An Introduction to Biomedical Optics

Product Description
Many universities now offer a course in biomedical optics, but lack a textbook specifically addressing the topic. Intended to fill this gap, An Introduction to Biomedical Optics is the first comprehensive, introductory text describing both diagnostic and therapeutic optical methods in medicine. It provides the fundamental background needed for graduate students in biomedical and electrical engineering, physics, biology, and medicine to learn about several biomedical optics issues.

The textbook is divided into three main sections: general optics theory, therapeutic applications of light, and diagnostic optical methods. Each chapter has different levels of detail to build students’ knowledge from one level to the next. The first section covers the history of optics theory and the basic science behind light-tissue interactions. It also introduces the relevant approaches and approximations used to describe light propagation in turbid biological media. In the second section, the authors look more closely at light-tissue interactions and their applications in different medical areas, such as wound healing and tissue welding. The final section examines the various diagnostic methods that are employed using optical techniques. Throughout the text, the authors employ numerical examples of clinical and research requirements.

Fulfilling the need for a concise biomedical optics textbook, An Introduction to Biomedical Optics addresses the theory and applications of this growing field.

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Biomedical Engineering Principles – Introduction to Fluid, Heat and Mass Transport Processes

Product Description
Biomedical Engineering Principles is a fundamentally unique introduction in biomedical engineering. It achieves a synthesis of engineering information and data from the life sciences to describe transport problems in the human body in terms of principles most familiar to engineers. No other book is available which offers a quantitative treatment of biomedical transport processes at the advanced undergraduate and beginning graduate level. After a review of pertinent historical developments in medicine, a basic quantitative characterization of the human body – stressing the physical, chemical, and flow properties of blood – is given. Next, the author examines the modeling of fluid flow, heat transfer, and mass transfer processes in the body. A more detailed treatment of mass transfer across biological membranes, especially the kidneys and lungs, is then presented. Finally, the volume considers two major developments within biomedical engineering, artificial kidneys and blood oxygenators.

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Introduction to Microbes


School of Health Sciences: Post Basic Bachelor of Science in Nursing B.Sc.N. (PB): BNS-102 BNSL 102 Applied Sciences (Biochemistry, Biophysics, Microbiology and Nutrition and Dietetics)

Introduction to amino acids and peptides (16)


Organic chemistry: Biochemistry. How to draw amino acids. Acid/base properties of amino acids. Finding net charge of amino acids and peptides (proteins) at a specified pH. Zwitterions; finding the pI of amino acids and peptides. Peptide (amide) bonds. Amino acid sequencing with partial digestion by proteolytic enzymes such as trypsin. Total acid hydrolysis (TAH) This is a recording of a tutoring session, posted with the student’s permission. These videos are offered on a “pay-what-you-like” basis. You can pay for the use of the videos at my website: www.freelance-teacher.com For a printable document containing the amino acid table discussed in this video series, go to my website. For a list of all the available video series, arranged in suggested viewing order, go to my website. (1) Nucleophilic attack of an amine on a carboxylic acid to form an amide (peptide) bond. How to draw amino acids—alanine, isoleucine (2) Valine, arginine, lysine, glycine, histidine (3) Proline, tyrosine (4) Acid/base properties of amino acids; how to determine net charge of an amino acid at varying pHs (5) Continued (6) Determining the net charge on an amino acid at a specified pH (arginine) (7) Continued. pI of an amino acid (8) Continued (9) Continued (10) Peptides; peptide (amide) bonds (11) Continued. pI of a peptide (12) Continued (13) Continued (histidine) (14) Continued (15) Amino acid sequencing with partial digestion by hydrolytic enzymes such as trypsin (16) Total acid hydrolysis (TAH)

Introduction to amino acids and peptides (13)


Organic chemistry: Biochemistry. How to draw amino acids. Acid/base properties of amino acids. Finding net charge of amino acids and peptides (proteins) at a specified pH. Zwitterions; finding the pI of amino acids and peptides. Peptide (amide) bonds. Amino acid sequencing with partial digestion by proteolytic enzymes such as trypsin. Total acid hydrolysis (TAH) This is a recording of a tutoring session, posted with the student’s permission. These videos are offered on a “pay-what-you-like” basis. You can pay for the use of the videos at my website: www.freelance-teacher.com For a printable document containing the amino acid table discussed in this video series, go to my website. For a list of all the available video series, arranged in suggested viewing order, go to my website. For a playlist containing all the videos in this series, click here: www.youtube.com (1) Nucleophilic attack of an amine on a carboxylic acid to form an amide (peptide) bond. How to draw amino acids—alanine, isoleucine (2) Valine, arginine, lysine, glycine, histidine (3) Proline, tyrosine (4) Acid/base properties of amino acids; how to determine net charge of an amino acid at varying pHs (5) Continued (6) Determining the net charge on an amino acid at a specified pH (arginine) (7) Continued. pI of an amino acid (8) Continued (9) Continued (10) Peptides; peptide (amide) bonds (11) Continued. pI of a peptide (12) Continued (13) Continued (histidine) (14) Continued (15) Amino acid sequencing with