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1.
Facial Plast Surg ; 40(2): 146-157, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-37879351

RESUMO

Follicular unit excision (FUE) has emerged as the preferred method for hair transplants. Standardized terms and definitions established by members of the International Society of Hair Restoration Surgery and prominent hair restoration surgeons have become the standard, enabling effective knowledge sharing. This chapter provides an overview of the terminology relating to the field.The historical evolution of FUE and its pivotal role in modern hair transplantation is summarized. Anatomical terminology and graft-related definitions follow, providing insights into the scalp's complex structures and graft characteristics. The subsequent sections detail the terminology associated with graft excision and extraction, shedding light on the precise techniques and procedures employed. An exploration of various FUE techniques and the evolving landscape of FUE devices underscores the continual refinement of hair restoration practices. The chapter proceeds to discuss the "safe'" scalp donor zones, donor assessment terminology, and elements in identifying the optimal donor area for a successful FUE procedure. Additionally, punch dynamics and technique characteristics are examined, emphasizing their pivotal role in achieving superior FUE outcomes. The chapter concludes by discussing the classification of punches and graft evaluation terms, offering insights into the tools, and criteria used to assess graft quality and viability.


Assuntos
Alopecia , Folículo Piloso , Humanos , Folículo Piloso/transplante , Alopecia/cirurgia , Coleta de Tecidos e Órgãos , Cabelo/transplante , Couro Cabeludo/cirurgia
2.
Dermatol Surg ; 49(6): 598-602, 2023 06 01.
Artigo em Inglês | MEDLINE | ID: mdl-37027247

RESUMO

BACKGROUND: The prevalence of work-related musculoskeletal disorders (WRMD) is increasing among all surgical specialties. OBJECTIVE: Results of a cross-sectional survey of hair transplant surgeons were analyzed, with the aims to (1) determine the prevalence of WRMD, (2) assess risk factors associated with musculoskeletal (MSK) symptoms, and (3) identify mitigation measures. MATERIALS AND METHODS: A survey pertaining to demographics, MSK-related symptoms and its impacts, and pain mitigation measures taken, if any, were distributed to 834 hair transplant surgeons. Risk factors associated with pain severity were assessed using linear regression. RESULTS: Overall, 78.5% (73 of 93) respondents had experienced pain when performing surgery. Musculoskeletal symptoms were most severe in the neck, followed by upper/lower back, and extremities. Number of grafts performed per session of follicular unit extraction positively correlated with pain severity; female surgeons and surgeons aged >71 years were at higher risk. A majority expressed concern that WRMD may limit their career and agreed to a need for improved workplace education. Strength training and ergonomic improvements of surgical procedure were not commonly adopted. CONCLUSION: In sum, WRMD can be debilitating in health care professionals. Workplace ergonomic adjustments and physical exercise programs may be warranted to better mitigate MSK symptoms.


Assuntos
Dor Musculoesquelética , Doenças Profissionais , Cirurgiões , Humanos , Feminino , Estudos Transversais , Doenças Profissionais/epidemiologia , Doenças Profissionais/etiologia , Inquéritos e Questionários , Prevalência , Cabelo
3.
Trends Pharmacol Sci ; 42(10): 813-828, 2021 10.
Artigo em Inglês | MEDLINE | ID: mdl-34454774

RESUMO

Vaccines have been used to train the immune system to recognize pathogens, and prevent and treat diseases, such as cancer, for decades. However, there are continuing challenges in their manufacturing, large-scale production, and storage. Some of them also show suboptimal immunogenicity, requiring additional adjuvants and booster doses. As an alternate vaccination strategy, a new class of biomimetic materials with unique functionalities has emerged in recent years. Here, we explore the current bioengineering techniques that make use of hydrogels, modified polymers, cell membranes, self-assembled proteins, virus-like particles (VLPs), and nucleic acids to deliver and develop biomaterial-based vaccines. We also review design principles and key regulatory issues associated with their development. Finally, we critically assess their limitations, explore approaches to overcome these limitations, and discuss potential future applications for clinical translation.


Assuntos
Materiais Biomiméticos , Vacinas , Materiais Biocompatíveis , Hidrogéis , Polímeros
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