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Ditemukan 33 dokumen yang sesuai dengan query
cover
Minneapolis: Burges, 1975
571.6 CEL
Buku Teks  Universitas Indonesia Library
cover
Morrison, John H.
New York: Reinhold, 1966
571.6 MOR f
Buku Teks  Universitas Indonesia Library
cover
New York: W.H. Freeman and Company, 2004
571.6 STO w
Buku Teks  Universitas Indonesia Library
cover
Abstrak :
Based on the feedback resulting from his highly successful monograph, Horst Feldmann has totally rewritten he contents to produce a comprehensive, student-friendly textbook on the topic. The scope has been widened, with almost double the content so as to include all aspects of yeast biology, from genetics via cell biology right up to biotechnology applications. The cell and molecular biology sections have been vastly expanded, while information on other yeast species has been added, with contributions from additional authors. Naturally, the illustrations are in full color throughout, and the book is backed by a complimentary website. The resulting textbook caters to the needs of an increasing number of students in biomedical research, cell and molecular biology, microbiology and biotechnology who end up using yeast as an important tool or model organism.
Hoboken: John Wiley, 2012
571.6 YEA
Buku Teks  Universitas Indonesia Library
cover
Karp, Gerald
Abstrak :
This seventh edition connects experimental material to key concepts of cell biology. The text offers streamlined information that reinforces a connection of key concepts to experimentation. Though the use paired art, and new science illustrations, readers benefit from a visual representation of experimental connections. Animations and video clips are tied to key illustrations with practice questions to provide a variety of ways to experience a key concept. This new edition offers an appropriate balance of concepts and experimentation. Experimental detail is offered when it helps to reinforce the concept being explained.
Singapore : John Wiley & Sons Inc, 2014
571.6 KAR c
Buku Teks  Universitas Indonesia Library
cover
Ade Martinus
Abstrak :
ABSTRAK
Latar belakang: Cidera saraf perifer sebagai keluaran dari post operatif hingga saat ini belum ditangani dengan maksimal. Penelitian ini ditujukan untuk menentukan potensi dari sekretom pada regenerasi cidera saraf perifer.

Metode: Cidera saraf perifer buatan dilakukan pada tikus dengan melakukan diseksi pada saraf sciatic. Evaluasi perbaikan motorik dilakukan mengunakan Sciatic Functional Index (SFI) pada minggu ke enam (SFI 1), minggu ke sembilan (SFI 2), dan minggu ke dua belas (SFI 3). Rasio berat basah antara otot gastrocnemius kanan dan kiri dibandingkan serta dilakukan histomorphometry saraf sciatic pada tiap kelompok.

Hasil: Kelompok III menunjukan SFI 1 yang lebih baik dibandingkan kelompok I (p=0.017). Kelompok I dan III menunjukan perbedaan SF2 yang signifikan dibandingkan dengan kelompok II dan IV (p<0.001). Rasio tertinggi dari otot gastrocnemius ditemukan pada kelompok I dan III, yang bernilai 0.65 ± 0.059 dan 0.67 ± 0.179 (p<0.001). Pada histomorphometry, akson termyelinisasi paling banyak ditemukan pada kelompok I dan III, yang bernilai p<0.001.

Kesimpulan: Sekretom sel punca mesenkimal korda umbilikalis dapat digunakan sebagai terapi baru untuk menggantikan autograf pada penanganan kerusakan saraf perifer.
ABSTRACT
Background: Currently, the post-surgical outcome of peripheral nerve injury has not been optimal. The purpose of this research is to determine the potency of secretome in peripheral nerve injury regeneration.

Method: The mice had artificially-induced peripheral nerve injury, which was created by dissecting the sciatic nerve. Sciatic Functional Index (SFI) was used to evaluate the motoric recovery on week six (SFI 1), week nine (SFI 2), and week twelve (SFI 3). The mice was sacrificed on week twelve. The wet mass ratios of the right and left gastrocnemius muscle were compared, then the sciatic nerve histomorphometry evaluation was performed on each group.

Results: Group III showed a better SFI 1 result than Group I (p=0.017). Group I and III showed significantly better SFI 2 than group II and IV (p<0.001). The highest ratio of gastrocnemius muscle was found in group I and III, which were 0.65 ± 0.059 and 0.67 ± 0.179 (p<0.001). On histomorphometry, the highest number of myelinated axons were found in group I and III, which were p<0.001.

Conclusion: Umbilical cord mesenchymal stem cell secretome can be used as a new therapy to replace the autograft in peripheral nerve defect management.
Jakarta: Fakultas Kedokteran Universitas Indonesia, 2019
T59191
UI - Tesis Membership  Universitas Indonesia Library
cover
Sheeler, Phillip
New York: John Wiley & Sons, 1987
571.6 SHE c
Buku Teks  Universitas Indonesia Library
cover
Choirul Muslim
Bengkulu: Universitas Bengkulu-Jur. Biologi, 2003
571.6 CHO b
Buku Teks  Universitas Indonesia Library
cover
Cooper, Geoffrey M.
Abstrak :
Even the most experienced instructor can find teaching cell biology daunting, and most cell biology texts are bogged down in detail or background information. Lost in all the details are the more fascinating material and contemporary advances that represent this rapidly moving field. With so much to cover, creating a classroom around active learning may be difficult or nearly impossible. The Cell: A Molecular Approach endeavors to address those issues with succinct writing, incorporation of current research, a test bank that encourages critical thinking, and an active learning framework. With just enough detail for a one-semester, junior level course, the text presents fundamental concepts and current research, including chapters on genomics and transcriptional regulation and epigenetics, and new in-text boxed features on molecular medicine and key experiments. For instructors who want to flip their classrooms or just get students more engaged, The Cell: A Molecular Approach is the only cell biology text that is accompanied by an Active Learning Guide. This chapter-by-chapter playbook shows instructors how to create a dynamic learning environment with in-class exercises, clicker questions, and links to relevant media, animations, testing, and self-quizzing, all aligned with the new in-text learning objectives, wherever appropriate. This text provides the right level of detail, student engagement, and instructor support for the modern cell biology classroom
New York: Oxford University Press, 2019
571.6 COO c
Buku Teks  Universitas Indonesia Library
cover
Abstrak :
The Handbook of Single Cell Technology provides an overview of single cell manipulation, injection, lysis, and dynamics analysis with the aid of various miniaturized devices. The role of single cell analysis in system biology, proteomics, genomics, metabolomics and fluxomics, the applications of single cell analysis for bio-catalysis, metabolic and bioprocess engineering, and the future challenges for single cell analysis given its advantages and limitations are also elaborated. The respective chapters introduce readers to various approaches for single cell analysis. Further, they address the fabrication of different types of bio-micro/nano devices in the context of cutting-edge analysis and screening for e.g. cancers, HIV etc., which is beneficial for society at large. This handbook is intended for academic researchers, undergraduate and graduate students in the fields of Biomedical Engineering, Bio-nanoengineering, and Bio-micro/nano Fabrication. It can be used for courses on Bio-MEMS/Bio-NEMS, Biomicrofluidics, Biomicrofabrications, Micro/Nanofluidics, Biophysics, Single Cell Analysis, Bionanotechnology, Drug Delivery Systems and Biomedical Microdevices. Bringing together contributions from respected experts, it will also benefit researchers and practitioners in the biotechnology industry, where diseases analysis, diagnosis and drug screening continue to grow in importance.
Singapore: Springer Singapore, 2019
e20509551
eBooks  Universitas Indonesia Library
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