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🎨 Illustrateur scientifique IA

Créez des figures scientifiquesentièrement modifiables.

Exportez des PPTX & SVG modifiables, ainsi que des PNG & JPG haute résolution. Optimisé pour les revues et les présentations.

Obtenez 200 crédits gratuits | Aucune carte de crédit requise

Illustration de la synapse immunitaire entre cellule T et tumeur
MIT
Stanford University
UC Berkeley
Yale University
Cornell University
University of Cambridge
University of Michigan
UCLA
Baylor College of Medicine
KAIST
KAUST
Weizmann Institute

Conçu pour les flux de communication scientifique modernes

Des figures scientifiques pour toutes les disciplines.

Mécanismes, appareils, workflows et posters pour la physique, la chimie, l’ingénierie et les sciences de la vie.

TEXTE VERS IMAGE

Générez un premier visuel à partir d’un prompt

Décrivez un mécanisme, un flux de travail ou un concept et obtenez rapidement une figure scientifique prête à être affinée.

Essayer
Générez un premier visuel à partir d’un prompt

Use cases

Built for every research moment

One studio for journal figures, slides, teaching visuals, grants, and paper abstracts.

Journal articles

Journal articles

Create detailed figures and diagrams that clearly communicate complex research to journal readers.

Conference presentations

Conference presentations

Design slides that hold attention and explain findings without crowding the frame.

Teaching materials

Teaching materials

Develop clear classroom visuals that help students grasp scientific concepts faster.

Grant proposals

Grant proposals

Illustrate research plans with visuals that help review panels see the idea quickly.

Thesis & dissertations

Thesis & dissertations

Create professional figures that raise the standard of academic manuscripts.

Graphical abstract

Graphical abstract

Turn a paper story into a one-screen summary that captures the finding at a glance.

Published style

Créé avec FigPad

Explorez des figures prêtes à publier créées par des chercheurs du monde entier.

Survolez un exemple et choisissez Utiliser pour l’ouvrir dans l’espace de travail comme référence visuelle, sans remplir le prompt.

Explore Inspiration
CellPressIF 45.5
Utiliser

T-cell and tumor synapse with checkpoint contacts

cell biologyIF 21.3
Utiliser

Acidic niche sugar shield blocks ferroptosis

CellMetabolismIF 27.7
Utiliser

Organelle-delivery cutaway for transplantation

medicineIF 58.7
Utiliser

Oxygen gradient and stiff hypoxic stroma in the tumor niche

biomedical engineeringIF 26.6
Utiliser

Organ-on-chip with mixer, culture chambers and membrane flow

communicationsIF 14.7
Utiliser

Organoid trapping in a serpentine microfluidic chip

IF 50.5
Utiliser

CRISPR cut-and-repair mechanism

cell biologyIF 21.3
Utiliser

Intact versus disassembled cytoskeleton with readout

methodsIF 40.1
Utiliser

Four-panel methods board from isolation to readout

ScienceAdvancesIF 11.7
Utiliser

Iterate–validate cycle from hypothesis to deployment

machine intelligenceIF 23.9
Utiliser

Dual-stream encoder with adapter blocks and decoder mask

computational scienceIF 12.0
Utiliser

Multi-agent extraction, synthesis and adaptation pipeline

machine intelligenceIF 23.9
Utiliser

Adaptive reasoning paths across query difficulty

communicationsIF 14.7
Utiliser

Co-scheduling EVs and storage in an integrated energy system

ScienceAdvancesIF 11.7
Utiliser

Multi-source IES with conversion, storage and V2B demand

machine intelligenceIF 23.9
Utiliser

Controller routing queries through an agentic supernet

computational scienceIF 12.0
Utiliser

Paper-promotion agents from extraction to packaging

communicationsIF 14.7
Utiliser

Urban expansion impact on vegetation carbon sequestration

IF 50.5
Utiliser

Metal-based nanomaterials for delivery and catalysis

communicationsIF 14.7
Utiliser

Ecosystem services, urbanization and SDG pathways

IF 50.5
Utiliser

Bacteria–nanomaterial synergy for cancer biotherapy

biomedical engineeringIF 26.6
Utiliser

Biological behavior of zinc-based orthopedic implants

ScienceAdvancesIF 11.7
Utiliser

EV fleet dispatch with P2G–CCS conversion pathways

machine intelligenceIF 23.9
Utiliser

Encoder–reasoner–decoder with cross-scale skip paths

IF 50.5
Utiliser

Coupled human–natural systems across landscape mosaics

CellPressIF 45.5
Utiliser

T-cell and tumor synapse with checkpoint contacts

cell biologyIF 21.3
Utiliser

Acidic niche sugar shield blocks ferroptosis

CellMetabolismIF 27.7
Utiliser

Organelle-delivery cutaway for transplantation

medicineIF 58.7
Utiliser

Oxygen gradient and stiff hypoxic stroma in the tumor niche

biomedical engineeringIF 26.6
Utiliser

Organ-on-chip with mixer, culture chambers and membrane flow

communicationsIF 14.7
Utiliser

Organoid trapping in a serpentine microfluidic chip

IF 50.5
Utiliser

CRISPR cut-and-repair mechanism

cell biologyIF 21.3
Utiliser

Intact versus disassembled cytoskeleton with readout

methodsIF 40.1
Utiliser

Four-panel methods board from isolation to readout

ScienceAdvancesIF 11.7
Utiliser

Iterate–validate cycle from hypothesis to deployment

machine intelligenceIF 23.9
Utiliser

Dual-stream encoder with adapter blocks and decoder mask

computational scienceIF 12.0
Utiliser

Multi-agent extraction, synthesis and adaptation pipeline

machine intelligenceIF 23.9
Utiliser

Adaptive reasoning paths across query difficulty

communicationsIF 14.7
Utiliser

Co-scheduling EVs and storage in an integrated energy system

ScienceAdvancesIF 11.7
Utiliser

Multi-source IES with conversion, storage and V2B demand

machine intelligenceIF 23.9
Utiliser

Controller routing queries through an agentic supernet

computational scienceIF 12.0
Utiliser

Paper-promotion agents from extraction to packaging

communicationsIF 14.7
Utiliser

Urban expansion impact on vegetation carbon sequestration

IF 50.5
Utiliser

Metal-based nanomaterials for delivery and catalysis

communicationsIF 14.7
Utiliser

Ecosystem services, urbanization and SDG pathways

IF 50.5
Utiliser

Bacteria–nanomaterial synergy for cancer biotherapy

biomedical engineeringIF 26.6
Utiliser

Biological behavior of zinc-based orthopedic implants

ScienceAdvancesIF 11.7
Utiliser

EV fleet dispatch with P2G–CCS conversion pathways

machine intelligenceIF 23.9
Utiliser

Encoder–reasoner–decoder with cross-scale skip paths

IF 50.5
Utiliser

Coupled human–natural systems across landscape mosaics

CellPressIF 45.5
Utiliser

T-cell and tumor synapse with checkpoint contacts

cell biologyIF 21.3
Utiliser

Acidic niche sugar shield blocks ferroptosis

CellMetabolismIF 27.7
Utiliser

Organelle-delivery cutaway for transplantation

medicineIF 58.7
Utiliser

Oxygen gradient and stiff hypoxic stroma in the tumor niche

biomedical engineeringIF 26.6
Utiliser

Organ-on-chip with mixer, culture chambers and membrane flow

communicationsIF 14.7
Utiliser

Organoid trapping in a serpentine microfluidic chip

IF 50.5
Utiliser

CRISPR cut-and-repair mechanism

cell biologyIF 21.3
Utiliser

Intact versus disassembled cytoskeleton with readout

methodsIF 40.1
Utiliser

Four-panel methods board from isolation to readout

ScienceAdvancesIF 11.7
Utiliser

Iterate–validate cycle from hypothesis to deployment

machine intelligenceIF 23.9
Utiliser

Dual-stream encoder with adapter blocks and decoder mask

computational scienceIF 12.0
Utiliser

Multi-agent extraction, synthesis and adaptation pipeline

machine intelligenceIF 23.9
Utiliser

Adaptive reasoning paths across query difficulty

communicationsIF 14.7
Utiliser

Co-scheduling EVs and storage in an integrated energy system

ScienceAdvancesIF 11.7
Utiliser

Multi-source IES with conversion, storage and V2B demand

machine intelligenceIF 23.9
Utiliser

Controller routing queries through an agentic supernet

computational scienceIF 12.0
Utiliser

Paper-promotion agents from extraction to packaging

communicationsIF 14.7
Utiliser

Urban expansion impact on vegetation carbon sequestration

IF 50.5
Utiliser

Metal-based nanomaterials for delivery and catalysis

communicationsIF 14.7
Utiliser

Ecosystem services, urbanization and SDG pathways

IF 50.5
Utiliser

Bacteria–nanomaterial synergy for cancer biotherapy

biomedical engineeringIF 26.6
Utiliser

Biological behavior of zinc-based orthopedic implants

ScienceAdvancesIF 11.7
Utiliser

EV fleet dispatch with P2G–CCS conversion pathways

machine intelligenceIF 23.9
Utiliser

Encoder–reasoner–decoder with cross-scale skip paths

IF 50.5
Utiliser

Coupled human–natural systems across landscape mosaics

FAQ

Questions fréquemment posées

Tout ce que vous devez savoir sur le droit d'auteur, les formats de fichiers et les citations.

Vous avez encore des questions ? Contacter le support

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