Linkam Modular Force Stage (MFS)
Achieving precise temperature control in semiconductor and electronics research
Investigating the Effect of Temperature and Shear Flow on the Nucleation Rate of Spherulites in Isotactic Polypropylene using Linkam’s CSS450 Stage.
Characterising the Temperature-induced Evolution of the Shape and Texture of a Silicon Wafer.
Mechanical Characterisation: Understanding Materials Through Precise Tensile Testing
Studying a New Polymorph of Metacetamol using Linkam’s FTIR600
Replicating the texture of meat in plant-based alternatives using Linkam’s Modular Force Stage (MFS).
Investigating drug-polymer interactions using optical DSC
Researchers from the University of Hertfordshire’s School of Life and Medical Sciences collaborated with Linkam to provide an in-depth analysis into how the optical DSC450 and TASC can be used to characterise drug-polymer-excipient systems for pharmaceutical applications. Read the full case study here.
