Discrete sarcomere lengths have been determined from dynamically contracting isolated cardiac cells with a high-speed, high-resolution direct optical imaging system. Calcium-tolerant cardiac cells from the rat are isolated by perfusion with collagenase and hyaluronidase. Individual sarcomere lengths can be determined by directly imaging the cell's striation pattern onto a solid-state charge-coupled device (CCD) detector interfaced with a digital computer. The precision of detection in a real light microscopic optical system is discussed in relation to the type of image detector, optical contract enhancement techniques, and digital image processing. The optical performance of the direct striation pattern image apparatus has been determined e...
Sarcomere striation positions have been obtained throughout the volumes of calcium-tolerant resting ...
A new optical-electronic method has been developed to detect striation spacing of single muscle fibe...
The contractility of cardiac cells is a key parameter that describes the biomechanical characteristi...
Discrete sarcomere lengths have been determined from dynamically contracting isolated cardiac cells ...
Sarcomeres of single cardiac cells isolated either by microdissection or by enzymatic dissociation w...
We describe an extension of the method of Myers et al. (1982) to measure with high precision the uni...
Sarcomere length (SL) is an important determinant and indicator of cardiac mechanical function; howe...
A- and I-band striation positions have been obtained, three-dimensionally reconstructed, and statist...
We observed the asynchronized motions that occur between the sarcomeres during spontaneous contracti...
Sarcomeres are the structural units of the contractile apparatus in cardiac and skeletal muscle cell...
International audienceWe extend second-harmonic generation (SHG) microscopy to the measurement of sa...
The understanding of muscle contraction and relaxation requires the quantitation of movement at the ...
International audienceA low-cost, high-resolution (spatial and temporal) image analysis system was d...
Skeletal muscle force production results from interaction between actin and myosin protein filaments...
In this work, we describe a novel fluorescence indicator system for the in-vitro characterization of...
Sarcomere striation positions have been obtained throughout the volumes of calcium-tolerant resting ...
A new optical-electronic method has been developed to detect striation spacing of single muscle fibe...
The contractility of cardiac cells is a key parameter that describes the biomechanical characteristi...
Discrete sarcomere lengths have been determined from dynamically contracting isolated cardiac cells ...
Sarcomeres of single cardiac cells isolated either by microdissection or by enzymatic dissociation w...
We describe an extension of the method of Myers et al. (1982) to measure with high precision the uni...
Sarcomere length (SL) is an important determinant and indicator of cardiac mechanical function; howe...
A- and I-band striation positions have been obtained, three-dimensionally reconstructed, and statist...
We observed the asynchronized motions that occur between the sarcomeres during spontaneous contracti...
Sarcomeres are the structural units of the contractile apparatus in cardiac and skeletal muscle cell...
International audienceWe extend second-harmonic generation (SHG) microscopy to the measurement of sa...
The understanding of muscle contraction and relaxation requires the quantitation of movement at the ...
International audienceA low-cost, high-resolution (spatial and temporal) image analysis system was d...
Skeletal muscle force production results from interaction between actin and myosin protein filaments...
In this work, we describe a novel fluorescence indicator system for the in-vitro characterization of...
Sarcomere striation positions have been obtained throughout the volumes of calcium-tolerant resting ...
A new optical-electronic method has been developed to detect striation spacing of single muscle fibe...
The contractility of cardiac cells is a key parameter that describes the biomechanical characteristi...