血管功能障碍与疾病二级预防方向博士职位
BHF Multidisciplinary Doctoral Training Programme (Fixed Term)
原帖优先:申请材料、截止时间与资格以原帖和学校官方说明为准。
AI 中文速览
- 研究内容
- 本项目聚焦于血管功能障碍与疾病的二级预防,学生将在四个互相关联的研究主题中开展跨学科研究:定义疾病、阐明机制与生物标志物、调节细胞死亡与炎症以及维持血管稳定性。
- 申请条件
- 申请人应持有或预计获得生物化学、生物医学科学、生物工程或相关生命科学学科的一等或二等上学士学位(或同等学历)。
- 待遇
- 提供全额资助的4年期奖学金,包括标准BHF税收减免的生活津贴、英国标准学费、耗材预算、会议差旅费及合作伙伴访问资金。
- 申请方式
- 申请人需通过剑桥大学研究生申请系统提交材料,申请截止日期为2027年12月8日(注:原文中列出了2027年12月8日的申请截止日与2027年1月面试的对应时间表以原文为准)。
- 材料清单
- CV
- Academic transcripts
- Covering letter/personal statement
- Two academic references
- Evidence of competence in English
由 gemini-2.5-flash-lite 生成,博士岗判定置信度 100%。
结构化信息
- 截止
- 原帖未给出
- 学科
- 生命科学
- 合同类型
- 奖学金
- 原文薪资
- GBP 21,747 / 年(税前)
- 估算假设
- 单身、无子女、雇佣合同的粗略估算,以学校 offer 为准;扣除率 18%;汇率日期 2026-10-01
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- 内容更新
- 来源
- University of Cambridge 官方招聘 · 最近核对 2026-10-09
- 详情核验
判定依据(原文摘录)
- 判定该岗位为博士培养项目
British Heart Foundation (BHF) 4-Year Multidisciplinary Doctoral Training Programme
- 判定申请需本科学位即可
Applicants should hold, or expect to obtain, a first or upper second-class undergraduate degree (or equivalent) in a relevant discipline
原文
Secondary Prevention of Vascular Dysfunction and Disease
University of Cambridge, in collaboration with the University of Oxford
Start date: October 2027
Fully funded studentships
Applications are invited for the second intake of the new British Heart Foundation (BHF) 4-Year Multidisciplinary Doctoral Training Programme that brings together researchers from the Universities of Oxford and Cambridge, with a focus on Secondary Prevention of Vascular Dysfunction and Disease. This flagship programme will train the next generation of cardiovascular scientists to develop innovative, cross-disciplinary approaches to halt, stabilise and reverse vascular disease in high-risk patients.
Students will be admitted to either the University of Oxford (up to 8 studentships) or the University of Cambridge (2 studentships) and will benefit from co-supervision, training, collaboration and access to world-class research infrastructure across partner institutions.
Instructions for applying to Cambridge are given below.
Vascular diseases, including coronary artery disease, stroke and aortic aneurysm, remain leading causes of death and disability worldwide. While acute care has advanced significantly, therapeutic innovation aimed at preventing disease progression and reversing established pathology has stagnated. We will identify new targets for secondary prevention and disease regression, ultimately reducing cardiovascular risk in vulnerable populations. Recent transformative technological advances, including multi-omics and AI-enhanced imaging, provide unprecedented new opportunities to gain novel mechanistic insights and develop urgently needed treatments.
In a truly multidisciplinary programme , students will work across four interconnected research themes:
• Defining disease - Deep phenotyping, imaging and patient stratification
• Elaborating mechanisms and biomarkers - Multi-omics and genetic discovery
• Modulating cell death and inflammation - Systems immunology and therapeutic targeting
• Maintaining vascular stability - Cell biology, biomechanics and regenerative approaches
The programme leverages world-leading infrastructure including BHF Centres of Research Excellence at both institutions, large-scale clinical datasets (e.g. UK Biobank), advanced imaging platforms, spatial transcriptomics hubs, and cutting-edge immunophenotyping facilities.
This structured 4-year doctoral training programme is designed to provide a level of integration and breadth beyond that of a traditional PhD. To establish a firm foundation for doctoral research, in year 1, students will undertake core research and bespoke specialist training, as well as two 12-week laboratory rotations in complementary disciplines, before progressing to a three-year main research project. Cross-institutional symposia and cohort-building activities will feature in all four years, and there will be opportunities to interact with pharmaceutical and biotechnology partners, and to undertake training in entrepreneurship, innovation and commercial translation. The programme aims to produce graduates equipped for careers in academia, industry, biotechnology, healthcare, policy and beyond.
Each fully funded 4-year studentship includes:
-A tax-free stipend at the standard BHF rate (currently £21,747/year; rising over the 4 years)
-University tuition fees at the home rate
-Consumables budget
-Travel allowance for conferences
-Additional funds to visit partners within the programme
Studentships will fully fund those who meet the UK residency requirements (home fees). International students who are able to meet the additional costs of overseas tuition fees through other scholarships or funding schemes will also be considered.
Students must commence in October 2027.
Eligibility Applicants should hold, or expect to obtain, a first or upper second-class undergraduate degree (or equivalent) in a relevant discipline such as Biochemistry, Biomedical sciences, Bioengineering or related life science subject. We particularly encourage applications from candidates with interdisciplinary interests and from groups underrepresented in cardiovascular research.
Equality, Diversity and Inclusion We are committed to fostering an inclusive research culture aligned with the BHF "Igniting Change" strategy. Recruitment will be conducted transparently and equitably. We actively encourage applications from candidates of all backgrounds.
Application Process
Applicants should submit:
-CV
-Academic transcripts
-Covering letter/personal statement (<1000 words), outlining research interests and motivation.
-Two academic references
-Evidence of competence in English (if required)
Applications should be submitted to Cambridge via: https://www.postgraduate.study.cam.ac.uk/courses/directory/cvmdpdecr Selected applicants will be invited to interview in early January 2027. Application deadline: 8th Dec 2027
For further information Please contact: Cambridge - pgmed@medschl.cam.ac.uk
Please quote reference RC51350 on your application and in any correspondence about this vacancy.
The University actively supports equality, diversity and inclusion and encourages applications from all sections of society.
The University has a responsibility to ensure that all employees are eligible to live and work in the UK.