Structure · dataset · 2026
Nanoscale characterisation of the influence of processing on PLLA bioresorbable vascular scaffolds
Listed in ZivaHub and Deakin Research Online and DMU Figshare — shown once because both records carry DOI 10.17034/32805917.v1
Coronary artery disease restricts blood flow and may cause acute events.
Description
When drugs fail, stent implantation is needed. Metallic drug‑eluting stents have long‑term concerns.
Polymeric bioresorbable vascular scaffolds (BVS) are a promising alternative. However, BVS has lower mechanical strength and requires thicker struts. This compromises deliverability and raises thrombosis risk.<br>This thesis examines how crimping and expansion affect BVS performance.
Read the rest (5 more)
These steps cause plastic deformation, altering mechanical properties and structural integrity. The aim is to understand these effects locally and optimise manufacturing.<br>Key processes—tube extrusion, stretch blow moulding, and laser cutting—were replicated using PLLA sheets. Sheets were biaxially stretched at three ratios: 2×2, 2×2.75, and 2.75×2.75.
A custom rig mimicked crimping, expansion, and deployment. Atomic force microscopy (AM‑FM mode) characterised material properties after each stage.<br>In the first study, room‑temperature crimping was tested. The lowest stretch ratio (2×2) samples developed cracks and showed reduced Young’s modulus.
This highlights the importance of the stretch ratio.<br>In the second study (expansion), higher stretch ratios recovered mechanical properties. The 2×2 samples did not recover due to pre‑existing cracks. Crimping damage directly impairs deployment.<br>In the third study (10% over‑expansion), micro‑CT quantified crack volume.
Stretch ratio was the primary factor; crimping speed was secondary. Larger cracks relieved stress but weakened the structure. The 2×2.75 fast‑crimped samples achieved the best balance.<br>In summary, this thesis provides a novel framework linking regional deformation to molecular‑level mechanical changes.
The methods evaluate deformation, viscoelasticity, and structural integrity, guiding BVS optimisation beyond PLLA‑based systems.
Links
Where it is published
- DOI doi.org/10.17034/32805917.v1 ↗
DOI / persistent id · from zivahub uct ac za
Catalogue records · 1
- OAI-PMH record api.figshare.com/v2/oai?verb=GetRecord&metadataPrefix=oai_dc&identifier=oai%3Af… ↗
metadata API · from zivahub uct ac za
Topics
- From keywords
- Earth & Environmental Science · Earth & Environmental Science · Earth & Environmental Science · Engineering · Engineering · Engineering · Materials Science · Materials Science · Materials Science · Mechanical engineering · Mechanical engineering · Mechanical engineering
- Inferred from text
- Computed tomography 50% · Disease 75% · Microscopy 75%
Provenance · 3 source records, 19 field assertions
| Source | Key | Last seen | Raw |
|---|---|---|---|
| ZivaHub | oai:figshare.com:article/32805917 | 5 d ago | JSON v1 |
| Deakin Research Online | oai:figshare.com:article/32805917 | 5 d ago | JSON v1 |
| DMU Figshare | oai:figshare.com:article/32805917 | 5 d ago | JSON v1 |
| Field | Assertion | Extractor | Evidence |
|---|---|---|---|
| concepts[disease].local:disease:disease | enrichment · zivahub uct ac za | keyword-concept-rules@1.0.0 | title+description (75%) |
| concepts[field].anzsrc:group:4017 | mapping · figshare dmu ac uk | vocabulary-mapper@1.0.0 | keywords['Mechanical engineering'] |
| concepts[field].anzsrc:group:4017 | mapping · dro deakin edu au | vocabulary-mapper@1.0.0 | keywords['Mechanical engineering'] |
| concepts[field].anzsrc:group:4017 | mapping · zivahub uct ac za | vocabulary-mapper@1.0.0 | keywords['Mechanical engineering'] |
| concepts[field].local:field:earth-environmental | mapping · figshare dmu ac uk | connector:figshare_dmu_ac_uk@1.0.0 | |
| concepts[field].local:field:earth-environmental | mapping · dro deakin edu au | connector:dro_deakin_edu_au@1.0.0 | |
| concepts[field].local:field:earth-environmental | mapping · zivahub uct ac za | connector:zivahub_uct_ac_za@1.0.0 | |
| concepts[field].local:field:engineering | mapping · dro deakin edu au | connector:dro_deakin_edu_au@1.0.0 | |
| concepts[field].local:field:engineering | mapping · zivahub uct ac za | connector:zivahub_uct_ac_za@1.0.0 | |
| concepts[field].local:field:engineering | mapping · figshare dmu ac uk | connector:figshare_dmu_ac_uk@1.0.0 | |
| concepts[field].local:field:materials-science | mapping · dro deakin edu au | connector:dro_deakin_edu_au@1.0.0 | |
| concepts[field].local:field:materials-science | mapping · zivahub uct ac za | connector:zivahub_uct_ac_za@1.0.0 | |
| concepts[field].local:field:materials-science | mapping · figshare dmu ac uk | connector:figshare_dmu_ac_uk@1.0.0 | |
| concepts[modality].local:modality:ct | enrichment · zivahub uct ac za | keyword-concept-rules@1.0.0 | title+description (50%) |
| concepts[modality].local:modality:microscopy | enrichment · zivahub uct ac za | keyword-concept-rules@1.0.0 | title+description (75%) |
| description | source · zivahub uct ac za | connector:zivahub_uct_ac_za@1.0.0 | /metadata/dc/description |
| license_text | source · zivahub uct ac za | connector:zivahub_uct_ac_za@1.0.0 | |
| publication_date | source · zivahub uct ac za | connector:zivahub_uct_ac_za@1.0.0 | |
| title | source · zivahub uct ac za | connector:zivahub_uct_ac_za@1.0.0 | /metadata/dc/title |