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The Axon™ Digidata® 1550B plus HumSilencer® is one of the most advanced analog-to-digital signal converters on the market, offering the innovative line synchronous noise-cancelling feature, HumSilencer. This advanced feature learns, adapts, and eliminates local 50/60 Hz line-frequency noise and high-frequency harmonics from incoming signals. The digitizer works with pCLAMPTM 11 Software for data acquisition and analysis. The software supports eight channels of analog acquisition and four acquisition modes.
The A385 is an optically isolated current source, which can generate up to 100 mA of unipolar or biphasic constant current pulses or DC. Pulse duration is controlled manually or by an external 5V command. Output current amplitude is determined by a 3-digit 10-turn potentiometer. Maximum output voltage between the stimulating electrodes is +36V.
The Retiga ELECTRO was specifically designed to offer solutions for the unique challenges of electrophysiology, with high sensitivity, low noise, and vibration-free.
Temperature controlling equipment for electrophysiology experiments
This site hosts online representations for the annual Graduate Open Studios. Documentation of gallery exhibitions and the screening program are viewable, along with links to each participating artist39;s studio page. Past Open Studios and MFA Thesis exhibitions are also viewable.
Enterprise-grade High Performance Computing infrastructure dedicated to WCM researchers and supporting AI workloads.
Provides state-of-the-art, non-invasive neuroimaging, whole body imaging, and spectroscopy technologies for academic and industry-based research in central and western Massachusetts
Identifies phenotype-associated cell subpopulations by integrating phenotypic data (e.g., survival, drug sensitivity), bulk gene expression, and single-cell RNA-seq (scRNA-seq) profiles. It employs multiple algorithms to reliably connect cellular features with clinical or functional phenotypes, offering a unified pipeline for multi-modal analysis that uncovers biologically and clinically relevant cell states in heterogeneous datasets.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.
The Mitochondrial Function and In Vivo Imaging (MF-II) Core provides specialized expertise, advanced instrumentation, and comprehensive services for assessing mitochondrial function, metabolism, cardiopulmonary physiology, and in vivo structure and function. The Core supports cardiovascular, pulmonary, and vascular research through high-resolution metabolic and mitochondrial analyses, noninvasive imaging, hemodynamic assessment, and established preclinical disease models. The MF-II Core works collaboratively with investigators to provide experimental design consultation, technical expertise, data acquisition, and analysis to generate high-quality, reproducible data.