Point, Detect, Count: Multi-Task Medical Image Understanding with Instruction-Tuned Vision-Language Models
Journal:
arXiv
Published Date:
May 22, 2025
Abstract
We investigate fine-tuning Vision-Language Models (VLMs) for multi-task
medical image understanding, focusing on detection, localization, and counting
of findings in medical images. Our objective is to evaluate whether
instruction-tuned VLMs can simultaneously improve these tasks, with the goal of
enhancing diagnostic accuracy and efficiency. Using MedMultiPoints, a
multimodal dataset with annotations from endoscopy (polyps and instruments) and
microscopy (sperm cells), we reformulate each task into instruction-based
prompts suitable for vision-language reasoning. We fine-tune
Qwen2.5-VL-7B-Instruct using Low-Rank Adaptation (LoRA) across multiple task
combinations. Results show that multi-task training improves robustness and
accuracy. For example, it reduces the Count Mean Absolute Error (MAE) and
increases Matching Accuracy in the Counting + Pointing task. However,
trade-offs emerge, such as more zero-case point predictions, indicating reduced
reliability in edge cases despite overall performance gains. Our study
highlights the potential of adapting general-purpose VLMs to specialized
medical tasks via prompt-driven fine-tuning. This approach mirrors clinical
workflows, where radiologists simultaneously localize, count, and describe
findings - demonstrating how VLMs can learn composite diagnostic reasoning
patterns. The model produces interpretable, structured outputs, offering a
promising step toward explainable and versatile medical AI. Code, model
weights, and scripts will be released for reproducibility at
https://github.com/simula/PointDetectCount.