World's Best Scientists 2026 revealed!
Webster S. S. Jee

Webster S. S. Jee

D-Index & Metrics

Medicine

D-Index
73
Citations
17161
World Ranking
19698
National Ranking
9813

Overview

What is he best known for?

The fields of study he is best known for:

  • Internal medicine
  • Endocrinology
  • Surgery

His main research concerns Internal medicine, Endocrinology, Bone remodeling, Bone resorption and Anatomy. His biological study spans a wide range of topics, including Cortical bone and Cancellous bone. His work deals with themes such as Tibia and Bone marrow, which intersect with Endocrinology.

His Bone remodeling research incorporates themes from Longitudinal bone growth and Apposition. His Bone resorption research includes themes of Bone development, Parathyroid hormone and Cell biology. His Anatomy study integrates concerns from other disciplines, such as Femur, Bone cell and Resorption.

His most cited work include:

  • On the rat model of human osteopenias and osteoporoses (416 citations)
  • Overview: animal models of osteopenia and osteoporosis. (318 citations)
  • Estrogen and Bone-Muscle Strength and Mass Relationships (314 citations)

What are the main themes of his work throughout his whole career to date?

Webster S. S. Jee focuses on Internal medicine, Endocrinology, Cancellous bone, Bone resorption and Cortical bone. Webster S. S. Jee combines topics linked to Tibia with his work on Internal medicine. His Bone remodeling, Osteopenia, Osteoporosis, Ovariectomized rat and Prostaglandin E2 study are his primary interests in Endocrinology.

The concepts of his Bone remodeling study are interwoven with issues in Bone mineral and Lumbar vertebrae. His studies deal with areas such as Bone formation, Bone density, Bisphosphonate and Bone healing as well as Cancellous bone. His Cortical bone research is multidisciplinary, incorporating perspectives in Medullary cavity, Osteoid and Bone marrow.

He most often published in these fields:

  • Internal medicine (58.00%)
  • Endocrinology (57.60%)
  • Cancellous bone (27.20%)

What were the highlights of his more recent work (between 2004-2019)?

  • Internal medicine (58.00%)
  • Endocrinology (57.60%)
  • Cancellous bone (27.20%)

In recent papers he was focusing on the following fields of study:

Internal medicine, Endocrinology, Cancellous bone, Osteopenia and Bone resorption are his primary areas of study. His studies link Cortical bone with Endocrinology. His studies in Cancellous bone integrate themes in fields like Cyclosporin a, Bone disease and Adult female.

His work in Osteopenia covers topics such as Parathyroid hormone which are related to areas like Metaphysis, Anabolic Agents, Bone cell, Bone tissue and Physiology. His work in Bone resorption tackles topics such as Alfacalcidol which are related to areas like Ex vivo. His Bone remodeling research is multidisciplinary, relying on both Bone healing, Lumbar vertebrae and Osteoblast.

Between 2004 and 2019, his most popular works were:

  • Sclerostin antibody increases bone mass by stimulating bone formation and inhibiting bone resorption in a hindlimb-immobilization rat model. (147 citations)
  • Rapamycin: a bone sparing immunosuppressant? (95 citations)
  • Salvianolic Acid B Prevents Bone Loss in Prednisone-Treated Rats through Stimulation of Osteogenesis and Bone Marrow Angiogenesis (81 citations)

In his most recent research, the most cited papers focused on:

  • Internal medicine
  • Endocrinology
  • Surgery

Webster S. S. Jee mostly deals with Endocrinology, Internal medicine, Cancellous bone, Osteoporosis and Osteopenia. Webster S. S. Jee interconnects Cyclosporin a and Bone marrow in the investigation of issues within Endocrinology. His research integrates issues of Stromal cell, Adipogenesis and Osteoblast in his study of Bone marrow.

His study focuses on the intersection of Internal medicine and fields such as Cortical bone with connections in the field of Resorption. Webster S. S. Jee studied Osteoporosis and Prostaglandin E2 that intersect with Subcutaneous injection, Osteoclast and Agonist. Tibia and Metaphysis is closely connected to Parathyroid hormone in his research, which is encompassed under the umbrella topic of Osteopenia.

Best Publications

  • On the rat model of human osteopenias and osteoporoses

    Harold M. Frost;Webster S. S. Jee

  • Estrogen and Bone-Muscle Strength and Mass Relationships

    H Schiessl;H.M Frost;W.S.S Jee

  • Overview: animal models of osteopenia and osteoporosis.

    W. S. S. Jee;W. Yao

  • Prostaglandin E2 enhances cortical bone mass and activates intracortical bone remodeling in intact and ovariectomized female rats

    W.S.S. Jee;S. Mori;X.J. Li;S. Chan

  • The effects of prostaglandin E2 in growing rats - Increased metaphyseal hard tissue and cortico-endosteal bone formation

    W. S. S. Jee;K. Ueno;Y. P. Deng;D. M. Woodbury

  • Excessive mineralization with growth plate closure in rats on chronic warfarin treatment

    Paul A. Price;Matthew K. Williamson;Teruo Haba;Rebecca B. dell

  • Deletion of the P2X7 nucleotide receptor reveals its regulatory roles in bone formation and resorption.

    H.Z. Ke;H. Qi;A.F. Weidema;Q. Zhang

  • The deleterious effects of long-term cyclosporine a, cyclosporine g, and fk506 on bone mineral metabolism in vivo

    Mirjana Cvetkovic;Gary N. Mann;David F. Romero;Xlao G. Liang

  • Adaptation of cancellous bone to aging and immobilization in the rat: A single photon absorptiometry and histomorphometry study

    Xiao Jian Li;Webster S. S. Jee;Sien-Yao Chow;Dixon M. Woodbury

  • The in vivo anabolic actions of prostaglandins in bone

    W.S.S. Jee;Y.F. Ma

  • Effects of spaceflight on trabecular bone in rats

    W. S. S. Jee;T. J. Wronski;E. R. Morey;D. B. Kimmel

  • Sclerostin antibody increases bone mass by stimulating bone formation and inhibiting bone resorption in a hindlimb-immobilization rat model.

    XiaoYan Tian;Webster S.S. Jee;Xiaodong Li;Chris Paszty

  • Effects of prostaglandin E2 on production of new cancellous bone in the axial skeleton of ovariectomized rats

    S. Mori;W.S.S. Jee;X.J. Li;S. Chan

  • Effects of CP-336,156, a new, nonsteroidal estrogen agonist/antagonist, on bone, serum cholesterol, uterus and body composition in rat models.

    Hua Zhu Ke;Vishwas M. Paralkar;William A. Grasser;D. Todd Crawford

  • A quantitative histologic analysis of the growing long bone metaphysis.

    Donald B. Kimmel;Webster S. S. Jee

  • Corticosteroid and bone.

    Webster S. S. Jee;Han Z. Park;Wilbur E. Roberts;Gerry H. Kenner

  • Perspectives: some roles of mechanical usage, muscle strength, and the mechanostat in skeletal physiology, disease, and research.

    H. M. Frost;J. L. Ferrett;W. S. S. Jee

  • A quantitative histologic study of bone turnover in young adult beagles.

    Donald B. Kimmel;W. S. S. Jee

  • Adaptation of cancellous bone to overloading in the adult rat: a single photon absorptiometry and histomorphometry study.

    Webster S. S. Jee;Xiao Jian Li

  • The role of bone cells in increasing metaphyseal hard tissue in rapidly growing rats treated with prostaglandin E2

    W.S.S. Jee;K. Ueno;D.B. Kimmel;D.B. Kimmel;D.M. Woodbury

Frequent Co-Authors

Dixon M. Woodbury
Dixon M. Woodbury University of Utah
Xiaodong Li
Xiaodong Li University of Virginia
Bernard P. Halloran
Bernard P. Halloran University of California, San Francisco
Robert R. Recker
Robert R. Recker Creighton University
Hector F. DeLuca
Hector F. DeLuca University of Wisconsin–Madison
Hao Chen
Hao Chen University of California, Davis
Willi Jahnen-Dechent
Willi Jahnen-Dechent RWTH Aachen University
Charles H. Turner
Charles H. Turner Indiana University
Thomas A. Owen
Thomas A. Owen Pfizer (United States)
Jürgen Floege
Jürgen Floege RWTH Aachen University

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