Image-Text-to-Text
Transformers
Safetensors
qwen3_vl
vision-language
multimodal
grpo
reinforcement-learning
medical
cardiac
mri
vqa
easyr1
conversational
Instructions to use ai-mind-lab/CineMR with libraries, inference providers, notebooks, and local apps. Follow these links to get started.
- Libraries
- Transformers
How to use ai-mind-lab/CineMR with Transformers:
# Use a pipeline as a high-level helper from transformers import pipeline pipe = pipeline("image-text-to-text", model="ai-mind-lab/CineMR") messages = [ { "role": "user", "content": [ {"type": "image", "url": "https://huggingface.co/datasets/huggingface/documentation-images/resolve/main/p-blog/candy.JPG"}, {"type": "text", "text": "What animal is on the candy?"} ] }, ] pipe(text=messages)# Load model directly from transformers import AutoProcessor, AutoModelForMultimodalLM processor = AutoProcessor.from_pretrained("ai-mind-lab/CineMR") model = AutoModelForMultimodalLM.from_pretrained("ai-mind-lab/CineMR", device_map="auto") messages = [ { "role": "user", "content": [ {"type": "image", "url": "https://huggingface.co/datasets/huggingface/documentation-images/resolve/main/p-blog/candy.JPG"}, {"type": "text", "text": "What animal is on the candy?"} ] }, ] inputs = processor.apply_chat_template( messages, add_generation_prompt=True, tokenize=True, return_dict=True, return_tensors="pt", ).to(model.device) outputs = model.generate(**inputs, max_new_tokens=40) print(processor.decode(outputs[0][inputs["input_ids"].shape[-1]:])) - Notebooks
- Google Colab
- Kaggle
- Local Apps Settings
- vLLM
How to use ai-mind-lab/CineMR with vLLM:
Install from pip and serve model
# Install vLLM from pip: pip install vllm # Start the vLLM server: vllm serve "ai-mind-lab/CineMR" # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:8000/v1/chat/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "ai-mind-lab/CineMR", "messages": [ { "role": "user", "content": [ { "type": "text", "text": "Describe this image in one sentence." }, { "type": "image_url", "image_url": { "url": "https://cdn.britannica.com/61/93061-050-99147DCE/Statue-of-Liberty-Island-New-York-Bay.jpg" } } ] } ] }'Use Docker
docker model run hf.co/ai-mind-lab/CineMR
- SGLang
How to use ai-mind-lab/CineMR with SGLang:
Install from pip and serve model
# Install SGLang from pip: pip install sglang # Start the SGLang server: python3 -m sglang.launch_server \ --model-path "ai-mind-lab/CineMR" \ --host 0.0.0.0 \ --port 30000 # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:30000/v1/chat/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "ai-mind-lab/CineMR", "messages": [ { "role": "user", "content": [ { "type": "text", "text": "Describe this image in one sentence." }, { "type": "image_url", "image_url": { "url": "https://cdn.britannica.com/61/93061-050-99147DCE/Statue-of-Liberty-Island-New-York-Bay.jpg" } } ] } ] }'Use Docker images
docker run --gpus all \ --shm-size 32g \ -p 30000:30000 \ -v ~/.cache/huggingface:/root/.cache/huggingface \ --env "HF_TOKEN=<secret>" \ --ipc=host \ lmsysorg/sglang:latest \ python3 -m sglang.launch_server \ --model-path "ai-mind-lab/CineMR" \ --host 0.0.0.0 \ --port 30000 # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:30000/v1/chat/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "ai-mind-lab/CineMR", "messages": [ { "role": "user", "content": [ { "type": "text", "text": "Describe this image in one sentence." }, { "type": "image_url", "image_url": { "url": "https://cdn.britannica.com/61/93061-050-99147DCE/Statue-of-Liberty-Island-New-York-Bay.jpg" } } ] } ] }' - Docker Model Runner
How to use ai-mind-lab/CineMR with Docker Model Runner:
docker model run hf.co/ai-mind-lab/CineMR
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**Tool use:** tool-decision accuracy 89.61% (precision 100%), tool recall on required items 99.99%, redundant tool calls on optional items 0.00%, trace/JSON format validity 99.98%, tool-name set-match 88.28%, argument accuracy 88.28%, predicted names ⊆ expected 100%.
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Numbers are from this exact GRPO checkpoint (`global_step_153`, from `sft_v6_live_tool`) evaluated with the project `eval_sft` pipeline. See the project eval scripts under `<cardiac_cine_repo>/cardiac_cine/cine-cogito/` for reference pipelines.
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## Limitations
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- Trained on public cardiac MRI challenge-style corpora (ACDC, M&Ms, M&Ms-2); generalization to other scanners, sequences, or pathologies is not guaranteed.
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**Tool use:** tool-decision accuracy 89.61% (precision 100%), tool recall on required items 99.99%, redundant tool calls on optional items 0.00%, trace/JSON format validity 99.98%, tool-name set-match 88.28%, argument accuracy 88.28%, predicted names ⊆ expected 100%.
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## Limitations
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- Trained on public cardiac MRI challenge-style corpora (ACDC, M&Ms, M&Ms-2); generalization to other scanners, sequences, or pathologies is not guaranteed.
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