Electrical and Mechanical Manipulation of Single Cells

Download Electrical and Mechanical Manipulation of Single Cells PDF Online Free

Author :
Release : 2005
Genre :
Kind :
Book Rating : /5 ( reviews)

Electrical and Mechanical Manipulation of Single Cells - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Electrical and Mechanical Manipulation of Single Cells write by Michelle Khine. This book was released on 2005. Electrical and Mechanical Manipulation of Single Cells available in PDF, EPUB and Kindle.

3D Electro-Rotation of Single Cells

Download 3D Electro-Rotation of Single Cells PDF Online Free

Author :
Release : 2019-12-26
Genre : Technology & Engineering
Kind :
Book Rating : 926/5 ( reviews)

3D Electro-Rotation of Single Cells - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook 3D Electro-Rotation of Single Cells write by Liang Huang. This book was released on 2019-12-26. 3D Electro-Rotation of Single Cells available in PDF, EPUB and Kindle. Dielectrophoresis microfluidic chips have been widely used in various biological applications due to their advantages of convenient operation, high throughput, and low cost. However, most of the DEP microfluidic chips are based on 2D planar electrodes which have some limitations, such as electric field attenuation, small effective working regions, and weak DEP forces. In order to overcome the limitations of 2D planar electrodes, two kinds of thick-electrode DEP chips were designed to realize manipulation and multi-parameter measurement of single cells. Based on the multi-electrode structure of thick-electrode DEP, a single-cell 3D electro-rotation chip of "Armillary Sphere" was designed. The chip uses four thick electrodes and a bottom planar electrode to form an electric field chamber, which can control 3D rotation of single cells under different electric signal configurations. Electrical property measurement and 3D image reconstruction of single cells are achieved based on single-cell 3D rotation. This work overcomes the limitations of 2D planar electrodes and effectively solves the problem of unstable spatial position of single-cell samples, and provides a new platform for single-cell analysis. Based on multi-electrode structure of thick-electrode DEP, a microfluidic chip with optoelectronic integration was presented. A dual-fiber optical stretcher embedded in thick electrodes can trap and stretch a single cell while the thick electrodes are used for single-cell rotation. Stretching and rotation manipulation gives the chip the ability to simultaneously measure mechanical and electrical properties of single cells, providing a versatile platform for single-cell analysis, further extending the application of thick-electrode DEP in biological manipulation and analysis.

3D Electro-Rotation of Single Cells

Download 3D Electro-Rotation of Single Cells PDF Online Free

Author :
Release : 2022-05-31
Genre : Technology & Engineering
Kind :
Book Rating : 661/5 ( reviews)

3D Electro-Rotation of Single Cells - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook 3D Electro-Rotation of Single Cells write by Liang Huang. This book was released on 2022-05-31. 3D Electro-Rotation of Single Cells available in PDF, EPUB and Kindle. Dielectrophoresis microfluidic chips have been widely used in various biological applications due to their advantages of convenient operation, high throughput, and low cost. However, most of the DEP microfluidic chips are based on 2D planar electrodes which have some limitations, such as electric field attenuation, small effective working regions, and weak DEP forces. In order to overcome the limitations of 2D planar electrodes, two kinds of thick-electrode DEP chips were designed to realize manipulation and multi-parameter measurement of single cells. Based on the multi-electrode structure of thick-electrode DEP, a single-cell 3D electro-rotation chip of "Armillary Sphere" was designed. The chip uses four thick electrodes and a bottom planar electrode to form an electric field chamber, which can control 3D rotation of single cells under different electric signal configurations. Electrical property measurement and 3D image reconstruction of single cells are achieved based on single-cell 3D rotation. This work overcomes the limitations of 2D planar electrodes and effectively solves the problem of unstable spatial position of single-cell samples, and provides a new platform for single-cell analysis. Based on multi-electrode structure of thick-electrode DEP, a microfluidic chip with optoelectronic integration was presented. A dual-fiber optical stretcher embedded in thick electrodes can trap and stretch a single cell while the thick electrodes are used for single-cell rotation. Stretching and rotation manipulation gives the chip the ability to simultaneously measure mechanical and electrical properties of single cells, providing a versatile platform for single-cell analysis, further extending the application of thick-electrode DEP in biological manipulation and analysis.

Electrical Manipulation of Cells

Download Electrical Manipulation of Cells PDF Online Free

Author :
Release : 2012-12-06
Genre : Science
Kind :
Book Rating : 594/5 ( reviews)

Electrical Manipulation of Cells - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Electrical Manipulation of Cells write by Paul T. Lynch. This book was released on 2012-12-06. Electrical Manipulation of Cells available in PDF, EPUB and Kindle. Electrical Manipulation of Cells provides an authoritative and up-to-date review of the field, covering all the major techniques in a single source. The book features broad coverage that ranges from the mechanisms of action of external electrical fields on biological material to the ways in which electrical stimuli are employed to manipulate cells. Bringing together the work of leading international authorities, the book covers membrane breakdown, gene delivery, electroporation, electrostimulation, cell movement, hybridoma production, plant protoplasts, electrorotation and stimulation, and electromagnetic stimulation. For each topic, the authors discuss the relevance of the approach to the current state of the art of biotechnology. Electrical Manipulation of Cells is an unmatched source of information for anyone involved in the manipulation of cells, particularly biotechnologists, cell biology, microbiologists, biophysicists and plant scientists. For researchers, the book provides technical material that ccan be employed in their own work. Students will gain thorough appreciation of the applications of this important technique.

Handbook of Single-Cell Technologies

Download Handbook of Single-Cell Technologies PDF Online Free

Author :
Release : 2021-10-29
Genre : Technology & Engineering
Kind :
Book Rating : 527/5 ( reviews)

Handbook of Single-Cell Technologies - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Handbook of Single-Cell Technologies write by Tuhin Subhra Santra. This book was released on 2021-10-29. Handbook of Single-Cell Technologies available in PDF, EPUB and Kindle. This book provides a brief overview of single-cell analysis using recent advanced technologies. The different sections cover different aspect of single cell analysis and applications with their advantages, limitations, and future challenges. The book has covered how different physical energies such as optical, electrical, and mechanical energy have been applied for single cell therapy and analysis. The recent advanced micro/nanofluidic devices have been employed for single-cell counting, manipulation, cultivation, separation, isolation, lysis, printing and patterning and host-viral interaction at single-cell level. Various chemical approaches for single-cell analysis have been discussed, such as liposome mediated materials transfer at single-cell and their analysis, discovery of antibody via single-cell, high-throughput screening of antigen-specific antibody-secreting cells, and biomolecular secretion analysis of individual cells. Moreover, different single-cell omics such as genomics, proteomics and transcriptomics have been discussed using microfluidic technologies as well as conventional approaches. The role of single cell analysis in system biology and biocatalysis have been discussed in detail. The book describes single-cell phenotyping of heterogeneous tissue, stimulation, and instant reaction quenching technology for biochemical kinetic analysis, large scale single-cell assay for the identification of biocatalysts and analytical techniques for single-cell studies in microbiology. The role of single-cell analysis in cancer, such as single-cell adhesion and cancer progression, single-cell technologies for cancer therapy, analytical technology for single cancer cell analysis, and biophysical markers for cancer cell analysis have been discussed. The flow cytometry based high throughput single-cell analysis have been well emphasized. Finally this book has covered single-cell electrophysiology, single-cell sensing and size measurement using mechanical and microwave resonators, molecular force spectroscopy for cell adhesion measurement, micro-tweezers and force microscopy techniques for single-cell mechanobiological analysis, mass spectrometry and acoustic tweezers for single-cell manipulation and analysis. This book is intended for academic and industrial researchers, undergraduate and graduate students in the fields of biomedical engineering, bio-micro/nanoengineering, and bio-micro/nano fabrication for single-cell analysis. It can be used for courses on bio-MEMS/bio-NEMS, biomicrofluidics, bio-micro/nanofabrications, micro/nanofluidics, biophysics, single cell analysis, bionanotechnology, drug delivery systems and biomedical microdevices. Collective contributions from respected experts, have brought diverse aspects of single-cell technologies in a single hand book. This will benefit researchers and practitioners in the biotechnology industry for different diseases analysis, therapeutics, diagnostics, drug discovery, drug screening etc. In addition to hard copies, the book will be available online and will often be updated by the authors.